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Acetic Acid Market - Forecast(2024 - 2030)
Acetic Acid Market Overview
Acetic Acid Market Size is forecast to reach $14978.6 Million by 2030, at a CAGR of 6.50% during forecast period 2024-2030. Acetic acid, also known as ethanoic acid, is a colorless organic liquid with a pungent odor. The functional group of acetic acid is methyl and it is the second simplest carboxylic acid. It is utilized as a chemical reagent in the production of many chemical compounds. The major use of acetic acid is in the manufacturing of vinyl acetate monomer, acetic anhydride, easter and vinegar. It is a significant industrial chemical and chemical reagent used in the production of photographic film, fabrics and synthetic fibers. According to the Ministry of Industry and Information Technology, from January to September 2021, the combined operating revenue of 12,557 major Chinese garment companies was US$163.9 billion, showing a 9% increase. Thus, the growth of the textile industry is propelling the market growth for Acetic Acid.
Report Coverage
The “Acetic Acid Market Report – Forecast (2024-2030)” by IndustryARC, covers an in-depth analysis of the following segments in the Acetic Acid industry.
By Form: Liquid and Solid.
By Grade: Food grade, Industrial grade, pharmaceutical grade and Others.
By Application: Vinyl Acetate Monomer, Purified Terephthalic Acid, Ethyl Acetate, Acetic Anhydride, Cellulose Acetate, Acetic Esters, Dyes, Vinegar, Photochemical and Others
By End-use Industry: Textile, Medical and Pharmaceutical, Oil and Gas, Food and Beverages, Agriculture, Household Cleaning Products, Plastics, Paints & Coating and Others.
By Geography: North America (the USA, Canada and Mexico), Europe (the UK, Germany, France, Italy, Netherlands, Spain, Russia, Belgium and the Rest of Europe), Asia-Pacific (China, Japan, India, South Korea, Australia and New Zealand, Indonesia, Taiwan, Malaysia and the Rest of APAC), South America (Brazil, Argentina, Colombia, Chile and the Rest of South America) and the Rest of the World (the Middle East and Africa).
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Key Takeaways
The notable use of Acetic Acid in the food and beverages segment is expected to provide a significant growth opportunity to increase the Acetic Acid Market size in the coming years. As per the US Food and Agriculture Organization, world meat production reached 337 million tonnes in 2019, up by 44% from 2000.
The notable demand for vinyl acetate monomer in a range of industries such as textile finishes, plastics, paints and adhesives is driving the growth of the Acetic Acid Market.
Increase in demand for vinegar in the food industry is expected to provide substantial growth opportunities for the industry players in the near future in the Acetic Acid industry.
Acetic Acid Market Segment Analysis – by Application
The vinyl acetate monomer segment held a massive 44% share of the Acetic Acid Market share in 2021. Acetic acid is an important carboxylic acid and is utilized in the preparation of metal acetates and printing processes, industrially. For industrial purposes, acetic acid is manufactured by air oxidation of acetaldehyde with the oxidation of ethanol, butane and butene. Acetic acid is extensively used to produce vinyl acetate which is further used in formulating polyvinyl acetate. Polyvinyl acetate is employed in the manufacturing of plastics, paints, textile finishes and adhesives. Thus, several benefits associated with the use of vinyl acetate monomer is boosting the growth and is expected to account for a significant share of the Acetic Acid Market.
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Acetic Acid Market Segment Analysis – by End-use Industry
The food and beverages segment is expected to grow at the fastest CAGR of 7.5% during the forecast period in the Acetic Acid Market. Acetic Acid is also known as ethanoic acid and is most extensively used in the production of vinyl acetate monomer. Vinyl acetate is largely used in the production of cellulose acetate which is further used in several industrial usage such as textiles, photographic films, solvents for resins, paints and organic esters. PET bottles are manufactured using acetic acid and are further utilized as food containers and beverage bottles. In food processing plants, acetic acid is largely used as cleaning and disinfecting products. Acetic acid is extensively used in producing vinegar which is widely used as a food additive in condiments and the pickling of vegetables. According to National Restaurant Association, the foodservice industry is forecasted to reach US$898 billion by 2022. Thus, the advances in the food and beverages industry are boosting the growth of the Acetic Acid Market.
Acetic Acid Market Segment Analysis – by Geography
Asia-Pacific held a massive 41% share of the Acetic Acid Market in 2021. This growth is mainly attributed to the presence of numerous end-use industries such as textile, food and beverages, agriculture, household cleaning products, plastics and paints & coatings. Growth in urbanization and an increase in disposable income in this region have further boosted the industrial growth in this region. Acetic acid is extensively used in the production of metal acetates, vinyl acetate and vinegar which are further utilized in several end-use industries. Also, Asia-Pacific is one of the major regions in the domain of plastic production which provides substantial growth opportunities for the companies in the region. According to Plastic Europe, China accounted for 32% of the world's plastic production. Thus, the significant growth in several end-use industries in this region is also boosting the growth of the Acetic Acid Market.
