#Oleic Acid Price Trend
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Oleic Acid Prices | Pricing | Trend | News | Database | Chart |Â Forecast
Oleic Acid, a monounsaturated fatty acid, has garnered significant attention in both the food and industrial sectors due to its versatile applications and health benefits. As a primary component of olive oil, oleic acid is widely recognized for its role in promoting heart health and reducing inflammation. Its rising popularity has led to fluctuating prices, influenced by various factors ranging from raw material availability to market demand.
The price of oleic acid is primarily determined by the costs of its feedstocks, which include vegetable oils such as olive, sunflower, and canola oils. These oils serve as the primary sources of oleic acid in commercial production. The dynamics of agricultural markets directly impact oleic acid prices. For instance, adverse weather conditions, pest infestations, or diseases affecting oilseed crops can significantly reduce yield, leading to a scarcity of raw materials. Consequently, such supply disruptions often result in increased oleic acid prices as manufacturers strive to maintain production levels despite higher feedstock costs.
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In addition to supply chain issues, oleic acid prices are also influenced by global demand trends. The growing health consciousness among consumers has driven a shift towards healthier fats, increasing the demand for oleic acid-rich products. As oleic acid is praised for its benefits, including lowering LDL cholesterol levels and improving insulin sensitivity, its use in food products has surged. Moreover, the expansion of the organic food market has further bolstered demand, as consumers are increasingly seeking natural and health-promoting ingredients. This heightened interest in oleic acid, particularly in regions with strong health trends like North America and Europe, contributes to upward price pressures.
Moreover, oleic acid’s industrial applications have become increasingly important, particularly in cosmetics, pharmaceuticals, and bioplastics. In cosmetics, oleic acid is utilized as an emollient and skin-conditioning agent, enhancing product texture and absorption. The burgeoning beauty industry has therefore contributed to demand growth, impacting oleic acid prices. Similarly, the pharmaceutical sector employs oleic acid in drug formulations, leveraging its properties for better bioavailability. As industries continue to expand and innovate, the demand for oleic acid in these sectors is likely to rise, further influencing its market price.
Another significant factor affecting oleic acid prices is the fluctuation of crude oil prices. Since oleic acid can be produced from petroleum derivatives, shifts in oil prices can have a cascading effect on oleic acid costs. When crude oil prices rise, so do the prices of petrochemical derivatives, which can lead to increased production costs for oleic acid. Conversely, when crude oil prices decline, the production costs may decrease, potentially leading to lower oleic acid prices. Therefore, monitoring crude oil price trends is crucial for stakeholders in the oleic acid market, as they can provide insights into future price movements.
Trade policies and tariffs also play a critical role in determining oleic acid prices, particularly in a globalized market. Import tariffs on vegetable oils can impact the cost structure for oleic acid manufacturers, leading to fluctuations in market prices. Additionally, trade agreements and international relations influence the flow of raw materials and finished products across borders. For example, tariffs imposed on imports of certain oils can lead to higher production costs, affecting the overall price of oleic acid. Stakeholders must navigate these complexities to maintain competitive pricing in the market.
Furthermore, sustainability concerns are becoming increasingly prominent in the oleic acid market, as consumers and manufacturers alike seek eco-friendly practices. The demand for sustainably sourced raw materials is rising, prompting many producers to invest in environmentally responsible practices. While this shift is beneficial for the environment, it may also lead to increased production costs, which could be passed on to consumers in the form of higher oleic acid prices. As sustainability becomes a priority for businesses, the oleic acid market will likely need to adapt, balancing cost with ethical sourcing and production methods.
The oleic acid market is also subject to seasonal variations, which can impact pricing trends. For instance, during harvest seasons, an influx of raw materials can lead to a temporary dip in prices as supply outstrips demand. Conversely, outside of harvest periods, the scarcity of fresh crops can cause prices to surge as manufacturers compete for limited resources. Understanding these seasonal patterns is crucial for stakeholders aiming to make informed purchasing decisions and to strategize effectively in response to market fluctuations.
In conclusion, oleic acid prices are influenced by a complex interplay of factors, including feedstock availability, global demand, crude oil prices, trade policies, and sustainability considerations. As the market continues to evolve, stakeholders must remain vigilant, adapting to changing conditions to navigate the pricing landscape effectively. With the increasing emphasis on health and sustainability, the oleic acid market is poised for continued growth, making it essential for businesses to stay informed and responsive to emerging trends. By understanding the nuances of the oleic acid market and its pricing dynamics, industry participants can position themselves to capitalize on opportunities while mitigating potential risks. As consumers become more aware of the benefits of oleic acid and its diverse applications, the market's growth trajectory is likely to remain positive, fostering innovation and development across various sectors.
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#Oleic Acid#Oleic Acid price#Oleic Acid prices#Oleic Acid pricing#Oleic Acid News#Oleic Acid Price Monitor#Oleic Acid Database#Oleic Acid Price Chart#Oleic Acid Trend
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Oleic acid Prices Trend, Monitor, News & Forecast | ChemAnalyst
Oleic acid prices, representing the cost of oleic acid, have been subject to fluctuations influenced by various factors such as global market dynamics, industrial demand, and production costs. Understanding these price movements entails a comprehensive analysis of supply and demand dynamics, regulatory changes, and macroeconomic indicators.
The pricing of oleic acid is significantly impacted by the balance between supply and demand within the chemical, cosmetics, pharmaceutical, and food industries. Oleic acid, a monounsaturated fatty acid derived from natural sources such as vegetable oils, finds diverse applications as an emulsifier, surfactant, lubricant, and ingredient in various products. Disruptions in the supply chain, such as fluctuations in raw material availability, refining capacity, or transportation logistics, can impact the availability and cost of oleic acid, thereby influencing its market price.
Industrial demand plays a pivotal role in determining oleic acid prices. Industries such as personal care, pharmaceuticals, and food processing rely heavily on oleic acid for its moisturizing, emulsifying, and flavor-enhancing properties. Fluctuations in demand from these sectors, influenced by factors such as consumer preferences, product innovation, and economic conditions, can lead to price volatility for oleic acid.
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Raw material costs significantly influence oleic acid prices. The price of raw materials such as vegetable oils, which are the primary source of oleic acid, can fluctuate due to changes in agricultural conditions, weather patterns, and global supply and demand dynamics. Any significant increase in raw material costs can translate into higher production costs for oleic acid manufacturers, thereby exerting upward pressure on prices.
Macroeconomic indicators, such as GDP growth, consumer spending, and industrial output, can indirectly affect oleic acid prices by influencing overall demand for oleic acid-containing products. Economic downturns or slowdowns in major manufacturing regions may lead to decreased demand and downward pressure on prices. Conversely, robust economic growth and increased consumer spending can support higher prices for oleic acid by stimulating demand for cosmetics, pharmaceuticals, and food products.
Regulatory changes and quality standards also play a role in shaping oleic acid prices. Government regulations on product safety, food and drug standards, and environmental protection can impact production costs and market access for oleic acid manufacturers. Compliance with these regulations may require investments in technology and process improvements, influencing pricing dynamics.
