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allstrangeandwonderful · 10 months
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Its the middle of the night and I'm in my feelings about how we stopped believing in magic when it literally didn’t go anywhere?
Like its fun and great when we talk about engineers being like wizards and computers being like magical tomes and programs being like spells and code being like runes and how moving your own limbs is actually kind of like telepathy if you think about it and diseases are kind of like curses and medicines are like potions and pharmacists are like alchemists and so on
but then we laugh and walk away like its silly and metaphorical because magic isn't real, that would be absurd, and technology is incredible and consciousness is miraculous but they're not magic
but like...aren't they?
Are they just similar, or are they literally the same thing?
Like, ok, imagine this is D&D world or whatever. Theres magic and spells flying around, which most people cannot wield and do not understand and find awe-inspiring and terrifying and whatever. But there are also wizards, who study magic, and learn how it works, and figure out how to wield it, with the use of wands and spell components and tomes, etc. Does magic stop being magic because some people understand it and know how to use it?
No, right? I watched a documentary one time on the way indigo dye is produced, and its a long complicated process that involves many steps, particularly converting ph levels to make it more stable for shipping, and then converting it back so it is reactive again and can be used as dye
and the documentary showed the dye manufacturers in a small village in India, talking about how they used to believe there were spirits in these large ceramic vats, and if they fed the spirits flour and then put in the dye, the spirits would magically turn the product from white indigo (stabilized) to blue indigo (useable), but now they know its just a bacteria colony, and feeding it keeps the colony alive, and the natural proceses of the bacteria react with the dye to change it ph
and I remember being struck by it at the time because...are those two explanations even different? What is a "spirit", at the end of the day? A kind of energy, or lifeforce, that has powers you don't fully understand, and can't see happening? Is that not literally what bacteria is, before you put it under a microscope and give it a name? Is it a different thing now because we named it something else?
and like, the word spirit is an english phenomenon with 19th century spiritualist baggage, but its just a word, its a placeholder that means unseen forces, and unseen forces, like bacteria, are literally real. Bacteria isn't like a spirit, it is a spirit.
(plus the word spirit has been used as a placeholder translation for like a million different culture's different concepts of unseen, hard-to-understand energies, and has been like intentionally used to other and infantilize cultures besides english/christian culture, so the word they use in their own culture probably does/did not have the same, like...superstitious/unreal/silly connotation we have in english, you feel?)
and anyway, I don't know if I'm getting this across right, but like, the first people who saw electricity described it as magic, right? It was a wonder, and totally beyond public understanding at the time. And yeah smart people figured out how to use electricity and called it electrons and learned how to manipulate it with the right designs and components, and it was so great we started using it everywhere and people stopped thinking of it as magic, but as "just" science. But are those even two different things? Just because we made the word electron, its note magic?
and I just feel like what is and isn't magic is like a cultural concept deliberately designed to make us look and feel superior to our ancestors and current non-christian/english people, and there is no literal actual difference except like ego and a culture that values seriousness and not wonder; electricity literally is a magical energy, medicines literally actually are made by alchemists from miraculous plants and minerals with special properties and computers literally actually perform tasks using an arcane language and rare material components and when you get sick its because your body is literally actually invaded by evil spirits, these are all just older words for real actual things that we gave new names because it made us feel smarter
tl;dr magic and science are literally, actually the same thing and basically when a little kid asks you if magic is real, you shouldn't say "no" you should say "yes, it just looks a bit different than old timey people thought it did"
(also disclaimer, I'm not like a crystal-waving anti-science luddite, I love science, I just also love history and culture and linguistics and the concept of wonder, and if that's not the spirit you take this post in then thats a you problem)
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aldiraweavetech · 1 year
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Textile Full Dyeing Process
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The art of dyeing fabric involves imparting color onto textile materials, including yarn or finished fabric. This process dates back to at least 2600 BCE, with references found in historical texts. Initially, natural sources such as plants and animals were used to extract dyes and colors. However, from the mid-1800s, humans began developing synthetic dyes to expand the spectrum of available colors and increase the longevity of the dyeing process. There are a number of textile machinery manufacturers in India that offer best and efficient machineries to fulfil the textile manufacture needs and Weavetech is one amongst them. Weavetech is one of the best textile machinery manufacturers located in Gujarat which is a one stop solution for all your textile needs. With a quarter of a century of experience under its belt, Alidhra Weavetech is a prominent global entity that specializes in providing weaving and twisting machinery solutions. The organization has earned its reputation by offering innovative and locally developed designs that have been supplied to various parts of the world.
Textile Colorants
Dyes and pigments are colorants with distinct properties that greatly affect their application to textiles. Dyes are substances that color fabric and are typically used in a dissolved state, which then binds to the fabric. They are classified based on their chemical structure and usage, with each type of fibre requiring a specific dye. To ensure durability, dyes must possess the property of being "fast" or chemically stable, which means they should not wash away with soap and water or fade when exposed to sunlight. Dyes bind to fabrics through primary (ionic or covalent bonds) and secondary (hydrogen bonding) forces during the dyeing or printing process. Unlike dyes, pigments are insoluble and do not have an inherent attraction to textile fibres. If you are searching for textile machinery manufacturers in India, then you must get in touch with Weavetech as we have excellence and great expertise in this industry.
In the past, natural dyes sourced from various natural materials were the primary means of obtaining colors. However, with advancements in technology, synthetic dyes have gained more prominence due to their enhanced dependability, affordability, and ease of availability. Even so, certain natural dyes, including haematoxylin, carmine, and orcein, are still used today. Synthetic dyes, which are manufactured from either organic or inorganic substances, can be categorized into various types, including Direct, Acid, Basic, Reactive, Mordant, Metal complex, Vat, Sulfur, Disperse, or other types of dyes.
Dyeing Process
The techniques used for dyeing have remained relatively consistent over time and typically involve submerging textiles in a specialized solution containing dyes and other chemicals. Water is mainly used for cleaning, dyeing, applying auxiliary chemicals, and rinsing fabrics. The dyeing process comprises three primary stages, namely preparation, dyeing, and finishing, during which undesirable impurities are removed from the materials prior to the dyeing stage. To remove stains and natural color from fabrics, different cleaning methods can be employed such as using alkaline chemicals, detergents, or enzymes. Hydrogen peroxide or chlorine-based compounds are commonly used to bleach fabrics, especially when a white color is desired. Additionally, optical brightening agents may be added to enhance the whiteness of the textile before it is sold.
Textile dyeing is a process of coloring fabrics with water-based dyes, often performed under high temperatures and pressures. To ensure the dye evenly penetrates the fabric and resists fading, various chemical substances such as surfactants, acids, bases, electrolytes, carriers, leveling agents, chelating agents, emulsifying oils, and softening agents are added during the dyeing process. These chemical aids play a crucial role in achieving a uniform depth of color that is long-lasting and appropriate for the fabric's intended use.
Dyeing- The Imparting Colour
Dyeing is the art of imparting color to textiles, including fabrics, fibers, and yarns, and has been practiced by humans for millennia. Dyes are available in powder, paste, crystal, and liquid dispersion forms and dissolve readily in aqueous solutions. During dyeing, the textile material is immersed in the dye solution, and the dye molecules bond to the fibers through absorption and diffusion, which are influenced by temperature and other factors. Hand or machine dyeing can be used based on the fabric type, and it's crucial to select appropriate dyes for each fabric type. Weavetech is one of the best textile machinery manufacturers located in Gujarat and offering best quality of textile machineries.
Dyeing Methods
When it comes to dyeing textiles, the method used can either be batch or continuous. The optimal dyeing procedure depends on several factors such as the type of material being dyed (fiber, yarn, fabric, clothing), the type of fiber used, the desired quality of the dyed fabric, and the size of the dye batch. In batch dyeing, the textile material is loaded into a dyeing machine and allowed to reach equilibrium with the dye solution, whereby the dye molecules transfer from the solution into the fibers due to their affinity for the fibers. This process ensures that the textile is evenly and thoroughly dyed, resulting in high-quality dyed fabric.
If you are a textile manufacturer looking to improve the efficiency and productivity of your dyeing process, it's time to consider upgrading your dyeing machinery. Investing in Weavetech dyeing machines can significantly improve the quality of your dyed fabric, reduce dyeing time, minimize wastage, and increase your production output. Don't settle for outdated machinery that hinders your growth and profitability. Take action now and invest in advanced dyeing machinery to stay ahead of the competition and meet the ever-increasing demands of the textile industry.
This Blog Originally Posted: 
https://www.weavetech.com/blog-detail/36/textile-full-dyeing-process/
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sanjeevseo · 2 years
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Why are Cotton Yarn Dyed Fabrics so Popular in India?
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Different materials are used to make yarns. They could come from sources of synthetic or natural fibre. Cotton is the most popular source for a variety of reasons.
Cotton is a material that is incredibly user-friendly and naturally comfortable. Because of this, it is typically preferred to other materials. Cotton is the most popular clothing material in places with high temperatures and humidity. For mechanised weaving or knitting into the fabric, it is spun into fine yarn.
Direct dyes, vat dyes, and contemporary synthetic reactive dyes are some of the dyes used to colour cotton in cotton yarn-dyed fabrics. Cotton can be dyed in either an easy or a complex way, depending on your preferences.
For the quick and simple dying, cotton yarn-dyed fabrics are always dyed in some packaged form. Read on to know more about the processing steps of yarn.
Yarn Processing Steps
Cotton is readily available for Sourcing agent for Dyed Cotton Yarn in India spins fabrics of all colours, patterns, and styles since it is easily supplied from all regions of India. The cotton is ginned and prepared for yarn spinning after it has been picked.
● Components of yarns
Cotton has a low degree of flexibility and provides less warmth, although it is obvious that cotton is used in warmer climates despite these drawbacks. Natural fibres are derived from animals like sheep, alpacas, llamas, etc. for colder areas. However, these yarns are incredibly robust.
There are more creative methods of spinning yarn now. The basic components used in its production are soy, hemp, nettle, maize, bamboo, and hemp.