Acetic Acid Market Drivers
Growth in the textile industry:
Acetic Acid, also known as ethanoic acid, is widely used in the production of metal acetate and vinyl acetate which are further used in the production of chemical reagents in textiles, photographic films, paints and volatile organic esters. In the textile industry, acetic acid is widely used in textile printing and dyes. According to China’s Ministry of Industry and Information Technology, in 2020, textile and garment exports from China increased by 9.6% to US$291.22 billion. Also, according to the U.S. Department of Commerce, from January to September 2021, apparel exports increased by 28.94% to US$4.385 billion, while textile mill products rose by 17.31% to US$12.365 billion. Vinyl acetate monomer is utilized in the textile industry to produce synthetic fibers. Thus, the global growth in demand for textiles is propelling the growth and is expected to account for a significant share of the Acetic Acid Market size.
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Surge in use of vinegar in the food industry:
The rapid surge in population along with the adoption of a healthy and sustainable diet has resulted in an increase in demand for food items, thereby increasing the global production level of food items. As per US Food and Agriculture Organization, in 2019, global fruit production went up to 883 million tonnes, showing an increase of 54% from 2000, while global vegetable production was 1128 million tonnes, showing an increase of 65%. Furthermore, world meat production reached 337 million tonnes in 2019, showing an increase of 44% from 2000. Acetic acid is majorly used in the preparation of vinegar which is further widely utilized as a food ingredient and in personal care products. Vinegar is used in pickling liquids, marinades and salad dressings. It also helps to reduce salmonella contamination in meat and poultry products. Furthermore, acetic acid and its sodium salts are used as a food preservative. Thus, the surge in the use of vinegar in the food industry is boosting the growth of the Acetic Acid Market.
Acetic Acid Market Challenge
Adverse impact of acetic acid on human health:
Acetic Acid is considered a strong irritant to the eye, skin and mucous membrane. Prolong exposure to and inhalation of acetic acid may cause irritation to the nose, eyes and throat and can also damage the lungs. The workers who are exposed to acetic acid for more than two or three years have witnessed upper respiratory tract irritation, conjunctival irritation and hyperkeratotic dermatitis. The Occupational Safety and Health Administration (OSHA) reveals that the standard exposure to airborne acetic acid is eight hours. Furthermore, a common product of acetic acid i.e., vinegar can cause gastrointestinal tract inflammatory conditions such as indigestion on excess consumption. Thus, the adverse impact of Acetic Acid may hamper the market growth.
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Acetic Acid Industry Outlook
The top 10 companies in the Acetic Acid Market are:
Celanese Corporation
Eastman Chemical Company
LyondellBasell
British Petroleum
Helm AG
Pentoky Organy
Dow Chemicals
Indian Oil Corporation
Daicel Corporation
Jiangsu Sopo (Group) Co. Ltd.
Recent Developments
In March 2021, Celanese Corporation announced the investment to expand the production facility of vinyl portfolio for the company’s acetyl chain and derivatives in Europe and Asia.
In April 2020, Celanese Corporation delayed the construction of its new acetic acid plant and expansion of its methanol production by 18 months at the Clear Lake site in Texas.
In October 2019, BP and Chian’s Zhejiang Petroleum and Chemical Corporation signed MOU in order to create a joint venture to build a 1 million tonne per annum Acetic Acid plant in eastern China.
Key Market Players:
The Top 5 companies in the Acetic Acid Market are:
Celanese Corporation
Ineos Group Limited
Eastman Chemical Company
LyondellBasell Industries N.V.
Helm AG
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#Acetic Acid Market#Acetic Acid Market Share#Acetic Acid Market Size#Acetic Acid Market Forecast#Acetic Acid Market Report#Acetic Acid Market Growth
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Hydrogen Sulfide Market - Forecast, 2024 - 2030
Hydrogen Sulfide Market Overview
The Hydrogen Sulfide Market size is estimated to reach US$298.9 million by 2030, after growing at a CAGR of 3.7% during the forecast period 2024-2030. Hydrogen sulfide is a colorless chalcogen hydride gas, naturally found in crude oil, natural gas and hot springs. It is a good reducing agent and is formed due to microbial breakdown of organic matter. The Hydrogen Sulfide market is witnessing significant growth driven by several key trends and developments. As a byproduct of various industrial processes such as petroleum refining and natural gas processing, hydrogen sulfide finds extensive use in industries ranging from chemicals to pharmaceuticals. One major trend shaping the market is the increasing adoption of hydrogen sulfide for sulfur recovery processes. With stricter environmental regulations mandating lower sulfur emissions, industries are investing in technologies that efficiently convert hydrogen sulfide into elemental sulfur or sulfuric acid, thereby reducing environmental impact. Another prominent trend is the growing utilization of hydrogen sulfide in the production of specialty chemicals and pharmaceutical intermediates. Hydrogen sulfide is a crucial raw material in the synthesis of organosulfur compounds, which find applications in diverse sectors including agriculture and healthcare. This demand is bolstered by ongoing research and development efforts aimed at discovering new applications and improving production efficiencies. In addition to these trends, the market is witnessing developments in technology that enhance the extraction and purification of hydrogen sulfide from various industrial sources. Advanced purification techniques and innovative processes are being developed to ensure high purity levels and cost-effectiveness in hydrogen sulfide production. These developments are not only driving market growth but also fostering competition among key players to innovate and expand their market presence. Overall, the hydrogen sulfide market is poised for robust growth, propelled by increasing industrialization, stringent environmental regulations, and expanding applications across diverse industries. As technologies continue to evolve and demand grows, the market is likely to witness further innovations and strategic investments in the coming years.
