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Organic Chemicals Supplier Chennai: You’re Partner in Trusted quality chemicals
The markets for specialized chemicals required for different applications are growing in Chennai where the industrial and commercial sectors are blossoming. In particular, organic chemicals are vital components used for manufacturing, pharmaceuticals, agriculture or research. This means that there is a lot of difference in finding a reliable organic chemicals supplier in Chennai that can make businesses operate efficiently and sustainably.
What Are Organic Chemicals?
Organic chemicals are chemical compounds containing hydrogen and carbon atoms–plus other elements, such as oxygen, nitrogen, or sulphur. Because these chemicals are versatile and functional, they have become the building blocks of many industrial processes. From solvents and dyes to pharmaceuticals and agrochemicals, organic compounds find applications in diverse areas, including:
Pharmaceuticals: Application as intermediates in active pharmaceutical ingredients (APIs) and used in drug formulation and synthesis.
Agriculture: Most important for fertilizer, pesticide and herbicide production to boost crop yield.
Textiles and Dyes: For the creation of vivid, long lasting colour for fabrics and materials, used.
Cosmetics and Personal Care: Are included in skincare products, perfumes, and toiletries to add extra function and/or efficacy.
Research and Development: Chemical analysis and synthesis of new compounds used widely in lab, experimentation.
Which is Why to Choose an Organic Chemicals Supplier in Chennai?
As an industrial hub, Chennai is a hub of various chemical suppliers supplying its products locally and internationally. Here are some reasons to choose an organic chemicals supplier in Chennai:
Diverse Product Portfolio: In Chennai, suppliers furnish a wide spectrum of organic chemicals – from simple solvents to complex compounds – according to industry requirements.
Commitment to Quality: To conduct their business, trusted suppliers must adhere to rigorous quality control processes to be sure their products are stars to perhaps the most difficult international standards and certifications.
Cost-Effective Solutions: Chennai suppliers offer competitive pricing and a flexible purchase option which make them a preferred choice for large as well as small businesses.
Timely Deliveries: Due to established distribution network these suppliers guarantee timely delivery including bulk orders.
Sustainable Practices: Many suppliers practice use eco-friendly substances so that the production methods are eco-friendly also.
Choose a Supplier— Key Factors to Consider
It is very important to select the right organic chemicals supplier in Chennai for success of your operations. Here are some factors to consider:
Reputation and Reliability: Seek suppliers with positive reviews, testimonials, a tested reputation of providing high quality products and more.
Certifications: Make sure that the supplier’s products comply with industry standards and are certified to ISO or REACH, etc.
Technical Expertise: Having a knowledgeable supplier team delivers insightful, programmatic recommendations to get the most out of your chemical usage.
Customer Support: Select a supplier that gives you their attention in providing customer service and post purchase assistance.
Sustainability Initiatives: Recommendation for purchasing agents: Exert purchasing power only towards suppliers who are promoting green chemistry as well as sustainable production practices.
This is a study about Chennai’s Industries Applications of Organic Chemicals.
Organic chemicals have thus become a critical element for Chennai to retain its competitive edge, given the diversity of productive industries based in the city. For instance:
Organic chemicals are used by pharmaceutical companies to develop and manufacture lifesaving drugs.
These chemicals are crucial to pest control and soil enrichment for many agricultural firms.
Organic compounds are incorporated in manufacturing units that produce adhesives, coatings, and plastics.
Specialized chemicals are utilized in temples of innovation and development.
Conclusion
For businesses that are looking to become efficient, sustainable and compliant with the industry standards it is imperative to find a dependable organic chemicals supplier Chennai. Partnering with a reliable supplier gives companies access to high quality chemicals, technical support and green solution tailored for their needs. With the evolution of industries, the part played by organic chemical suppliers in the growth of Chennai's economy will also be indispensable.
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Global Sodium Hydrosulfide Market
Global Sodium Hydrosulfide Market Size, Trends & Growth Opportunity, By Type, By Technology, By Application, By Region and Forecast till 2030
Global Sodium Hydrosulfide Market
Sodium Hydrosulfide is defined as chemical compound which obtained as a product in the half neutralization reaction between hydrogen sulfide and sodium hydroxide. This is a yellow solid with the smells similar to H2S. NaHS is a chemical formula of sodium hydrosulfide. It is used as tanning agent in leather industry as well as makeup for sulfur in the paper and pulp industry, and water treatment.
The increase in need for clean water is considered as key driving factor which is expected to boost the global sodium hydrosulfide market growth over the forecast period. Sodium hydrosulfide is one of the compounds used in water treatment and it has a high demand from countries across the globe which is expected to significantly drive the global sodium hydrosulfide market growth during this forecast timeline. Also, the increase in adoption of sodium hydrosulfide in paper and pulp manufacturing anticipated to fuel the market growth. Sodiun hydrosulfide is an alkaline product which plays an important role in numerous industrial process including, dyes and agricultural chemicals. This is also a key constituent in numerous industrial methods concerning sulphur necessities as it is a low cost and less toxic alternative to sulphur, which is expected to positively influence the market.
High manufacturing cost and complex manufacturing processes for sodium hydrosulfide are anticipated to hinder the global sodium hydrosulfide market growth during this timeframe.
Market Segmentation
The Global Sodium Hydrosulfide Market is segmented into form such as Flakes, and Liquid, by grade such as Technical Grade, and Purified Grade. Further, market is segmented into application such as Paper & Pulp, Tanneries, Mining, Chemical Processing, and Others.
Also, the Global Sodium Hydrosulfide Market is segmented into five regions such as North America, Latin America, Europe, Asia Pacific, and Middle East & Africa.
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Market Key Players
Various key players are discussed in this report such as Solvay S.A., Genesis Energy, Chemical Products Corporation, Cayman Chemicals, AkzoNobel, Henan Tianshui Chemical Co., Prasol Chemical Pvt Ltd., Central Drug House, Merck & Millipore, Nilkanth Organics, Etc.