● Cotton dyeing
Before the yarn is woven or knit into a garment, the dyeing procedure is finished. Piece dyeing and yarn dyeing are the two most popular dyeing techniques.
A long piece of fabric is completely run through a vat of a hot dye solution while using the piece dyeing technique. The cotton fibre is run through padded rollers to allow the colour to permeate the fibre completely. Additionally, the aid of the padded roller in removing excess water from the coloured fabric. This technique can be used on materials with solid colours.
● Finishing
To be ready for the market, every manufactured material is considered to be finished. The process of finishing fabrics is the last. A fabric that has been coloured can be finished in a hundred various ways. The finishing techniques and how they are used vary as well.
The greatest diversity of finishing techniques is used on cotton fabrics. When compared to other fabrics that are now available in markets around the world, it is by far the most. These finishing techniques have the power to completely alter the appearance and style of cotton yarn-dyed fabric.
A fabric item may occasionally receive numerous finishing touches using various techniques. It appears that a final touch has the power to enhance or diminish a cotton yarn-dyed manufacturer's standing as a supplier of high- or low-quality materials.
As a result, India is home to a large number of suppliers of high-quality cotton yarn dyed fabrics. Therefore, before choosing a provider, make sure they offer high-quality products that fit within your price range.
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texauxchemicals · 4 years
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Textile Dyeing and Printing
Dyeing and printing processes are employed in the conversion of raw textile fibers into finished goods that add much to the appearance of textile fabrics. DYEING Dyeing is the application of dyes or pigments on textile products such as fibers, yarns, and textiles with the goal of accomplishing color with preferred color fastness. Dyeing is usually done in a special option consisting of dyes and particular chemical product. Dye particles are fixed to the fiber by absorption, diffusion, or bonding with temperature level and time being vital managing elements. The bond between dye particle and fiber may be solid or weak, depending on the dye made use of. Dyeing and printing are different applications; in printing, color is applied to a local location with desired patterns. In dyeing, it is related to the whole textile. The main source of dye, historically, has been nature, with the dyes being drawn out from animals or plants. Considering that the mid-19th century, however, people have actually created synthetic dyes to accomplish a wider range of colors and to render the dyes extra stable to washing and general use. Various classes of dyes are utilized for various sorts of fiber and at different phases of the textile manufacturing procedure, from loose fibers via yarn and towel to complete garments.
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  Polymer fibers are dyed with fundamental dyes, while nylon and protein fibers such as wool and silk dye with acid dyes, and polyester thread is colored with disperse dyes. Cotton is dyed with a series of dye types, consisting of barrel dyes, and contemporary synthetic reactive and direct dyes. THERE ARE THREE CATEGORIES: •Cellulose fiber dye. •Protein fibers dye. •Synthetic fibers dye. THERE ARE MANY CLASS OF DYE IN THE FOLLOWING: •Reactive dye: •Disperse Dye •Direct Dye •Basic dye •Acid dye •Sulphur dye. •Vat dye •Azoic Dye •Oxidation dye •Optical dye or Fluorescent •Solvent Dye METHODS OF DYEING •Direct Dyeing •Stock Dyeing •Top Dyeing •Yarn Dyeing •Skein Dyeing •Package Dyeing •Warp Beam Dyeing •Garment Dyeing ADVANCES TECHNOLOGIES OF DYEING •Advanced DENIM concept •Supercritical fluid dyeing (SFD) •Ultrasound technology •Powder dyes from textile fibers •DyeCoo PRINTING Printing is a process of decorating textile fabrics by application of pigments, dyes, or various other associated materials in the form of patterns. Although apparently developed from the hand paint of materials, such approaches are also of great antiquity. There is evidence of printing being carried out in India throughout the 4th century BCE, and a printing block dated at about 300 CE has been discovered in the burial grounds of Akhmīn in Upper Egypt. Textile printing has actually ended up being highly sophisticated and has involved the skills of several musicians and designers.
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  The four major methods of textile printing are block, roller, display, and heat transfer printing. In each of these approaches, the application of the color, usually as a thick paste, is followed by fixation, usually by steaming or home heating, and afterwards removal of excess colour by cleaning. Printing styles are classified as direct, discharge, or stand up to. In straight printing, coloured pastes are published straight on the cloth. For discharge printing, the cloth is first dyed with a background color, which is ruined by reagents, or lowering representatives, lugged in a print paste. This activity may leave the released design white on a tinted history, although print pastes might additionally consist of tinting matters not destroyed by the discharging representative, generating a colored design. In the resist process, the cloth is first published with a compound called a withstand, safeguarding these published locations from accepting color. When the cloth is colored or pigment cushioned only those components not published with the withstand are colored. A special application of this strategy, passing on plissé results, is the printing of the fabric with a resist, complied with by therapy with caustic soda. TYPES OF TEXTILE PRINTING: •Block printing •Roller printing •Heat transfer printing •Digital Printing •Screen Printing •Flexography printing •Litho Printing •Engraving •Embossing •Embroider Printing ADVANCES TECHNOLOGIES OF PRINTING •Nanotechnology for printing •Water-based printing •Smart Cutting for B1 and B2 formats •Biodegradable printer inks •Conductive inks •3D Printing Thanks for reading the post, Please visit our website to know more about textile dyeing and printing.
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blueweave8 · 2 years
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Ortho Xylene Market Industry Trends, Analysis, Report 2022-2028
A recent study by the strategic consulting and market research firm; BlueWeave Consulting revealed that the global ortho-xylene market is expected to witness a CAGR of 5.1% during the forecast period 2022-2028. The demand of global ortho-xylene market's growth is attributed to the increasingly high adoption of ortho-xylene for varied applications in the automotive industry as it is used widely in the coating, bonding, sealing, coating, and insulation of various automotive parts, including the electrical system, drive train, engine, electronics, body, and interior. Moreover, the rising demand for plasticizers, resins, and dyes is expected to propel the market during the forecast period.
Growing Aviation Industry is Expected to Propel the Market Growth of Ortho Xylene Market
There is a substantial rise in interest for ortho-xylene from the aviation industry as a lube oil chemical. As per the International Exchange Organization (ITA), in 2019, China was the world's second-biggest civil aviation and aerospace markets and one of the quickest developing business sectors. In 2016, as per Boeing, China was likely to expect around 6,810 new airplanes worth USD 1 trillion over the last twenty years. By the fourth quarter of 2018, China had in excess of 59 airlines and 3,615 civil airplanes (an increment of 10% more than 2017).
As per the Worldwide Exchange Organization (ITA), in 2018, the Indian government spent an aggregate of $645 in the aviation area. Likewise, as indicated by Boeing, India is relied upon to drive the interest for 2,300 airplanes worth US$320 billion over the course of the following 20 years. Along these lines, the aviation industry growth leads to the demand for global ortho-xylene, likely to boost the ortho-xylene market growth in upcoming years.
Logistic Hazards Associated with is Ortho Xylene is Anticipated to Hinder Market Growth of Global Ortho Xylene Market
The rise in safety and logistical concern associated with hazardous chemicals, i.e., ortho-xylene, is expected to hinder the global ortho-xylene market growth. With the development in the chemical industry, safety concerns have also increased due to the surge in freight traffic. Moreover, the lack of skilled labor in order to handle the procedure from packaging to transportation of ortho-xylene, along with the lack of awareness of advancement in technologies, hampers the market.
Furthermore, ortho-xylene responds aggressively to oxidants which causes explosion and fire hazards. Henceforth, due to stringent policy and reform related to ortho-xylene usage, safety and handling are expected to hinder the global ortho-xylene market's growth in upcoming years.
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Phthalic Anhydride Application Segment Of Ortho Xylene Market Expected To Grow With A Higher Growth Rate
The global ortho-xylene market is segmented into bactericides, soybean herbicides, phthalic anhydride, lube oil additives, and others based on the application. O-xylene is used to produce phthalic anhydride, which is a vital raw material in the manufacturing of alizarin, alizarin derivatives, anthraquinone, vat dyes, and more. Phthalic anhydride is also used in the production of numerous esters.
Moreover, phthalic anhydride is extensively used as a plasticizer in the plastic industry. The demand for phthalic anhydride is increasing, which in turn rouse a search for raw material. The presence of o-xylene in abundance via the petroleum industry seems to be most suitable, which boosts the global market ortho-xylene with a lucrative rate in upcoming years.
Impact of COVID-19 on the Ortho Xylene Market
The deadly COVID-19 pandemic has affected the global value and supply chains that had a disastrous effect on the global ortho-xylene market, especially during the early phases of the COVID-19 lockdowns in 2020. But with time, the market is coping, and the pandemic has necessitated contactless. Also, the manufacturing of automobiles was halted, which led to significant harm in the automotive industry. As per the European Automobile Manufacturers Association, demand for vehicles around Europe stayed feeble (-20.3%), although the declining rate slowed compared to May in the year 2020.
Moreover, three of the four major markets in the area posted binary-digit percentage declines in June- Spain (-24.2%), Italy (-12.8%), and Germany (-30.5%). The automotive industry employs ortho-xylene in the coating, bonding, sealing, coating, and insulation of various automotive parts, including electrical systems, drive trains, engines, electronics, bodies, and the interior. The demand for ortho-xylene has declined with the decrease in automotive production. Nonetheless, post covid recovery of the automotive industry is likely to surge the demand for ortho-xylene.
Asia Pacific Region Dominates the Global Ortho Xylene Market
The Asia Pacific region leads the market with the highest share in 2021 due to the region's booming construction and automotive industry. As per the International Trade Centre (ITC), India accounted for the major share in imports of phthalic anhydride around the world, while the export was significantly less in 2018. As indicated by the International Trade Administration (ITA), the construction industry in China is likely to develop with a high CAGR.
Furthermore, the projects started by the Indian government, including ‘Housing for All by 2022’ and '100 smart cities', will boost the construction market in the region. Also, the rising population and increase in per capita income boost numerous end-user industries, which in return increase the demand for ortho-xylene; hence, driving the global ortho-xylene market.
