#Butyric Acid Database
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chemanalystdata · 4 months ago
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Butyric Acid Prices | Pricing | Trend | News | Database | Chart | Forecast
 Butyric acid, a short-chain fatty acid, is gaining increasing attention in various industries, including pharmaceuticals, food production, and agriculture. Its unique properties and applications contribute to the fluctuations in its market prices, which are influenced by multiple factors. Understanding the dynamics of butyric acid prices requires a comprehensive look into its production processes, market demand, and global trade.
The production of butyric acid primarily involves two methods: the synthetic route and the fermentation process. The synthetic route typically utilizes petrochemical sources, which can be sensitive to fluctuations in crude oil prices. Therefore, any significant changes in oil prices can directly affect the cost of production and, consequently, the price of butyric acid. On the other hand, the fermentation process, which uses microbial fermentation of carbohydrates, can be influenced by agricultural product prices and technological advancements. As the technology for fermentation improves, it may lead to more cost-effective production methods, potentially lowering prices.
Get Real Time Prices for Butyric Acid : https://www.chemanalyst.com/Pricing-data/butyric-acid-1250Market demand plays a crucial role in shaping butyric acid prices. In the pharmaceutical industry, butyric acid is used in the production of various medications, including those for treating gastrointestinal disorders. The demand for these medications can be influenced by changes in healthcare policies, advancements in medical research, and demographic shifts, such as an aging population that may require more medical treatments. As a result, fluctuations in the pharmaceutical sector can impact the demand for butyric acid, which, in turn, affects its price.
The food industry also significantly influences butyric acid prices. Butyric acid is used as a flavoring agent and preservative in processed foods. With the growing trend of healthier eating and clean-label products, there is an increasing demand for natural and functional ingredients. This rising consumer preference for natural additives can drive up the demand for butyric acid, thereby affecting its market price. Additionally, regulatory changes and safety standards in the food industry can impact the production and distribution of butyric acid, influencing its price.
Agriculture is another sector where butyric acid plays a vital role. It is used as a feed additive in livestock to improve animal health and productivity. Changes in agricultural practices, livestock farming regulations, and feed additive standards can affect the demand for butyric acid. Furthermore, fluctuations in agricultural commodity prices and supply chain disruptions can have a cascading effect on butyric acid prices. For example, if there is a shortage of raw materials used in fermentation, it could lead to increased production costs and, subsequently, higher prices.
Global trade dynamics also contribute to the pricing of butyric acid. The international market is characterized by supply and demand imbalances, trade policies, and tariffs that can impact the availability and cost of butyric acid. For instance, trade restrictions or tariffs imposed by major producing countries can lead to price fluctuations in the global market. Additionally, exchange rate fluctuations can affect the cost of importing and exporting butyric acid, influencing its price in different regions.
Technological advancements and innovations in the production of butyric acid can have a significant impact on its prices. Researchers and manufacturers are continually working on developing more efficient and sustainable production methods. These advancements can lead to lower production costs and increased supply, which may result in reduced prices. Conversely, if new technologies are expensive to implement or require significant investment, they could lead to higher production costs and increased prices.
Moreover, environmental regulations and sustainability concerns are becoming increasingly important in the production of chemicals, including butyric acid. Stricter environmental regulations can lead to higher compliance costs for manufacturers, which may be passed on to consumers in the form of higher prices. Conversely, initiatives aimed at promoting sustainability and reducing environmental impact may encourage the development of more cost-effective and environmentally friendly production methods, potentially influencing prices in the long term.
In conclusion, butyric acid prices are subject to a complex interplay of factors including production methods, market demand, global trade dynamics, and technological advancements. As industries continue to evolve and market conditions change, the prices of butyric acid will likely fluctuate in response to these influences. Understanding these dynamics is crucial for stakeholders across various sectors who rely on butyric acid for their products and processes. Keeping an eye on these factors can help anticipate price movements and make informed decisions in a market that is both diverse and dynamic.
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juniperpublishers-yoga · 3 years ago
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Effect of Yoga on the Autonomic Nervous System: Clinical Implications in the Management of Atrial Fibrillation
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Authored by Maheswari Murugesan
Abstract
Atrial fibrillation (AF) affects about 1.5% of the U.S. population, especially aging persons, resulting in substantial morbidity and mortality. Although radiofrequency catheter ablation is the accepted treatment for AF, failure of this therapy is common. Given that the onset of AF is preceded by a primary increase in the sympathetic drive followed by marked modulation towards vagal pre-dominance, it is likely that stress precipitates and exacerbates AF. The authors searched the databases of Ovid MEDLINE, Pub Med, APA PsycNET, Alt Health Watch via EBSCO host, and CINAHL to evaluate the effects of yoga as a complementary health approach on the autonomic nervous system and how this mind-body modality, if added to conventional treatment, might contribute importantly to reducing or eliminating stress as a trigger for AF. Articles written in English and published in peer-reviewed journals between 2003 and 2017, reporting on research of yoga on autonomic nervous system, were identified. Twenty articles met the inclusion criteria, revealing that yoga resulted in a significant shift in autonomic balance towards vagal dominance; reduction in heart rate and blood pressure; reduction in indices of ventricular repolarization dispersion in patients with ventricular arrhythmias; significant reduction in stress, anger, depression, and anxiety; and improvements in neuroendocrine release, emotional processing, and social binding. Given these literature review findings, the authors provide an integrative overview of biological mechanisms and substrates that mediate AF, which can be targets for future research evaluating how the practice of selected styles of yoga can mitigate the onset of AF.
Keywords: Yoga; Heart rate variability; Stress; Autonomic nervous system; Atrial fibrillation
Abbrevations: ANS: Autonomic Nervous System; PNS: Parasympathetic Nervous System; HRV: Heart Rate Variability; HF: High Frequency; LF: Low Frequency; VLF: Very-Low-Frequency; ULF: Ultra-Low-Frequency; SDDN: Standard Deviation of Normal-to-Normal; RMSSD: Root Mean Square of Successive Differences; NN50: Number of Pairs of Successive NN (R-R) Intervals that Differ By More Than 50 Milli Seconds; pNN50: Proportion of RR Intervals >50 Msec; FEV1: Forced Expiratory Volume in 1 Second; FVC: Forced Vital Capacity; FEF: Forced Expiratory Flow; PEmax: Maximum Peak Expiratory Flow Rate; PImax: Maximum Inspiratory Flow Rate; GABA: Gamma Amino-Butyric Acid; QOL: Quality of Life; Min: Minute/s; Yr: Year/s; MET: Metabolic Equivalent of Task; AF: Atrial Fibrillation; PAF: Paroxysmal Atrial Fibrillation; QOL: Quality of Life; VAS: Visual Analogue Scale; SD: Standard Deviation; Min: Minute/s
Introduction
Atrial fibrillation (AF), the most common sustained cardiac arrhythmia, is seen in approximately 1.5% of the U.S. population [1] and results in substantial morbidity and mortality [2]. One of the largest U.S. epidemiological studies, the Framingham Heart Study, predicted that AF prevalence doubles with each advancing decade of age, from 0.5% at age 50-59 years to almost 9% at age 80-89 years, independent of the increasing prevalence of known predisposing conditions [2]. Although medical treatment involving radiofrequency catheter ablation has become the well-accepted management strategy for AF [3] failure of this therapy is common, with only two-thirds or less of the patients treated remaining free of AF on long-term follow- up [3]. Early recurrence of atrial tachyarrhythmia, usually defined as arrhythmia recurrence within the first 3 months following ablation, is frequently associated with late recurrence of atrial tachyarrhythmia [4,5]. Acute myocardial injury and the subsequent inflammatory response, as well as modifications of the cardiac autonomic nervous system, provide an early and potentially reversible pro-arrhythmic substrate because of altered atrial myocardial conduction and refractoriness [3]. Research has shown that psychological stressors and imbalance in the autonomic nervous system (ANS) are the most common triggers for paroxysmal AF [6,7]. The mind-body therapy yoga has been shown to reduce stress and maintain autonomic nervous system balance [8]: hence, use of complementary health approaches such as yoga, which are low-cost interventions, might contribute importantly to reducing stress, help individuals maintain balance in the ANS, and thereby prevent recurrence of AF. In this article, the authors provide an overview of AF, the effects of yoga on lessening stress and maintaining ANS balance, and suggest through a psychoneuroimmunological framework the possible mechanisms by which the practice of yoga could mitigate AF episodes and symptoms.
Atrial fibrillation and associated symptoms
Cumulative lifetime risk estimates reveal that AF is primarily a disease of aging. In U.S. and European community-based cohort studies, the estimated lifetime risk of AF is 22% to 26% in men and 22% to 23% in women by age 80 years [9]. The effects of heart failure, valvular disease, myocardial infarction, and ischemic stroke on AF are substantial. Heart failure increases the risk of AF by a 4.5-fold in men and a 5.9-fold in women. Valvular heart disease increases the risk of AF by a 1.8-fold in men and a 3.4- fold increase in women, with myocardial infarction significantly increasing the risk of AF by 40% in men [2]. Likewise, AF is a potent risk factor for ischemic stroke, increasing the risk of stroke 5-fold, thus leading to about 15% of all strokes nationally [10].
The most common AF symptoms include palpitations, shortness of breath, fatigue, dizziness, and anxiety. In a study of 100 randomly selected patients with AF, 88% reported palpitations on exertion, 86% reported palpitations at rest, 70% reported shortness of breath on exertion, 87% reported reduced physical ability, and 59% reported anxiety [6]. Adults with major depression, anxiety, or somatization disorder generally have an associated increase in the severity of their AF symptoms [11].
Quality of life in individuals with AF
AF contributes to increased morbidity in the elderly by adversely affecting their quality of life (QOL) and by deterioration in myocardial function, increasing susceptibility to heart failure, stroke, hospitalization, and mortality [12]. Evaluation of QOL in a group of 264 female patients with AF enrolled in the Canadian Trial of Atrial Fibrillation (N = 403) showed that women had significantly more impaired QOL than men, specifically related to physical rather than emotional functioning [13]. In another study, outpatients with documented AF (N = 152) reported substantially poorer QOL than healthy controls [14]. Three of the four well-known randomized controlled trials (STAF, PIAF, RACE) comparing rate versus rhythm control demonstrated a greater improvement in QOL in patients receiving rate control [15] than those in the rhythm control group. However, the Atrial Fibrillation Follow-up Investigation of Rhythm Management (AFFIRM) trial revealed a similar improvement in QOL for both rate and rhythm control groups [15].