Looking ahead, several factors are expected to continue influencing oleic acid prices. Continued growth in sectors such as personal care, pharmaceuticals, and food processing, coupled with increasing demand for natural and sustainable ingredients, is likely to drive sustained demand for oleic acid. Moreover, advancements in extraction technologies and changes in agricultural practices could lead to changes in market dynamics and price levels for oleic acid.
In conclusion, oleic acid prices are subject to a complex interplay of factors including supply and demand dynamics, industrial trends, raw material costs, regulatory changes, and macroeconomic indicators. Stakeholders in the chemical, cosmetics, pharmaceutical, and food industries must closely monitor these factors to anticipate price movements and make informed decisions. As industries evolve and consumer preferences change, navigating the dynamic landscape of oleic acid pricing will remain a key challenge for industry participants.
Get Real-Time Oleic acid Prices: https://www.chemanalyst.com/Pricing-data/oleic-acid-1284
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Crude Palm Oil Prices, Trends & Forecasts | Provided by Procurement Resource
Crude Palm Oil (CPO) is the edible oil produced from the fruit pulp of oil palms (Elaeis guineensis). Its plantations are widely grown in Southeast Asian countries, such as Indonesia and Malaysia, for CPO production. In nature, it resembles the colour of the pulp due to the high inactive content of vitamin A.
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It can be distinguished from coconut or kernel oil and is typically mixed with coconut oil to yield highly saturated vegetable fat used in cooking. Its fatty acid composition consists of lauric acid, oleic acid, palmitic acid, myristic acid, stearic acid, and linoleic acid.
Key Details About the Crude Palm Oil Price Trends:
Procurement Resource does an in-depth analysis of the price trend to bring forth the monthly, quarterly, half-yearly, and yearly information on the Crude Palm Oil price in its latest pricing dashboard. The detailed assessment deeply explores the facts about the product, price change over the weeks, months, and years, key players, industrial uses, and drivers propelling the market and price trends.
Each price record is linked to an easy-to-use graphing device dated back to 2014, which offers a series of functionalities; customization of price currencies and units and downloading of price information as excel files that can be used offline.
The crude palm oil price trends, including India Crude Palm Oil price, USA Crude Palm Oil price, pricing database, and analysis can prove valuable for procurement managers, directors, and decision-makers to build up their strongly backed-up strategic insights to attain progress and profitability in the business.
Industrial Uses Impacting Crude Palm Oil Price Trends:
Crude Palm oil has usage in culinary applications, mainly in West Africa, South-East Asia, and a few areas in Brazil. On a commercial scale, it is used in cooking due to it being cheap, which boosts its sales in the sector. In addition to cooking, it is also used to industrially make pre-packaged food like chocolate, pizza, and doughnuts; hair care products like shampoo; cosmetics; cleaning supplies; and personal care items (soap, deodorant, toothpaste), which boosts the demand in the market. It plays a key role in biodiesel production and works as a fuel in motor vehicles, aircraft and shipping. Also, due to it being oxidation resistant, it has a longer shelf-life which boosts its market development.
Key Players:
FGV Holdings Berhad
IOI Corporation Berhad
Sime Darby Plantation Berhad
Musim Mas Holdings Pt. Ltd
Bumitama Agri Ltd.
Adani Group
Emamiltd
Asian Agri
Apical Group Ltd.
News & Recent Development
25th May 2023- Following a drop of more than 20 percent in 2023, the prices of palm oil will slip further due to frail demand and the pressure of constant demand for soft imports from India and Mainland China.
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We have a team of highly experienced analysts who perform comprehensive research to deliver our clients the newest and most up-to-date market reports, cost models, price analysis, benchmarking, and category insights, which help in streamlining the procurement process for our clientele. Our team tracks the prices and production costs of a wide variety of goods and commodities, hence, providing you with the latest and consistent data.
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The Magnesium Powder Prices demonstrates a mixed market trend for Magnesium Oxide hearse, a decremented trajectory for Magnesium Stearate throughout the first quarter of 2023. However, prices inclined in January due to healthy domestic demand with limited stocks among the market participants. Besides this, consumer demand showed a weaker trend even if the market trend remained on the upper side as February approached, which caused local suppliers and traders to concentrate on placing orders in line with necessities. Also, the decrease in upstream Stearic Acid and oleic acid prices further supported the declining market trend for Magnesium Stearate until the end of the first quarter of 2023. However, improvement in trade activity somewhat supported the positive price trend in the market for Magnesium oxide until the very end of March. Overall, the cost of Magnesium Powder in the United States during the month of March was constructed at USD 440/MT for Magnesium Oxide and USD 2140/MT for Magnesium Stearate.
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Lupine Publishers |Â Fast Food Pork in North America
Lupine Publishers |Â Agriculture Open Access Journal
Introduction
Figure 1: Â
Try to remember the last time you bought a pork item at a fast food restaurant in North America. Not a ham sandwich from Subway or a breakfast sandwich from Tim Hortons but a pork burger from MacDonald's, Wendy's, A&W, or Burger King. They have tried in the past offering the McRib from McDonalds but the closest permanent pork menu item, is an offer of bacon to act as a flavor accent but no real pork burgers. Now in 2018, we have the pulled pork sandwich which comes lathered in BBQ sauce, which actually might make a lasting impression but is it really a pork product or a sauce product? (Figure 1). Pork vs Beef Burger, What's the Difference FAT. Ground pork is relatively cheap when compared to beef burgers, sometimes almost half the price of regular ground hamburger (beef burger) but pork burgers have not made much progress into the fast menu in North America. Maybe it is the amount or type of fat? In Japan, they describe a pork and beef burger mixture as `aibiki niku'. The mixture can reach 50/50 and the flavour is described as being `un-detectable' from standard 100% beef burger. If it is 100% beef, then it is often labelled as `100% Wagyu' beef burger. Fat is assumed to be the main influence on flavour and beef has much less polyunsaturated fat (PUFA) than pork. Beef products typically have 15% more saturated fat (SFA), 7% less monounsaturated fat (MUFA) and 8% less polyunsaturated fat (PUFA) than pork [1] because Beef cattle naturally convert much of the MUFA and PUFA in their feed to SFA, by bacteria in the rumen. The USDA list the typical 28g beef burger of having 0.4g of PUFA and 6.2g of SFA. Pigs, being monogastrics, do not have this conversion ability in their gut, so the composition of their fat reflects the type of fats in their diet.
An attempt to get the lipid profile in pork to mirror the profile of beef has been tried. The premise is that by feeding pigs a diet high in SFA fat (eg. beef tallow), pigs would have a more beefy flavour but the experimental evidence shows that when feeding pigs either, beef tallow, coconut oil, or palm oil, which all have a much higher SFA content than normal pig feed, the PUFA to SFA ratio stays relatively the same in the pork [2]. For instance, feeding 5% coconut oil increased the SFA content ~3% [3] but the fat in a typical 28g ground pork burger is still ~1.6g of PUFA and 6.6g of SFA, which is 4X the amount of PUFA in a beef burger, according to USDA nutrition data (http:// nutritiondata.self.com) TASTE and ODOUR. The PUFA and MUFA fats are generally considered as being healthier than SFA, unless it is trans-fat. The MUFA oleic acid (C18:1) is an 18 carbon molecule with one cis unsaturated bond at the 9 position and is the most common MUFA beef fat. It brings a pleasant taste to meat and is also found in olive oil. Of the PUFAs, linoleic acid (C18:2 omega-6) and linolenic acid (C18:3 omega-3) are essential to the human diet and a balance of the two are needed for health. Pork fat naturally has a greater amount of PUFA than beef, and the proportion in the fat can be altered more easily than in cattle, making it easier to market a burger that matches the dietary requirements and can be marketed as 'healthy'.