Competitive Landscape
The global ortho-xylene market is consolidated with a few major players. The key players operating in the global ortho-xylene market are Reliance Industries Limited, Formosa Chemicals & Fibre Corp, Nouri Petrochemical Company, Exxon Mobil Corporation, Royal Dutch Shell PLC, China Petroleum & Chemical Corporation, MP Biomedicals, Tokyo Chemical Industry, Sunoco Chemicals, BASF SE, Puritan Products, Minda Petrochemicals Limited, KP Chemical Corp., Dynachem Inc, Creasyn Finechem (Tianjin), Sigma-Aldrich, Nutan Chemicals, LOTTE CHEMICAL and more. The players maintain their dominance in the market by investing and launching improved products for the customers.
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researge · 3 years
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Global Dyes & Pigments Market Study Report 2014-2030
Prismane Consulting is pleased to publish its Dyes & Pigments Market Market Study Report which includes historic and current market situation of Dyes & Pigments Market across several end-use industries.
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https://prismaneconsulting.com/report_request_sample?_token=cEoFrlYnYwWUgOsMWf4JbCiF5VnykJ4fqbY4bK4B&report_id=214
This market study describes the global Dyes & Pigments Market market, with focus on major countries and their subsequent demand across different applications and sub-applications. The study covers demand-supply analysis for regions including North America, Western Europe, Central & Eastern Europe, Central & South America, Asia-Pacific, Middle East and Africa and major countries like the U.S., Canada, Mexico, Germany, France, Italy, U.K., Spain, Russia, Poland, Turkey, China, Japan, India, South Korea, Thailand, Taiwan, South Africa, and Saudi Arabia. The market is segmented based on end-use which includes Paints & Coatings, Leather, and others.Dyes & Pigments Market Production capacity expansions, force majeure, de-bottlenecks, plant shutdowns and new product developments have been considered in the report.
Dyes & Pigments Market demand patterns are dramatically different between various regions and countries. In the areas with mature economies, demand growth for Dyes & Pigments Market is expected to fall well below global averages primarily due to the geographic shift of many manufacturing industries to areas of lower labor costs such as China, India, and the ASEAN region.
The primary driver for the growth in demand of Dyes & Pigments Market in Asia has been the migration of labor-intensive downstream conversion industries from developed high labor cost regions like North America and Western Europe.
Topics Covered
The report covers the following topics:
Dyes & Pigments Market Market data in term of volume and value for each end-use at regional and country level
Dyes & Pigments Market Market analysis for production, capacity, demand, supply, trade, and utilization rates at regional and country level
Trade balance and target markets for current situation, new expansions, or new projects
Business opportunity assessment
Macro-economic factors like GDP, population, and world economic integration
Strategic issues and recommendations
Strategic recommendations for vendors, and industry stakeholders
Market analysis and forecasts (short-, mid- and long-term forecast) from 2015 till 2030
Dyes & Pigments Market Market: Applications Covered
Global Dyes & Pigments Demand Analysis By Type,
By Applications, (Volume, Value) (2014–2030)
Strategic Issues
Demand Analysis and Forecast (2014 – 2030)
Demand
Demand Growth Rate (%)
Driving Force Analysis
Global Dyes & Pigments Market, By Type
Dyes
                                        -  Reactive
                                        -  Disperse
                                        -  Acid
                                        -  VAT
                                        -  Sulfur
                                        -  Others
Pigments
                                        -  Titanium Dioxide
                                        -  Organic
                                        -  Inorganic
                                        -  Others
Global Dyes & Pigments Market, By Application
Paints & Coatings
Leather
Textile
Construction
Paper
Plastics
Printing Inks
Others
Dyes & Pigments MarketMarket: Regions covered
- Asia Pacific
- Eastern Europe
- Central & South America
- Middle East & Africa
- North America
- Western Europe
Key Questions Answered
The Global Dyes & Pigments Market Market study answers the following key questions:
How big is the Dyes & Pigments Marketmarket?
How is the Dyes & Pigments Market market evolving by demand-supply, segment, and region?
What will the Dyes & Pigments Market market size be in 2030 and at what rate will it grow?
What trends, challenges and barriers are influencing its growth?
Who are the key manufacturers and what are their shares in different region?
What opportunities and target markets exist for Dyes & Pigments Market
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marketrevenueba · 3 years
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Dyes & Pigments Market ManufacturersShare, Major Players, Growth Analysis, and Forecast, 2020–2027
The research report on the Global Dyes & Pigments Market presents a comprehensive assessment of the market, including future trends, current factors driving the growth of the market, and validated market data. The report is updated with the current economic scenario and business landscape owing to the COVID-19 pandemic. The subsequent economic slowdown and social restrictions have impacted the key segments of the markets. The report provides an extensive analysis of the impact of COVID-19 on the current market scenario and key insights into the future outlook of the market growth. The report also discusses the market segmentation by types, applications, and key regions. Key manufacturers and companies are profiled in the report.
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The global Dyes & Pigments report is a qualitative and quantitative research document that offers vital insights into the Dyes & Pigments market that enable the businesses and investors gain a competitive edge over the other competitors. It provides an exhaustive analysis of the competitive landscape including company overview, revenue share and contribution, financial standing, global position, and technological and product advancement. The report also explores the new entrants, strategic alliances and collaborations, mergers, acquisitions, partnerships, agreements, and deals of the well established companies.
Key companies profiled in the Dyes & Pigments report are:
BASF SE, Clariant AG, DIC Corporation, Huntsman Corporation, Cabot Corp, Dupont De Nemours & Co., Kronos Worldwide Inc., Flint Group, EcKart GmbH, and Lanxess AG among others.
Dyes & Pigments Market Segmentation based on Types:
Acid Dyes
VAT Dyes
Disperse dyes
Reactive dyes
Direct dyes
Dyes & Pigments Market Segmentation based on Application:
Printing Inks
Textiles
Paper
Leather
Plastics
Paints & Coatings
Construction
Others
Regional analysis of Dyes & Pigments market covers:
US
Canada
Mexico
Germany
UK
Italy
France
BENELUX
Rest of Europe
China
India
Japan
South Korea
Rest of APAC
Brazil
Rest of LATAM
Saudi Arabia
UAE
South Africa
Rest of MEA
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Key Questions Answered in the Report:
What is the expected market size of the Dyes & Pigments market?
What are the key factors expected to drive and restrain Dyes & Pigments market growth over the forecast period?
What are the key products and applications offered by the Dyes & Pigments market?
Which region is expected to account for largest revenue share in the market in the coming years?
What are the current and future market trends of the Dyes & Pigments market?
Which segment is expected to show lucrative growth throughout the forecast period?
What are the key outcomes of SWOT analysis and Porter’s Five Forces analysis?
Who are the prominent distributors, vendors, and manufacturers of the market?
What are the key challenges and limitations the new entrants and companies will have to face in the Dyes & Pigments market over the forecast period?
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jaydenh24 · 3 years
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Asia-Pacific Colorants Market Analysis by Current Industry Status and Growth Opportunities, Top Key Players, Target Audience and Forecast to 2026
Asia Pacific colorants market is growing at a CAGR of 7.2% in the forecast period 2019 to 2026.
Asia Pacific colorants market is segmented into three notable segments which are color, product and end-user.
 On the basis of color, the market is segmented into natural and synthetic color. Natural colorant is further sub-segmented into green, red, yellow, brown, violet, purple, blue, white, black and others. Synthetic colors are again sub-segmented into green, red, yellow, brown, violet, purple, blue, white, black and others.
 In February 2018, Heubach launched a new production plant for anti-corrosive pigment at its U.S. location near Pennsylvania. This lead to increase in anticorrosive market of the company in addition to zinc phosphate..
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 On the basis of product, the market is segmented into pigments, dyes, color concentrates and masterbatches. Pigments are sub-segmented into organic and inorganic. Organic is further sub sub-segmented into azo, polycyclic, anthraquinone, dioxazine, triarylcarbonium and quinophthalone. Inorganic is further sub-subbed segmented into colored and white. Colored again is classified into CICP, metal oxides, metal salts and others. White is segmented into opaque and non-opaque. Dyes are further sub-segmented based on by type, by nature, by lake and by chemistry. Based on by type, it is further sub segmented into natural, by source and synthetic. Natural, by source is again sub segmented into plants, animals and minerals. Dyes, by nature is further sub segmented into acidic and basic. Dyes, by lake, are further segmented into basic, fat soluble and metal complex. Dyes, by chemistry is segmented into direct dyes, mordant dyes, disperse dyes, reactive dyes, acid dyes, direct dyes, VAT dyes, azoic dyes, Sulphur dyes and others. Color concentrates are segmented again to solid and liquid. Masterbatches are sub segmented into white, black and color.
 In September, Heubach India receives ICC Aditya Birla Award for responsible care. After that, company introduced an initiative known as the "Integrated Waste Management Program" (IWMP) which encourages waste management
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 On the basis of end-user, the market is segmented into packaging, paper & printing, textiles, building & construction, automotive, consumer goods and others. Packaging is further sub segmented into food & Beverage, healthcare and consumer goods. Textiles are further sub segmented into fabric coloring, printed fabrics and leather. Building & construction is further sub segmented into paints & coatings, plastics and others. Automotive is further sub segmented into paints and coatings, plastics and textiles.
 Some of the major players operating in this market are BASF SE, DIC Corporation, Colorchem International Corp, Clariant, Cathay Industries and others.
 Business Expansion:
 In January 2017 Changzhou Longyu Pigment Chemical CO., LTD. Expanded the South America sale network by entering in Argentina by opening a sales office. Argentina with an increasing economy in the year was one of the best places to invest.
 Research Methodology: Asia-Pacific Colorants Market
Primary Respondents: key industry participants, subject-matter experts (SMEs), C-level executives of key market players, Market Intelligence Managers, National Sales Managers and industry consultants.
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 Colorant is a substance that is used in order to change the material’s surface. They are used for painting, coloring of different materials such as painting, printing and for the coloration of different materials such as plastics and food. Most of the colorants have classifications such as dyes and pigments. Dyes are soluble colored organic compounds used for textiles in water whereas pigments are insoluble compounds that hold application in paints, printing inks and plastics.