Health care costs associated with AF
A national survey estimated that direct medical costs were 73% higher in patients with AF compared with matched control subjects, representing a net incremental cost of $8705 per patient per year and a national incremental cost between $6 and $26 billion [16]. Retrospective analyses of three federally funded U.S. databases using 2001 data [17] found that approximately 2,34,000 hospital outpatient department visits, 2,76,000 emergency room visits, 3,50,000 hospitalizations, and 5 million office visits were attributable annually to AF. The total annual medical cost for the treatment of AF in the inpatient, emergency department, and hospital outpatient settings estimated at $6.65 billion is likely an underestimate as costs for long-term anticoagulation, stroke prevention, inpatient drugs, and hospital-based physician services were not included [17]. Patients with AF enrolled in the Fibrillation Registry Assessing Costs, Therapies, Adverse events, and Lifestyle (FRACTAL) study who were managed with cardioversion and pharmacotherapy incurred AF and other cardiovascular-related health care costs of $4000 to $5000 per year [18]. Among patients with recurrent AF, the frequency of recurrence was strongly associated with higher resource use, with each recurrence increasing annual costs by an average of $1600 [18]. The cost-effectiveness of catheter ablation is difficult to determine because of differences in the experience levels of centers treating these patients, use of technology, and rates of reimbursement, each of which affects cost calculations [19]. Researchers evaluating the cost- effectiveness of AF ablation compared with rhythm control or anti arrhythmic agents have shown that ablation treatment results in improved quality-adjusted life expectancy, although at a higher cost [18,19].
Atrial fibrillation and stress
Researchers have shown that psychological stressors and imbalance in the autonomic nervous system are the most common triggers for paroxysmal AF [6,7]. Acute life stressors affect the development and spontaneous conversion of AF and are thought to be mediated by the sympathetic nervous system. This hypothesis is supported by increased circulating catecholamine following an acute life stress and by observation that beta-adrenergic blockade prevents abnormal heart rhythm disturbances triggered by acute life stress [5]. In a study of 100 randomly selected patients with idiopathic paroxysmal atrial fibrillation, 54% reported psychological stress as the most common triggering factor for AF [6]. In another study of 116 patients with AF without an obvious cause, acute life stress significantly affected the development and spontaneous conversion of AF [7].
Atrial fibrillation and the autonomic nervous system
The autonomic innervations to the heart from the brain, the spinal cord (extrinsic system) and the ganglion plexi of the heart itself comprise the local ANS (intrinsic system) [20]. This intrinsic cardiac ANS of the heart and the pericardium serves as more than a relay station for the intrinsic projections of the vagal-sympathetic system from the brain and spinal cord to the heart. Supporting this theory is the fact that ablation of the major ganglion plexi at the pulmonary vein atrial entrances either eliminates or markedly diminishes AF inducibility. Also, this intrinsic cardiac autonomic system can act independently to modulate numerous cardiac functions, including automaticity, contractility, and conduction [20].
In addition to the sympathetic component of the ANS, the parasympathetic component has been shown to play a role in AF [21]. Amar et al. [22] showed that the onset of AF was preceded by a primary increase in the sympathetic drive followed by marked modulation toward vagal pre-dominance. The physiologic studies by Patterson et al. [23] further indicate that sympathetic stimulation plays an important modulatory role in the emergence of focal drivers for AF in the presence of an increased vagal tone. The ANS is involved in the genesis of both AF triggers (i.e., ectopic foci that result from interaction between vagal and sympathetic stimulation) and the creation of a more established AF substrate that is needed for the maintenance of AF and is enhanced in the presence of structural heart disease [21]. It has been shown that the abnormal electrical conduction within the pulmonary veins could be sustained only in the presence of isoproterenol or acetylcholine, indicating that sympathomimetic or cholinergic stimulation appears to be necessary to promote the development of sustained focal activity in the pulmonary veins [21].
Relationship between autonomic nervous system and measurement of heart rate variability
Heart rate variability (HRV), the variance between the R-R intervals or complete cardiac cycle on the electrocardiogram, can be used to assess the balance between the sympathetic and parasympathetic branches of the ANS [24]. Efferent sympathetic and parasympathetic activity is integrated in and with the activity occurring in the heart's intrinsic nervous system. Thus, HRV is considered a measure of neurocardiac function that reflects heart-brain interactions and ANS dynamics [25]. HRV is assessed with various analytical approaches, although the most commonly used are frequency domain (power spectral density) analysis and time domain analysis [25]. The European Society of Cardiology and the North American Society of Pacing and Electrophysiology Task Force Report on HRV divided heart rhythm oscillations into 4 primary frequency bands: high- frequency (HF), low-frequency (LF), very-low-frequency (VLF), and ultra-low-frequency (ULF) [24]. It is often assumed that a low LF:HF ratio reflects greater parasympathetic activity relative to sympathetic activity [25]. In contrast, a high LF:HF ratio may indicate higher sympathetic activity relative to parasympathetic activity as can be observed when people engage in meeting a challenge that requires effort and increased sympathetic activation. Alternatively, it can indicate increased parasympathetic activity as it occurs during slow breathing. Time domain indices quantify the amount of variance in the inter-beat-intervals using statistical measures. The three most important and commonly reported time domain measures are the standard deviation of normal-to-normal (SDNN), the SDNN index, and the root mean square of successive differences (RMSSD) [25]. The modulation of vagal tone helps maintain the dynamic autonomic regulation important for cardiovascular health. Reduced parasympathetic (high frequency) activity has been found in cardiac pathologies and in patients under stress or suffering from panic, anxiety, or worry [24].
Yoga as a complementary health approach in treating atrial fibrillation
Yoga, an ancient discipline from India, is a mind-body exercise in which both physical and mental disciplines are brought together to achieve peacefulness of mind and body, resulting in a relaxed state that is useful in managing stress and anxiety. To date, two studies have assessed the impact of yoga on AF. One, a proof-of-concept study [26], revealed that 60-minute Iyengar yoga sessions at least twice a week for 3 months improved symptoms, arrhythmia burden, heart rate, blood pressure, anxiety and depression scores, and several domains of QOL in adults with paroxysmal AF. A second study [27] using mediyoga as the intervention, showed that this style of yoga might potentially lower blood pressure, lower heart rate in patients with paroxysmal AF, and improve QOL compared to a control group.
Given the potential positive impact of yoga on decreasing AF episodes and symptoms as shown in Table 1, the authors conducted an extensive computerized search of diverse databases (Ovid MEDLINE, Pub Med, APA PsycNET, Alt Health Watch via EBSCO host, CINAHL), using key terms of heart rate variability and autonomic nervous system, to assess the effect of yoga on the ANS. These computerized searches yielded 230 studies (Ovid MEDLINE = 25, Pub Med = 31, APA PsycNET = 16, Alt Health Watch = 153, CINAHL = 5), which were then reviewed for eligibility. Inclusion criteria were English language articles reporting on studies that (a) enrolled subjects 18 years and older and (b) were published between 2003 and 2017 in peer- reviewed scientific journals.
The 20 articles that met the inclusion criteria are shown in Table 2. Seventeen were interventional studies with 14 of these using random sampling; 3 used non-randomized sampling techniques. One of the studies included a discussion of the effect of yoga on the parasympathetic and GABA systems [8] and the other study reviewed the health impacts of yoga and pranayama [28]. The review also identified two relevant articles that provided additional information on the impact of yoga on the ANS. One of the articles, provided a review of the health impacts of yoga and pranayama [28] and the second proposed a neurophysiologic model to clarify the mechanisms by which SudharshanKriya yogic breathing balance the autonomic nervous system activity [29].
Sample characteristics
The participants in all 17 interventional studies were adults aged 18 years or older. Three studies included only male participants, with the rationale for excluding females being the tendency in variation of the autonomic variables with the phases of the menstrual cycle in females. However, Markil et al. [30] included 15 women in their study, completing the study during the follicular phase of the menstrual cycle given that the luteal phase causes increase in sympathetic activity. One study did not mention the sex of the participants. Of the 17 interventional studies, 8 were completed in India, 5 within the United States, 1 in each completed in Australia, Germany, Brazil, and Nepal. Women and ethnic minorities were under represented in these studies. Most of the studies except for Dabhade et al. [31] excluded patients with arrhythmias and those on any medications such as beta-blockers and anti-arrhythmic medications that have significant effect on heart rate and rhythm.
The studies reviewed showed that participation in a yoga intervention resulted in a significant shift in autonomic balance towards vagal dominance; a reduction in heart rate and systolic, diastolic, and mean blood pressure; a reduction in the indices of ventricular repolarization dispersion (QTd, JTd) in patients with ventricular arrhythmias; significant reduction in stress, anger, depression, anxiety, and neurotic symptoms; and improvements in neuroendocrine release, emotional processing, and social binding. Both time and frequency domain indices of heart rate variability showed significant changes towards parasympathetic modulation. Bidwell, et al. [32] found that yoga training for females with mild to moderate asthma decreased parasympathetic activity and increased sympathetic modulation as assessed by isometric forearm exercise. Yoga not only causes increased parasympathetic tone but when needed decreases the highly active parasympathetic nervous system to maintain a balanced autonomic nervous system activity.
Right nostril yoga breathing can increase sympathetic tone and cardiac sympathetic activity, resulting in increased blood pressure and heart rate. Left nostril yoga breathing can decrease systolic and mean blood pressure while alternate nostril breathing can decrease both systolic and diastolic blood pressure [33]. Slow breathing exercises can improve sympathetic and parasympathetic reactivity [34]. Slow pace
Bhastrikapranayama exercise has shown a strong tendency towards improving function of the ANS through enhanced activation of the parasympathetic system [35]. Yoga practice of cyclic meditation during the day appears to shift sympatho- vagal balance in favor of parasympathetic dominance during sleep on the following night which promotes improved quality of sleep [36]. Four months of respiratory training in Bhastrika pranayama increased respiratory function and improved cardiac parasympathetic modulation in a group of healthy elderly subjects [37]. The changes during Dhyana (meditation) [38] and guided relaxation [39] resulted in reduced activity of the sympathetic nervous system showing a shift in autonomic balance towards vagal dominance. Laughter yoga therapy for individuals awaiting heart transplant showed improvement in vigor-activity, friendliness, and long-term anxiety. It also improved HRV measures within or close to normal ranges from being low at baseline perhaps related to reduced vagal stimulation [40]. Integrated yoga practice reduced perceived stress and improved adaptive autonomic response to stress in healthy pregnant women [41].