Market Taxonomy
By Form
Flakes
Liquid
By Grade
Technical Grade
Purified Grade
By Application
Paper & Pulp
Tanneries
Mining
Chemical Processing
Others
By Region
North America
Latin America
Europe
Asia Pacific
Middle East & Africa
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Canada Organic Light-Emitting Diode (Oled) Market 2023 "A brief regionwise review of size, share, trends, growth, etc."
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Canada Cassava Market 2023 Thriving at a TremendoCanada Growth
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Sulphur Dyes Market Strategic Insights and key Business Influencing Factors | Major Players – Archroma, Nippon Kayaku Co.,Ltd., Atul Ltd, Bhanu Dyes Pvt. Ltd., Apex Industries.
Sulphur Dyes Market are the dyes which are used for the production of the bright black and brown shade on cellulosic fiber products. This chemical is usually used for both printing and dying procedures. They are not costly and are very easy to apply and use. Leuco sulfer dyes, solubilized Sulphur Dyes Market and condensed Sulphur Dyes Market are some of the most common types of Sulphur Dyes Market. These dyes are widely used in the industries like paints and coatings, paper, ceramics etc. Increasing usage of Sulphur Dyes Market in textile industry is fuelling the growth of this market.
Global Sulphur Dyes Market market is set to witness a substantial CAGR in the forecast period of 2019- 2026. The data contains data of the base year 2018 and historic year 2017. Increasing usage of the Sulphur Dyes Market in various applications is the major factor for the growth of this market.
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Competitive Analysis: Global Chromatography Resin Market
Few of the major competitors currently working in global Sulphur Dyes Market market are cncolorchem.com Qingdao Sanhuan Colorchem CO.,LTD, Venus Dye Chem, www.sulphurdyes.com, Sinochem Tianjin Co.,Ltd., Archroma, Nippon Kayaku Co.,Ltd., Atul Ltd, Bhanu Dyes Pvt. Ltd., Apex Industries, APCO DYE CHEM PVT. LTD., SF Dyes, DS Dyes And Chemicals., pdindustries, Chemolin Chemicals., Jay Chemical Industries Ltd. APCO DYE CHEM PVT. LTD., M. P. Shah, Shankar Lal Rampal Dye Chem Limited, Saraswati Dye Chem Works among others.
Key Pointers Covered in the Global Sulphur Dyes Market Trends and Forecast to 2026
Global Sulphur Dyes Market New Sales Volumes
Global Chromatography Resin Market Replacement Sales Volumes
Global Sulphur Dyes Market Installed Base
Global Sulphur Dyes Market By Brands
Global Sulphur Dyes Market Size
Global Chromatography Resin Market Procedure Volumes
Global Sulphur Dyes Market Product Price Analysis
Global Sulphur Dyes Market Healthcare Outcomes
Global Sulphur Dyes Market Cost of Care Analysis
Global Sulphur Dyes Market Regulatory Framework and Changes
Global Sulphur Dyes Market Prices and Reimbursement Analysis
Global Sulphur Dyes Market Shares in Different Regions
Recent Developments for Global Sulphur Dyes Market Competitors
Global Sulphur Dyes Market Upcoming Applications
Global Sulphur Dyes Market Innovators Study
Get Detailed TOC:
https://www.databridgemarketresearch.com/toc/?dbmr=global-sulphur-dyes-market
Key Developments in the Market:
In July 2019, Archroma announced the launch of their new liquid sulphur blue dye Diresul Smartdenim Blue which is specially designed so they can act as indigo. This new product will complete their spectrum of eco-advanced denim coloration solutions. It is a liquid indigo in elegant neutral green blue tone and can be used in common wash down techniques. They can be done in different dyeing method of sulfur dyes
In May 2016, DyStar LP announced that they have acquired five (5) specialty chemical units (the Specialties, Polymer Additives, and Nitriles business groups) of Emerald Performance Materials LLC. The main aim of the acquisition is strengthen the DyStar LP in the chemical industry and expand their business worldwide and generate revenue
Scope of the Chromatography Resin Market
Global Sulphur Dyes Market By Form (Granular, Powder, Liquid, Pre-Reduced Powders, Dispersed Pastes, Others), Color (Black, Brown, Blue, Green, Red, Others), Type (Leuco Sulfer Dyes, Condensed Sulfur Dyes, Solubilized Sulfur Dyes, Others), Application (Textile, Leather Processing, Paints and Coatings, Plastic, Paper, Printing Ink, Ceramics, Others), Geography (North America, South America, Europe, Asia-Pacific, Middle East and Africa) – Industry Trends and Forecast to 2026
Global Sulphur Dyes Market market is set to witness a substantial CAGR in the forecast period of 2019- 2026. The data contains data of the base year 2018 and historic year 2017. Increasing usage of the Sulphur Dyes Market in various applications is the major factor for the growth of this market.
Sulphur Dyes Market are the dyes which are used for the production of the bright black and brown shade on cellulosic fiber products. This chemical is usually used for both printing and dying procedures. They are not costly and are very easy to apply and use. Leuco sulfer dyes, solubilized Sulphur Dyes Market and condensed Sulphur Dyes Market are some of the most common types of Sulphur Dyes Market. These dyes are widely used in the industries like paints and coatings, paper, ceramics etc. Increasing usage of Sulphur Dyes Market in textile industry is fuelling the growth of this market.
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Key insights in the report:
Complete and distinct analysis of the market drivers and restraints
Key Market players involved in this industry
Detailed analysis of the Market Segmentation
Competitive analysis of the key players involved
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#Sulphur Dyes Market#Sulphur Dyes Market share#Sulphur Dyes Market forecast#Sulphur Dyes Market growth#Sulphur Dyes Market news#Sulphur Dyes Market report#Sulphur Dyes Market research
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What Are Ferro Vanadium and its uses?
Ferro Vanadium is an alloy made by mixing iron with vanadium, with a vanadium concentration ranging from 35% to 85%. Ferro Vanadium is a universal hardener, strengthening, and anti-corrosive addition for steels such as high-strength low-alloy (HSLA) steel, tool steels, and other ferrous-based goods. Ferro Vanadium was originally employed in the construction of the Ford Model T and is being used in the vehicle industry today.