 Colorants are very important ingredients in food such as confectionary, desserts, snacks and beverages. Colorants can be organic or inorganic, metal or mineral based too. It is also used in automotive part coloration and packaging. Most of the time, liquid colorants are compatible with many plastics and are cost efficient.
 Growing promotional events and investment towards the colorants industries by various governmental bodies, to promote the manufacturers and suppliers in the developments is leading to the growth of the market in the forecast period.
   Asia-Pacific Colorants Market, By Color (Natural Color, Synthetic Color), Product (Pigments, Dyes, Color concentrates, Masterbatches), End-User (Packaging, Paper & Printing, Textiles, Building & Construction, Automotive, Consumer Goods, Others), Country (China, Japan, India, Australia, South Korea, Singapore, Malaysia, Indonesia, Thailand, Philippines and Rest of Asia-Pacific) Industry Trends and forecast to 2026
 Browse Related Reports From Chemical Industry:
Global Colorants Market- Industry Trends and Forecast to 2026
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Europe Colorants Market- Industry Trends and Forecast to 2026
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Global Seed Coating Colorants Market – Industry Trends and Forecast to 2027
Global Natural Colorants Market – Industry Trends and Forecast to 2028
Global Colorants Market is Projected to Register a Healthy CAGR of 6.2% in the Forecast Period of 2019 to 2026
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Textile chemicals market to reach a valuation of ~us$ 33.4 bn by 2027: TRANSPARENCY MARKET RESEARCH
Global Textile Chemicals Market: Key Highlights
According to United Nations’ projections, global population is estimated to reach 8.5 billion by 2030, and further exceed 9 billion by 2050. The consumption of textiles depends directly on the growth of population and consumer spending levels.
In terms of demand, Asia Pacific led the global textile chemicals market in 2018, and the same trend is anticipated to continue throughout 2019 and 2027. Changing consumer needs and an evolving retail marketplace are factors driving the apparel sector in Asia Pacific. The apparel sector in Asia Pacific is projected to expand at a CAGR of nearly 5% during the forecast period.
The technical textiles market has witnessed evolution from passive to active smart and ultra-smart fabrics over the last few years. First-generation passive fabrics were capable of sensing only environmental stimuli, whereas, second-generation active fabrics included actuators, sensors, and a control unit in order to sense electric, thermal, and other stimuli.
The demand for textile chemicals in Bangladesh is projected to rise at a CAGR of ~3% between 2019 and 2027. Bangladesh’s exports of clothing and apparel more than trebled between 2008 and 2018. The country is estimated to continue to receive increased number of orders for its finished garments from international partners in the near future, due to the availability of cotton as well as other fabrics at a low price.
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Global Textile Chemicals Market: Key Drivers and Opportunities
Focus on enhancing the functional quality of textile chemicals and cost reduction are likely to be key factors driving the global textile chemicals market in the next decade.
Major players operating in the global home textiles industry, such as IKEA and H&M Home, are expanding their presence in Asia Pacific in order to tap immense opportunities in the region. Moreover, the advent of e-Commerce in the home furnishing sector is expected to boost the home furnishing textiles segment in the global textile chemicals market during the forecast period.
The demand for textile chemicals in India is anticipated to rise at a rapid pace, as the country is a leading exporter of textiles in Asia Pacific. Since 2014, around 19 Textile Park projects have been sanctioned in India, under the Scheme for Integrated Textile Park (SITP) in the Public Private Partnership (PPP) mode, with 40% government assistance valuing up to INR 40 Crore (US$ 5.6 Mn). The country’s share in the Asia Pacific textile chemicals market is likely cross 11% by 2027.
Europe has also been a significant consumer of carpets and technical fibers over the last few years. Europe has become a leader in the digital printing of textiles, wherein, designs are printed on fabric by a printer that is controlled by a software. These trends depict significant potential for the growth of the textile chemicals market in the region.
The Ministry of Industry & Trade of Russia is focusing on supporting technical textiles and nonwovens industries in the country. The Government of Russia aims to increase the share of domestically made technical textiles in the local market up to 80% by 2020. Lately, the country has been utilizing its large reserves of oil and other resources, including timber and other raw materials, for the production of synthetic fibers.
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Asia Pacific to be Highly Lucrative Textile Chemicals Market
In terms of value, Asia Pacific held a major, i.e. more than 60% share of the global textile chemicals market in 2018.
Shift in the production of textiles and their subsequent consumption by traditional production centers, such as the U.S. and Western Europe toward Asia Pacific, is a major factor anticipated to drive the textile chemicals market in Asia Pacific from 2019 to 2027.
Also, changes in consumer trends, especially in home decoration, followed by changing lifestyles, have propelled the demand for textiles. This, in turn, is anticipated to drive the global textile chemicals market during the forecast period.
Countries such as China and India are major textile chemicals markets in Asia Pacific. These countries accounted for more than 60% share of the Asia Pacific textile chemicals market in 2018.
Global Textile Chemicals Market – Key Developments
In January 2018, Lubrizol introduced two breathable thermoplastic polyurethane resins of microbe-resistant grade for use in hot-melt adhesives. These products, i.e. Pearlbond 360 TPU and Pearlbond 960 TPU, can be used in applications such as technical textiles, apparel, footwear, and conveyor belts.
On June 9, 2017, Evonik Industries AG announced an increase of up to 6% in the prices of its products for applications such as textiles, tissues, metalworking fluids, and industrial applications. The move was aimed to strengthen the company’s position in the global textile chemicals market by focusing on providing better technical services.
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Global Textile Chemicals Market – Competition Landscape
The global textile chemicals market was moderately consolidated in 2018. Due to the presence of well-established manufacturers in the textile chemicals market, and their expansion initiatives, the global textile chemicals market is estimated to be highly competitive during the forecast period.
Major manufacturers in the textile chemicals market include Archroma, Lonsen Inc., Huntsman, CHT Group, Solvay, and Evonik Industries AG.
Global Textile Chemicals Market – Segmentation
Textile Chemicals Market by Product
Coating & Sizing Chemicals
Dyes & Dyestuff
Finishing Agents
Surfactants
De-sizing Agents
Bleaching Agents
Yarn Lubricants
Others (Scouring Agents, Leveling Agents, Fixing Agents, etc.)
Wetting Agents
Defoamers
Others (Softening Agents, Adhesives, and Antimicrobial Agents)
Acid Dyes
Basic Dyes
Direct Dyes
Disperse Dyes
Reactive Dyes
Sulfur Dyes
Vat Dyes
Others (Mordant Dyes, Azo Dyes, etc.)
Textile Chemicals Market by Application
Home Furnishing Textiles
Technical Textiles
Apparel
Industrial Textiles
Carpets & Rugs
Furniture
Others
Agrotech
Geotech
Meditech
Others (Buildtech, Clothtech, Hometech, etc.)
Textile Chemicals Market by Region
North America
Europe
Asia Pacific
Latin America
Middle East & Africa
U.S.
Canada
Germany
U.K.
France
Italy
Spain
Russia & CIS
Portugal
Turkey
Rest of Europe
China
Taiwan
India
Japan
Pakistan
Indonesia
Vietnam
Bangladesh
Rest of Asia Pacific
Brazil
Mexico
Central America
Colombia
Peru
Rest of Latin America
GCC
South Africa
Rest of Middle East & Africa
Companies in the Textile Chemicals market have increasingly shifted gears with wide application of digital technology across the continuum, from raw material sourcing to manufacturing to generation of final output, to warehousing to final distribution operations. Among the various affects, the market is witnessing new growth economics due to thinning of line between specialty and commodity businesses that are associated with the larger ecosystem. At the same time, new growth parameters are being vigorously being debated as industry stakeholders put greater emphasis on the circular economy processes.
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RK Industries - Premium Vat Dyes Manufacturer
RK Industries offers premium vat dyes with excellent colorfastness and durability, perfect for textiles. Ensure vibrant, long-lasting colors in your dyeing processes.
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Ultra High Purity Hydrofluoric Acid Market Companies, Market Players, and Competitive Landscape 2021-2026
This report contains market size and forecasts of Ultra High Purity Hydrofluoric Acid in global, including the following market information:
Global Ultra High Purity Hydrofluoric Acid Market Revenue, 2016-2021, 2022-2027, ($ millions)
Global Ultra High Purity Hydrofluoric Acid Market Sales, 2016-2021, 2022-2027, (MT)
Global top five Ultra High Purity Hydrofluoric Acid companies in 2020 (%)
Also Read: http://www.marketwatch.com/story/ultra-high-purity-hydrofluoric-acid-market-size-share-value-and-competitive-landscape-2021-2026-2021-07-05
The global Ultra High Purity Hydrofluoric Acid market was valued at 537.1 million in 2020 and is projected to reach US$ 664.3 million by 2027, at a CAGR of 5.5% during the forecast period.
MARKET MONITOR GLOBAL, INC (MMG) has surveyed the Ultra High Purity Hydrofluoric Acid manufacturers, suppliers, distributors and industry experts on this industry, involving the sales, revenue, demand, price change, product type, recent development and plan, industry trends, drivers, challenges, obstacles, and potential risks.
Total Market by Segment:
Global Ultra High Purity Hydrofluoric Acid Market, By Type, 2016-2021, 2022-2027 ($ Millions) & (MT)
Global Ultra High Purity Hydrofluoric Acid Market Segment Percentages, By Type, 2020 (%)
UP/SEMI G4
UP-S/SEMI G3
UP-SS/SEMI G2
EL/SEMI G1
Also Read: http://www.marketwatch.com/story/bare-metal-servers-market-research-report-with-size-share-value-cagr-outlook-analysis-latest-updates-data-and-news-2021-2028-2021-06-29
Global Ultra High Purity Hydrofluoric Acid Market, By Application, 2016-2021, 2022-2027 ($ Millions) & (MT)
Global Ultra High Purity Hydrofluoric Acid Market Segment Percentages, By Application, 2020 (%)
Semiconductor
Flat Panel Display
Solar Energy
 Global Ultra High Purity Hydrofluoric Acid Market, By Region and Country, 2016-2021, 2022-2027 ($ Millions) & (MT)
Global Ultra High Purity Hydrofluoric Acid Market Segment Percentages, By Region and Country, 2020 (%)
North America
US
Canada
Mexico
Europe
Germany
France
U.K.