Pork may have a better healthy MUFA and PUFA content than beef but PUFAs also have a greater susceptibility to oxidation. Oxidation leads to undesirable warmed-over-flavours (WOF) and rancidity [4]. The SFA to PUFA ratio is about the same in sheep as beef but meat from older sheep also has a distinct undesirable odour or taste described as `mutton'. Mutton PUFAs have a combination of unique branch chain fatty acids and phenols and lanolin and iso-stearic acid Wong et al. 1975. Poultry PUFAs are particularly susceptible to WOF which is due to a combination of oxidized fatty acids and sulfur compounds, dimethyl sulfoxide. There are other undesirable smells and flavours associated with pork and beef beside WOF. Pork from intact male pigs can have an odor called 'boar taint' which is a combination of a steroid `androst-16-enone' which is formed in the testis and skatole which is metabolized from the bacteria mainly present in the hindgut of pigs. Beef, on the other hand, can have liver flavours which occur with high myoglobin content and extra PUFA content. In 1986, the identifiable volatile beef aromatic components counts reached over 600 [5]. However, the influence of these components is undetectable by consumers, unless they are significantly concentrated by poor raising, age or storage conditions.
Colour
Figure 2: Â
There is a redder colour in the beef burger but this is diluted out as you go from extra-lean ground meat to the fatter ground meat used in a regular burger. The amount of red is caused mainly by the myoglobin. In pork, myoglobin is much lower at 2mg/g versus 8mg/g to 12mg/g for beef. This led pork advertiser in the 1980s and 90s to try the slogan `pork, the other white meat' for many years. In contrast, a bison hamburger has very high myoglobin content at ~15mg/g but this can give purple colour and early discolouration/ browning on air exposure. A direct comparison of myoglobin between beef and bison show very little difference in the sequence and even tuna (5mg/g) has essentially the same basic sequence Levy 1985. The higher myoglobin content has also been associated with liver flavours [6]. Protecting the color is maintained by a using modified gas packaging like carbon monoxide and treating it with alpha-tocopherol (vitamin E). Vitamin E also helps to prevent WOF and oxidations of unsaturated fats COST. A big factor consumer's use in deciding the choice of beef verses pork is price (Figure 2). Traditionally in North America, there may be a preference for the beef burger over the pork burger because of the expected value difference. Beef steaks costs are much higher than pork chops, almost double the price [6]. In 2017, the cost of ground beef was between $5 and $6 dollar a pound and pork was approximately at less than $4/lbs.
Conclusion
The bottom line is consumer acceptance. With the recent trend of hormone- and antibiotic-free label on the fast food burger gaining popularity, the cost of raising the meat will have to be absorbed by the fast food chain. More pressure on the fast food companies will results in renewed efforts to try and market ground pork burger products. In places like China and Indonesia, it has already met some success. Today (2017) in North America there is a demand for adding a pork bacon condiment on the standard beef burger for flavour. Pork bellies, from which bacon is made, are enjoying such a premium price that they are competing with pork loins, on a price per pound basis. The fast food industry may have to reformulate for a leaner pork burger to compensate for the bacon in the toppings, and for the extra 2g of fat in a typical 28g pork burger over the traditional beef burger.
https://lupinepublishers.com/agriculture-journal/pdf/CIACR.MS.ID.000145.pdf
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High Oleic Oil Market to Witness Rapid Increase in Consumption During 2020 – 2030
Within the edible oil space, technological changes and innovation have led to the reinvention of fatty acid profiles, and consequently, have altered oil attributes and characteristics. The resulting oil products have improved applicability across different industries. Constant innovation and commercialization of high oleic oil is expected to increase its relevance as an edible oil, and drive sales in the global high oleic oil market over the coming years.
DuPont Pioneer and Monsanto have developed high oleic soybeans using biotechnology. To assist these companies in widely commercializing high-oleic varieties, the United Soybean Board made a US$ 20 Mn funding commitment to both companies. Such technological developments are expected to flourish the global high oleic oil market.
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Higher availability of products aiding specific health needs and increased ease of access are some of the considerable factors for market growth. The health and wellness trend among customers is expected to be beneficial for the growth of the high oleic oil market, and this trend is anticipated to continue over the forecast period of 2020–2030, expanding the market at a significant value CAGR of over 6%
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Key Takeaways from High Oleic Oil Market Study
The market value for food industry applications is expected to witness 1.8X growth during the forecast period, and reach a market value of US$ 12.3 Bn by the end of 2030, owing to increased application of high oleic oil as being heart health beneficial in different food products.
North America exhibits the highest incremental opportunity, globally, owing to increased awareness of preventive healthcare among consumers, along with high inclination toward organic, natural, and healthy ingredients.
The online retail volume distribution channel is expected to witness 2.1X growth during the forecast period, attributable to growing Internet penetration across the world, and quick seek out deals for choosing price, type, and quality-specific high oleic oil.
Ukraine is the largest producer and exporter of high oleic sunflower oil, and a majority of its exports of sunflower oil are to Western European countries. Sunflower will hold the largest high oleic oil type value share in the year 2020 at 49.5%, which equals the total share of canola, soybean, palm, and others, put together.
The coronavirus pandemic has shifted the focus of customers suffering from heart disease to a preventive and overall health protection mindset. Hence, demand for high oleic oil is expected to surge, owing to its health beneficial properties.
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Global High Oleic Oil Market: Competitive Landscape
Leading manufacturers in the global high oleic oil market space are entering into various partnerships and collaboration to gain synergy benefits and increase production capacity for a high market share.
In 2020, CHS Inc. collaborated with DuPont Pioneer for increasing its production capacity of high oleic soybeans.
In addition, key players in the global high oleic oil landscape are focusing on launching new products through partnerships and collaborations for increased benefits of high oleic oil, to attract more customers.
In 2018, Cargill, Incorporated collaborated with Precision BioSciences to further reduce saturated fats of high oleic canola oil. The company has made use of Precision’s ARCUS genome-editing technology to achieve 4.5% less saturated fats in new products.
In 2018, Bunge Limited collaborated with DuPoint Pioneer for the development and commercialization of its Plenish brand of high oleic soybeans.
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Peanut Oil Market Growth Prediction and Industry Forecast 2021-2028, Trend and Global Market Analysis.
Peanut oil is an edible vegetable oil, which is derived from peanuts. Peanuts are legumes and are native to Latin America and various other tropical regions. Peanut oil is utilized either to enhance the flavor of the underlying food or as a base for cooking. It possess a high smoke point comparative to other cooking oils, and is used for frying food. Its major component fatty acids include oleic acid, linoleic acid, and palmitic acid. In addition, it contains arachidic acid, stearic acid, lignoceric acid, behenic acid, and other fatty acids.