The styles of yoga reported on in the research reviewed include Hatha yoga, viniyoga, Ishayoga, Iyengar yoga, laughter yoga, integrated yoga, yoga nidra relaxation, meditation (cancalata, ekagrata, dharana, dhyana), pranayama (Bhastrika, Kapalbhati, Anilom-vilom, Bhramari, Udgit), cyclic meditation, guided relaxation and yoga breathing practices. Yoga postures, breathing exercises, pranayama, and meditation reportedly led to a significant shift in autonomic balance towards vagal dominance, which can prevent tachycardia, an important goal in the management of AF.
Only 4 studies mentioned the number of participants who completed the studies, with attrition rates ranging from 3.3% to 54.06%. The primary reasons for participants not completing a study were drop outs, irregular attendance at intervention sessions, and relocation following study enrollment. Higher attrition occurred in 'in-person' mindfulness therapy groups (27.3%) compared to the 'online' mindfulness meditation groups (3.8%) [42], giving rise to the need to consider the format and location of yoga interventions. Also, the studies reviewed did not provide an explicit theoretical or conceptual framework to explain the basis for the yoga interventions used with the study population.
A psychoneuroimmunological framework to explain effects of yoga on AF
To address the deficit in the literature regarding theoretical or conceptual frameworks in the studies reviewed, the authors identified a psychoneuroimmunological framework adapted from McCain et al.
[43]shown in Figure 1 to depict the electrical, mechanical, and structural changes in the heart that lead to a stress-related imbalance in the ANS resulting in AF. Yoga interventions can potentially foster the electrical stability of the heart by maintaining ANS balance and lessening AF episodes, AF symptoms (palpitations, shortness of breath, dizziness, and fatigue), stress, depression, and anxiety, thus improving the participants’ health-related QOL. Modulating factors such as stress can cause imbalance in the ANS, which, in turn, can lead to AF. Persistent AF causes inflammation and fibrosis of the atria, resulting in a fixed substrate for re-entry and consequent sustained episodes of AF [21], making treatment options to break this re-entrant cycle challenging. Triggers for atrial fibrosis include the activation of the renin-angiotensin- aldosterone system, inflammation, and oxidative stress [44]. The combination of normal and diseased atrial fibers in conjunction with local fibrosis results in spatial dispersion of atrial refractoriness and causes localized conduction abnormalities, including intra-atrial conduction block and slow conduction [44] . Thus, the interplay of stress (psycho), imbalance in the ANS (neuro), activation of the renin-angiotensin-aldosterone system, inflammation and oxidative stress resulting in atrial fibrosis (immuno) triggers AF and creates a substrate for persistent AF. Mind-body approaches use the concept of body and self-awareness to promote rechanneling of energy within the body thereby maintaining an internal balance. This mind- body balance can further reduce [47] psychological stressors that are important modulating factors in AF and modulate the ANS to parasympathetic dominance in maintaining a stable myocardium, thereby preventing arrhythmias.
Conclusion
Even though the time span of the yoga interventions reported in the studies reviewed ranged from a few minutes to months, all the studies demonstrated some beneficial effect in maintaining nervous system balance and significant impact on selected physiological and psychological factors, thereby improving the participants' overall QOL. Given its impact on modulating autonomic system balance and reducing psychological stress, selected styles of yoga might be considered as cost-effective complementary health approaches in managing AF episodes and symptoms. Further rigorous study is warranted to clarify further the specific mechanisms involved in the use of yoga in patients diagnosed with AF.
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researge · 3 years ago
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marketresearchtrendsblog · 4 years ago
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Flower Extract Market: Global Industry Analysis, Trends, Market Size, and Forecasts up to 2025
The report on the global flower extract market provides qualitative and quantitative analysis for the period from 2017 to 2025. The report predicts the global flower extract market to grow with a CAGR of 9.5% over the forecast period from 2019-2025. The study on flower extract market covers the analysis of the leading geographies such as North America, Europe, Asia-Pacific, and RoW for the period of 2017 to 2025. The report on flower extract market is a comprehensive study and presentation of drivers, restraints, opportunities, demand factors, market size, forecasts, and trends in the global flower extract market over the period of 2017 to 2025. Moreover, the report is a collective presentation of primary and secondary research findings.
Request to Fill The Form To get Sample Copy of This Report: https://www.sdki.jp/sample-request-104027 Porter's five forces model in the report provides insights into the competitive rivalry, supplier and buyer positions in the market and opportunities for the new entrants in the global flower extract market over the period of 2017 to 2025. Further, IGR- Growth Matrix gave in the report brings an insight into the investment areas that existing or new market players can consider. Report Findings 1) Drivers • Growing demand of natural flower ingredient in food and beverages • Growing cosmetic industry 2) Restraints • High cost associated with product 3) Opportunities • Growing awareness about the beneficial use of organic ingredient in food and cosmetic industry Research Methodology A) Primary Research Our primary research involves extensive interviews and analysis of the opinions provided by the primary respondents. The primary research starts with identifying and approaching the primary respondents, the primary respondents are approached include 1. Key Opinion Leaders associated with Infinium Global Research 2. Internal and External subject matter experts 3. Professionals and participants from the industry Our primary research respondents typically include 1. Executives working with leading companies in the market under review 2. Product/brand/marketing managers 3. CXO level executives 4. Regional/zonal/ country managers 5. Vice President level executives. B) Secondary Research Secondary research involves extensive exploring through the secondary sources of information available in both the public domain and paid sources. At Infinium Global Research, each research study is based on over 500 hours of secondary research accompanied by primary research. The information obtained through the secondary sources is validated through the crosscheck on various data sources. The secondary sources of the data typically include 1. Company reports and publications 2. Government/institutional publications 3. Trade and associations journals 4. Databases such as WTO, OECD, World Bank, and among others. 5. Websites and publications by research agencies Segment Covered The global flower extract market is segmented on the basis of form, type, and application. The Global Flower Extract Market by Form • Liquid • Powder • Other Form The Global Flower Extract Market by Type • Decoctions • Oils o Safflower o Passion o Hibiscus o Rose o Other Oils The Global Flower Extract Market by Application • Cosmetics • Food And Beverages • Pharmaceuticals • Chemicals • Dyes Company Profiles The companies covered in the report include • Wild Hibiscus Flower Co. • Naturalin Bio-Resources Co., Ltd. • Shaanxi Pioneer Biotech Co., Ltd. • NESSO-Natural & Essential Oils Pvt. Ltd. • Katyani Exports • New Way Herbs • Hangzhou Gosun Biotech Co., Ltd. • Other companies What does this report deliver? 1. Comprehensive analysis of the global as well as regional markets of the flower extract market. 2. Complete coverage of all the segments in the flower extract market to analyze the trends, developments in the global market and forecast of market size up to 2025. 3. Comprehensive analysis of the companies operating in the global flower extract market. The company profile includes analysis of product portfolio, revenue, SWOT analysis and latest developments of the company. 4. IGR- Growth Matrix presents an analysis of the product segments and geographies that market players should focus to invest, consolidate, expand and/or diversify.
The dynamic nature of business environment in the current global economy is raising the need amongst business professionals to update themselves with current situations in the market. To cater such needs, Shibuya Data Count provides market research reports to various business professionals across different industry verticals, such as healthcare & pharmaceutical, IT & telecom, chemicals and advanced materials, consumer goods & food, energy & power, manufacturing & construction, industrial automation & equipment and agriculture & allied activities amongst others.