Italy
Russia
Nordic Countries
Benelux
Rest of Europe
Asia
China
Japan
South Korea
Southeast Asia
India
Rest of Asia
South America
Brazil
Argentina
Rest of South America
Middle East & Africa
Turkey
Israel
Saudi Arabia
UAE
Rest of Middle East & Africa
Also Read: http://www.marketwatch.com/story/vat-dyes-professional-survey-market-size-share-value-and-competitive-landscape-2021-2026-2021-06-29
Competitor Analysis
The report also provides analysis of leading market participants including:
Key companies Ultra High Purity Hydrofluoric Acid revenues in global market, 2016-2021 (Estimated), ($ millions)
Key companies Ultra High Purity Hydrofluoric Acid revenues share in global market, 2020 (%)
Key companies Ultra High Purity Hydrofluoric Acid sales in global market, 2016-2021 (Estimated), (MT)
Key companies Ultra High Purity Hydrofluoric Acid sales share in global market, 2020 (%)
Further, the report presents profiles of competitors in the market, key players include:
Stella Chemifa Corp
FDAC
Honeywell
Solvay (Zhejiang Lansol)
Morita
Sunlit Chemical
Zhejiang Kaiheng Electronic Materials
Do-Fluoride Chemicals
Suzhou Crystal Clear Chemical
Jiangyin Jianghua Microelectronics Materials
Shaowu Fluoride
Shaowu Huaxin
Yingpeng Group
Sanmei
Befar Group
Also Read: http://www.marketwatch.com/story/life-science-products-market-research-report-with-size-share-value-cagr-outlook-analysis-latest-updates-data-and-news-2020-2026-2021-06-30
Table of Content
 1 Introduction to Research & Analysis Reports
1.1 Ultra High Purity Hydrofluoric Acid Market Definition
1.2 Market Segments
1.2.1 Market by Type
1.2.2 Market by Application
1.3 Global Ultra High Purity Hydrofluoric Acid Market Overview
1.4 Features & Benefits of This Report
1.5 Methodology & Sources of Information
1.5.1 Research Methodology
1.5.2 Research Process
1.5.3 Base Year
1.5.4 Report Assumptions & Caveats
2 Global Ultra High Purity Hydrofluoric Acid Overall Market Size
2.1 Global Ultra High Purity Hydrofluoric Acid Market Size: 2021 VS 2027
2.2 Global Ultra High Purity Hydrofluoric Acid Revenue, Prospects & Forecasts: 2016-2027
2.3 Global Ultra High Purity Hydrofluoric Acid Sales (Consumption): 2016-2027
3 Company Landscape
3.1 Top Ultra High Purity Hydrofluoric Acid Players in Global Market
3.2 Top Global Ultra High Purity Hydrofluoric Acid Companies Ranked by Revenue
3.3 Global Ultra High Purity Hydrofluoric Acid Revenue by Companies
3.4 Global Ultra High Purity Hydrofluoric Acid Sales by Companies
3.5 Global Ultra High Purity Hydrofluoric Acid Price by Manufacturer (2016-2021)
3.6 Top 3 and Top 5 Ultra High Purity Hydrofluoric Acid Companies in Global Market, by Revenue in 2020
3.7 Global Manufacturers Ultra High Purity Hydrofluoric Acid Product Type
3.8 Tier 1, Tier 2 and Tier 3 Ultra High Purity Hydrofluoric Acid Players in Global Market
3.8.1 List of Global Tier 1 Ultra High Purity Hydrofluoric Acid Companies
3.8.2 List of Global Tier 2 and Tier 3 Ultra High Purity Hydrofluoric Acid Companies
4 Sights by Product
4.1 Overview
4.1.1 By Type - Global Ultra High Purity Hydrofluoric Acid Market Size Markets, 2021 & 2027
4.1.2 UP/SEMI G4
4.1.3 UP-S/SEMI G3
4.1.4 UP-SS/SEMI G2
4.1.5 EL/SEMI G1
4.2 By Type - Global Ultra High Purity Hydrofluoric Acid Revenue & Forecasts
4.2.1 By Type - Global Ultra High Purity Hydrofluoric Acid Revenue, 2016-2021
4.2.2 By Type - Global Ultra High Purity Hydrofluoric Acid Revenue, 2022-2027
4.2.3 By Type - Global Ultra High Purity Hydrofluoric Acid Revenue Market Share, 2016-2027
Also Read: http://www.marketwatch.com/story/june-2021-report-on-global-usa-martial-arts-wear-market-overview-size-share-and-trends-2015-2026-2021-06-02
4.3 By Type - Global Ultra High Purity Hydrofluoric Acid Sales & Forecasts
4.3.1 By Type - Global Ultra High Purity Hydrofluoric Acid Sales, 2016-2021
4.3.2 By Type - Global Ultra High Purity Hydrofluoric Acid Sales, 2022-2027
4.3.3 By Type - Global Ultra High Purity Hydrofluoric Acid Sales Market Share, 2016-2027
4.4 By Type - Global Ultra High Purity Hydrofluoric Acid Price (Manufacturers Selling Prices), 2016-2027
5 Sights by Application
5.1 Overview
5.1.1 By Application - Global Ultra High Purity Hydrofluoric Acid Market Size, 2021 & 2027
5.1.2 Semiconductor
5.1.3 Flat Panel Display
5.1.4 Solar Energy
5.2 By Application - Global Ultra High Purity Hydrofluoric Acid Revenue & Forecasts
5.2.1 By Application - Global Ultra High Purity Hydrofluoric Acid Revenue, 2016-2021
5.2.2 By Application - Global Ultra High Purity Hydrofluoric Acid Revenue, 2022-2027
5.2.3 By Application - Global Ultra High Purity Hydrofluoric Acid Revenue Market Share, 2016-2027
5.3 By Application - Global Ultra High Purity Hydrofluoric Acid Sales & Forecasts
5.3.1 By Application - Global Ultra High Purity Hydrofluoric Acid Sales, 2016-2021
5.3.2 By Application - Global Ultra High Purity Hydrofluoric Acid Sales, 2022-2027
5.3.3 By Application - Global Ultra High Purity Hydrofluoric Acid Sales Market Share, 2016-2027
5.4 By Application - Global Ultra High Purity Hydrofluoric Acid Price (Manufacturers Selling Prices), 2016-2027
6 Sights by Region
6.1 By Region - Global Ultra High Purity Hydrofluoric Acid Market Size, 2021 & 2027
6.2 By Region - Global Ultra High Purity Hydrofluoric Acid Revenue & Forecasts
6.2.1 By Region - Global Ultra High Purity Hydrofluoric Acid Revenue, 2016-2021
6.2.2 By Region - Global Ultra High Purity Hydrofluoric Acid Revenue, 2022-2027
6.2.3 By Region - Global Ultra High Purity Hydrofluoric Acid Revenue Market Share, 2016-2027
6.3 By Region - Global Ultra High Purity Hydrofluoric Acid Sales & Forecasts
6.3.1 By Region - Global Ultra High Purity Hydrofluoric Acid Sales, 2016-2021
6.3.2 By Region - Global Ultra High Purity Hydrofluoric Acid Sales, 2022-2027
6.3.3 By Region - Global Ultra High Purity Hydrofluoric Acid Sales Market Share, 2016-2027
6.4 North America
6.4.1 By Country - North America Ultra High Purity Hydrofluoric Acid Revenue, 2016-2027
6.4.2 By Country - North America Ultra High Purity Hydrofluoric Acid Sales, 2016-2027
6.4.3 US Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.4.4 Canada Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.4.5 Mexico Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.5 Europe
6.5.1 By Country - Europe Ultra High Purity Hydrofluoric Acid Revenue, 2016-2027
6.5.2 By Country - Europe Ultra High Purity Hydrofluoric Acid Sales, 2016-2027
6.5.3 Germany Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.5.4 France Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.5.5 U.K. Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.5.6 Italy Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.5.7 Russia Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.5.8 Nordic Countries Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.5.9 Benelux Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.6 Asia
6.6.1 By Region - Asia Ultra High Purity Hydrofluoric Acid Revenue, 2016-2027
6.6.2 By Region - Asia Ultra High Purity Hydrofluoric Acid Sales, 2016-2027
6.6.3 China Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.6.4 Japan Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.6.5 South Korea Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.6.6 Southeast Asia Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.6.7 India Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.7 South America
6.7.1 By Country - South America Ultra High Purity Hydrofluoric Acid Revenue, 2016-2027
6.7.2 By Country - South America Ultra High Purity Hydrofluoric Acid Sales, 2016-2027
6.7.3 Brazil Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.7.4 Argentina Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.8 Middle East & Africa
6.8.1 By Country - Middle East & Africa Ultra High Purity Hydrofluoric Acid Revenue, 2016-2027
6.8.2 By Country - Middle East & Africa Ultra High Purity Hydrofluoric Acid Sales, 2016-2027
6.8.3 Turkey Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.8.4 Israel Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.8.5 Saudi Arabia Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
6.8.6 UAE Ultra High Purity Hydrofluoric Acid Market Size, 2016-2027
7 Manufacturers & Brands Profiles
7.1 Stella Chemifa Corp
7.1.1 Stella Chemifa Corp Corporate Summary
7.1.2 Stella Chemifa Corp Business Overview
7.1.3 Stella Chemifa Corp Ultra High Purity Hydrofluoric Acid Major Product Offerings
7.1.4 Stella Chemifa Corp Ultra High Purity Hydrofluoric Acid Sales and Revenue in Global (2016-2021)
7.1.5 Stella Chemifa Corp Key News
7.2 FDAC
7.2.1 FDAC Corporate Summary
7.2.2 FDAC Business Overview
7.2.3 FDAC Ultra High Purity Hydrofluoric Acid Major Product Offerings
7.2.4 FDAC Ultra High Purity Hydrofluoric Acid Sales and Revenue in Global (2016-2021)
7.2.5 FDAC Key News
7.3 Honeywell
7.3.1 Honeywell Corporate Summary
7.3.2 Honeywell Business Overview
7.3.3 Honeywell Ultra High Purity Hydrofluoric Acid Major Product Offerings