Ferro chrome vanadium properties:
As an addition to the ferrous metals manufacturing process, ferro vanadium imparts various desired qualities to the ensuing new compound. One of the key advantages of using Ferro Vanadium in an alloy is its resistance to alkalis, sulphuric and hydrochloric acids. Furthermore, adding Ferro Vanadium to an alloy can make a steel product less prone to corrosion of any kind. Ferro Vanadium is also utilized to lighten a material while boosting its tensile strength.
When combined with aluminum and titanium, it forms a strong alloy that can be used in applications such as dental implants and jet engines. Because of their low neutron absorbency, these alloys are also employed to construct nuclear reactors.
Vanadium compounds are used in a variety of industries. Vanadium pentoxide is used as a mordant (a chemical that aids in the permanent bonding of dyes to fabrics), as a catalyst in chemical reactions, and in the production of ceramics. Vanadium compounds are also utilized as catalysts in the production of sulfuric acid and polyamides such as nylon, as well as in the oxidation of a variety of organic molecules such as ethanol to acetaldehyde and sugar to oxalic acid.
SPECIFICATION:-
● V : 50% min / 75 % min
Vanadium is an essential byproduct that is almost entirely employed in ferrous and non-ferrous alloys due to its physical qualities such as high tensile strength, hardness, and fatigue resistance. Vanadium use in the iron and steel sector accounts for approximately 85 percent of all vanadium-bearing goods produced worldwide. Vanadium is used in a variety of alloys with iron, titanium, nickel, aluminum, chromium, and other metals for a wide range of commercial uses ranging from railway rails to tool steels to catalysts to aerospace. Primary sources of vanadium include ore feedstock, concentrates, metallurgical slags, and petroleum wastes.
Market Size In 2022:
Growing Global Urbanization, Increased Chemical and Material Sales, Multinational Companies, Local Retailers, and Supply Chains can all fuel growth in the "Ferro Vanadium Market" over the forecasted period of 2022-2028. This Global Ferro Vanadium Market study includes in-depth data on the most recent industry and its framework. The report's data and statistics are supplemented by well-known analysis methodologies such as SWOT analysis and Porter's Five Forces analysis. This report's market research is extremely extensive, allowing businesses to make better decisions and establish better strategies in production, marketing, sales, and promotion. This Ferro Vanadium Market Report's primary chapters are accurately and specifically expanded market definitions, market segmentation, important market trends, competitive analysis, and research techniques. To achieve a competitive advantage, it is critical to grasp your competitor's core business strategy, past performance, and portfolio of competitors' products and services. This research includes in-depth analysis of the world's main businesses in the Ferro Vanadium Market.
Vardhman Ferro Alloy is a leading importer, exporter and Supplier of all ferrous and non-ferrous metals. We have the right product for the right requirement and at the right price, rather than a mere supplier of the product we take utmost efforts in understanding the client’s requirement, identifying the right product at the right price.
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Ferrous Chloride Solution Market Size Analysis by Growth, Emerging Trends and Future Opportunities.
Ferrous chloride is a greenish white crystalline solid. It is noncombustible. Ferrous Chloride Solution is the solution with Ferrous chloride and water, which is used in sewage treatment, in dyeing of fabrics, and many other uses.
Based on the Ferrous Chloride Solution market development status, competitive landscape and development model in different regions of the world, this report is dedicated to providing niche markets, potential risks and comprehensive competitive strategy analysis in different fields. From the competitive advantages of different types of products and services, the development opportunities and consumption characteristics and structure analysis of the downstream application fields are all analyzed in detail. To Boost Growth during the epidemic era, this report analyzes in detail for the potential risks and opportunities which can be focused on.
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Key players in the global Ferrous Chloride Solution market covered :
BASF Gulbrandsen Philbro-Tech Longxiang Chemical Da’an Fine Chemical Kunbao Chemical Haixin Chemical PVS Chemicals AkzoNobel Industrial Chemicals CNSG Anhui Hong Sifang Chemifloc Malay Sino Chemical Industries Feralco Group Basic Chemical Industries SIDRA Wasserchemie Saf Sulphur Zhongzheng Chemical Si Ruier Environmental echemical BorsodChem Sukha Chemical Industries Tessenderlo Kemira
the basis of types, the Ferrous Chloride Solution market from 2015 to 2025 is primarily split into:
Industrial grade Pharmaceutical grade
the basis of applications, the Ferrous Chloride Solution market from 2015 to 2025 covers:
Water and Sewage Treatment Industry Metal Surface Treatment Industry PCB Industry Pigment Industry Others
Geographically, the detailed analysis of consumption, revenue, market share and growth rate, historic and forecast :
North America
United States
Canada
Mexico
Europe
Germany
UK
France
Italy
Spain
Russia
Others
Asia-Pacific
China
Japan
South Korea
Australia
India
South America
Brazil
Argentina
Columbia
Middle East and Africa
UAE
Egypt
South Africa
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#Ferrous Chloride Solution 2022#Ferrous Chloride Solution players#Ferrous Chloride Solution Applications#Ferrous Chloride Solution types#Ferrous Chloride Solution
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Global Sulphuric Acid Market : In-Depth Players Analysis, Industry Trends, Share Estimation, Global Growth, Future Investments, Forecast till 2027
Sulphuric Acid is one of the crucial industrial chemicals, which is widely used in a range of industries. It is available as a colorless oily substance, which is involved in the production of commercially viable chemicals such as hydrochloric acid, synthetic detergents, dyes, pigments, and explosives. It is one of the crucial industrial chemical, which are widely used in a range of industries. Growing concerns about high crop yield from the agricultural sector is expected to drive the demand for fertilizers, which would support the Sulphuric Acid market. In addition, it is used in processing of minerals, wastewater treatment, and oil refining. It is also used in the production of phosphoric acid which in turn is used to produce phosphate fertilizer.
Global Market Overview
The global Sulphuric acid market, which grew from US$X.X billion in 2015 to US$ X.X billion in 2019, dropped marginally to US$X.X billion in 2020, due to the ongoing COVID-19 pandemic. Spending is expected to recover in 2021 to value US$X.X billion and increase to US$X.X billion in 2026 at a CAGR of X.X%. Cumulatively the market is expected to value US$X.X billion during the forecast period as compared to US$X.X billion during the historical period.