𝐃𝐨𝐰𝐧𝐥𝐨𝐚𝐝 𝐑𝐞𝐩𝐨𝐫𝐭 𝐒𝐚𝐦𝐩𝐥𝐞
Hydrogen Sulfide Market Report Coverage
The “Hydrogen Sulfide Market Report – Forecast (2024-2030)” by IndustryARC, covers an in-depth analysis of the following segments in the Hydrogen Sulfide Industry.
By Grade: Technical Grade and Purified Grade.
By Application: Pesticides, Dyes, Leather, Disinfectant, Sulfuric Acid Production and Others.
By End-use Industry: Medical & Pharmaceuticals, Chemicals, Oil & Gas (Onshore and Offshore), Metal & Metallurgy, Plastics, Agriculture and Others.
By Geography: North America (the USA, Canada and Mexico), Europe (UK, Germany, France, Italy, Netherlands, Spain, Belgium and the Rest of Europe), Asia-Pacific (China, Japan, India, South Korea, Australia and New Zealand, Indonesia, Taiwan, Malaysia and Rest of APAC), South America (Brazil, Argentina, Colombia, Chile and Rest of South America), Middle East & Africa (Middle-East and Africa).
Key Takeaways
The Asia-Pacific dominates the Hydrogen Sulfide Market, owing to growth factors such as the flourished base for the chemical sector, initiatives towards agricultural and medical trends and urbanization, thereby boosting growth in this region.
The flourishing chemical sector across the world is propelling the demand for hydrogen sulfide for various applications such as manufacturing of sulfuric acid and sulfur and others, thereby influencing the growth in the hydrogen sulfide market size.
The demand for hydrogen sulfide in the agriculture sector is rising for applicability in pesticides, fertilizers, disinfectants and others, owing to flourishing agricultural production trends.
However, the hazardous impacts of hydrogen sulfide on human health act as a challenging factor in the hydrogen sulfide industry.
#Hydrogen Sulfide Market price#Hydrogen Sulfide Market size#Hydrogen Sulfide Market share#Hydrogen Sulfide Market forecast
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Iso Butyric Acid Prices Trend, Monitor, News, Analytics and Forecast | ChemAnalyst
Iso-butyric Acid Prices: During the Quarter Ending December 2023
North America:
In the fourth quarter of 2023, the Iso-butyric Acid market in North America experienced a decline in prices, primarily due to lackluster trading fundamentals and limited demand for fresh stocks. Oversupply, resulting from higher production rates among major manufacturers, contributed to weak pricing in the region.
Frail market conditions and minimal bidding for new cargoes influenced the price trend. Demand from downstream Pharma and solvent markets was restricted due to low interest from buyers. Additionally, a decline in the adhesive industry led to production cuts among local producers, further decelerating Iso-butyric Acid prices.
By December 2023, the price of Iso-butyric Acid in the USA dropped to USD 1190/ton FOB Houston. The subsequent quarter also witnessed price declines due to delayed offtakes, stemming from sluggish buying attitudes and low trading volume amidst ample product supply. This price drop put pressure on chemical companies, impacting revenue and sales of downstream enterprises.
Get Real Time Prices of Iso-butyric Acid: https://www.chemanalyst.com/Pricing-data/iso-butyric-acid-1408
Asia Pacific:
In the Asia Pacific region, Iso-butyric Acid prices maintained their upward trend in the succeeding months. Compared to the previous quarter, prices ended on a bullish note, driven by increased market purchases. At the quarter's onset, prices rose alongside crude oil prices due to geopolitical tensions between Israel and Palestine, affecting manufacturing costs. Improved demand fundamentals in the region further fueled price increases.
Limited product availability led to elevated prices as regional suppliers increased their offers. However, towards the end of Q4 2023, prices declined due to adequate inventory levels and fading demand from bulk purchasers. In China, Iso-butyric Acid was priced at USD 1508/ton FOB Shanghai in November 2023. Despite abundant supplies, demand in China's marketplaces declined, possibly due to buyer skepticism.