7.3.4 Honeywell Ultra High Purity Hydrofluoric Acid Sales and Revenue in Global (2016-2021)
7.3.5 Honeywell Key News
7.4 Solvay (Zhejiang Lansol)
7.4.1 Solvay (Zhejiang Lansol) Corporate Summary
7.4.2 Solvay (Zhejiang Lansol) Business Overview
7.4.3 Solvay (Zhejiang Lansol) Ultra High Purity Hydrofluoric Acid Major Product Offerings
7.4.4 Solvay (Zhejiang Lansol) Ultra High Purity Hydrofluoric Acid Sales and Revenue in Global (2016-2021)
7.4.5 Solvay (Zhejiang Lansol) Key News
7.5 Morita
7.5.1 Morita Corporate Summary
7.5.2 Morita Business Overview
7.5.3 Morita Ultra High Purity Hydrofluoric Acid Major Product Offerings
7.5.4 Morita Ultra High Purity Hydrofluoric Acid Sales and Revenue in Global (2016-2021)
7.5.5 Morita Key News
7.6 Sunlit Chemical
7.6.1 Sunlit Chemical Corporate Summary
7.6.2 Sunlit Chemical Business Overview
7.6.3 Sunlit Chemical Ultra High Purity Hydrofluoric Acid Major Product Offerings
7.6.4 Sunlit Chemical Ultra High Purity Hydrofluoric Acid Sales and Revenue in Global (2016-2021)
7.6.5 Sunlit Chemical Key News
7.7 Zhejiang Kaiheng Electronic Materials
7.7.1 Zhejiang Kaiheng Electronic Materials Corporate Summary
7.7.2 Zhejiang Kaiheng Electronic Materials Business Overview
7.7.3 Zhejiang Kaiheng Electronic Materials Ultra High Purity Hydrofluoric Acid Major Product Offerings
7.4.4 Zhejiang Kaiheng Electronic Materials Ultra High Purity Hydrofluoric Acid Sales and Revenue in Global (2016-2021)
7.7.5 Zhejiang Kaiheng Electronic Materials Key News
7.8 Do-Fluoride Chemicals
7.8.1 Do-Fluoride Chemicals Corporate Summary
7.8.2 Do-Fluoride Chemicals Business Overview
7.8.3 Do-Fluoride Chemicals Ultra High Purity Hydrofluoric Acid Major Product Offerings
7.8.4 Do-Fluoride Chemicals Ultra High Purity Hydrofluoric Acid Sales and Revenue in Global (2016-2021)
7.8.5 Do-Fluoride Chemicals Key News
7.9 Suzhou Crystal Clear Chemical
7.9.1 Suzhou Crystal Clear Chemical Corporate Summary
7.9.2 Suzhou Crystal Clear Chemical Business Overview
7.9.3 Suzhou Crystal Clear Chemical Ultra High Purity Hydrofluoric Acid Major Product Offerings
7.9.4 Suzhou Crystal Clear Chemical Ultra High Purity Hydrofluoric Acid Sales and Revenue in Global (2016-202
 ....continued
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wiseguy05 · 3 years
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Phenoxy Resins (CAS 26402-79-9) Market Research Report 2021-2028
This report contains market size and forecasts of Phenoxy Resins (CAS 26402-79-9) in global, including the following market information: Global Phenoxy Resins (CAS 26402-79-9) Market Revenue, 2016-2021, 2022-2027, ($ millions) Global Phenoxy Resins (CAS 26402-79-9) Market Sales, 2016-2021, 2022-2027, (K MT) Global top five Phenoxy Resins (CAS 26402-79-9) companies in 2020 (%) The global Phenoxy Resins (CAS 26402-79-9) market was valued at 333.4 million in 2020 and is projected to reach US$ 359.6 million by 2027, at a CAGR of 1.9% during the forecast period. MARKET MONITOR GLOBAL, INC (MMG) has surveyed the Phenoxy Resins (CAS 26402-79-9) manufacturers, suppliers, distributors and industry experts on this industry, involving the sales, revenue, demand, price change, product type, recent development and plan, industry trends, drivers, challenges, obstacles, and potential risks.
ALSO READ : http://www.marketwatch.com/story/e-commerce-of-agricultural-products-market-research-report-with-size-share-value-cagr-outlook-analysis-latest-updates-data-and-news-2021-2027-2021-06-25
Total Market by Segment: Global Phenoxy Resins (CAS 26402-79-9) Market, By Type, 2016-2021, 2022-2027 ($ Millions) & (K MT) Global Phenoxy Resins (CAS 26402-79-9) Market Segment Percentages, By Type, 2020 (%) Type 316 Type 304 Others
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Global Phenoxy Resins (CAS 26402-79-9) Market, By Application, 2016-2021, 2022-2027 ($ Millions) & (K MT) Global Phenoxy Resins (CAS 26402-79-9) Market Segment Percentages, By Application, 2020 (%) Automotive Aerospace Industrial & Crane Oil & Gas Mining
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Global Phenoxy Resins (CAS 26402-79-9) Market, By Region and Country, 2016-2021, 2022-2027 ($ Millions) & (K MT) Global Phenoxy Resins (CAS 26402-79-9) Market Segment Percentages, By Region and Country, 2020 (%) North America US Canada Mexico Europe Germany France U.K. Italy Russia Nordic Countries Benelux Rest of Europe Asia China Japan South Korea Southeast Asia India Rest of Asia South America Brazil Argentina Rest of South America Middle East & Africa Turkey Israel Saudi Arabia UAE Rest of Middle East & Africa
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Competitor Analysis The report also provides analysis of leading market participants including: Key companies Phenoxy Resins (CAS 26402-79-9) revenues in global market, 2016-2021 (Estimated), ($ millions) Key companies Phenoxy Resins (CAS 26402-79-9) revenues share in global market, 2020 (%) Key companies Phenoxy Resins (CAS 26402-79-9) sales in global market, 2016-2021 (Estimated), (K MT) Key companies Phenoxy Resins (CAS 26402-79-9) sales share in global market, 2020 (%) Further, the report presents profiles of competitors in the market, key players include: BS Stainless Sandvik Materials Technology Gibbs Wire & Steel Optimum Spring Loos & Co. S3i Group Shanghai BoZhong Metal Group WireCo World Group Tokyo Rope Kiswire Jiangsu Langshan Guizhou Wire Rope Fasten Group Usha Martin Bekaert General Wire Spring Sumiden Wire Novametal Mid-West Spring Raajratna
Table of Content
Competitor Analysis The report also provides analysis of leading market participants including: Key companies Phenoxy Resins (CAS 26402-79-9) revenues in global market, 2016-2021 (Estimated), ($ millions) Key companies Phenoxy Resins (CAS 26402-79-9) revenues share in global market, 2020 (%) Key companies Phenoxy Resins (CAS 26402-79-9) sales in global market, 2016-2021 (Estimated), (K MT) Key companies Phenoxy Resins (CAS 26402-79-9) sales share in global market, 2020 (%) Further, the report presents profiles of competitors in the market, key players include: BS Stainless Sandvik Materials Technology Gibbs Wire & Steel Optimum Spring Loos & Co. S3i Group Shanghai BoZhong Metal Group WireCo World Group Tokyo Rope Kiswire Jiangsu Langshan Guizhou Wire Rope Fasten Group Usha Martin Bekaert General Wire Spring Sumiden Wire Novametal Mid-West Spring Raajratna
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3.8.2 List of Global Tier 2 and Tier 3 Phenoxy Resins (CAS 26402-79-9) Companies 4 Sights by Product 4.1 Overview 4.1.1 By Type - Global Phenoxy Resins (CAS 26402-79-9) Market Size Markets, 2021 & 2027 4.1.2 Type 316 4.1.3 Type 304 4.1.4 Others 4.2 By Type - Global Phenoxy Resins (CAS 26402-79-9) Revenue & Forecasts 4.2.1 By Type - Global Phenoxy Resins (CAS 26402-79-9) Revenue, 2016-2021 4.2.2 By Type - Global Phenoxy Resins (CAS 26402-79-9) Revenue, 2022-2027 4.2.3 By Type - Global Phenoxy Resins (CAS 26402-79-9) Revenue Market Share, 2016-2027 4.3 By Type - Global Phenoxy Resins (CAS 26402-79-9) Sales & Forecasts 4.3.1 By Type - Global Phenoxy Resins (CAS 26402-79-9) Sales, 2016-2021 4.3.2 By Type - Global Phenoxy Resins (CAS 26402-79-9) Sales, 2022-2027 4.3.3 By Type - Global Phenoxy Resins (CAS 26402-79-9) Sales Market Share, 2016-2027 4.4 By Type - Global Phenoxy Resins (CAS 26402-79-9) Price (Manufacturers Selling Prices), 2016-2027 5 Sights by Application 5.1 Overview 5.1.1 By Application - Global Phenoxy Resins (CAS 26402-79-9) Market Size, 2021 & 2027 5.1.2 Automotive 5.1.3 Aerospace 5.1.4 Industrial & Crane 5.1.5 Oil & Gas 5.1.6 Mining 5.2 By Application - Global Phenoxy Resins (CAS 26402-79-9) Revenue & Forecasts 5.2.1 By Application - Global Phenoxy Resins (CAS 26402-79-9) Revenue, 2016-2021 5.2.2 By Application - Global Phenoxy Resins (CAS 26402-79-9) Revenue, 2022-2027 5.2.3 By Application - Global Phenoxy Resins (CAS 26402-79-9) Revenue Market Share, 2016-2027 5.3 By Application - Global Phenoxy Resins (CAS 26402-79-9) Sales & Forecasts 5.3.1 By Application - Global Phenoxy Resins (CAS 26402-79-9) Sales, 2016-2021 5.3.2 By Application - Global Phenoxy Resins (CAS 26402-79-9) Sales, 2022-2027 5.3.3 By Application - Global Phenoxy Resins (CAS 26402-79-9) Sales Market Share, 2016-2027 5.4 By Application - Global Phenoxy Resins (CAS 26402-79-9) Price (Manufacturers Selling Prices), 2016-2027 6 Sights by Region 6.1 By Region - Global Phenoxy Resins (CAS 26402-79-9) Market Size, 2021 & 2027 6.2 By Region - Global Phenoxy Resins (CAS 26402-79-9) Revenue & Forecasts 6.2.1 By Region - Global Phenoxy Resins (CAS 26402-79-9) Revenue, 2016-2021 6.2.2 By Region - Global Phenoxy Resins (CAS 26402-79-9) Revenue, 2022-2027 6.2.3 By Region - Global Phenoxy Resins (CAS 26402-79-9) Revenue Market Share, 2016-2027 6.3 By Region - Global Phenoxy Resins (CAS 26402-79-9) Sales & Forecasts 6.3.1 By Region - Global Phenoxy Resins (CAS 26402-79-9) Sales, 2016-2021 6.3.2 By Region - Global Phenoxy Resins (CAS 26402-79-9) Sales, 2022-2027 6.3.3 By Region - Global Phenoxy Resins (CAS 26402-79-9) Sales Market Share, 2016-2027 6.4 North America 6.4.1 By Country - North America Phenoxy Resins (CAS 26402-79-9) Revenue, 2016-2027 6.4.2 By Country - North America Phenoxy Resins (CAS 26402-79-9) Sales, 2016-2027 6.4.3 US Phenoxy Resins (CAS 26402-79-9) Market Size, 2016-2027 6.4.4 Canada Phenoxy Resins (CAS 26402-79-9) Market Size, 2016-2027 6.4.5 Mexico Phenoxy Resins (CAS 26402-79-9) Market Size, 2016-2027 6.5 Europe 6.5.1 By Country - Europe Phenoxy Resins (CAS 26402-79-9) Revenue, 2016-2027 6.5.2 By Country - Europe Phenoxy Resins (CAS 26402-79-9) Sales, 2016-2027 6.5.3 Germany Phenoxy Resins (CAS 26402-79-9) Market Size, 2016-2027 6.5.4 France Phenoxy Resins (CAS 26402-79-9) Market Size, 2016-2027 6.5.5 U.K. Phenoxy Resins (CAS 26402-79-9) Market Size, 2016-2027 6.5.6 Italy Phenoxy Resins (CAS 26402-79-9) Market Size, 2016-2027 6.5.7 Russia Phenoxy Resins (CAS 26402-79-9) Market Size, 2016-2027 6.5.8 Nordic Countries Phenoxy Resins (CAS 26402-79-9) Market Size, 2016-2027 6.5.9 Benelux Phenoxy Resins (CAS 26402-79-9) Market Size, 2016-2027 6.6 Asia