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Regional Market Overview
The APAC region is expected to account for a majority of Sulphuric acid demand over the forecast period, with the market expected to cumulatively value US$X.XX billion over the forecast period. Europe is expected to be the second largest with a total value of US$X.XX billion, followed by North America (US$X.XX billion), Middle east & Africa (US$X.XX billion) and South America (US$X.XX billion).
End-use Industry in Regional Markets
The APAC market for Sulphuric acid used in the Fertilizers end use, which grew from US$X.XX billion in 2015 to US$X.XX billion in 2019, dropped marginally to US$X.XX billion in 2020, due to the ongoing COVID-19 pandemic. Spending is expected to recover in 2021 to value US$X.XX billion and increase to US$X.XX billion in 2026 at a CAGR of X.XX%. Cumulatively the market is expected to value US$X.XX billion during the forecast period as compared to US$X.XX billion during the historical period.
Key Markets Overview
China is the leading Sulphuric acid market. Consolidation between medium and large Sulphuric acid manufacturers is expected as the Chinese government has been encouraging industry consolidation to enhance competitiveness in the world market.
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Competitive Landscape
The global sulfuric acid market is fragmented with players accounting for a marginal share of the market. Few companies include KMG Chemicals, INEOS, PhosAgro Group of Companies, Aurubis AG, Nouryon
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Disodium sulfate Market garner US$2.62 Mn by 2025
Sodium sulfate, commonly called as soda of sulfate, typically is found in a crystalline form. It is mainly used in large quantities in several consumer and industrial applications. It is generally obtained by processing mirabilite salt. Artificial sodium sulfate is manufactured by using lithium batteries and other artificial processes. It is manufactured across the globe in large quantities in order to cater to the growing demand from a variety of end user application industries such as carpet cleaners, glass, textiles, kraft pulping, and detergents among others.
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Over half of the total volume of produced sodium sulfate is consumed in the detergent industry. This is because sodium sulfate is used as a filler material in such detergents. Cheap price of the raw materials is the key factor that is helping to drive the overall demand for global sodium sulfate in the detergent industry. In commercial sense, sodium sulfate is deployed as a dyeing agent. Sodium sulfate lowers the negative charges of fabrics. Thus, the dyeing process becomes easier and effective. This, in turns, drives the application of sodium sulfate in the textiles industry. Growth of the global textiles industry is boosting the usage of sodium sulfate as a dyeing agent. Furthermore, sodium sulfate is employed in the glass manufacturing process. It is used as fining agent in the manufacture of scum-proof glass. Demand for dust or scum-proof glass is driven by the growth in automotive and infrastructure sectors. Sodium sulfate is also used to convert wood into pulp for paper manufacturing.
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During the outbreak of COVID-19 pandemic, the global sodium sulfate market struggled initially. The struggles were mainly because of the restrictions placed on logistics, transport, and manufacturing. However, with governments deeming detergents and other key application products as essential for survival during the lockdown, the demand increased steadily. The market is expected to witness a steady demand in the upcoming year with higher growth rate expected by the second half of 2021.
Global Sodium Sulfate Market: Overview
The global sodium sulfate market is fragmented in nature on account of the presence of numerous global and local players. The market is being primarily driven by the soap and detergent industry. Apart from that, an ever-growing automotive and construction industry is also serving to catalyze growth in the market by driving demand for glass, which requires sodium sulfate as a fluxing agent in glass refining.
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Hampering demand in the sodium sulfate market, on the flipside, is the emergence of substitute compounds such as zeolites, sodium silicates, emulsified sulphur and caustic soda, and sodium carbonate (soda ash) in various end-use industries.
A report by Transparency Market Research predicts the global sodium sulfate market to attain a value of US$2.62 bn by 2025 from US$1.89 bn in 2016 by rising at a CAGR of 3.8% from 2017 to 2025.
Natural Sodium Sulfate Dominates Market
Sources of sodium sulfate can be broadly divided into synthetic and natural. At present, about half the sodium sulfate in the world is produced from natural mines and the remaining half is recovered from industrial processes. Current reserves of natural sodium sulfate are sufficient to satisfy the required demand for several centuries because of the current rate of production. Between the two, sodium sulfate derived from natural sources dominates the market with a leading share both in terms of volume and value. In the years ahead too, the segment is expected to hold on to its leading share by expanding at a CAGR of 4% during period from 2017 to 2025.
Sodium sulfate finds application in making soaps and detergents, kraft pulping, textiles, glass, carpet cleaners, and others such as food preservatives, oil recovery, etc. Of them, the detergent and soaps, in which sodium sulfate is used as a diluting agent and fillers, generate maximum demand. However, the demand has begun to decline due to the trend towards concentrated liquid detergents instead of bulkier powder formulations.
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Powered by Record Consumption in China, Asia Pacific Leads Market
From a geographical standpoint, Asia Pacific runs the show on both counts of size and growth rate. In 2016, it held about half the share in the market and in the years ahead too is predicted to retain its dominant share. The market in the region is being driven primarily by China, which surpasses all other countries in terms of sodium sulfate consumption. This is also because of the cheaper cost of sodium sulfur in the nation on account of lower manufacturing costs resulting from abundance of labor and expanding end-use industries. By registering the maximum CAGR of 4.0% in the forecast period, the region is projected to grow its revenue to US$1.55 bn.
In terms of growth rate, Latin America is another key region that is expected to outshine North America and Europe in the next couple of years, on the back of Mexico, which has enormous reserves of sodium sulfate. The market in Europe and North America is expected to rise a slower pace – a CAGR of 3.3% and 3.0%, respectively – due to liquid detergents supplanting powder detergents at a rapid pace.
Alkim Alkali Kimya A.S., Birla Cellulose, Cordenka GmbH & Co. KG, Cooper Natural Resources, Elementis plc, Lenzing Group, Minera De Santa Marta, S.A., Searles Valley Minerals, Saskatchewan Mining and Minerals Inc., Grupo Industrial Crimidesa S.L., Soda? Sodium Sanayii Anonim Sirketi, and XinLi Chemical are to name a few prominent participants in the global sodium sulfate market.