Europe:
The European Iso-butyric Acid market witnessed price declines in Q4 2023, influenced by various factors. Bearish market sentiment, high supply, and subdued year-end requirements contributed to the price drop. Oversupply and weak spot price negotiations further impacted the market negatively.
Low demand from downstream solvent, agriculture intermediate, and dye markets influenced the price trend. With weak support from feedstock Isobutyraldehyde, production costs slumped in the European market. Limited trading activities from downstream enterprises and reluctance to increase prices domestically added to market pressures.
Weak regional demand resulted in satisfactory product reserves on the supply side. Limited trade within Europe intensified pressure on manufacturers, impacting margins and profits.
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True Pigments: Driving Innovation at Appalachian Ohio as Rural Action’s Social Enterprise with Debbie Phillips
Coal is a natural resource that is mined from the Earth’s surface or deep underground. The areas where there is a presence of coal deposits are also known as coal beds or coal seams. The extraction of coal mines provides us with many benefits as it is a great source of energy. It can be used in the production of natural gas, other minerals, transport fuel, production of steel and other chemicals, manufacture of cement, and the production of Coal Mine Methane (CMM) which is used in the reduction of greenhouse gas emissions.
Although coal mining factories and industries prove to be beneficial and contributional to the economy, community, and life in general, they can be harmful to the health of coal miners and to the environment’s biodiversity and ecosystem as well.
One of the many chemical byproducts that remain even after factories and mines are shut down or closed is Acid Mine Drainage (AMD). This chemical byproduct affects the waterbodies in their quality, in, near, and around coal mines. When a waterbody comes into contact with rocks that hold sulfur-bearing minerals, it creates Sulfuric Acid – a corrosive and destructive substance. This produced acid starts to dissolve the sulfur-bearing minerals and metals in the rocs, which then get mixed in with the water. This process and reaction can lower the water’s pH and make it an acidic waterbody, which contains toxic metals such as – mercury, lead, and copper. This waterbody starts affecting aquatic life as well as plants, animals, and humans living near these contaminated waterbodies.
There have been many initiatives in treating, preserving, and conserving as well as blocking off coal mines away from any forms of breathing life. But these issues can continue to persist even after many years. Acid Mine Drainage is very dangerous and causes several detrimental effects on everything around it. Therefore in this article, we shall go on an explorative journey of one such company – True Pigments which is a social enterprise of another organization called Rural Action. True Pigments drives towards a – “Colors for a Cleaner World”, where they use patented technology to clean streams and waterbodies in Appalachian Ohio. They clean these waterbodies and sustainably give back to the community by turning this acidic chemical byproduct into sustainable pigments for the use of oil paints, raw pigments, and eco-friendly dyes.
True Pigments LLC:
True Pigments LLC was founded in the year 2019 and strives to stand strong beside Rural Action’s vision and mission and achieve its goals. Rural Action’s Vision is – “Envisioning a region with clean streams and healthy forests, a place where thriving family farms, meaningful livelihoods, and vibrant communities exist for everyone”. The organization’s sustainability initiatives and eco-friendly practices set them on a Mission to – “Build a more just economy by developing the region’s assets in environmentally, socially, and economically sustainable ways”.
The company’s AMD Facility in Truetow, Ohio, USA, produces Iron oxide extracted from AMD pollutants from the abandoned coal mine for the cleaning and restoration of over 7 miles of Sunday Creek watershed. Bringing back the waterbody’s life and quality is the aim of True Pigments.
For more interesting reads, visit The Business Magnate.
The Journey of True Pigments and its Team Leading the Way:
The team leading True Pigments LLC – a social enterprise company of Rural Action are – the Chief Executive Officer of Rural Action – Debbie Phillips, the Director of Operations – Dr. Paul Patton, and the Director of Project Development – Michelle Shively Maciver.
In the year 2017, the CEO of Rural Action – Debbie Phillips, shared important data that uncovered the area and waterbody that has been severely affected by Acid Mine Drainage (AMD). The Sunday Creek watershed which is present in the Southeastern region of Ohio, USA, has been singly affected by AMD discharge with a flow rate of 988 gallons per minute. The contamination consists of around 2,183,065 pounds of Iron oxide. The affected water body stretches for over 7 long miles disrupting life and habitat.
Rural Action’s initiative and project began almost 20 years ago when the Sunday Creek watershed’s coordinator got in touch with Dr. Guy Riefler – Ohio’s University Civil Engineering Professor. The professor alongside engineering and art students, and John Sabraw – an Art Professor, together, developed a patented technology and began testing models that could successfully resolve and bring the Truetown Seep which is located in the Sunday Creek watershed, back to life.