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aditi-us · 6 years ago
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Global Animal Feed Additives Market Size and Forecast – Expected to Reach at a CAGR of 6.0% by 2025
KD Market Insights has published a research report about Global Animal Feed Additives Market that envisions boost for this market with 6.0% CAGR (Compound Annual Growth Rate) for this market between 2018 and 2025. In terms of value, the market that is worth the $19,642 million in 2017 is expected to be worth the $31,387 million in 2025. The market research report demonstrates market dynamics which includes growth drivers, restraining factors and opportunities and trends spearheading current nature and future status of this market. In addition to this, the report includes market size, Y-O-Y growth analysis and structure of the overall industry based on a unique combination of industry research, fieldwork, market sizing analysis, and our in-house expertise. Our general approach is to target several individuals with specific questions that we believed would satisfy our research objective. Further, to speed up the data collection process, we employed an online survey, delivered via email. Also, the research team analysed the results to identify potential opportunities and risks for the market. Request for Sample @ https://www.kdmarketinsights.com/sample/3433 Segmentation: The global Animal Feed Additives Market has been segmented on the basis of – By Additive Type - Amino Acids - - - Methionine - - - Lysine - - - Threonine - - - Tryptophan - - - Others - Antioxidants - - - BHA - - - BHT - - - Ethoxyquin - - - Others - Feed Enzymes - - - Phytase - - - Non-starch Polysaccharides - - - Protease - - - Xylanase - - - Others - Feed Acidifiers - - - Formic Acid - - - Butyric Acid - - - Fumaric Acid - - - Acetic Acid - - - Others - Vitamins - - - Water Soluble - - - Fat Soluble - Minerals - - - Zinc Sources - - - Iron Sources - - - Manganese Sources - - - Copper Sources - - - Others - Binders - - - Calcium Lignosulphate - - - Guar (Arabic) Gum - - - Others - Antibiotics - - - Tetracycline - - - Penicillin - - - Others - Others By Livestock - Swine - Ruminants - Poultry - Aquatic Animals - Others (Equine, Pets, and Birds) By Form - Dry - Liquid - Others (Power and Pellet Form) By Function - Single Function - Multifunction Regional Outlook: The report analyses the market by geographies i.e. North America, Europe, Asia Pacific, Latin America & Middle East & Africa. Further, the geographies are fragmented into the country and regional groupings: - North America (U.S. & Canada) - Europe (Germany, United Kingdom, France, Italy, Spain, Russia and Rest of Europe) - Asia Pacific (China, India, Japan, South Korea, Indonesia, Taiwan, Australia, New Zealand and Rest of Asia Pacific) - Latin America (Brazil, Mexico, Argentina and Rest of Latin America) - Middle East & Africa (GCC, North Africa, South Africa and Rest of Middle East & Africa) Competitive Landscape: The competitive landscape analysis provides detailed strategic analysis of the company’s business and performance such as financial information, revenue breakup by segment and by geography, SWOT Analysis, key facts, company overview, business strategy, key product offerings, marketing and distribution strategies, new product development, recent news (acquisition, expansion, technology development, research & development and other market activities). The study also provides company’s positioning and market share in Animal Feed Additives Market. The report profiles various major market players such as - Archer Daniels Midland Company - BASF SE - Cargill Incorporated - Addcon Group - Evonik Industries AG - Koninklijke DSM N.V. - Aliphos Belgium S.A. - Kemin Industries Inc - Nutreco N.V. - Phibro Animal Health Corporation, - Other Prominent Players. Browse Full Report with TOC @ https://www.kdmarketinsights.com/product/animal-feed-additives-market-amr Table of Contents: CHAPTER 1: INTRODUCTION 1.1.REPORT DESCRIPTION 1.2.KEY MARKET SEGMENTS 1.3.KEY BENEFITS 1.4.RESEARCH METHODOLOGY 1.4.1.Primary research 1.4.2.Secondary research 1.4.3.Analyst tools and models CHAPTER 2:EXECUTIVE SUMMARY 2.1.CXO PERSPECTIVE CHAPTER 3:MARKET LANDSCAPE 3.1.MARKET DEFINITION AND SCOPE 3.2.KEY FINDINGS 3.2.1.Top investment pockets 3.2.2.Top winning strategies 3.3.PORTER'S FIVE FORCES ANALYSIS 3.3.1.Bargaining power of suppliers 3.3.2.Threat of new entrants 3.3.3.Threat of substitutes 3.3.4.Competitive rivalry 3.3.5.Bargaining power among buyers 3.4.MARKET SHARE ANALYSIS/TOP PLAYER POSITIONING 3.5.MARKET DYNAMICS 3.5.1. Drivers 3.5.2. Restraints 3.5.3. Opportunities CHAPTER 4:ANIMAL FEED ADDITIVES MARKET BY ADDITIVE TYPE 4.1.OVERVIEW 4.2. AMINO ACIDS 4.2.1.Key market trends, Growth factors and opportunities 4.2.2.METHIONINE 4.2.3.LYSINE 4.2.4.THREONINE 4.2.5.TRYPTOPHAN 4.2.6.OTHERS 4.2.7.Market size and forecast by region 4.2.8.Market volume and forecast by region 4.2.9.Market analysis by country 4.3. ANTIOXIDANTS 4.3.1.Key market trends, Growth factors and opportunities 4.3.2.BHA BUTYLATED HYDROXYANISOLE 4.3.3.BHT BUTYLATED HYDROXYTOLUENE 4.3.4.ETHOXYQUIN 4.3.5.OTHERS 4.3.6.Market size and forecast by region 4.3.7.Market volume and forecast by region 4.3.8.Market analysis by country 4.4. FEED ENZYMES 4.4.1.Key market trends, Growth factors and opportunities 4.4.2.PHYTASE 4.4.3.NON-STARCH POLYSACCHARIDES 4.4.4.PROTEASE 4.4.5.XYLANASE 4.4.6.OTHERS 4.4.7.Market size and forecast by region Continue… Check for Discount @ https://www.kdmarketinsights.com/discount/3433 About Us: KD Market Insights offers a comprehensive database of syndicated research studies, customized reports, and consulting services. These reports are created to help in making smart, instant and crucial decisions based on extensive and in-depth quantitative information, supported by extensive analysis and industry insights. Our dedicated in-house team ensures the reports satisfy the requirement of the client. We aim at providing value service to our clients. Our reports are backed by extensive industry coverage and is made sure to give importance to the specific needs of our clients. The main idea is to enable our clients to make an informed decision, by keeping them and ourselves up to date with the latest trends in the market. Contact Us: KD Market Insights 150 State Street, Albany, New York, USA 12207 +1 (518) 300-1215 Email: [email protected] Website: www.kdmarketinsights.com
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upasnaagarwal-blog · 6 years ago
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Butyric Acid Market worth 289.3 Million USD by 2020
The global butyric acid market was valued at USD 124.6 Million in 2014 and is expected to grow at 15.1% CAGR for the time period 2014-2020.
Download PDF Brochure @ https://www.marketsandmarkets.com/pdfdownload.asp?id=76962011
The global market for butyric acid, along with its applications, has witnessed a high growth for the past few years and this growth is estimated to increase in the coming years. This growth is fueled by rise in demand of animal feed, especially for swine and poultry. Also, the demand for renewable butyric acid in the food & flavor and pharmaceuticals sector is causing a surge in demand. There is a reduced use of antibiotics in the animal feed industry in Europe and North America, generating opportunities of demand for butyric acid.
Asia-Pacific is the largest and the fastest growing market due to the growing demand for butyric acid in India and China. Europe is a matured market and is expected to grow at a low CAGR till 2020.
This study basically aims to estimate the global market of butyric acid for 2015 and to project its demand by 2020. This market research study provides a detailed qualitative and quantitative analysis of the global Butyric acid market. We have used various secondary sources such as directories, industry journals, and databases to identify and collect information useful for this extensive commercial study of the butyric acid market. The primary sources–experts from related industries and suppliers–have been interviewed to obtain and verify critical information as well as to assess the future prospects of butyric acid.
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Competitive scenarios of the top players in the butyric acid market have been discussed in detail. We have also profiled leading players of this industry with their recent developments and other strategic industry activities. These include key butyric acid manufacturers such as Eastman Chemical Company(U.S.), OXEA GmbH (Germany), Perstorp Holding AB (Germany), Tokyo Chemical Industry Co. Ltd.(Japan), Blue Marble Biomaterials(U.S.), Beijing Huamaoyuan Fragrance Flavor Co., ltd., Inc. (China), Snowco industrial Co., Ltd. (China).
 Scope of the Report
The global butyric     acid market is segment as follows: the global market has been covered in     detail in this report. In order to provide an all-round picture, the     current market demand and forecasts have also been included.
On the basis of Type:
Synthetic Butyric     Acid
Renewable Butyric     Acid
On the basis of Application:
Animal Feed
Chemical     Intermediate
Food and Flavor
  Pharmaceutical
Perfume
Others
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List of Figures (55 Figures)
Figure 1 Global Butyric Acid Market - Segmentation & Coverage Figure 2 Integrated Ecosystem of the Butyric Acid Market Figure 3 Top Down Approach Figure 4 Bottom Up Approach Figure 5 Demand Side Approach Figure 6 Global Butyric Acid Market Snapshot- 2014 Figure 7 Butyric Acid Market - Evolution, Challenges, and Prospects Figure 8 Market Overview: Global Butyric Acid Market, By Application, 2014 & 2020 (USD MN, KT) Figure 9 Butyric Acid – Manufacturing Process Figure 10 Average Global Butyric Acid Prices
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bhattmohit43-blog · 6 years ago
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Organic Chemicals  Market Demand, Growth, Share, Opportunities & Competitive Analysis 2023
Excell Reports has released its latest research-based report entitled Organic Chemicals  Market.' This comprehensive report provides a holistic approach to the market growth with a detailed and precise analysis of the overall competitive scenario of the “Organic Chemicals ” market worldwide along with the key trends and latest technologies, playing a prominent role in the Organic Chemicals  market growth over the forecast period.
The global organic acids market was valued at USD 8.27 billion in 2018 and is projected to reach USD 11.39 billion by 2023, at a CAGR of 5.7% during the forecast period
In general, chemical manufacturers are trying to overcome challenges related to continuously changing regulatory landscape and customer demands. They are trying to innovate newer models & products, find new areas of manufacturing and consolidation so as to meet more customer demands, cut down cost and gain profits. Here the value plays an important role also as this defines a holistic approach from the raw material suppliers/manufacturers to the applications in which the products are used mainly.
This report studies Organic Chemicals  in Global market, especially in North America, South America, China, Europe, Southeast Asia, Japan and India, Saudi Arabia, South Africa, with production, revenue, consumption, import and export in these regions, from 2013 to 2018, and forecast to 2023
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Carbon and its various derivatives combine with elements such as hydrogen, oxygen, nitrogen, and sulfur, to form organic chemicals. The derivatives exist either in carbon chain or carbon ring. Increasing global population and surging urbanization are expected to fuel growth of end-use industries such as agrochemicals, pharmaceuticals, food & beverages, and cosmetics in turn fueling growth of the organic chemicals market. Asia Pacific is growth engine of this market, mainly attributed to the strong economic growth in India and China. Ethyl alcohols, synthetic organic alcohols, synthetic flavors, and pesticides are among the most widely used organic compound used in various end-use industries such as pharmaceuticals, food & beverages, and fertilizers. As per The World Bank data, the consumption of food and beverages is increasing significantly across the globe.
This market has a plethora of applications such as food & beverages, pharmaceuticals, pesticides, agrochemicals, water treatment, crop protection, personal care products & cosmetics, fertilizers, automotive industry, gasoline additives, polymers, and chemicals. These industry products account for a major share of the overall global chemicals industry. 
Such broad application scope spread across various industries promises robust growth prospect over the next six years. Rapid industrialization, especially in the emerging economies such as China, India, and Brazil, is expected to aid the global market growth over the forecast period. Growing financial prosperity across the globe coupled with rising disposable income levels in the emerging economies promise positive growth prospects in future. 