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Sulfuric Acid Market by Type (Dilute Sulphuric Acid, Battery Acid, Concentrated Sulphuric Acid, and Chamber Acid), Raw Material (Pyrite Ore, Elemental Sulfur, Base Metal Smelters and Others), Application
1. The Sulfuric Acid Growth market is expected to witness market growth at a rate of 2.58% in the forecast period of 2021 to 2028.
2. The Sulfuric Acid Market Scope and Size
On the basis of type, the sulfuric acid market is segmented into dilute sulphuric acid, battery acid, concentrated sulphuric acid, and chamber acid.
On the basis of raw material, the sulfuric acid market is segmented into pyrite ore, elemental sulfur, base metal smelters and others.
On the basis of application, the sulfuric acid market is segmented into fertilizers, pulp and paper, chemical manufacturing, metal processing, automotive battery acid, petroleum refining, textile industry and others.
On the basis of manufacturing process, the sulfuric acid market is segmented into single contact process, wet contact process, wet sulfuric, lead chamber process and acid process
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3. Sulfuric Acid Market Country Level Analysis
The countries covered in the sulfuric acid market report are the U.S., Canada and Mexico in North America, Germany, France, U.K., Netherlands, Switzerland, Belgium, Russia, Italy, Spain, Turkey, Rest of Europe in Europe, China, Japan, India, South Korea, Singapore, Malaysia, Australia, Thailand, Indonesia, Philippines, Rest of Asia-Pacific (APAC) in the Asia-Pacific (APAC), Saudi Arabia, U.A.E, Israel, Egypt, South Africa, Rest of Middle East and Africa (MEA) as a part of Middle East and Africa (MEA), Brazil, Argentina and Rest of South America as part of South America.
By employing definite steps to collect, record, and analyse market data, Sulfuric Acid market research report has been prepared. In addition to detailing about competitive landscape of the key players, this report also offers complete and distinct analysis of the market drivers and restraints, detailed analysis of the market segmentation, key developments in the market and details of research methodology. This market report helps uncover the general market conditions and tendencies. An excellent Sulfuric Acid market study analyzes the market status, market share, growth rate, future trends, market drivers, opportunities and challenges, risks and entry barriers, sales channels, and distributors.
4. Market Analysis and Insights – Global Sulfuric Acid Market
The molecular formula for sulfuric acid is ‘H2SO4. It is known to be a strong mineral acid with high corrosive capabilities. Sulfuric acid is a sticky liquid that is soluble in water and the color fluctuates from yellow to colorless, which varies upon its concentration. The sulfuric acid is applied in the production of commercially essential chemicals such as hydrochloric acid, nitric acid, sulfate salts, synthetic detergents, dyes, pigments, explosives, drugs and so forth.
This sulfuric acid market report provides details of new recent developments, trade regulations, import export analysis, production analysis, value chain optimization, market share, impact of domestic and localised market players, analyses opportunities in terms of emerging revenue pockets, changes in market regulations, strategic market growth analysis, market size, category market growths, application niches and dominance, product approvals, product launches, geographical expansions, technological innovations in the market. To gain more info on the sulfuric acid market contact Data Bridge Market Research for an Analyst Brief, our team will help you take an informed market decision to achieve market growth.
5. Sulfuric Acid Market Share Analysis
The Details analysis include company overview, company financials, revenue generated, market potential, investment in research and development, new market initiatives, global presence, production sites and facilities, production capacities, company strengths and weakness, product launch, product width and breadth, application dominance.
6. Key Players Sulfuric Acid Market
Mosaic
Potashcorp
Groupe Chimique Tunisien Sa
Maaden – Saudi Arabian Mining Company
OCP Group
Phosagro
BASF SE
Chemtrade Logistics Income Fund
7. MAJOR TOC OF THE REPORT
Chapter One: Introduction
Chapter Two: Sulfuric Acid Market Segmentation
Chapter Three: Sulfuric Acid Market Overview
Chapter Four: Executive Summary
Chapter Five: Premium Insights
Chapter Six: Global Sulfuric Acid Market by Product & Procedure type
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8. Key Report Highlights
Comprehensive pricing analysis based on different product types and regional segments
Market size data in terms of revenue and sales volume
Deep insights about regulatory and investment scenarios of the global Sulfuric Acid Market
Analysis of market effect factors and their impact on the forecast and outlook of the global Sulfuric Acid Market
The detailed assessment of the vendor landscape and leading companies to help understand the level of competition in the global Sulfuric Acid Market
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Juniper Publishers-Open Access Journal of Environmental Sciences & Natural Resources
The Metabolic Route of Degradation of the Vat Dye Sulfur Blue Brn and Corresponding Ecotoxic Effect
Authored by Jai S Ghosh
Abstract
The dyes are a part of everybody’s life. These are mostly used to color textile, food, paper and as paint. Previously dyes from natural sources were mostly commonly used but with the advances of synthetic chemical sciences, the synthetic dye is a growing industry along with its widespread application. This has resulted in generation of large quantity of colored effluent having different ecotoxic effects. Of all the dyes the insoluble vat dyes are highly toxic as they tend to accumulate in the environment thus causing imbalance in the biodiversity. This investigation deals with one such vat dye sulphur blue BRN which is used in place of indigo to color jeans. The microorganism Pseudomonas has been found to carry out the degradation thus detoxifying it as exemplified in the mitotic index results of meristematic cells of Allium cepa. The hypothetical metabolic route for degradation is derived from Infrared spectroscopic data as well as GCMS data.
Keywords:Vat Dyes; Pseudomonas; Ecotoxicityl; Sulfur Blue Brn; Biodiversity
Introduction
Color is a part of every living organism’s life [1]. It is therefore, a very important part of human life too [2]. Before the industrial revolution natural dyes were widely used for coloring food, clothing and shelter [3]. These were mainly obtained from different plant materials. As time progressed alternative sources of dyes were being searched and with advances in synthetic chemical sciences, artificial dyes were discovered [4]. This was very significant development of the industrial revolution in the world, especially in the manufacture of vibrant colored fabrics for clothing thereby increasing their market value [5]. Such synthetic chemical dyes had considerable reduced cost [5] and people started to use these indiscriminately, resulting in different toxic effects in the environment as many of these were either recalcitrants or slow biodegradable compounds [6].