By the year 2019, the Sunday Creek watershed project in cleaning and restoration began, and Rural Action established an AMD Treatment and Pigment-producing Facility at Truetown. In the same year, True Pigments was established as a social enterprise to continue their facilitations in cleaning and restoring the 7 miles of Sunday Creek in Truetown, by extracting Iron oxide from the pollutants and using them for making oil paints, raw sustainable pigments, and plasters. The Director of Operations – Dr. Paul Patton and the Director of Project Development – Michelle Shively Maciver, led the way in securing funding from investors and partners to fully establish an operating facility by 2023. The paints produced by True Pigments are called – Gamblin Reclaimed Earth Colors.
Rural Action, of which True Pigments is a social enterprise, is a non-profit organization working hard to bring back the quality of life, land, people, and water in the region of Appalachian Ohio, driving operations towards – “making positive environmental and community impacts through their works”.
Visit More : https://thebusinessmagnate.com/true-pigments-driving-innovation-at-appalachian-ohio-as-rural-actions-social-enterprise-with-debbie-phillips/
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Navigating the Formic Acid Market: Price Trends and Insights
Formic Acid (HCOOH) is a chemical compound comprising a carboxylic acid group attached to its base atom. It is also known as methanoic acid, which is the simplest acid that occurs naturally and is commonly found in ant stings or the venom of bees.
The boiling and melting point of methanoic acid measures around 100.8° C and 8.6° C, respectively. It is a fluid with a pungent odor and is soluble in water, ethyl alcohol, and benzene. It is also slightly corrosive in nature and is an organic synthetic reagent that is efficiently used as an intermediate in several chemical synthesis processes.
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The key importing countries that import Formic Acid are India, the Netherlands, and Brazil. On the other hand, the key exporting countries for the same are Germany, Belgium, and China.
Key Details About the Formic Acid 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 Formic Acid 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 Formic Acid Price Trends, including India Formic Acid price, USA formic acid prices, 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 Formic Acid Price Trends:
Formic Acid, which is also known as methanoic acid, acts as a crucial intermediate in several chemical synthesis processes. It is primarily used as an antibacterial and preservative agent for producing livestock feeds. Due to its antibacterial properties, it is sprayed over fresh hays or silage, which helps the feed retain its nutritional values for longer.
Moreover, the pharmaceutical industry uses Formic Acid as foaming paste, local stimulation drugs, and astringent. It is also used as a raw material in manufacturing chemicals like camphor, caffeine, analgin, aminophylline, toluene imidazole drugs, vitamin B1, carbamazepine, and aminopyrin drugs. In the leather industry, Formic Acid is used as a leather depilation, ash removal, and soft and expansion agent, which is used in disinfection and dyeing.
Formic Acid is used in various applications, where it is used as a raw material in textile, chemical, pharmaceutical, medical, agricultural, electroplating, and leather industries.
Key Players:
BASF SE
Feicheng Acid Chemicals Co. Ltd
Taminco Corporation
Perstorp AB
News & Recent Development
Date: May 12, 2023- A study conducted by Tobias Erb, resulted in the development of an artificial metabolic pathway to produce formaldehyde, which is an intermediary product for artificial photosynthesis, using Formic Acid.
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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.
To get real-time facts and insights to help our customers, we work with a varied range of procurement teams across industries. At Procurement Resource, we support our clients, with up-to-date and pioneering practices in the industry, to understand procurement methods, supply chain, and industry trends, so that they can build strategies to achieve maximum growth.
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YourHealthyHome Cat Dander Remover & Allergy Relief Spray|All Natural Effective Treatment for Cat Allergies|Vet Recommend, Cruelty Free & Made in USA (16 oz)
Price: (as of – Details) Package Dimensions : 9.13 x 6.34 x 4.65 inches; 1.23 Pounds Item model number : 2032CATYHH Date First Available : May 1, 2023 Manufacturer : Your Healthy Home ASIN : B0BYG5TKYP WHAT’S IN IT| Plant based. No Dyes or fragrances. Non-Toxic so does not containe Zeolite, VOC free, no harsh chemicals, aerosols, tannic acid, parabens or phthalatesNO MORE…
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What Are Pharmaceutical Dyes: Different Types & Uses
Pharmaceutical Dyes play an important role in the Pharma industry. Pharmaceutical manufacturers use pharmaceutical dyes for a variety of medicine products, including capsules, tablets, pills, syrups, and ointments. The main objective of adding pharmaceutical dyes to pharmaceutical products is to improve the appearance and look of the product and distinguish it from the other ones for easy identification. Pharmaceutical Dyes are the most commonly used form of dye in different pharmaceutical and medicine fields.
The use of pharmaceutical dyes is also widespread as an indicator during surgeries. The combination of several ingredients works better in some situations than others, even though there are several combinations available for the purpose. Therefore, the importance of understanding them fully before choosing one cannot be overstated. Well! In this article, you will learn what pharmaceutical dyes are, including the different types of pharmaceutical dyes and their uses in the industry.
So, let’s get into it!