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The global peanut oil market is highly congested with high level of competition among key players. Moreover, since there is no unique functionality of peanut oil when compared to other vegetable oils, the demand is anticipated to remain stagnant throughout the forecast period. The emergence of soybean oil is as an important reason for the declining growth of the global peanut oil market. The impact of new and unique oils is predominantly strong in developed regions, since consumers have access to new products and have a strong purchasing power. Peanut oil is relatively healthy owing to low percentage of trans-fats, saturated fats, and cholesterol. Moreover, the nutty flavor offered by peanut oil is a crucial factor, which is anticipated to accelerate the demand for peanut oil. However, high price of peanut oil and increase in demand for soybean oil hamper the market growth.
The global peanut oil market is segmented on the basis of type, application, packaging, and geography. Based on type, the market is categorized into refined and unrefined. By application, it is classified into personal care products, food, pharmaceutical, and others. According to packaging, it is divided into glass containers, plastic containers, cartons, plastic pouches, and others. Geographically, it is analyzed across into North America, Europe, Asia-Pacific, and LAMEA.
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The major players operating in the global market are focusing on key market strategies such as mergers, acquisitions, collaborations, and partnerships.
Some of the key players in the global market include:
Archer Daniels Midland
Cargill Incorporated
Olam International
Adani Wilmar Limited
Ventura Foods (Lou Ana), etc.
Key Benefits
This report provides a quantitative analysis of the current trends, estimations, and dynamics from 2016 to 2023 to assist to identify the prevailing market opportunities.
Major countries in each region are mapped according to the individual market revenue.
The region-wise and country-wise market conditions are comprehensively analyzed.
This study evaluates the competitive landscape and the value chain analysis to understand the competitive environment across geographies.
The report provides extensive qualitative insights on the significant segments and regions exhibiting favorable market growth.
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Azelaic Acid Manufacturing for Industrial Use Market Global Trends, Growth, Opportunities, and Market Size Forecast to 2026
Azelaic Acid is a saturated organic compound that exists in the form of a powder. Its main application lies in the synthesis of DNA. It is manufactured as oleic acid that acts as a catalyst. It is a chemical product which is used in the production of products in plastics, lubricants, electronics, cosmetics and pharmaceuticals etc. it also acts a s an inhibitor in respiratory enzymes. Increase in demand and high adoption of Azelaic acid by the end-use industries is expected to increase the growth of the target marketAzelaic acid has a wide variety of applications providing health benefits which is a major factor towards driving the market
 Global Azelaic Acid Manufacturing for Industrial Use Market By Grade (Polymer Grade, Technical Grade and Pharmaceutical Grade), Application (Plastics, Lubricants, Electronics, Pharmaceuticals & Chemicals and Personal Care), and Geography (North America, South America, Europe, Asia-Pacific, Middle East and Africa) – Industry Trends and Forecast to 2026
 Global Azelaic Acid Manufacturing for Industrial Use Market is expected to rise from its initial estimated value of USD 119.99 million in 2018 to an estimated value of USD 217.21 million by 2026, registering a CAGR of 7.7% in the forecast period of 2019-2026 Increase in demand and high adoption of azelaic acid by the end-use industries, a wide variety of applications providing health benefits drives the growth of the global atelic acid manufacturing for industrial use. The high content of azelaic acid in personal care and pharmaceuticals products is unsafe to consume, which could impede the trajectory of the azelaic acid market Fluctuating Prices of Azelaic Acid can hamper the sales of the global azelaic acid Market
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 Global Azelaic Acid Manufacturing for Industrial Use Market Segmentation:
 By Application:
Plastics
Lubricants
Electronics
Pharmaceuticals & Chemicals
Personal Care
 By Grade:
Polymer Grade
Technical Grade
Pharmaceutical Grade
 By Geography:
 North America:
US
Canada
Mexico
South America
Brazil
Argentina
Rest of South America
 Europe:
Germany
France
United Kingdom
Italy
Spain
Russia
Turkey
Belgium
Netherlands
Switzerland
Rest of Europe
 Asia-Pacific:
Japan
China
South Korea
India
Australia
Singapore
Malaysia
Indonesia
Thailand
Philippines
Rest of Asia-Pacific
 Middle East and Africa:
South Africa
Egypt
Saudi Arabia
United Arab Emirates
Israel
Rest of Middle East and Africa
 Global Azelaic Acid Manufacturing for Industrial Use Market Scope and Market Size:
Competitive Analysis:
Global azelaic acid manufacturing for industrial use market is highly fragmented and the major players have used various strategies such as new product launches, expansions, agreements, joint ventures, partnerships, acquisitions, and others to increase their footprints in this market. The report includes market shares of Azelaic Acid Manufacturing for Industrial Use market for global, Europe, North America, Asia-Pacific, South America and Middle East & Africa.
 Key Developments in the Market:
In June 2017, Emery Oleochemicals launched its new product expansion of a low temperature plasticizer named EDENOL DOZ.it was developed as a product which could provide plasticizers derived from azelaic acid especially designed for PVC and synthetic rubber applications
In May 2012, the acquisition of API & Raw Materials with BASF, led to the production of an API portfolio product dealing in dermatology named Dermaz 99 for acne treatments and hyper pigmentary disorders
 Key Market Competitors:
Few of the major competitors currently working in global azelaic acid manufacturing for industrial use market are Emery Oleochemicals, Matrica, BASF SA, Croda Sipo (Sichuan) Co.,Ltd., Nantong Hengxing Electronic Materials, Jiangsu Senxuan Pharmaceutical and Chemical Co., Ltd., NINGHAI ZHONGLONG CHEMICAL CO. Ltd., Haihang Industry Co., Ltd., Xi'an Sonwu Biotech Co., Ltd., Matrìca S.p.A., Hubei TuoChu Kangyuan PHARMACEUTICAL CO.,LTD, Beyond Industries (China) Limited, EnBridge PharmTech (Wuxi) Co., Ltd., Hubei Aoks Trade Co., Ltd., Leader Group ., Corbion
 Research Methodology: Global Azelaic Acid Manufacturing for Industrial Use Market:
Data collection and base year analysis is done using data collection modules with large sample sizes. The market data is analysed and forecasted using market statistical and coherent models. Also market share analysis and key trend analysis are the major success factors in the market report. To know more please Request an Analyst Call or can drop down your inquiry.
The key research methodology used by DBMR Research team is data triangulation which involves data mining, analysis of the impact of data variables on the market, and primary (industry expert) validation. Apart from this, other data models include Vendor Positioning Grid, Market Time Line Analysis, Market Overview and Guide, Company Positioning Grid, Company Market Share Analysis, Standards of Measurement, Top to Bottom Analysis and Vendor Share Analysis. To know more about the research methodology, drop in an inquiry to speak to our industry experts.
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 Reasons for buying this Global Azelaic Acid Manufacturing for Industrial Use Market:
Laser Capture Global Azelaic Acid Manufacturing for Industrial Use Market aids in understanding the crucial product segments and their perspective.