Textile industry is therefore, considered today to be the largest users of synthetic dyes [7]. In fact only 5 to 10 percent of the dye is fixed on the fabrics and the remaining enters the effluent from these industries [8]. Similarly the next big user of dyes are the food processing industries, packaging material industry followed by the paper and pulp industry, the paint industry etc. If these colored effluents are not treated before being discharged into the environment, then these may show anything from genotoxic effects on living organisms to interfering with penetration of sunlight into fresh water bodies thus changing the biodiversity right from the planktonic level [8]. Such ecotoxic effects, gave rise to the search for methods for detoxifying the effects of such synthetic dyes. These studies primarily aimed at decolorizing the dyes that is remediation of the chromophore groups in particular. There are chemical methods which are developed in this direction of research [9]. However, these have been found to give rise to secondary pollutants. The remediation of these secondary pollutants added to the cost of effluent treatment which many of the industries were reluctant to invest. Finally as of date, there is considerable interest in biological methods of remediation, which are broadly classified as either phytoremediation (using plant material) or microbial remediation (where the metabolism of certain microbes is exploited for the purpose) [10].
The second important aspect of such bioremediation is to classify these dyes in various groups [11]. The two main groups of the dyes that are usually the major pollutants are the azo dyes and the vat dyes. The bioremediation of azo dyes have been and are being extensively studied because these dyes are soluble in water at neutral or near neutral pH values [11]. On the other hand there are very few reports of bioremediation of vat dyes as these are usually insoluble in water or soluble at alkaline pH values. At neutral or near neutral pH values they usually remain as sediment in the environment and tend to accumulate in the environment [11]. In this study, bioremediation of one such vat dye, sulfur blue BRN has been studied (Figure 1).
This dye is usually used as a alternative to indigo which is used to color jeans. Indigo is extracted from the plant Indigofera tinctoria [12]. Again the prohibitive cost of this natural dye has made alternative synthetic compounds more affordable to the industry as well as to the consumers.
Materials and Methods
The Microorganism Used
Here the specific identification of the microorganism was not of primary interest. Generic level identification was more than sufficient. The medium used had the following composition: Tryptone 1%; NaCl 0.5%; Yeast extract 0.01% at pH 8.5. The dye was added at different concentration like 2 ppm, 4ppm, 6ppm and 8 ppm separately. At 10ppm and more it was found to be inhibitory. The untreated effluent was collected from a local textile industry using the dye. The effluent was added at 1% (v/v) level and the flasks were incubated at 28 oC to 30 oC for 5 days on a rotary shaker at 150rpm. After the incubation the growth was placed on solid medium of the same composition containing 4ppm of the dye. The isolated colonies were identified using Bergey’s manual of determinative bacteriology [13] and maintained on the same solid medium by serial transfer
Dye Degradation Studies
The studies were carried out in minimal liquid medium (peptone 1%; NaCl 0.5%, Urea 0.5% and glucose 0.5% at pH 8.5) and the dye was added at 4ppm level unless otherwise stated. The inoculum was added at 1% (v/v) of a suspension of absorbance 0.4 at 550 nm. Incubation was carried out for 24hrs to 48 hrs on a rotary shaker of speed 150 rpm. Visual decolourization was first observed followed by detailed analysis.
Detailed analysis of the degraded product. Degradation was confirmed by Infra Red Spectroscopic studies. This was followed by GCMS studies after extraction with methanol. The extracts of cell-free medium were analyzed by GCMS (Trace GC ultra Polaris Q Technologies), equipped with a DB-530-m fused silica capillary column (0.25mm, i.d. and 0.25 μm film thickness), and attached to a mass spectrophotometer. Samples were injected in splitless mode at 50 °C. The column was maintained at 50 °C for an initial 1.5 min, followed by heating at 140 °C, then to 210 °C and finally to 250 °C. Helium was used as carrier gas.
Ecotoxic pattern of Sulfue Blue BRN and its degraded product
This experiment was carried out using the mitotic index results of the meristematic cells of Allium cepa root tip [14].
Results and Discussion
Since this investigation was limited to find out the mechanism of degradation of the vat dye sulfur blue BRN, no attempts were made to optimize different parameters for maximum degradation. The organism isolated belonged to the genus Pseudomonas as seen from the tests as per Bergeys manual 9th edition [13], which did not show any pigmentation. Also no efforts were made to carry out the species level identification as the strain showed high degree of similarity with the non pigmenting identified strain available in the laboratory (Pseudomonas aeruginosa NCIM 2112).
The results of Infra red spectroscopic studies of the original dye molecule and those of the degraded product are shown in Figure 2. It can be seen from the figure that many of the functional in the original dye molecules has disappeared and certain new functional groups have reappeared. The best example is that a large peak is seen around 3333cm 1 indicating the formation of amine group. This is a stretched peak (Figures 2a & 2b).
Likewise when sees the GCMS peaks in Figure 3 then one gets to see 2 major peaks of m/z at 147 and 207 as shown below: This concurs with the IR spectroscopic data. Finally the ecotoxic effect as observed showed the undegraded dye in the uninoculated medium was having a mitotic index of 88% (such high mitotic index could be due to the insoluble nature of the dye at or near neutral pH) as compared with that of distilled water (82%). However, the degraded product of the dye was showing a mitotic index of 92+ % (Figure 3).
Conclusion
With these three observations it was hypothesized that the degradative route of the vat dye Sulfur Blue BRN could be the results of ecotoxity results indicate that the degraded products were more eco freindly rather than ecotoxic (Figure 4).