Scope of the report:
Based on Type:
Acetic acid
Citric acid
Formic acid
Lactic acid
Propionic acid
Ascorbic acid
Gluconic acid
Fumaric acid
Malic acid
Others (tartaric acid, succinic acid, and butyric acid)
Based on applications:
Food & beverages
Feed
Bakery & confectionery
Beverages
Dairy products
Meat & meat products
Others (jams, jellies, and other processed food)
Livestock feed
Companion animal feed
Pharmaceuticals
Industrial
Swine feed
Cattle feed
Poultry feed
Aquafeed
Others (equine and birds)
Based on region:
North America
South America
Europe
To view the table of contents and know more details please visit: https://www.excellreports.com/product/chemicals-materials/global-and-chinese-organic-chemicals-industry-2018-market-research-report/
Table of Contents : Chapter One Introduction of Organic Chemicals Industry 1.1 Brief Introduction of Organic Chemicals 1.2 Development of Organic Chemicals Industry 1.3 Status of Organic Chemicals Industry
Chapter Two Manufacturing Technology of Organic Chemicals 2.1 Development of Organic Chemicals Manufacturing Technology 2.2 Analysis of Organic Chemicals Manufacturing Technology 2.3 Trends of Organic Chemicals Manufacturing Technology
Chapter Three Analysis of Global Key Manufacturers 3.1 Company A 3.1.1 Company Profile 3.1.2 Product Information 3.1.3 2013-2018 Production Information 3.1.4 Contact Information 3.2 Company B 3.2.1 Company Profile 3.2.2 Product Information 3.2.3 2013-2018 Production Information 3.2.4 Contact Information 3.3 Company C 3.2.1 Company Profile 3.3.2 Product Information 3.3.3 2013-2018 Production Information 3.3.4 Contact Information 3.4 Company D 3.4.1 Company Profile 3.4.2 Product Information 3.4.3 2013-2018 Production Information 3.4.4 Contact Information 3.5 Company E 3.5.1 Company Profile 3.5.2 Product Information 3.5.3 2013-2018 Production Information 3.5.4 Contact Information 3.6 Company F 3.6.1 Company Profile 3.6.2 Product Information 3.5.3 2013-2018 Production Information 3.6.4 Contact Information 3.7 Company G 3.7.1 Company Profile 3.7.2 Product Information 3.7.3 2013-2018 Production Information 3.7.4 Contact Information
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ouraidengray4 · 7 years ago
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How Gut Bacteria Help Your Body From Head To Toe
This article has been created in partnership with Renew Life as part of 30 Ways to Upgrade Your Routine.
Fun fact: You are walking around with more bacteria than human cells. Those are the kind of mind-blowing concepts you start to consider when you learn about your microbiome, which includes about 3.8 trillion microbes living on and inside you, mostly in your gastrointestinal tract. This is good news, guys. Because when you take steps to make your gut microbiome flourish, your entire body reaps the benefits.
"It's the basis for your whole health," says Deepa Verma, M.D., AIHM, an integrative health physician. And she's not exaggerating.
Here's how maintaining your microbiota, through diet and the help of supplements like Renew Life's Ultimate Flora Extra Care Probiotic 30 Billion, affects the rest of you.
Ground Zero: The Intestines
Microbes reside in your entire GI tract, from your mouth to your pooper, but the majority of them are hard at work in your intestines, where they play a big role in breaking down food into nutrients that can be absorbed through the intestines and into the bloodstream.
Naturally, these different bacteria consume different substances and produce different byproducts, which we're just beginning to learn about. Some ferment the fiber from fruits and vegetables, creating a short-chained fatty acid called butyrate, which is the source of energy for the cells in the epithelial layer of the intestines, explains Daniel McDonald, Ph.D., scientific director of American Gut, a crowd-sourced microbiome research database.
"When those cells get their food, they're happy, and there's less inflammation," McDonald says. Since the epithelial layer is one of the great gatekeepers for everything that goes into our blood, it stands to reason that we want to keep those cells happy. "If you have an inflamed gastrointestinal tract, the types of molecules that can make it into your bloodstream potentially change."
Other bacteria affect the body's metabolism of lipids, proteins, and other good compounds, such as antioxidant-rich flavonoids.
Your Immune System (and Allergies)
The science of the microbiome is relatively new, so much of what we know now still comes from testing on mice who were raised in sterile environments with no microbiota. That's one way we know a healthy microbiome regulates disease-fighting T-cells and B-cells. We also know that introducing probiotics into the system can help reduce the immune system's inflammatory response.
When patients come to Verma with seasonal allergies, she often finds the root of this is in the digestive system's overactive immune response to a food it can't quite tolerate. "When we're eating foods that are inflammatory to us, we set off a reaction in the gut which causes a widespread inflammation throughout the body," she says. Eliminating those foods while doing work to repair the gut for a few months can improve patients' symptoms, such as sinusitis, allergic rhinitis, eczema, and asthma.
The Gut-Brain Axis and Beyond
Much the same way we get alcohol as the happy byproduct of sugar-eating yeast, some bacteria are able to produce byproducts that go straight to our head in the form of the neurotransmitters serotonin, norepinephrine, and dopamine. That's why some researchers are looking into using probiotics to boost those mood-enhancing brain chemicals.
"I've heard estimates of anywhere between 10 to 40 percent of the small molecules that are in your blood are derived in some way from the microbiome," McDonald says. "There's potential for different types of molecules to make it past the blood-brain barrier too."
Studies have shown how mice raised with no microbiome had an exaggerated response to stress, which was aided by a microbial transplant early in their lives. That's further evidence of how a balanced system can regulate our stress hormones too.
Just as your gut affects your whole body, the same is true for how your brain, diet, and behavior affect your gut. Lack of sleep, for instance, can impact the population of your gut bacteria, while it looks like enhancing gut bacteria might improve the quality of sleep.
We're just beginning to realize all that our trillions of—what shall we call them? friends? Pets? Microscopic masters of our universe?—do for our bodies. Our guts are telling us that reaching for a probiotic supplement might be a very good idea right about now.
Deepa Verma, M.D., AIHM, and Daniel McDonald, Ph.D. are not affiliated with the Renew Life brand and products.​
from Greatist RSS https://ift.tt/2GN549f How Gut Bacteria Help Your Body From Head To Toe Greatist RSS from HEALTH BUZZ https://ift.tt/2qiUjRY
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chemanalystdata · 6 months ago
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Butyric Acid Prices Trend | Pricing | Database | Index | News | Chart
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 Butyric Acid Prices a short-chain fatty acid, has seen fluctuating prices due to various market dynamics. The cost of butyric acid is influenced by multiple factors including raw material availability, production costs, and market demand. The primary raw materials for butyric acid production are agricultural products such as corn and sugarcane, which are subject to price volatility due to seasonal variations and climate change impacts. The production process itself, often involving fermentation or chemical synthesis, can also affect prices based on technological advancements and efficiency improvements.
In recent years, there has been a notable increase in the demand for butyric acid, driven by its wide range of applications. Butyric acid is extensively used in animal feed, pharmaceuticals, food additives, and perfumes, which significantly boosts its market value. The animal feed industry, in particular, has a high demand for butyric acid due to its role in improving gut health and enhancing growth in livestock. This has led to a steady rise in prices, especially as the global demand for meat and dairy products continues to grow.
Pharmaceutical applications of butyric acid are also a major factor in its pricing. As a potential therapeutic agent in cancer treatment and a key ingredient in various drugs, the pharmaceutical industry's demand for high-purity butyric acid has added pressure on supply chains, thereby influencing prices. Additionally, the use of butyric acid in the food industry as a flavoring agent and preservative has expanded its market, contributing to its price variations.
Get Real Time Prices of Butyric Acid: https://www.chemanalyst.com/Pricing-data/butyric-acid-1250
Environmental regulations and sustainability concerns have also played a role in shaping butyric acid prices. With increasing awareness about environmental protection, there is a growing shift towards bio-based butyric acid production. While this is more environmentally friendly, it often comes with higher production costs, which can translate into higher market prices. Companies investing in green technologies and sustainable practices might face initial financial burdens, but they can also leverage higher prices due to the premium consumers are willing to pay for eco-friendly products.
Geopolitical factors and trade policies can further complicate the pricing landscape for butyric acid. Trade tariffs, import-export restrictions, and political instability in key producing regions can lead to supply disruptions and price hikes. For instance, any changes in trade relations between major producing countries like China and importing regions such as Europe and North America can have immediate effects on butyric acid prices.
The impact of the COVID-19 pandemic on global supply chains cannot be overlooked. The pandemic caused significant disruptions in manufacturing and logistics, leading to temporary shortages and price spikes for many chemicals, including butyric acid. As industries gradually recover, the prices are stabilizing but remain susceptible to future waves of the pandemic or other global health crises.
Technological advancements and innovations in production methods can offer some relief to the volatile pricing of butyric acid. Improvements in fermentation technology, the use of genetically engineered microorganisms, and better waste management practices can enhance production efficiency and reduce costs. These advancements can lead to more stable prices in the long term by ensuring a consistent and cost-effective supply.
The competitive landscape of the butyric acid market is another crucial aspect influencing prices. The presence of several key players and new entrants striving to capture market share can lead to competitive pricing strategies. Companies may lower prices to attract customers or invest in marketing and innovation to differentiate their products, thus impacting overall market prices.
Market forecasts and future trends suggest that the demand for butyric acid will continue to grow, driven by expanding applications in various industries. As the market expands, producers are likely to scale up their operations, potentially leading to economies of scale and more competitive pricing. However, this is contingent upon stable raw material prices and efficient production processes.
In conclusion, butyric acid prices are shaped by a complex interplay of factors including raw material costs, production technologies, market demand, regulatory environments, and geopolitical influences. While technological advancements and growing demand in various sectors may drive prices up, improvements in production efficiency and competitive market dynamics could help stabilize or even reduce prices over time. The ongoing evolution of the butyric acid market will require close monitoring of these variables to understand future pricing trends.
Get Real Time Prices of Butyric Acid: https://www.chemanalyst.com/Pricing-data/butyric-acid-1250
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researge · 3 years ago
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Carboxylic Acid Market Key Players Outlook, Latest Trends and Forecast up to 2030
Analysis of the Carboxylic Acid Market
A new comprehensive market study on CARBOXYLIC ACID MARKET provides a detailed overview of the demand and consumption patterns of Carboxylic Acid Market. This market study describes the global market of Carboxylic Acid Market, with focus on major countries and their subsequent demand across different market segments, technologies, and end-use industries of Carboxylic Acid Market. In-depth market analysis on Carboxylic Acid Market in terms of volume and value for each segment across key countries spread across six regions has been provided in the report.