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Textile Colourant Market Size, Share, Trends, Industry Analysis : Research During The Ongoing COVID-19 And Research Methodology By Forecast To 2026
For a deep understanding of the global textile colourant market, it is necessary to take a 3600 view of the textile colourant manufacturing process. Manufacturing of textile colourant needs different types of carries depending on the nature of the dye. There are nine steps in the manufacturing process of textile colourant, as clearly explained in a new report on the global textile colourant market by Future Market Insights titled “Textile Colourant Market: Global Industry Analysis and Opportunity Assessment, 2016–2026.
Raw Material Receiving and Weighing: Raw material includes dye, dyestuffs, and other carrier chemicals for stabilising the dye with the receptor fibre
Sublimation: Sublimation dye is a popular variety of dye that has printing applications. These dyes typically range from a variety of dyes including reactive, acid, pigment, disperse, direct and vat
Freezing: Dyes are usually unstable with high temperature, concentrate is usually collected at a temperature below its melting point called as freezing technique
Decantation: Decantation is the process of removing a layer of liquid for the separation of mixtures, usually one from which a precipitate has settled. The purpose is to remove undesired liquid from the precipitate and to produce a clean decant
Precipitation: Precipitation is one of the techniques of separating solid particles from the liquid solution
Distillation: Distillation is a process in which component or substances from a liquid mixture are separated by selective condensation and evaporation
Crystallisation: The process in which a solid substance is formed with the atoms or molecules in a highly organised structure known as a crystal
Filtration: Filtration is a simple process of separating suspended solid matter from a liquid
Evaporation and Solvent Extraction: Evaporation, size reduction, size separation, and drying process is done after filtration to develop the textile colourant
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The analysts of Future Market Insights have observed that global textile colourant market players are focussing on enhancing their geographical presence by establishing new production plants and research and development centres in different geographical locations across the globe. Companies are also collaborating with peers, suppliers, end-use industries, and with others members of the supply chain for forward and backward integration in the global textile colourant market. According to our analysts, the textile industry in developing regions has witnessed rapid growth due to low labour costs and adequate infrastructure. This has increased demand for textile colourants in regions such as Middle East and Africa and Asia Pacific Excluding Japan. In addition, emergence of new segments such as technical textiles in the textile industry have led to a rise in demand for textile colourants.
Market Segmentation
For Complete TOC @ https://www.futuremarketinsights.com/toc/rep-gb-3776 
Research Methodology
Yearly change in inflation rate has not been considered while forecasting market numbers. Top-down approach has been used to assess market numbers for each product category, while bottom-up approach has been used to counter validate the market estimations. Macro-economic indicators such as GDP and textile industry growth have been considered. Product-wise weighted Average Selling Price (ASP) has been considered to deduce market values. Market volume is inferred through in-depth secondary research and validated from industry experts through primary interviews. Each interview is thoroughly analysed and average market volume is deduced and reconfirmed prior to incorporating in the report. The market value of the global textile colourant market is thus calculated from the data derived from the average selling price and market volume.
For the 10-year forecast of the global textile colourant market,   various macro-economic factors and changing trends have been observed,   giving an idea about the future of the market. Other important factors   considered to arrive at market forecast are the size of the current   market, inputs from the supply side and the demand side and other   dynamics shaping the scenario of the market. In the compilation of the   report, the forecasts are conducted in terms of CAGR, while other   important criteria such as year-on-year growth and absolute dollar   opportunity have also been incorporated presenting the client with   crystal clear insights and future opportunities likely to emerge in the global textile colourant market.
Table Of Content
1. Executive Summary
2. Market Introduction
2.1. Market Definition
2.2. Market Taxonomy
2.3. Textile Chemicals Market Overview
3. Market Dynamics
3.1. Drivers
3.1.1. Macroeconomic
3.1.2. Supply Side
3.1.3. Demand Side
3.2. Restraints
3.3. Forecast Factors – Relevance and Impact
4. Global Textile Colorant Market Analysis Scenario
4.1. Market Value and Volume Analysis
4.2. Pricing Analysis
4.2.1. Price Projections Per Region
4.3. Market Size (US$ Mn) and Forecast
4.3.1. Market Size and Y-o-Y Growth
4.3.2. Absolute $ Opportunity
4.4. Market Overview
4.4.1. Value Chain
4.4.2. Profitability Margins
4.4.3. List of Active Participants
4.4.3.1. Chemical Suppliers
4.4.3.2. Textile Colorant Suppliers
4.4.3.3. End-Use Industries
5. Global Textile Colorant Market Analysis and Forecasts, By Fiber Type
5.1. Introduction
5.1.1. Basis Point Share (BPS) Analysis By Fiber Type
5.1.2. Y-o-Y Growth Projections By Fiber Type
5.2. Market Value (US$ Mn) and Volume (‘000 Tonnes) Forecast By Fiber Type, 2016–2026
5.2.1. Wool
5.2.2. Nylon
5.2.3. Cotton
5.2.4. Polyester
5.2.5. Acrylic
5.2.6. Acetate
5.2.7. Rayon
5.3. Prominent Trends
5.4. Market Attractiveness By Fiber Type
6. Global Textile Colorant Market Analysis and Forecasts, By Dye Type
6.1. Introduction
6.1.1. Basis Point Share (BPS) Analysis By Dye Type
6.1.2. Y-o-Y Growth Projections By Dye Type
6.2. Market Value (US$ Mn) and Volume (‘000 Tonnes) Forecast By Dye Type, 2016–2026
6.2.1. Reactive Dye
6.2.2. Acid Dye
6.2.3. Direct Dye
6.2.4. Disperse Dye
6.2.5. Basic Dye
6.3. Prominent Trends
6.4. Market Attractiveness By Dye Type
For Information On The Research Approach Used In The Report, Request Methodology@ https://www.futuremarketinsights.com/askus/rep-gb-3776
About FMI
Future Market Insights (FMI) is a leading provider of market intelligence and consulting services, serving clients in over 150 countries. FMI is headquartered in Dubai, the global financial capital, and has delivery centers in the U.S. and India. FMI’s latest market research reports and industry analysis help businesses navigate challenges and make critical decisions with confidence and clarity amidst breakneck competition. Our customized and syndicated market research reports deliver actionable insights that drive sustainable growth. A team of expert-led analysts at FMI continuously tracks emerging trends and events in a broad range of industries to ensure that our clients prepare for the evolving needs of their consumers.
Contact
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Dyes and Pigments Market – Share ,Pre and Post COVID-19 Scenario of Dyes and Pigments Market trends , swot analysis , forecast 2027
Market Synopsis
According to the MRFR analysis, Global Dyes & Pigments Market was valued at USD 34.2 Billion in 2019 and is projected to witness a CAGR of over 5% during the forecast period, 2020–2027.