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India Sulphuric Acid Market Share is Expected to Grow at a CAGR of 3.5% By 2025
Growing agriculture sector, increasing metal processing activities, coupled with rising awareness about wastewater treatment to drive India sulphuric acid market through 2025
According to the recently published TechSci Research report “India Sulphuric Acid Market Study, 2011 - 2025”, the sulphuric acid market in India is projected to exhibit a CAGR of 3.35% during 2016-2025, on account of increasing fertilizer production in the country. Moreover, growing demand and consumption of sulphuric acid can be attributed to rapid growth in population size of India, which is subsequently driving demand for infrastructure, food crops and base metals. Growing application of sulphuric acid in processing of fertilizers and other industrial chemicals, coupled with rising initiatives by Government of India to collaborate with global manufacturing firms, are further expected to drive India sulphuric acid market during the forecast period.
Sulphuric acid is tailored for utilization as the most crucial raw material and key ingredient in agriculture sector with applications in production of fertilizers and pH adjustment. Moreover, it is also an essential part of nearly all manufactured goods, chemical synthesis such as hydrochloric acid, nitric acid, sulphate salts, synthetic detergents, dyes and pigments, explosives, and drugs. Sulphuric acid is utilized in carrying out processing of metals by various methods including pickling of iron & steel prior to plating process. West region was the major demand generator for sulphuric acid in India over the past few years, owing to presence of major fertilizer and chemical producing companies located in this region. Furthermore, leading sulphuric acid manufacturers such as Hindalco Industries Ltd., and Paradeep Phosphates Ltd., have an installed production capacities of 1,670 and 660 thousand tons, respectively.
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“Fertilizer is the largest consumer of sulphuric acid in India, owing to rising urbanization and growing population in the country, which is further increasing focus on agriculture sector of India to meet growing demand for food. Phosphate fertilizers production in India stood at 4,113.1 thousand metric tons in 2014, which is further projected to increase in the coming years. Thus, growing production of phosphate fertilizer and increasing use of sulphuric acid in metal processing to boost demand for sulphuric acid in Indiaduring the forecast period.” said Mr. Karan Chechi, Research Director, with TechSci Research, a research based global management consulting firm.
“India Sulphuric Acid Market Opportunities, 2011 - 2025” has analyzed the potential of the sulphuric acid market in India and provides statistics and information on market sizes, shares and trends. The report intends to provide cutting-edge market intelligence and help decision makers take sound investment evaluation. Besides, the report also identifies and analyzes the emerging trends along with essential drivers and key challenges faced by India Sulphuric Acid market.
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Global Sodium Hydrosulfide Market Outlook Analysis, Trends, Top Manufacturers, Share, Growth, Statistics, Opportunities & Forecast till 2027
Global Sodium Hydrosulfide Market
Sodium Hydrosulfide is defined as chemical compound which obtained as a product in the half neutralization reaction between hydrogen sulfide and sodium hydroxide. This is a yellow solid with the smells similar to H2S. NaHS is a chemical formula of sodium hydrosulfide. It is used as tanning agent in leather industry as well as makeup for sulfur in the paper and pulp industry, and water treatment.
Market Drivers
The increase in need for clean water is considered as key driving factor which is expected to boost the global sodium hydrosulfide market growth over the forecast period. Sodium hydrosulfide is one of the compounds used in water treatment and it has a high demand from countries across the globe which is expected to significantly drive the global sodium hydrosulfide market growth during this forecast timeline. Also, the increase in adoption of sodium hydrosulfide in paper and pulp manufacturing anticipated to fuel the market growth. Sodiun hydrosulfide is an alkaline product which plays an important role in numerous industrial process including, dyes and agricultural chemicals. This is also a key constituent in numerous industrial methods concerning sulphur necessities as it is a low cost and less toxic alternative to sulphur, which is expected to positively influence the market growth.
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Market Restraints
High manufacturing cost and complex manufacturing processes for sodium hydrosulfide are anticipated to hinder the global sodium hydrosulfide market growth during this timeframe.
Market Segmentation
The Global Sodium Hydrosulfide Market is segmented into form such as Flakes, and Liquid, by grade such as Technical Grade, and Purified Grade. Further, market is segmented into application such as Paper & Pulp, Tanneries, Mining, Chemical Processing, and Others.
Also, the Global Sodium Hydrosulfide Market is segmented into five regions such as North America, Latin America, Europe, Asia Pacific, and Middle East & Africa.
Market Key Players
Various key players are discussed in this report such as Solvay S.A., Genesis Energy, Chemical Products Corporation, Cayman Chemicals, AkzoNobel, Henan Tianshui Chemical Co., Prasol Chemical Pvt Ltd., Central Drug House, Merck & Millipore, Nilkanth Organics, Etc.