Initial graphics and exemplified that a SWOT evaluation of large sections supplied from the Laser Capture Global Azelaic Acid Manufacturing for Industrial Use Market. Â
Even the Laser Capture Global Azelaic Acid Manufacturing for Industrial Use Market economy provides pin line evaluation of changing competition dynamics and retains you facing opponents.
This report provides a more rapid standpoint on various driving facets or controlling Medical Robotic System promote advantage.
This worldwide Locomotive report provides a pinpoint test for shifting dynamics that are competitive.
 The key questions answered in this report:
What will be the Market Size and Growth Rate in the forecast year?
What is the Key Factors driving Laser Global Azelaic Acid Manufacturing for Industrial Use Market? Â
What are the Risks and Challenges in front of the market?
Who are the Key Vendors in Global Azelaic Acid Manufacturing for Industrial Use Market? Â
What are the Trending Factors influencing the market shares?
What is the Key Outcomes of Porter’s five forces model
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Benzoic Acid Market
Acrylic Acid Market
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Linseed Oil Market Evolving Opportunities, Covid-19 Impact, Strategies and Forecast to 2026
The report “Linseed Oil Market Share, Size, Trends, Industry Analysis Report By Application Type (Processed Food, Paints & Varnishes, Cosmetics, Flooring, Pharmaceuticals and Others); By Regions, Segments & Forecast, 2019 – 2026” provides a complete analysis of present market trends and future insights.
The global linseed oil market is anticipated to reach 1,141.8 million by 2026 according to a new study published by Polaris Market Research.
A rising application for linseed oil in numerous industries including food, cosmetics, and pharmaceuticals as the striking industries, are expected to drive market demand. The product is growing at an average rate as compared to other edible oils in the market. Demand of a range of end-use products such as paints and coatings, varnishes, organic packaging, pharmaceuticals, flooring etc. has been increasing steadily.
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Organic Linseed oil that is unrefined and cold pressed is widely made available in the present market setup owing to its positive role in human nutrition. Thus, demand for organic food products has grown inimitably. The products of the food grade are significantly rich in fatty acids. Alpha linoleic acid present in the product is a type of fatty 3 acids that are beneficial for a healthy heart.
The presence of lignans in linseed oil gives it the much sought-after antioxidant properties that allay fears of the deadly disease like cancer. The product also behaves as a natural laxative by alleviating inflammation and body pain in severe situations. Some of the other categories of fatty acids present in the product and transmitting its properties include oleic acid which assists in bringing down cholesterol levels, linoleic acid that has anti-inflammatory properties.
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Raw product pierces the paint surface much better than synthetic ones which normally form a paint film. This characteristic tends for the product to increase its life span. The product’s paint has a unique characteristic of preserving the wood without peeling or flaking. The product also contains natural color forming pigments. Zinc Oxide, Iron Oxide, Cobalt and titanium oxide are normally stable to light and air and are one with the color forming pigments and work best with linseed oil. Hence with so many properties going for the product, it makes linseed oil one of the prime raw materials for the paint industry.
Asia Pacific region has been the biggest player in product’s industry with region’s growing food processing industry, paints and coatings, pharmaceuticals industry giving region a successful run. China, India, Malaysia, Japan, Indonesia are both largest consumers and biggest producers globally.
Europe and the U.S. have been leading players in linseed oil market but of late, with Asia Pacific in the fray, the global landscape is now dotted with many more major players. Asia Pacific now touted as a major industrial hub; the region has sprouted many manufacturers who have  turned into significant exporters of the product.
The key industrial players in market include Barlean’s, Bioriginal Food and Science Corp, Natural Factors, Inc., Natrol LLC, Archer Daniels Midland (ADM) Company, Cargill, Krishi Oils Limited (KOL), Henry LaMotte Oils GmbH, Gustav Heess GmbH and granoVita.
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Polysorbate Prices | Pricing | Trend | News | Database | Chart | Forecast
 Polysorbate Prices commonly used in the pharmaceutical, cosmetic, and food industries, is a crucial surfactant and emulsifier. Understanding the fluctuations in polysorbate prices is vital for businesses and manufacturers relying on it for product formulation. Polysorbates, particularly polysorbate 20 and polysorbate 80, are in high demand due to their role in improving product stability, consistency, and shelf life. Consequently, the pricing of polysorbates is influenced by various factors, including raw material costs, production processes, global demand, and supply chain disruptions.
The raw materials used to produce polysorbates are derived from both petrochemicals and natural oils, such as sorbitol and oleic acid. The volatility in the cost of these raw materials directly impacts polysorbate prices. For instance, fluctuations in crude oil prices can cause a ripple effect in the cost of petrochemical-derived substances. When crude oil prices rise, the cost of polysorbates tends to increase, as petrochemical feedstocks become more expensive. Similarly, natural oils like palm and coconut oil, which are also used in polysorbate production, can experience price fluctuations due to factors like crop yields, weather conditions, and geopolitical issues. These elements combine to make the cost of raw materials a significant driver of polysorbate pricing trends.
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The manufacturing process of polysorbates is another contributor to price variations. Polysorbates are synthesized through a complex process that requires precise conditions and specialized equipment. The efficiency of the production process, the cost of energy, and technological advancements all influence the overall cost of manufacturing polysorbates. Any disruptions or inefficiencies in the production process, such as equipment failure or energy price spikes, can lead to higher manufacturing costs, which in turn drive up polysorbate prices. On the other hand, improvements in production technology can help lower costs by making the process more efficient, reducing energy consumption, or enhancing yield rates. As manufacturers seek to optimize their production processes, any advancements in these areas may result in more competitive pricing.
Global demand plays a pivotal role in polysorbate pricing. Polysorbates are used in a wide range of products, including pharmaceuticals, personal care items, food, and beverages. The growing demand for processed food products, cosmetics, and pharmaceutical formulations has led to an increase in the consumption of polysorbates worldwide. Emerging markets, especially in regions like Asia-Pacific, have seen significant growth in the demand for these products due to rising consumer income, urbanization, and changing lifestyle preferences. This surge in demand exerts upward pressure on polysorbate prices, especially if supply fails to keep pace. In contrast, periods of weakened demand, such as during global economic downturns, can lead to a softening of prices as manufacturers adjust production levels in response to market conditions.
The supply chain also has a major influence on polysorbate prices. As with many other industrial chemicals, polysorbates rely on a global supply chain that involves the sourcing of raw materials, manufacturing, and distribution across various regions. Disruptions in the supply chain, such as transportation delays, labor shortages, or trade restrictions, can lead to reduced availability of polysorbates in certain markets. These disruptions can result in short-term price spikes, especially if the affected regions are major producers or consumers of polysorbates. The COVID-19 pandemic, for example, caused significant disruptions to supply chains globally, affecting the availability of raw materials and finished products alike. Such disruptions highlighted the vulnerability of global supply chains and underscored the importance of building resilience to ensure price stability.