What are pharmaceutical dyes?
Pharmaceutical dyes refer to pharmaceutical colors that are certified and approved by the FDA for use in different pharmaceutical applications, including pills, tablets, capsules, syrups, ointments, and much more. Pharmaceutical manufacturers use these pharmaceutical dyes to improve the look & feel of their products and increase the ultimate palatable value more efficiently.
Types of Pharmaceutical Dyes
Following are different types of pharmaceutical dyes used for different applications in the pharmaceutical industry;
Sunset Yellow FCF
This azo dye, also known as sunset yellow FCF or orange yellow S, is derived from petroleum. Therefore, it is a petroleum-derived dye with a maximum absorption of 480nm at pH 1 and 443nm at pH 13. It is also called FD&C Yellow 6 when used on foods sold and marketed within the USA.
Use of Sunset Yellow FCF
Sunset yellow refers to a yellow-orange dye most commonly used in a comprehensive range of applications, including pharmaceuticals, foods, cosmetics, condoms, and cosmetics. In addition, it can also be used in snacks, desserts, candy, sauces, and preserved fruits. Moreover, a brown color is often achieved in chocolates and caramels using Sunset Yellow in combination with E123, amaranth.
Allura Red AC
Allura Red AC is a red azo dye, also known as FD&C Red 40 used in drugs, cosmetics, and foods. It is usually supplied as its red sodium salt, but can also be used as calcium and potassium salts, which are soluble in water. Water-soluble calcium and potassium salts of this substance are also available, but they are often supplied as red sodium salts. As a result of an azo coupling reaction, 5-amino-4-methoxy-2-toluenesulfonic acid is deazotized and coupled with 6-hydroxy-2-naphthalene sulfonic acid to form Allura Red, FD&C Red No. 40.
Use of Allura Red AC
The FDA has approved Allura Red AC for use in drugs, cosmetics, and food in the United States. There are a variety of food products & confectionery items that contain it, including cotton candy, soft drinks, cherry-flavored items, children's medicines, and dairy products. In addition, there are times when it is used for aesthetic purposes only, such as dyeing medicinal pills such as fexofenadine, an antihistamine. As a result of the negative health effects of erythrosine (Red 3) and amaranth (Red 2), it is the most commonly used red dye in the United States.
Brilliant Blue FCF
Brilliant blue FCF (Blue 1) is a synthetic organic compound approved for use in pharmaceuticals, dietary supplements, processed foods, and cosmetics. It is classified as a triarylmethane dye also called FD&C Blue No. 1 or Acid Blue 9. The FDA has approved it since the 1920s and generally considers it to be safe and non-toxic. There is a maximum absorption at about 628 nanometers, and it appears as a blue powder.
Use of Brilliant Blue FCF
Brilliant Blue FCF, also known as D&C Blue No. 2 is applicable for use in pharmaceutical applications such as children's medications. It is also widely popular for use in a broad range of applications, including ice cream, icings, packet soups, cotton candy, canned processed peas, ice pops, bottled food colorings, blueberry flavored products, dairy products, soft drinks, confectioneries, sweets. In addition, it can also be used in different shampoos, soaps, mouthwash, and various other hygiene and cosmetics applications.
Erythrosine
It is a derivative of fluorone, an organoiodine compound also known as D&C Red No. 3. The maximum absorbance of 2,4,5,7-tetraiodofluorescein in an aqueous solution is at 530 nm, and it degrades when exposed to light. Erythrosine is most commonly used to impart red color in the coating of some tablets.
Use of Erythrosine
Erythrosine dyes are often used in important staining, tracing, histopathology, and drug coloring, but they can also be used as chemotherapy agents. In addition, it can also be used as a dental plaque-disclosing agent, radiopaque medium, and biological stain. A growing knowledge base has also been developed concerning dye toxicity and mutagenicity thanks to modern applications of photosensitizers in light-activated therapies for cancer and infection. Erythrosine is widely popular for use in food & beverage products, including cake-decorating gels, candies, popsicles, sweets, and pistachio shells.
Tartrazine
This is a synthetic lemon yellow azo dye most commonly used in food, cosmetics, and drugs. It has E number E102, C.I. 19140, and is also known as FD&C Yellow 5, Yellow No. 5 Lake, Food Yellow 4, Acid Yellow 23, and trisodium 1-(4-sulfonatophenyl)-4-(4-sulfonatophenylazo)-5-pyrazolone-3-carboxylate).
Use of Tartrazine
Tartrazine (TRZ) is a lemon-yellow dye that is widespread for use in different cosmetics, pharmaceuticals, and foods. There are many shades of green that can be created using tartrazine. It is primarily used to produce yellow shade. FD&C Blue 1, E133, and green S (E142) are also often blended with tartrazine to make green shades (FCF blues).