The study offers market commentary revolving around a number of factors including, but not limited to Macro-economic factors like GDP, Population and World Economic integration, Economic & Energy Outlook, Industry & Policy Developments, end-use Industry / Applications Markets, Reasoning & Analysis, Insightful Commentary, Comparative Analysis, Latest Trends and market developments, Strategic Issues and Recommendations and Business Opportunity Assessment.
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Prismane Consulting has its own in-house integrated chemical, petrochemicals, polymers, and fertilizers (Demand-supply models). Part of these models is the beginning point of the detailed database of existing Carboxylic Acid Market model which includes the existing information on major players and demand. Further, the existing model has been updated for under construction, new investments, and any other recent developments. Prismane Consulting has developed its own growth outlook for Carboxylic Acid Market to build a complete demand-supply analysis for major countries and regions.
demand data is continually updated for petrochemicals. The statistics regarding demand for major countries are mainly obtained from government sources like Ministry of commerce, Statistics and Economics Department, Foreign Trade Departments, and other trade associations for all products where data is available. For smaller countries, Prismane Consulting estimates based on the opinions, industry-based estimates, and suggestions. Both micro-economic and macro-economic factors have been considered to arrive at growth rate and size estimation in the short and long-term forecast.
Determining the impacts of the global COVID-19 pandemic remains a key question across different industry verticals. Global chemicals markets have witnessed high growths since bouncing back from the economic crises in 2008-2009. However, the global pandemic has now altered the global industry landscape and has had a negative impact on the global markets. Considering the above pointers, a separate section focusing on conservative, optimistic and pessimistic scenarios has been covered as a part of study.
Prismane Consulting Study Key pointers
Detailed Demand Analysis including real-world scenario discussions
Market / Product Outlook (Historical, Short, Mid and Long-term forecast)
Strategic Analysis and High-level information on Market Entry, Best Strategies adopted, Business Opportunities & Challenges
Target Markets
Segmentation  
Global Carboxylic Acid Demand Supply Analysis By Type,
By Applications (Volume, Value) (2014–2030)
     Strategic Issues
     Capacity Analysis – Plants and Projects (2014 – 2030)
Capacity
Production
Producing Companies
Capacity Additions and Investments
Location
Salient Statistics
Technology / Process
     Demand Analysis and Forecast (2014 – 2030)
Capacity
Production
Operating Rate
Import
Export
Net Trade
Demand
Demand Growth Rate (%)
Driving Force Analysis
Global Carboxylic Acid Market, By Type
Acetic Acid
Valeric Acid
Formic Acid
Propionic Acid
Butyric Acid
Citric Acid
Others
Global Carboxylic Acid Market, By Application
Animal feed
Food & Beverages
Consumer Goods
Personal Care & Cosmetics
Pharmaceuticals
Lubricants
Others
Demand-Supply Analysis and Market Review, By Region, By Country (Volume, Value), (2014 – 2030)
     Strategic Issues
     Capacity Analysis – Plants & Projects
     Demand-Supply Analysis and Forecast (2014 – 2030)
                      Capacity
Production
Operating Rate
Import
Export
Net Trade
Demand
Demand Growth Rate (%)
Carboxylic Acid Market, By Type
Carboxylic Acid Market, By  Application
Carboxylic Acid Market, Regional Analysis
North America
Central & South America
Western Europe
Central & Eastern Europe
Asia-Pacific
Middle East & Africa
Why Prismane Consulting?
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Real-world industry, consulting, and market research experience
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About Prismane Consulting
Prismane Consulting is a global consulting firm serving leading businesses in the field of Chemicals, Petrochemicals, Polymers, Materials, Environment and Energy. We are a leading provider of in-depth technical and management consulting services and have been advising clients on their key strategic issues solving their most critical business problems.
The Chemicals & Energy Practice also offers its clients market studies, strategy and business opportunity assessment reports related to refining, Chemicals, Petrochemicals, Plastic & Polymers, Coatings, Materials, Power & Utilities and other energy sources and products.
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daniel1244martinez · 7 years ago
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Latest Report on Butyric Acid Market in United States in 2017
ReportsMonitor.Com Adds United States Butyric Acid Market Report 2017 to Its Database.
Geographically, this report splits the United States market into seven regions: The West Southwest The Middle Atlantic New England The South The Midwest with sales (volume), revenue (value), market share and growth rate of Butyric Acid in these regions, from 2012 to 2022 (forecast).
United States Butyric Acid market competition by top manufacturers/players, with Butyric Acid sales volume, price, revenue (Million USD) and market share for each manufacturer/player; the top players including Eastman Chemical Company Perstorp Holding AB Oxea GmbH Blue Marble Biomaterials, LLC Tokyo Chemical Industry Co., Ltd. Beijing Huamaoyuan Fragrance Flavor Co., Ltd. Snowco Industrial Co., Ltd. Parchem
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On the basis of product, this report displays the production, revenue, price, market share and growth rate of each type, primarily split into By Purity Butyric acid 99.5% Butyric acid 99% Other By Source Synthetic Butyric Acid Renewable Butyric Acid
On the basis on the end users/applications, this report focuses on the status and outlook for major applications/end users, sales volume, market share and growth rate of Butyric Acid for each application, including Chemicals Intermediate Animal Feed Food & Flavors Pharmaceuticals Perfumes Others
Table of Contents
United States Butyric Acid Market Report 2017 1 Butyric Acid Overview 1.1 Product Overview and Scope of Butyric Acid 1.2 Classification of Butyric Acid by Product Category 1.2.1 United States Butyric Acid Market Size (Sales Volume) Comparison by Type (2012-2022) 1.2.2 United States Butyric Acid Market Size (Sales Volume) Market Share by Type (Product Category) in 2016 1.2.3 Butyric acid ?99.5% 1.2.4 Butyric acid ?99% 1.2.5 Other 1.3 United States Butyric Acid Market by Application/End Users 1.3.1 United States Butyric Acid Market Size (Consumption) and Market Share Comparison by Application (2012-2022) 1.3.2 Chemicals Intermediate 1.3.3 Animal Feed 1.3.4 Food & Flavors 1.3.5 Pharmaceuticals 1.3.6 Perfumes 1.3.7 Others
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chemanalystdata · 2 months ago
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Iso Butyric Acid Prices Trend | Pricing | News | Database | Chart
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 Iso Butyric Acid, a key raw material in various industries such as chemicals, pharmaceuticals, and flavors, has experienced fluctuating price trends in recent years. The price dynamics of Iso Butyric Acid are influenced by a combination of supply-side factors, demand fluctuations, and macroeconomic variables, making it an intriguing subject for market analysis. This organic compound, characterized by its pungent odor and versatile applications, is often closely monitored by stakeholders to ensure cost efficiency and optimal utilization in production processes.
The pricing of Iso Butyric Acid is heavily impacted by the cost of its precursors and the availability of feedstocks. As a derivative of butyric acid, the production process is sensitive to changes in the cost of raw materials, particularly petrochemical derivatives. Fluctuations in crude oil prices directly influence the production cost, leading to ripple effects across the value chain.
Get Real Time Prices for Iso Butyric Acid: https://www.chemanalyst.com/Pricing-data/iso-butyric-acid-1408
On the demand side, Iso Butyric Acid's diverse applications play a significant role in shaping its market value. The compound is widely used in the pharmaceutical industry for the synthesis of active pharmaceutical ingredients (APIs). As the global demand for medicines continues to rise, particularly for chronic and lifestyle-related conditions, the pharmaceutical sector has driven a consistent need for Iso Butyric Acid. Additionally, the flavor and fragrance industry heavily relies on this compound to produce esters that impart fruity and creamy notes, further bolstering its demand. Seasonal variations and consumer preferences in the food and beverage industry also contribute to fluctuations in demand, influencing pricing trends.
Environmental regulations and sustainability concerns have added another layer of complexity to Iso Butyric Acid pricing. Manufacturers are increasingly pressured to adopt greener production methods and reduce carbon footprints, which can lead to higher production costs. Compliance with stringent environmental norms often necessitates investments in advanced technologies and sustainable feedstocks, potentially raising the cost of Iso Butyric Acid. However, the shift toward bio-based production methods is gradually gaining traction, offering a sustainable alternative that could stabilize prices in the long term.
Geographically, the pricing trends of Iso Butyric Acid exhibit regional variations due to differences in production capacities, consumption patterns, and import-export dynamics. Asia-Pacific, a significant player in the chemical and pharmaceutical industries, has emerged as a major consumer and producer of Iso Butyric Acid. The region's robust industrial base, coupled with rapid urbanization and population growth, has fueled demand, creating opportunities for both domestic production and imports. However, the region is also subject to price volatility due to its dependence on raw material imports and exposure to geopolitical tensions.
In North America and Europe, Iso Butyric Acid pricing is influenced by advanced technological capabilities and stringent environmental regulations. These regions often lead in adopting sustainable practices, driving innovation in production methods. While this focus on sustainability can lead to higher production costs, it also positions these regions as pioneers in offering high-quality, eco-friendly Iso Butyric Acid to global markets. Conversely, emerging markets in Latin America and Africa, with their growing industrial sectors, are witnessing a gradual increase in demand, which could impact global pricing dynamics in the coming years.
Market speculation and trading activities also contribute to price fluctuations in the Iso Butyric Acid market. Futures contracts and speculative trading can amplify price movements, especially in a volatile global economic environment. Stakeholders, including manufacturers, distributors, and end-users, must remain vigilant to navigate these fluctuations effectively. Establishing long-term contracts and diversifying supply sources are some strategies employed to mitigate the risks associated with price volatility.
Technological advancements in production processes hold the potential to reshape the Iso Butyric Acid market. Innovations aimed at improving efficiency, reducing waste, and lowering production costs could lead to more competitive pricing. Research and development efforts are also focusing on exploring alternative feedstocks and bio-based production pathways, which align with the industry's sustainability goals. As these technologies mature, they may contribute to a more stable and predictable pricing environment.