Regulatory factors can also influence polysorbate pricing. Governments and international organizations impose various regulations on the production and use of chemicals, including polysorbates. These regulations are often related to environmental concerns, safety standards, and quality control. Compliance with stringent regulations can increase the cost of manufacturing polysorbates, as producers may need to invest in cleaner technologies, additional testing, or certification processes. On the other hand, regulatory changes that relax certain standards or provide incentives for sustainable production can help lower costs, potentially leading to more favorable pricing for buyers. As regulatory landscapes continue to evolve, manufacturers and buyers alike must stay informed about changes that could impact polysorbate prices.
The competitive landscape of the polysorbate market is another important factor affecting pricing. Numerous companies worldwide are involved in the production and distribution of polysorbates, with varying degrees of market share. Some of the key players in the market include Croda International, BASF, and Merck KGaA, among others. The level of competition between these companies influences price dynamics, as manufacturers strive to maintain or increase their market share by offering competitive pricing or improving product quality. In highly competitive markets, polysorbate prices may be driven down as companies seek to differentiate themselves and attract more customers. However, consolidation within the industry, such as mergers and acquisitions, can reduce competition and lead to higher prices if fewer players control a larger share of the market.
The future of polysorbate pricing will likely be shaped by several emerging trends. One such trend is the growing emphasis on sustainability. As consumers and industries increasingly prioritize eco-friendly and sustainable products, there is likely to be a shift toward polysorbates derived from renewable resources or produced using greener manufacturing processes. While this trend may initially drive up costs due to the investment required in sustainable technologies, it could also lead to long-term cost reductions as supply chains become more efficient and environmentally friendly. Additionally, advances in biotechnology could pave the way for novel production methods that reduce reliance on traditional raw materials, further influencing polysorbate pricing in the coming years.
In conclusion, polysorbate prices are shaped by a complex interplay of factors, including raw material costs, manufacturing processes, global demand, supply chain dynamics, regulatory influences, and market competition. Understanding these factors is essential for businesses and industries that rely on polysorbates to make informed decisions regarding procurement, pricing strategies, and product development. As the market continues to evolve, keeping a close eye on these trends will be crucial in navigating the challenges and opportunities that lie ahead in the polysorbate industry.
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Oleic Acid Market to See Huge Growth by 2028
Facto Market Insights recently published market research report on the Global Oleic Acid Market to its collection of market research reports. The research report covers detailed analysis of market sizing and forecasting of the market covering the market drivers, challenges, opportunity analysis, and trends, along with various key insights in the global market. The research report also includes the analysis of regional manufacturers and new market players, covering all the information suitable for the clients to make strategic business decisions in the industry.
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The report covers PESTLE analysis and porter’s five forces analysis which demonstrates the five forces including buyers bargaining power, suppliers bargaining power, the threat of new entrants, the threat of substitutes, and degree of competition in the global oleic acid market. In the study, the framework of porter's five forces analysis explains the method for analyzing the competition of the business covering the industry structure & the level of competition in the market. Along with this, the research report also covers the facts & figures related to the macroeconomic trends that are anticipated to impact the growth of the overall market.
In addition to this, the report also covers the section of competitive landscape of the global market, which includes the market share & positioning of all the leading players in the industry. The competitive landscape analysis provides in-depth analysis of the company’s business and performance including company overview, recent investments by top players, financial information of market players, business strategy, revenue breakup by segment and by geography, SWOT Analysis, key product offering, marketing and distribution strategies, new product development. A section of recent news & development has been added to the report which covers the latest information that are related with the market covering the acquisition, expansion, technology development, research & development activities, and other market activities.
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The Following are the Key Features of Global Oleic Acid Market Report:
Market Overview, Industry Development, Market Maturity, PESTLE Analysis, Value Chain Analysis
Growth Drivers and Barriers, Market Trends & Market Opportunities
Porter’s Five Forces Analysis & Trade Analysis
Market Forecast Analysis for 2020-2028
Market Segments by Geographies and Countries
Market Segment Trend and Forecast
Market Analysis and Recommendations
Price Analysis
Key Market Driving Factors
Oleic Acid Market Company Analysis: Company Market Share & Market Positioning, Company Profiling, Recent Industry Developments etc.
Market Segmentation:
The research offers a comprehensive analysis of global oleic acid market with respect to following sub-markets:
By Origin        Â
- Plant
- Animal
By Grade
- Pharmaceutical
- Food
- Technical
By End Use Â
- Textiles
- Food & Beverages
- Pharmaceuticals
- Automotive
- Paints
- Cosmetics
- Others
Regional Insights:
The report analyses the market by geographies i.e. North America, Europe, Asia Pacific, Latin America & Middle East & Africa. Further, the regions 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, and Rest of Latin America)
- Middle East & Africa (GCC (Saudi Arabia, UAE, Bahrain, Kuwait, Qatar, Oman), North Africa, South Africa, and Rest of Middle East & Africa)
Competitive Analysis
The central members of the market are recorded in this segment of the examination. It assists with understanding the strategies and unions that players focus on battling market competition. A fundamental infinitesimal glance at the market is given in the essential investigation. The significant players working in the global oleic acid market are:
Berg + Schmidt GmbH
Eastman Chemical Company
Godrej Industries
Croda International Plc
Klk Oleo Sdn
VVF LLC
Emery Oleochemicals
Univar Solutions
Oleon NV
Wilmar International Limited
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The Magnesium Powder Prices demonstrates a mixed market trend for Magnesium Oxide hearse, a decremented trajectory for Magnesium Stearate throughout the first quarter of 2023. However, prices inclined in January due to healthy domestic demand with limited stocks among the market participants. Besides this, consumer demand showed a weaker trend even if the market trend remained on the upper side as February approached, which caused local suppliers and traders to concentrate on placing orders in line with necessities. Also, the decrease in upstream Stearic Acid and oleic acid prices further supported the declining market trend for Magnesium Stearate until the end of the first quarter of 2023. However, improvement in trade activity somewhat supported the positive price trend in the market for Magnesium oxide until the very end of March. Overall, the cost of Magnesium Powder in the United States during the month of March was constructed at USD 440/MT for Magnesium Oxide and USD 2140/MT for Magnesium Stearate.
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Psyllium Products and Trend Analysis and Industry Forecast 2020-2027
Psyllium is obtained from the husk and seed of plant Plantago ovate (Plantaginaceae) and commonly known as isabgol. It has been used since olden times for its medicinal properties and as a fiber supplement for treating digestive problems. Commercially, psyllium is used as a food thickener and food ingredient in various food products such as breakfast cereals, ice creams, frozen desserts, and others. The psyllium husk is obtained from the milling process of seeds and is produced mainly for mucilage content, which is a clear, colorless, gelling agent and can form a gel in water. Psyllium is commercially available in the form of seeds, husk, husk powder, organic psyllium, capsules, and granules. The application of psyllium is extensively in food industries, pharmaceutical, nutraceutical, cosmetics, personal care products, and as an additive in livestock and poultry feed. According to FAO, India is the largest producer and trader of psyllium seeds.
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Companies covered
Jyot Overseas Pvt. Ltd., Satnam Psyllium Industries, Keyur Industries, Abhyuday Industries, Atlas Industries, Gayatri Psyllium Industries, Shubh Psyllium Industries, Psyllium Labs LLC, Â AEP Colloids, BalisanaIsabgol, KV Agro Products, Shree Mahalaxmi Psyllium Pvt. Ltd.