Fast Green FCF
Fast Green FCF is a turquoise triarylmethane food dye, also known as FD&C Green No. 3, Food Green 3, Solid Green FCF, and Green 1724. The Fast Green FCF is preferable to the Light Green SF yellowish in Masson's Trichrome, as it is brighter and does not fade as easily. Histones are quantitatively stained with it after acid extraction of DNA at an alkaline pH, and proteins are electrophoretically stained with it.
Use of Fast Green FCF
The use of FD&C Green No.3 is widespread in drugs, foods, and cosmetics, with an aquamarine color. The FDA has approved it for safe use on foods, drugs, and cosmetics. However, it is banned in the European Union and some other countries. It's safe to put in tinned peas and vegetables, desserts, sauces, jelly, fish, and dry bakery mixes at a level of 100 mg per kilogram. There are seven main FDA-approved dyes in use in the United States. And Fast Green FCF is the least used dye within the USA.
Fluorescein
Fluorescein is also known as solvent yellow 94, D&C yellow no. 8, D&C yellow no. 7, Japan yellow 201, etc. Fluorescein is an organic dye belonging to the family of triarylmethine dyes based on the xanthene tricyclic motif. It is available in the form of a dark orange/red powder that is mildly soluble in both alcohol and water. In addition, Fluorescent tracers are widely used for a variety of applications.
Use of Fluorescein
A topical fluorescein solution is employed extensively in ophthalmology and optometry to diagnose corneal abrasions, corneal ulcers, and herpetic corneal infections using fluorescein sodium, the sodium salt of fluorescein. It is produced by brominating fluorescein with Eosin Y, a red dye. And the solution can also be used to check the tear layer underneath gas-permeable contact lenses. The single-use sterile sachets include lint-free paper applicators that are soaked in a fluorescein sodium solution.
Conclusion
Hence, pharmaceutical dyes have gained huge popularity due to their widespread use in different pharmaceutical applications. From adding colors to syrup, capsules, and certain medicines to coating tables, the use of pharmaceutical dyes is ever-growing from improving the appearance of products to making them easier to identify for patients and doctors with their colors.
If you are a pharmaceutical business looking for high-quality pharmaceutical dyes for your drug applications, Hridhan Chem is the right choice for your business. Hridhan Chem is a leading manufacturer and exporter of premium quality pharmaceutical dyes or pharmaceutical colors at the best prices. The company follows international standards and safety regulations like the U.S. FDA to produce top-quality pharmaceutical dyes with high-degree of purity, efficiency, and accuracy. If you’re interested in buying top-rated pharmaceutical dyes or colors that meet your unique pharmaceutical needs, please contact us today!
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Dodecanol Market | Industry Research, Segmentation, Key Players Analysis and Forecast to 2032
Dodecanol market value is anticipated to reach US$ 800 million in 2032, growing at a CAGR of 6% from 2022. According to the research, the market is projected to reach a US$ 335 million valuation in 2022. Dodecanol also called Lauryl alcohol or 1-dodecanol is classified as a fatty alcohol.
It is a colorless, tasteless solid with a floral smell. It is manufactured by hydrogenation of palm kernel or coconut oil fatty acids. The major use of dodecanol is as a chemical intermediate for the manufacture of dodecyl sulfate and dodecyl ethoxylated. Additionally, it is used as a vital raw material in the manufacture of surfactants.
It is also used in the manufacture of pharmaceuticals, lubricating oils, flavoring agents, and as an emollient among other. The primary driver for the dodecanol market is the growing personal care market. The emergence of products such as fabric softeners, skin care products, and fatty alcohol-based detergents is driving the market for dodecanol.
The growth of this market is significant in developing third-world countries, where the manufacturing bases are finding new ground. Dodecanol can be used in many forms such as alcohol ethoxylate and sulfates, which are used as wetting agents and emulsifiers in paints and coatings.
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The major players in the market of dodecanol are SIGMA-ALDRICH Corporation, Chemos GmbH, Merck Schuchardt OHG, Leap Labchem Co., Ltd, Jinan Haohua Industry Co., Ltd., AK Scientific, Inc., Santa Cruz Biotechnology, Inc., Haihang Industry Co., Ltd., East Chemical Industry Co., Ltd, Symrise AG, Magna-Kron Corp., Shanghai IS Chemical Technology Ltd., Seidler Chemical Co., Inc., CellMark USA, LLC, and Mosselman S.A among others.
This research report presents a comprehensive assessment of the market and contains thoughtful insights, facts, historical data, and statistically-supported and industry-validated market data and projections with a suitable set of assumptions and methodology. It provides analysis and information by categories such as market segments, regions, product types, and distribution channels.