The protuberant factor driving the growth of the global market is the high demand for dyes & pigments in the textile industry, prominently in Asia-Pacific and the developing economies of the Middle East & Africa and Latin America. Moreover, the prospering textile industry in Asia-Pacific and the Middle East & Africa on account of the availability of skilled and low-cost labor, favorable macroeconomic conditions, and abundant availability of natural resources (for fabric manufacturing such as cotton and jute) are further expected to boost demand for textile dyes in the textile industry in these regions. The rising demand for printing inks in the textile industry owing to the rising concerns over water pollution and wastage caused due to the use of synthetic dyes has been driving the demand for pigments in digital textile printing. Furthermore, the rising demand for pigments in the paints & coatings industry on account of the expanding residential construction and infrastructure projects in the emerging economies of Asia-Pacific is likely to drive the market growth during the forecast period.
However, the stringent regulations pertaining to the use of synthetic dyes and the volatile raw material prices are expected to be the key challenges for the market growth in the years to follow.
Regulatory Framework
The dyes and pigments used commercially are required to meet the specific regulatory standards set by the specific country to be safe for use in particular applications. These regulations vary by country or region and by the desired application.
The     European Commission - Regulation (EU) 2018/1513
Plastics     Regulation, (EU) No 10/2011
US     law [Federal Food, Drug, and Cosmetic Act (FD&C Act), sec. 721; 21     U.S.C. 379e]
Regulation     (EC) No. 1331/2008 (EC 2008a)
SEGMENTATION
By Type
Dyes: Dyes are an important class of synthetic organic compounds that are used in a variety of industries, including textiles, leather, inks, and paper. The segment held the larger share of the market, around 65 to 70%, in 2019. Dyes are generally divided as natural and synthetic dyes, wherein the synthetic dyes being used in a larger amount as compared to natural ones. However, with the rising concerns over the use of synthetic dyes and the shift towards sustainable clothing has driven the demand for natural dyes
The dyes segment is further classified based on application methods into reactive dyes, disperse dyes, acid dyes, and direct dyes, among others.
Reactive Dyes: Reactive dyes differ from other class of dyes in that their molecules contain one or more reactive groups capable of forming a covalent bond with a compatible fiber group. Reactive dyes are widely used in the textile industry owing to the high wet-fastness and its ability to impart long-lasting color. Reactive dyes are the most permanent of all dye types and are also the most widely used type of dye used on cotton and other cellulose fibers.
Disperse Dyes: Disperse dyes are nonionic dyes used to color synthetic yarns and fabrics such as nylon, polyester, and acrylics. These dyes generally contain azo, anthraquinone, and nitro groups, and are water-insoluble, relying on dispersing agents to spread the color molecules in water.
Acid Dyes: Acid dyes are majorly organic sulfonic acids and contain azo, nthraquinone, triphenylmethane, nitro, and nitroso chromophoric groups. Their colors are generally bright, and the fastness to light and washing is generally good, depending on the chemical structure of the dyestuff.
Direct Dyes: Direct dyes are soluble salts of complex sulfonic acids, including diazo or poly azo chemicals. These dyes do not require a mordant and the dyeing procedure is quite simple. 
Others: The others segment vat dyes and basic dyes.
 Pigments: Pigments are insoluble materials, usually in powder form, which add color to inks, paints, plastics, cosmetics, and food items. When used on textiles, the pigments require binders or other additives to attach to the fibers. Pigments market share can be derived from minerals as well as manufactured synthetically. Pigments are generally classified into organic and inorganic pigments.
Inorganic Pigments: Inorganic pigments are chemical compounds based on oxide, oxide hydroxide, sulfide, silicate, sulfate, or carbonate and can be classifikey groups, which are white pigments, black pigments (carbon black), colored pigments, and specialty pigments. These pigments have a larger average particle size compared to organic pigments and hence are opaque. Inorganic pigments held the larger share of the total pigments segment owing to the widespread use of these pigments in the plastics, paints & coatings, construction, and paper industries.
Organic Pigments: Organic pigments are mainly based on carbon, hydrogen, and nitrogen and are classified into three main groups, which are azo pigments, polycyclic pigments, and anthraquinone pigments. However, these pigments may also contain metallic (inorganic) elements that help stabilize the properties of the organic component. Generally, organic pigments have a lower covering power than inorganic pigments but exhibit higher color strength and gloss.
 By End-Use Industry
Textile: The growth of the infrastructure segment is primarily driven by the increasing investments by the governments of developing economies across the globe. Colorants are an extremely important aspect of modern textiles. The color of a textile product is a major factor in the marketing and use of that product. Dyes and pigments are used to impart color to a textile material with some degree of fastness or permanence. With the rising production of textile products, the demand for dyes & pigments also increases. Moreover, the healthy growth of the textile industry in Asia-Pacific and the Middle East & Africa is further driving the growth of the market growth.
Paints & Coatings: The growth of the paints & coatings segment is majorly driven by the impetus provided by the growth of the residential sector in the developing economies. The rising residential and commercial construction, especially in India and China, due to the growing economies and population, the increasing government and private sector investments, the rising per-capita incomes, growing consumer spending, and the improving standard of living are together expected to boost the demand for paints & coating products in the region and thus favor the growth of the segment in the years to follow.
Printing Inks: The printing inks segment is one of the fastest-growing end-use industry segments in the global dyes & pigments market. Printing inks are majorly used for screen printing, pad printing, and digital printing applications. Organic and inorganic pigments are used for the production of various printing inks such as offset inks, publication gravure inks, solvent-based packaging inks, water-based packaging inks, and decorative laminate inks. The increasing demand for digital printing inks in the packaging, sports & leisure, and textile industries is likely to be a key factor fueling the growth of the segment.
Leather: Leather dyeing involves the application of direct and acidic dyes, most often with mordant, in alkaline conditions. The leather used in apparel making, automotive products, as well as for footwear and other consumer products, requires overall dyeing. However, the leather industry is facing challenging environmental regulations and specific requirements regarding eco-efficiency and consumer safety. Thus, the demand for eco-friendly dyes & pigments is increasing in this end-use industry segment.
Plastics: In the plastics industry, inorganic pigments are such as metal oxides and sulphides, carbon black are largely used, as they get easily dispersed in the resin. There are mainly two methods of plastic coloring, which are external coloring and internal coloring. External coloring is a method of dyeing the surface of plastics. It applies to printing, coating, and plating. Internal coloring is a method of dyeing plastics by kneading colorants into them.
Plastic colorants not only enhance the aesthetic appearance of the plastic but also helps in improving usability and quality.
Pulp & Paper: Paper dyes are applied in papermaking furnishes to achieve precise shade and quality targets. Direct dyes are the preferred dye group and are ideal for providing deep, lasting color in printing and writing papers, graphic and specialty papers, paper board, hygiene papers, corrugated case materials, and decorative tissue paper grades. New applications such as carbonless papers/thermal papers are likely to provide opportunities in the market in the coming years.
Others: The others segment includes food & beverages and personal care & cosmetics.
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By Region
North America: The growth of the residential construction sector and the ongoing infrastructure development projects, primarily in the US, is the primary driver for regional market growth.
Europe: Western European countries, including Germany, France, and Spain, are the major contributors to the regional market growth. The established building & construction industry is expected to support the growth of the regional market during the forecast period. Stringent regulations pertaining to the use of synthetic dyes have been driving the demand for the natural dyes in the region.
Asia-Pacific: Asia-Pacific is the largest and fastest-growing regional market for dyes & pigments, with China and India being the leading country-level markets. China, India, Bangladesh, Thailand, and South Korea are the major textile and fabric producers in Asia-Pacific.
Latin America: The booming construction sector in Mexico and Brazil and the expanding textile industry are likely to fuel the demand for dyes & pigments in Latin America during the forecast period.
Middle East & Africa: The high growth potential of the textile industry and the expanding construction sector in the GCC countries is expected to propel the regional market growth during the forecast period.
  NOTE: Our Team of Researchers are Studying Covid19 and its Impact on Various Industry Verticals and wherever required we will be considering Covid19 Footprints for Better Analysis of Market and Industries. Cordially get in Touch for More Details.
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Textile Chemicals Market Future Innovation Strategies, Growth & Profit Analysis
The global textile chemicals market is anticipated to reach USD 25.73 billion by 2026 according to a new study published by Polaris Market Research
Textile chemicals are one of the major segments of the global chemical manufacturing industry. The growth of the textile manufacturing industry has been the major factor driving demand for these products. Relatively low capital intensity, use of low skilled labor and lower investment cost characteristics depicts the industry’s relatively footloose nature and hence can adjust to the changing conditions of the market. Several trade policy regulatory norms and their nature of volatility in different geographies have played a significant role as this segment of the chemicals are bound to satisfy even the textile manufacturing legislations.
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Demand of these chemicals across different geographies is influenced by the rising emphasis of product quality all throughout the world-wide textile industry and also the increasing demand for durable and comfortable apparels. Moreover, increasing production of technical/industrial and automobile textiles is expected to further add to the demand of these products. Natural fibers of cheap are among the leading segments generating higher consumption figures for these products. However, cheaper fibers with manmade better performance alternatives use in several industrial might be a restraint for direct and vat dyes, reactive as well as preparation and sizing chemicals that are generally used in the processing of these natural fibers.
The nonetheless naturally derived fibers are projected to constitute a larger share of the application segment. This will provide higher market penetration opportunities mainly for the high value non-chlorine bleaching agents including hydrogen peroxide and also for other product segments like finishing chemicals. As natural fibers are expected to be the largest market for these textile chemical components, strong demand for products designed for offering improved performance and comfort of cellulosic and synthetic manufactured fibers.
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Asia Pacific region is expected to emerge as the largest market worldwide. Along with increasing penetration of these products, consumption of these products is increasing, owing to the increasing textile manufacturing base especially in China and India. The primary export markets of the region include Brazil, Western & Eastern Europe and the Middle East. The Asia Pacific market is also projected to grow at a faster rate compared to other regions.
Some of the leading industry participants actively operating in the present industry scenario include Archroma, The DyStar Group, The Lubrizol Corporation, Lonsen Inc., The Dow Chemical Company, Kiri Industries Limited, Solvay SA, OMNOVA Solutions Inc., Covestro AG and Pulcra Chemicals GmbH.
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