The future outlook for Iso Butyric Acid prices depends on several interconnected factors. The pace of economic recovery post-pandemic, ongoing geopolitical developments, and the global commitment to sustainability will play crucial roles in shaping market trends. Additionally, the continued growth of end-use industries, such as pharmaceuticals, food and beverages, and chemicals, is expected to sustain demand, potentially exerting upward pressure on prices. However, increased investments in production capacities and technological innovation could balance these forces, ensuring a stable supply-demand equilibrium.
In conclusion, the pricing trends of Iso Butyric Acid are a reflection of its complex market dynamics. From supply chain challenges and raw material costs to environmental considerations and regional market variations, a multitude of factors interplay to determine its market value. Stakeholders must adopt a proactive approach, leveraging market insights and technological advancements to navigate this evolving landscape effectively. With its critical role in multiple industries and a growing emphasis on sustainable practices, Iso Butyric Acid remains a vital component of the global chemical market, with its price trends serving as a key indicator of broader industrial and economic health.
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chemanalystdata · 4 months ago
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Iso Butyric Acid Prices | Pricing | Trend | News | Database | Chart | Forecast
 Iso Butyric Acid, a short-chain fatty acid with a distinctive smell reminiscent of rancid butter, is an essential compound in various industries, including food, pharmaceuticals, and agriculture. The pricing of iso butyric acid is influenced by several factors, including production costs, supply and demand dynamics, market trends, and geopolitical considerations. Over the years, the fluctuations in iso butyric acid prices have drawn significant attention from stakeholders involved in its production and consumption. Understanding these price trends is crucial for businesses that rely on iso butyric acid, as it directly impacts their operational costs and profit margins.
The production of iso butyric acid typically involves various chemical processes, including fermentation and synthetic methods. These production techniques can affect the overall cost structure. For instance, fermentation methods may require substantial investment in equipment and raw materials, while synthetic methods might be less resource-intensive but could lead to higher emissions, impacting environmental regulations and costs. Thus, variations in production methods can create disparities in iso butyric acid prices across different regions and suppliers.
Get Real Time Prices for Iso Butyric Acid: https://www.chemanalyst.com/Pricing-data/iso-butyric-acid-1408
Demand for iso butyric acid is largely driven by its applications in food preservation, flavoring agents, and as an additive in animal feed. The growing trend of natural and organic food products has significantly influenced the demand for iso butyric acid, as it is perceived as a natural compound with numerous health benefits. Furthermore, the pharmaceutical industry utilizes iso butyric acid in the formulation of certain medications, which has also contributed to its sustained demand. The interplay between these various sectors creates a complex landscape for iso butyric acid pricing, where demand fluctuations in one sector can ripple through to others.
Market trends also play a critical role in determining iso butyric acid prices. The rise of e-commerce and global trade has enabled manufacturers to source raw materials and sell products across borders, impacting local market prices. For instance, if a country experiences a shortage of iso butyric acid due to supply chain disruptions, it may lead to price spikes as buyers compete for limited stocks. Additionally, the emergence of new production facilities in regions with lower operational costs can create competitive pressure, potentially driving prices down in the long term.
Geopolitical factors cannot be overlooked when analyzing iso butyric acid pricing. Trade policies, tariffs, and international relations can all affect the cost of raw materials and the distribution of finished products. For example, sanctions or trade restrictions imposed on certain countries can disrupt the supply chain, leading to increased prices in the affected regions. Conversely, favorable trade agreements can enhance supply stability and help maintain lower prices for consumers. As such, market participants must remain vigilant regarding geopolitical developments that could impact the iso butyric acid market.
Environmental regulations are increasingly influencing the pricing of iso butyric acid. As governments worldwide implement stricter environmental standards, manufacturers are often required to invest in cleaner production technologies and waste management systems. These additional costs can ultimately be passed on to consumers in the form of higher prices. Furthermore, the push for sustainable practices has led to the development of bio-based iso butyric acid, which, although potentially more expensive to produce, may become more sought after as consumer preferences shift towards environmentally friendly products.
The iso butyric acid market is also subject to seasonal fluctuations. For example, during certain times of the year, demand for food products and animal feed may spike, leading to increased consumption of iso butyric acid. These seasonal trends can contribute to temporary price increases. Conversely, during periods of lower demand, prices may stabilize or even decrease as suppliers seek to clear their inventories. Market participants must therefore be aware of these cyclical trends when planning their purchasing strategies and pricing models.
Additionally, technological advancements in production processes can influence iso butyric acid prices. Innovations that enhance production efficiency or reduce waste can lead to lower production costs, potentially resulting in more competitive pricing in the market. As companies strive to optimize their operations and adopt cutting-edge technologies, these improvements may lead to price adjustments that reflect the overall efficiency gains within the industry.
Furthermore, global economic conditions can have a significant impact on iso butyric acid prices. Economic downturns can lead to reduced consumer spending, which in turn affects demand for various products that utilize iso butyric acid. This reduction in demand can create downward pressure on prices, forcing producers to adjust their output and pricing strategies to remain competitive. Conversely, in a robust economic environment, increased consumer demand can drive up prices, benefiting producers.
In conclusion, iso butyric acid prices are influenced by a multitude of factors ranging from production costs and market demand to geopolitical dynamics and environmental regulations. Understanding these intricate relationships is vital for stakeholders in the iso butyric acid market. As demand for iso butyric acid continues to evolve, driven by trends in food safety, health consciousness, and sustainability, market participants must stay informed and agile. By keeping an eye on market trends and potential disruptions, businesses can better navigate the complexities of iso butyric acid pricing and position themselves for success in an ever-changing landscape. As industries increasingly emphasize sustainability and natural products, the demand for iso butyric acid is likely to remain strong, presenting both opportunities and challenges for those involved in its production and use.
Get Real Time Prices for Iso Butyric Acid: https://www.chemanalyst.com/Pricing-data/iso-butyric-acid-1408
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chemanalystdata · 6 months ago
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Iso Butyric Acid Prices Trend | Pricing | Database | Index | News | Chart
 Iso Butyric Acid Prices is a versatile chemical compound widely used in various industries such as food, pharmaceuticals, and agriculture. It is known for its strong odor and is commonly used as a flavoring agent in the food industry. This article will provide an overview of Iso Butyric Acid prices, its applications, and factors that influence its market value.
Iso Butyric Acid prices can vary depending on several factors such as supply and demand, production costs, and market trends. The prices of Iso Butyric Acid are influenced by the availability of raw materials, the cost of production, and the demand from various industries. Additionally, market conditions and government regulations can also impact the pricing of this chemical compound.
The food industry is one of the major consumers of Iso Butyric Acid. It is used as a flavoring agent in various food products such as baked goods, confectionery, and dairy products. The demand for Iso Butyric Acid in the food industry is influenced by consumer preferences and the popularity of certain flavors. As a result, the prices of Iso Butyric Acid can fluctuate based on the demand from the food industry.
Iso Butyric Acid is also used in the pharmaceutical industry. It is utilized as an intermediate in the synthesis of various drugs and pharmaceutical compounds. The prices of Iso Butyric Acid in the pharmaceutical industry can be influenced by factors such as research and development activities, patent expirations, and regulatory changes. The demand for Iso Butyric Acid in the pharmaceutical industry is driven by the need for new and innovative drugs.
Get Real Time Prices for Iso Butyric Acid: https://www.chemanalyst.com/Pricing-data/iso-butyric-acid-1408
In the agriculture industry, Iso Butyric Acid is used as a plant growth regulator. It helps in promoting plant growth and increasing crop yield. The prices of Iso Butyric Acid in the agriculture industry can be influenced by factors such as weather conditions, crop diseases, and government policies. The demand for Iso Butyric Acid in the agriculture industry is influenced by the need for higher crop productivity and improved agricultural practices.
Apart from these industries, Iso Butyric Acid is also used in the production of various chemicals and solvents. It is a key ingredient in the manufacturing of esters, which are widely used in the production of perfumes, cosmetics, and cleaning agents. The prices of Iso Butyric Acid in the chemical industry can be influenced by factors such as the availability of alternative chemicals, technological advancements, and market competition.
In conclusion, Iso Butyric Acid prices are influenced by various factors such as supply and demand, production costs, and market trends. The prices of Iso Butyric Acid can fluctuate based on the demand from industries such as food, pharmaceuticals, agriculture, and chemicals. Factors such as consumer preferences, research and development activities, weather conditions, and government policies can impact the pricing of Iso Butyric Acid. It is important for businesses and industries to stay updated on these factors to make informed decisions regarding the purchase and use of Iso Butyric Acid.
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researge · 3 years ago
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Carboxylic Acid Market Insights, Trends Sales, Supply, Demand 2014-2030
Analysis of the Carboxylic Acid Market
A new comprehensive market study on CARBOXYLIC ACID MARKET provides a detailed overview of the demand and consumption patterns of Carboxylic Acid Market. This market study describes the global market of Carboxylic Acid Market, with focus on major countries and their subsequent demand across different market segments, technologies, and end-use industries of Carboxylic Acid Market. In-depth market analysis on Carboxylic Acid Market in terms of volume and value for each segment across key countries spread across six regions has been provided in the report.
The study offers market commentary revolving around a number of factors including, but not limited to Macro-economic factors like GDP, Population and World Economic integration, Economic & Energy Outlook, Industry & Policy Developments, end-use Industry / Applications Markets, Reasoning & Analysis, Insightful Commentary, Comparative Analysis, Latest Trends and market developments, Strategic Issues and Recommendations and Business Opportunity Assessment.
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Prismane Consulting has its own in-house integrated chemical, petrochemicals, polymers, and fertilizers (Demand-supply models). Part of these models is the beginning point of the detailed database of existing Carboxylic Acid Market model which includes the existing information on major players and demand. Further, the existing model has been updated for under construction, new investments, and any other recent developments. Prismane Consulting has developed its own growth outlook for Carboxylic Acid Market to build a complete demand-supply analysis for major countries and regions.
demand data is continually updated for petrochemicals. The statistics regarding demand for major countries are mainly obtained from government sources like Ministry of commerce, Statistics and Economics Department, Foreign Trade Departments, and other trade associations for all products where data is available. For smaller countries, Prismane Consulting estimates based on the opinions, industry-based estimates, and suggestions. Both micro-economic and macro-economic factors have been considered to arrive at growth rate and size estimation in the short and long-term forecast.