Key Segments Profiled in the Dodecanol Industry Survey
Material Type:
Palm Kernel Oil
Coconut Oil
Methyl Esters
Application:
Solvent
Adhesive and Sealants
Industrial Fluids
Lubricating oil
Fuel Additive
Food Additives
Cosmetics
Hair Dyes
Soaps
Shampoo
Creams
Others
Agrochemicals
Insecticides
Pesticides
Others
Others
End-Use Industry:
Automotive
Agriculture
Personal & Beauty Care
Textile
Healthcare
Pulp & Paper
Construction
Oil & Gas
Others
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SOLVENT DYE- CHEMWORLD INTERNATIONAL
Solvent dye is soluble in an organic solvent, mainly used to impart color to different products, including solvents, waxes, and plastics. Hydrocarbon fuels and lubricants are some other leading applications of solvent dyes. In addition, there are solvent dyes explicitly meant for use in fuels. These dyes are insoluble in water. These solvent-soluble dyes are widely used across the coating and ink industry. Chemicals that can easily dissolve in other chemicals and form a solution are called solvents. They cannot, however, be dissolved in water. These dyes are completely soluble in organic solvents, which means they will not form a separate layer or residue. The ability of the dye to completely dissolve is important to achieve a consistent color.
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In addition, there are solvent dyes explicitly meant for use in fuels. These dyes are insoluble in water. These solvent-soluble dyes are widely used across the coating and ink industry. Chemicals that can easily dissolve in other chemicals and form a solution are called solvents. They cannot, however, be dissolved in water. These dyes are completely soluble in organic solvents, which means they will not form a separate layer or residue. The ability of the dye to completely dissolve is important to achieve a consistent color.
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Acid dyes manufacturers in India
Our company is the big name for all types of dyes service providers like acid dyes manufacturers in India, Basic Dyes For Paper, plastic dyes manufacturers in USA, and food color manufacturers in USA etc.
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Primary Types of Industrial Dyes and Pigments
Industrial dyes are quite often used in multiple industries these days; so is the case with pigments. If we talk about industrial dyes, they are basically coloring, ionizing, and aromatic compounds that are used in numerous applications across various industries. Dyes have the property to show an affinity towards the substrate. But, they should be used cautiously because some industrial dyes are toxic and carcinogenic in nature. Anyway, at present, dyes found their application in industries like plastic, cement, cosmetics, rubber, paper, textiles, medicine, to name a few. Some primary varieties of industrial dyes are mentioned under:
1) Digital Textile Printing Dyes: In digital printing, computer controlled ink-jet nozzles or charged drums are used. The physical surfaces over which the digital prints are reproduced include common paper, photographic paper, plastic, cloth, etc. The popular varieties of dyes used for this purpose are acid inks, disperse inks, reactive inks, and dye based inks.
2) Leather Dyes: Tanneries usually make use of around 50-100 different varieties of leather dyes. Each dye produces a diverse desired effect over the leather. The dyes used in this industry include direct, acid, mordant, reactive, and basic dyes, among others.
3) Optical Brighteners: Also known as optical agents, optical brighteners are the dyes that possess the attribute of absorbing the violet and ultraviolet region of the electromagnetic spectrum, which results in the prominent re-emission of light in the blue region. This dye is not suitable to be used in water (like in aquarium, etc.), due to its toxic nature.
4) Sublimation Dyes: These dyes primarily found their application in various types of printing. They can be found in several forms like inkjet inks, ribbons for thermal transfer, and toner for laser printers. Sublimation dyes are applied by the process called heat-transfer. Their main varieties include acid, disperse, vat, direct, and reactive.
Now, as you might have got some idea about the industrial dyes and their primary varieties, let's discuss about industrial pigments and their types. Pigments are basically the materials that make a modification in the color of the transmitted light owing to their attribute of selective absorption of the wavelength. The change in the transmission of light varies with fluorescence, phosphorescence, as well as with other forms of luminescence, in which a material emits light. Pigments are generally used in inks, coloring paints, cosmetics, eatables, etc. Nowadays there are various types of pigments available in the market, out of which some primary types of pigments are given under:
1) CLC Pigments: Cholesteric Liquid Crystal (CLC) pigments are made from CLC films. These pigments are nowadays increasingly used in security machines and also as an impediment to the counterfeit of currency notes, legal documents, etc.
2) Fluorescent Pigments: These pigments have the quality of changing the ultraviolet light into the desired color. They form the vital element of any kind of fluorescent material. The fluorescent pigments are mostly used in textile field, solvent based paper coating, and paints and aerosol coating.
3) Organic Pigments: Organic pigments consist of solid particles and they are insoluble in the application medium. There are two basic varieties of these pigments, namely natural and synthetic. Organic pigments are generally used for coloring or coating purposes (both decorative and protective) on plastics, candles, paper, rubber materials, pharmaceuticals, etc.
4) Ultramarine Pigments: They are a kind of inorganic pigments, which are non-poisonous and non-irritating in nature. They are also one of the oldest varieties of pigments. They have two basic types, viz., ultramarine blue and ultramarine violet. Ultramarine pigments found their application in coating, coloring, printing inks, cosmetics, and artist colors.
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