Market Taxonomy
By Form
Flakes
Liquid
By Grade
Technical Grade
Purified Grade
By Application
Paper & Pulp
Tanneries
Mining
Chemical Processing
Others
By Region
North America
Latin America
Europe
Asia Pacific
Middle East & Africa
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Deepak Nitrite Ltd: Expanding base
Deepak Nitrite Ltd (DNL) is a leading manufacturer of organic, inorganic and fine specialty chemicals (FSC). The Company’s product range includes chemicals which cater to a wide range of industries including colorants, agrochemicals, pharmaceuticals, rubber and specialty chemicals. DNL is also in the business of fluorescent whitening agent (FWA) and bulk chemicals & commodities. For few products like sodium nitrite, sodium nitrate and nitrotoluenes it is a market leader in India while for some like xylidines, cumidines and oximes it is amongst top global suppliers. DNL has just set up a new plant to manufacture phenol (capacity 200,000 MTPA) and co-produce acetone (120,000 MTPA) at Dahej. The total capital outlay for the project is Rs 1200 cr (FY17 sales is Rs 1360 cr while current market cap is Rs 3000 cr - gives an indication about the size of expansion). The project is now well into its pre-commissioning activity & the company has set up a marketing team for customer outreach of the new products. We expect commencement by end of July. At full capacity ~Rs.2000 cr topline is expected to be added. We do not foresee any major competitive risks to expansion as the market size is not lucrative enough for feedstock majors. Phenol and acetone are organic compounds derived from benzene and propylene (crude derivatives). As seen from the table below, since more than 80% of the phenol & acetone requirement is met through imports, DNL decided to exploit the untapped potential by setting up a plant domestically. Hindustan Organics Ltd (capacity of 11,500 and 7,100 MTPA odd for phenol & acetone respectively) and SI Group (capacity of 39,500 and 24,000 MTPA odd for phenol & acetone respectively) are the only two players that manufacture phenol and acetone domestically. Product Market Size(MTPA- FY16) Domestic Production (MTPA- FY16) Imported (MTPA- FY16) Import proportion Application Phenol 275,000 50,000 225,000 81.8% Laminates, paints, automobile lining, paints & varnishes, surfactants, pesticides Acteone 170,000 30,000 140,000 82.4% Pharma, paints, printing inks, acrylic sheets The bulk chemical segment constituted about 51% of the sales in FY17 and is further segregated into three SBUs namely Sodium Nitrite/Sodium Nitrate, Nitro Toluenes and Fuel additives. The products are basically used as intermediates in dyes, pharmaceutical, food colors, agrochemicals, refinery, rubber, and specialty chemical industries etc. Since the products are commoditized in nature and pricing is linked to crude, cost leadership and volume growth is critical to gain market share. DNL is a leader in sodium nitrite/nitrate and nitro toluenes in India. The fine specialty chemicals segment consists of niche products that require high value addition. The products are manufactured as per customer specifications and are margin lucrative. DNL manufactures various agrochemical intermediates and pharma & personal care products. The segment contributed 29% to the total sales in FY17 and EBIT margin is in the range of 23-25%. Fluorescent whitening agents are brighteners used in industries like detergents, paper and textile. DNL is a fully integrated manufacturer of FWA (plant started in FY14 at a cost of Rs 280 cr) having vertical integration from toluene to para-nitro-toluene (PNT) and further into Di-amino Stilbin Di-sulphuric acid (DASDA) to the final product. Despite being an integrated producer of FWA and having more than 75% market share, DNL is making losses at the EBIT level because of lower capacity utilization (~40%) and long customer validation cycles. The segment contributed 20% to the total sales in FY17. Sharda Cropchem Ltd- Generic Growth Sabyasachi Paul has been associated with equity research and advisory on equity markets in India for over 10 years & currently heads the equity research desk of Eastern Financiers Ltd, Kolkata. He also manages a portfolio on the online platform Kristal. Find link to the strategy named ‘The Tortoise’ Read the full article
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Dimethyl Sulphate (DMS) Market (CAGR of 4.35%): Global Industry Size, Share, Trends, Analysis Report
According to ChemAnalyst report, “Dimethyl Sulphate (DMS) Market Analysis: Plant Capacity, Production, Operating Efficiency, Technology, Demand & Supply, End-User Industries, Distribution Channel, Regional Demand, 2015-2030”. Global Dimethyl Sulphate market grew at significantly in the past five years and is projected to achieve a CAGR of 4.35% until 2030 owing to its application as an alkylating agent, catalyst, sulfating or sulphonating agent as well as methylating agent in chemical synthesis in industries or for chemical cleavage of DNA in medical laboratories.
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Dimethyl sulphate is a colorless dimethyl ester, synthesized by the reaction of Sulphuric acid and methanol. It is an oily flammable liquid with an onion like odor and high toxicity. Dimethyl Sulphate is simply soluble in aromatic solvents, water and alcohol and available in vapor as well as liquid form. DMS has wide range of applications as a chemical intermediate or as a solvent in various industries including dyes, perfumes, agrochemicals, water treatment chemicals, surfactants, fabric softener, pharmaceuticals, cosmetics, personal care, and others. Rising demand from sectors such as water treatment chemicals and agrochemicals is expected to drive the market for Dimethyl Sulphate during the forecast period. However, associated health hazards and rigorous environmental regulations regarding DMS due to its toxicity are the main restraints in the growth of its market during the forecast period.
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In 2020, the outbreak of COVID-19 across the world had impacted numerous industries due to the imposition of nationwide lockdowns and trade restrictions. Global market for Dimethyl sulphate was not much effected due to Covid-19, there a surge in the demand for Dimethyl Sulphate from Water treatment sector along with pharmaceuticals and surfactants sectors amid pandemics. Additionally, there was negligible impact in the demand of DMS from agrochemicals and personal care in that period. Therefore, there was the rise in the overall demand for dimethyl sulphate during the coronavirus pandemic.
Region wise, Asia Pacific holds the major share for global Dimethyl Sulphate market in 2020 and is projected to grow at a significant pace over the forecast period owing to the industrial growth and the presence of manufacturing hub in the region specially in China and India. Moreover, In Asia Pacific, agriculture sector is blooming with as strong pace thereby, holds the highest market potential for agrochemicals backed by rising population which is consequently fuel DMS market in the forecast years. Additionally, its application as a chemical intermediate in the manufacturing of pharmaceutical products is expected to drive its market in the upcoming years.
In Europe and North America, there is huge market for Dimethyl Sulphate owing to its use in Water treatment plants. There are numerous water treatment plants present in the region due to stringent government regulations to recycle waste water which would further augment DMS market over forecast years.
According to ChemAnalyst report, “Dimethyl Sulphate Market Analysis: Plant Capacity, Production, Operating Efficiency, Technology, Demand & Supply, End-User Industries, Distribution Channel, Regional Demand, 2015-2030”, Major players for Dimethyl Sulphate globally include Dow Chemical Company, Dupont, BASF, Sigma Aldrich, Caledon Laboratories, Honeywell, Chevron Philips CABB Chemicals, and Others.
“Dimethyl Sulphate is a versatile chemical having numerous applications in several end use industries and its global market has shown a robust growth alongside growing population, urbanization and rapid industrialization. Wastewater treatment is a lucrative segment for Dimethyl Sulphate market. Moreover, increasing demand for the production of consumer goods such as perfumes, dyes, fabric softeners, surfactants and personal care is anticipated to expand its market size in the upcoming years. Owing to its wide range applications in different sectors, global manufacturers of Dimethyl Sulphate, anticipate that there will be sufficient supply demand gaps in future therefore it important to keep the track to grab those opportunities in market” said Mr. Karan Chechi, Research Director with TechSci Research, a research based global management consulting firm promoting ChemAnalyst.
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