COVID-19 Scenario Analysis:
The COVID-19 pandemic has impacted the harvesting and production of the psyllium plant due to the lockdown scenario being implemented in various countries.
The manufacturing units have been shut down and the loss of manpower has led to a shortage of production.
Export and import restrictions have caused a decline in sales and revenue of the psyllium products market.
The supply chain has been highly affected due to transport restrictions.
The post-COVID-19 scenario is anticipated for rising the requirement of psyllium product due to its beneficial properties and positive effect on health. Â
Top Impacting Factors: Market Scenario Analysis, Trends, Drivers and Impact Analysis
Psyllium has been used as dietary fiber and bulk laxative for curing and prevention of certain health conditions. Several types of research carried out on psyllium have introduced the beneficial properties of psyllium as a therapeutic product and also as potential ingredients for industrial use. The requirement of natural ingredients and bioceutical foods has impacted the production of psyllium products. The advancing R&D, the demand of nutraceutical and therapeutic products, organic farming, side effects of the conventional medicines, increasing harvesting and trade of psyllium plant, health benefits of psyllium products, industrial use of psyllium seeds, health consciousness and awareness of healthy diet, increase in digestive problems and sedentary lifestyle, psyllium as livestock feed and innovation in technology are the key drivers which lead the growth of psyllium products market. However, the availability of alternative products at a low price, increased competition in the market, high priced organic products, and allergies related to the product hinder the market growth.
The global psyllium products market trends are as follows:
Psyllium products as a health booster
Psyllium has been used extensively for treating constipation and controlling other disease conditions, as it has high nutritional value. The husk consists of 35% soluble and 65% insoluble polysaccharides such as cellulose, hemicelluloses and lignin, protein, carbohydrates, linoleic acid, oleic acid, linolenic acid, and others. Â It has been beneficial for clinical conditions such as constipation, hemorrhoids, ulcerative colitis, cholesterol level, diabetes mellitus, diarrhea, inflammation, colon cancer, and others. Therefore, it is serving as a high fiber source and prebiotic in functional and nutraceutical foods.
The properties of mucilage have led to a surge in its usage in the food industry as thickener, stabilizer, binder, and substitute in products such as ice cream, chocolates, bread, biscuits, rice, jam, health drink, beverages, instant noodles, breakfast cereals, and others. Thereby, the commercial use of psyllium products has extensively grown along with residential use. The use of psyllium in the livestock and poultry feed has also increased for the production of low cholesterol eggs and organic meat.
Extensive psyllium products Â
The key manufacturers have been investing in the R&D for the various properties of psyllium and developing the variants from seed and husk of the plant. They have been inclined toward organic farming for sustainable development and improved the quality of the product. Jyot Overseas Pvt. Ltd., a leading manufacturer in the psyllium products market have launched its products such as seeds, husk, husk powder, khakha powder, organic psyllium, and capsules in jar and pouch packaging.
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Key Benefits of the Report:
This study presents the analytical depiction of the global psyllium products industry along with the current trends and future estimations to determine the imminent investment pockets.
The report presents information related to key drivers, restraints, and opportunities along with a detailed analysis of the global psyllium products market share.
The current market is quantitatively analyzed from 2020 to 2027 to highlight the global psyllium products market growth scenario.
Porter’s five forces analysis illustrates the potency of buyers & suppliers in the market.
The report provides detailed global psyllium products market analysis based on competitive intensity and how the competition will take shape in the coming years.
About Allied Market Research:
Allied Market Research (AMR) is a full-service market research and business-consulting wing of Allied Analytics LLP based in Portland, Oregon. Allied Market Research provides global enterprises as well as medium and small businesses with unmatched quality of “Market Research Reports” and “Business Intelligence Solutions.” AMR has a targeted view to provide business insights and consulting to assist its clients to make strategic business decisions and achieve sustainable growth in their respective market domains. AMR offers its services across 11 industry verticals including Life Sciences, Consumer Goods, Materials & Chemicals, Construction & Manufacturing, Food & Beverages, Energy & Power, Semiconductor & Electronics, Automotive & Transportation, ICT & Media, Aerospace & Defense, and BFSI.
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Azelaic Acid Manufacturing for Industrial Use Market Global Trends, Growth, Opportunities, and Market Size Forecast to 2026|Key Competitors Emery Oleochemicals, Matrica, BASF SA, Croda Sipo (Sichuan) Co.,Ltd., Nantong Hengxing Electronic Materials
Azelaic Acid is a saturated organic compound that exists in the form of a powder. Its main application lies in the synthesis of DNA. It is manufactured as oleic acid that acts as a catalyst. It is a chemical product which is used in the production of products in plastics, lubricants, electronics, cosmetics and pharmaceuticals etc. it also acts a s an inhibitor in respiratory enzymes. Increase in demand and high adoption of Azelaic acid by the end-use industries is expected to increase the growth of the target marketAzelaic acid has a wide variety of applications providing health benefits which is a major factor towards driving the market
Global Azelaic Acid Manufacturing for Industrial Use Market By Grade (Polymer Grade, Technical Grade and Pharmaceutical Grade), Application (Plastics, Lubricants, Electronics, Pharmaceuticals & Chemicals and Personal Care), and Geography (North America, South America, Europe, Asia-Pacific, Middle East and Africa) – Industry Trends and Forecast to 2026
Global Azelaic Acid Manufacturing for Industrial Use Market is expected to rise from its initial estimated value of USD 119.99 million in 2018 to an estimated value of USD 217.21 million by 2026, registering a CAGR of 7.7% in the forecast period of 2019-2026 Increase in demand and high adoption of azelaic acid by the end-use industries, a wide variety of applications providing health benefits drives the growth of the global atelic acid manufacturing for industrial use. The high content of azelaic acid in personal care and pharmaceuticals products is unsafe to consume, which could impede the trajectory of the azelaic acid market Fluctuating Prices of Azelaic Acid can hamper the sales of the global azelaic acid Market
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Global Azelaic Acid Manufacturing for Industrial Use Market Segmentation:
By Application:
Plastics
Lubricants
Electronics
Pharmaceuticals & Chemicals
Personal Care
By Grade:
Polymer Grade
Technical Grade
Pharmaceutical Grade
By Geography:
North America:
US
Canada
Mexico
South America
Brazil
Argentina
Rest of South America
Europe:
Germany
France
United Kingdom
Italy
Spain
Russia
Turkey
Belgium
Netherlands
Switzerland
Rest of Europe
Asia-Pacific:
Japan
China
South Korea
India
Australia
Singapore
Malaysia
Indonesia
Thailand
Philippines
Rest of Asia-Pacific
Middle East and Africa:
South Africa
Egypt
Saudi Arabia
United Arab Emirates
Israel
Rest of Middle East and Africa
Global Azelaic Acid Manufacturing for Industrial Use Market Scope and Market Size:
Competitive Analysis:
Global azelaic acid manufacturing for industrial use market is highly fragmented and the major players have used various strategies such as new product launches, expansions, agreements, joint ventures, partnerships, acquisitions, and others to increase their footprints in this market. The report includes market shares of Azelaic Acid Manufacturing for Industrial Use market for global, Europe, North America, Asia-Pacific, South America and Middle East & Africa.