Determining the impacts of the global COVID-19 pandemic remains a key question across different industry verticals. Global chemicals markets have witnessed high growths since bouncing back from the economic crises in 2008-2009. However, the global pandemic has now altered the global industry landscape and has had a negative impact on the global markets. Considering the above pointers, a separate section focusing on conservative, optimistic and pessimistic scenarios has been covered as a part of study.
Prismane Consulting Study Key pointers
Detailed Demand Analysis including real-world scenario discussions
Market / Product Outlook (Historical, Short, Mid and Long-term forecast)
Strategic Analysis and High-level information on Market Entry, Best Strategies adopted, Business Opportunities & Challenges
Target Markets
Segmentation  
           Global Carboxylic Acid Demand Supply Analysis By Type,
By Applications (Volume, Value) (2014–2030)
     Strategic Issues
     Capacity Analysis – Plants and Projects (2014 – 2030)
Capacity
Production
Producing Companies
Capacity Additions and Investments
Location
Salient Statistics
Technology / Process
     Demand Analysis and Forecast (2014 – 2030)
Capacity
Production
Operating Rate
Import
Export
Net Trade
Demand
Demand Growth Rate (%)
Driving Force Analysis
Global Carboxylic Acid Market, By Type
Acetic Acid
Valeric Acid
Formic Acid
Propionic Acid
Butyric Acid
Citric Acid
Others
Global Carboxylic Acid Market, By Application
Animal feed
Food & Beverages
Consumer Goods
Personal Care & Cosmetics
Pharmaceuticals
Lubricants
Others
Demand-Supply Analysis and Market Review, By Region, By Country (Volume, Value), (2014 – 2030)
     Strategic Issues
     Capacity Analysis – Plants & Projects
     Demand-Supply Analysis and Forecast (2014 – 2030)
                      Capacity
Production
Operating Rate
Import
Export
Net Trade
Demand
Demand Growth Rate (%)
Carboxylic Acid Market, By Type
Carboxylic Acid Market, By  Application
Carboxylic Acid Market, Regional Analysis
North America
Central & South America
Western Europe
Central & Eastern Europe
Asia-Pacific
Middle East & Africa
Why Prismane Consulting?
Chemical Science, Engineering, Oil & Gas, Finance, Economics and Business backgrounds
Real-world industry, consulting, and market research experience
Average work experience of 10+ years
Buy this report  https://prismaneconsulting.com/report_request_Table of Contents
About Prismane Consulting
Prismane Consulting is a global consulting firm serving leading businesses in the field of Chemicals, Petrochemicals, Polymers, Materials, Environment and Energy. We are a leading provider of in-depth technical and management consulting services and have been advising clients on their key strategic issues solving their most critical business problems.
The Chemicals & Energy Practice also offers its clients market studies, strategy and business opportunity assessment reports related to refining, Chemicals, Petrochemicals, Plastic & Polymers, Coatings, Materials, Power & Utilities and other energy sources and products.
Contact Us
Tejas Shah
Prismane Consulting
519, Amanora Chambers,
Town Centre Amanora,
Magarpatta Road, Pune – 411028
Maharashtra, India Email: [email protected] Web: https://prismaneconsulting.com/
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bhattmohit43-blog · 6 years ago
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Vinyl Acetate Market 2019 Global Industry Analysis, Size, Share, Growth, Trends and Forecast 2025
Excell Reports has released its latest research-based report entitled Vinyl Acetate Market. Vinyl acetate is a clear colorless liquid which is slightly soluble in water, act as an intermediate for making innumerable polymers and resins for coatings, textiles, adhesives, paints, etc. It polymerizes when heated or contaminated. This intermediary compound is predominantly used to manufacture polyvinyl acetate which has better bonding properties with various substrates like paper, plastic films, metals and wood. Further other application of polyvinyl acetate includes paper coatings and industrial coatings.  
Polyvinyl alcohol is the most comprehensive consumer of vinyl acetate. Major application of polyvinyl alcohol comprises of textiles, packaging films, adhesives, photosensitive coatings and thickeners. In addition, polyvinyl alcohol is used for manufacturing polyvinyl butyral (PVB), this resin has strong adhesion properties as well as toughness and clarity. PVB is primitively used for producing laminated glass of automobiles and buildings providing transparent and protective layers to glass.  
The paint and coating industry consume immense volume of vinyl acetate monomers and its consumption proportion is substantially rising due to high demand from various end-user industry like construction, packaging etc. Growing constructions activities in developed and developing countries to establish better infrastructure facilities is accelerating the vinyl acetate monomer market demand. Further government investment in Asia Pacific countries like India and China is fueling paint & coating industry. Automobile industry is growing at phenomenal pace owing to rising consumers demand from Asia Pacific and government initiative to bring in foreign investment in the automobile industry.
Global vinyl acetate monomer market is restrained by adverse health impact on inhalation of vinyl acetate monomers causing eye irritation and respiratory tract irritation. Volatility in raw material prices such as ethylene acid may hamper the market over the forecast spell. In addition, stringent government regulation implemented on vinyl acetate such OSHA, EPA and FDA for controlling air, environment pollution and preventing the contact of food from harmful contamination respectively will negatively impact the market growth.
The global ethylene vinyl acetate market is expected to reach an estimated $9.9 billion by 2023 with a CAGR of 4.8% from 2018 to 2023.
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Vinyl Acetate Monomer (VAM) Market, By Application
Polyvinyl Alcohol market leads the global vinyl acetate monomer market with a CAGR of 5.0%. The segment is driven by usage of polyvinyl alcohol in production of PVB resin which have wide application in laminated glass cast-off for automotive and commercial building. Furthermore, its consumption in textiles industry will drive the growth on the market in forecast period.  
Polyvinyl Acetate application is the one significant consumer of vinyl acetate monomer market which is expected to surpass USD 2.5 billion in coming years. The application demand is projected to grow over the forecast period due to rising application in adhesives and coatings. Increasing construction activities throughout the world is surging the demand for PVA by 2024.  
Vinyl Acetate Monomer (VAM) Market, By End User
Global vinyl acetate monomer market is segmented into packaging, construction, Cosmetic and textile and others end user industries. Construction application segment is growing significantly at a CAGR of 4.9% while packaging application owns potential market share of global vinyl acetate monomer market. Steady growth in construction activities is inducing higher returns whereas ongoing trend of consuming ready to eat meals and fast foods is positively impacting the market over projected timeframe.  
Consumption of vinyl acetate in textile industry is held the third-largest market share, in terms of both volume, and revenue throughout the projected timeframe. Vinyl acetate monomer demand is anticipated to grow over the years with increasing focus on fashionable & trendy clothing and home furnishing material.  
Vinyl Acetate Monomer (VAM) Market, By Region
Asia Pacific vinyl acetate monomer market is growing at remarkable pace owing to increasing application in several industry verticals. The market is growing significantly at a CAGR of 5.2% and will dominate the market with potential market share. Government initiative and investment plan toward industrialization in China and India is driving the market. Further government compliance to bring in foreign direct investment for automobile and construction sector will apparently generate higher opportunities for the market. Several companies are expanding their production facilities to Asia Pacific market. For instance, Wacker Chemie had expanded their vinyl acetate production facilities in china and opened new factories in South Korea to meet the growing demand across the globe.  
Competitive Market Share
Few of the leading vinyl acetate monomer market players are The Dow Chemical Company, Wacker Chemie, Celanese Corporation, KURARAY CO., LTD., Sipchem, NINGXIA YINGLITE CHEMICAL CO., LTD, Ineospec Inc, Exxon Mobil Corporation, Sinopec Group, Arkema and LyondellBasell among others. Companies of this market are following several strategies to strengthen their market position. For instance, few renowned companies like Celanese Corporation which had opened new production plant in Singapore and expanded their production capacity to South Korea to cater to growing demand of vinyl acetate across the globe in various industries.
To view the table of contents and know more details please visit: https://www.excellreports.com/product/chemicals-materials/world-vinyl-acetate-market-by-product-type-market-players-and-regions-forecast-to-2023/
Table Of Content:
Chapter 1 About the Vinyl Acetate Industry 1.1 Industry Definition and Types 1.2 Main Market Activities 1.3 Similar Industries 1.4 Industry at a Glance
Chapter 2 World Market Competition Landscape 2.1 Vinyl Acetate Markets by Regions 2.1.1 USA Market Revenue (M USD) and Growth Rate 2013-2023 Sales and Growth Rate 2013-2023 Major Players Revenue (M USD) in 2018 2.1.2 Europe Market Revenue (M USD) and Growth Rate 2013-2023 Sales and Growth Rate 2013-2023 Major Players Revenue (M USD) in 2018 2.1.3 China Market Revenue (M USD) and Growth Rate 2013-2023 Sales and Growth Rate 2013-2023 Major Players Revenue (M USD) in 2018 2.1.4 India Market Revenue (M USD) and Growth Rate 2013-2023 Sales and Growth Rate 2013-2023 Major Players Revenue (M USD) in 2018 2.1.5 Japan Market Revenue (M USD) and Growth Rate 2013-2023 Sales and Growth Rate 2013-2023 Major Players Revenue (M USD) in 2018 2.1.6 South East Asia Market Revenue (M USD) and Growth Rate 2013-2023 Sales and Growth Rate 2013-2023 Major Players Revenue (M USD) in 2018 2.2 World Vinyl Acetate Market by Types 2.3 World Vinyl Acetate Market by Applications Production of vinyl acetate copolymer (EVA) Production of polyvinyl acetate (PVAc) Production of polyvinyl alcohol (PVA) Production of vinyl acetate – ethylene copolymer emulsion (VAE) Other applications 2.4 World Vinyl Acetate Market Analysis 2.4.1 World Vinyl Acetate Market Revenue and Growth Rate 2013-2018 2.4.2 World Vinyl Acetate Market Consumption and Growth rate 2013-2018 2.4.3 World Vinyl Acetate Market Price Analysis 2013-2018
Chapter 3 World Vinyl Acetate Market share 3.1 Major Production Market share by Players 3.2 Major Revenue (M USD) Market share by Players 3.3 Major Production Market share by Regions in 2018, Through 2023 3.4 Major Revenue (M USD) Market share By Regions in 2018, Through 2023
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