Key Developments in the Market:
In June 2017, Emery Oleochemicals launched its new product expansion of a low temperature plasticizer named EDENOL DOZ.it was developed as a product which could provide plasticizers derived from azelaic acid especially designed for PVC and synthetic rubber applications
In May 2012, the acquisition of API & Raw Materials with BASF, led to the production of an API portfolio product dealing in dermatology named Dermaz 99 for acne treatments and hyper pigmentary disorders
Key Market Competitors:
Few of the major competitors currently working in global azelaic acid manufacturing for industrial use market are Emery Oleochemicals, Matrica, BASF SA, Croda Sipo (Sichuan) Co.,Ltd., Nantong Hengxing Electronic Materials, Jiangsu Senxuan Pharmaceutical and Chemical Co., Ltd., NINGHAI ZHONGLONG CHEMICAL CO. Ltd., Haihang Industry Co., Ltd., Xi'an Sonwu Biotech Co., Ltd., Matrìca S.p.A., Hubei TuoChu Kangyuan PHARMACEUTICAL CO.,LTD, Beyond Industries (China) Limited, EnBridge PharmTech (Wuxi) Co., Ltd., Hubei Aoks Trade Co., Ltd., Leader Group ., Corbion
Research Methodology: Global Azelaic Acid Manufacturing for Industrial Use Market:
Data collection and base year analysis is done using data collection modules with large sample sizes. The market data is analysed and forecasted using market statistical and coherent models. Also market share analysis and key trend analysis are the major success factors in the market report. To know more please Request an Analyst Call or can drop down your inquiry.
The key research methodology used by DBMR Research team is data triangulation which involves data mining, analysis of the impact of data variables on the market, and primary (industry expert) validation. Apart from this, other data models include Vendor Positioning Grid, Market Time Line Analysis, Market Overview and Guide, Company Positioning Grid, Company Market Share Analysis, Standards of Measurement, Top to Bottom Analysis and Vendor Share Analysis. To know more about the research methodology, drop in an inquiry to speak to our industry experts.
Reasons for buying this Global Azelaic Acid Manufacturing for Industrial Use Market:
Laser Capture Global Azelaic Acid Manufacturing for Industrial Use Market aids in understanding the crucial product segments and their perspective.
Initial graphics and exemplified that a SWOT evaluation of large sections supplied from the Laser Capture Global Azelaic Acid Manufacturing for Industrial Use Market. Â
Even the Laser Capture Global Azelaic Acid Manufacturing for Industrial Use Market economy provides pin line evaluation of changing competition dynamics and retains you facing opponents.
This report provides a more rapid standpoint on various driving facets or controlling Medical Robotic System promote advantage.
This worldwide Locomotive report provides a pinpoint test for shifting dynamics that are competitive.
The key questions answered in this report:
What will be the Market Size and Growth Rate in the forecast year?
What is the Key Factors driving Laser Global Azelaic Acid Manufacturing for Industrial Use Market? Â
What are the Risks and Challenges in front of the market?
Who are the Key Vendors in Global Azelaic Acid Manufacturing for Industrial Use Market? Â
What are the Trending Factors influencing the market shares?
What is the Key Outcomes of Porter’s five forces model
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Browse Related Report:
Sulfuric Acid Market
Benzoic Acid Market
Acrylic Acid Market
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Data Bridge Market Research set forth itself as an unconventional and neoteric Market research and consulting firm with unparalleled level of resilience and integrated approaches. We are determined to unearth the best market opportunities and foster efficient information for your business to thrive in the market
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Avocado Oil Market Latest Trends, Demand and Analysis 2025
Avocado oil is directly extracted from the pulp of avocado fruit, instead of seed, like other oils. Most fruits primarily contain carbohydrates; however, avocado is high in fiber, potassium, possesses rich texture, healthy fats, good flavor, and guacamole. Pulp of the avocado fruit consists of about 30% oil, which is majorly composed of 20 different vitamins including vitamin K, C, E, B5, B6, omega 9 fatty acid, and oleic acid.
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Avocado oil is used in cooking oil and hair and skin care solutions due to its proven powerful health benefits. There are various types of avocados, which vary according to shape, from pear-shaped to round or and from green to black colored avocado; however, a highly popular type is the Hass avocado. Avocadoes do not contain any sodium or cholesterol, and they further helps reduce blood triglycerides, LDL (Low Density Lipoprotein) cholesterol and HDL (High Density Lipoprotein) cholesterol levels significantly.
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Factors such as positive perception among health experts and consumers, nutrient rich composition, and rising awareness about healthy lifestyle are some of the factors which are expected to drive the global avocado market during the forecast period. Significant rise in health issues such as heart diseases and chronic diseases arising from substantial consumption of high fat butter and oils is boosting the demand for healthy oils. Some beneficial properties of avocado oils such as an optimum level of antioxidants and good fatty acids are the primary reasons for health experts to recommend its consumption.
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Furthermore, the availability of avocado all year round provides it with a competitive advantage to sustain demand all year. A major factor which is likely to hamper the market is the price of avocado oil. Avocado oils are marginally expensive, especially in developing countries, which is expected to hinder the adoption of avocado products. A major trend observed in market is mixing of flavored avocado oil with natural edible oils including almond oil, olive oil, safflower oil, coconut oil, grape seed oil, and shea butter. The mixture is blended in such a way that, characteristics of each oil can complement each other.
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The global avocado oil market can be segmented based on type, variety, application, and region. Owing to the presence of numerous varieties of avocados, oil can be extracted from various sources. Therefore, based on variety, the market can be classified into Hass, Pinkerton, Gwen, Lamb Hass, Bacon, Zutano, Fuerte, and others. The Hass segment is expected to hold a significant share of the market share during the forecast period due to its considerable popularity and major health benefits. In terms of type, the avocado oil market can be segregated into extra-virgin oil, virgin oil, pure oil, and blends oil.
Extra-virgin oil is extracted from superior quality avocado fruits at low temperatures without the addition of any chemical additives. Extra-virgin oil is of highest quality among all four type. Based on application, the market can be classified into personal care products, cooking, medicinal products, and others. Avocado oil is an ideal choice as frying oil while cooking due to its high smoking point. In terms of region, the global avocado oil market can be segmented into North America, Europe, Middle East & Africa, Asia Pacific, and South America. Developed regions, including the U.S. and Western Europe where awareness and price are not major concerns, are expected to witness strong demand for avocado oil. Countries in South America including Dominican Republic, Chile, Peru, Mexico, Brazil, and Colombia are major producers of avocado in the world.
Key players operating in the global avocado oil market include Bella Vado, Olivado, SESAJAL S.A. de C.V., CHOSEN FOODS LLC, Avocado Global Pte Ltd, Avoolio Oil De Mexico, BIO Planète, Kevala, The Village Press, Tron Hermanos, and La Tourangelle.
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