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Maleic Anhydride - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue, Plant Layout

Maleic anhydride with its wide field of application viz. polyester resins, epoxy resin alkyd coating resins, fumaric acid, tartaric acid etc., is a very demandable product. India is importing large quantities of polyesters resins the basic raw material for polyester. This accounts for a wide demand supply gap for maleic anhydride. There are three producers with a total capacity of 6750 tonnes and two more are the offing.
Plant capacity: 300 MT/AnnumPlant & machinery: Rs. 53 Lacs
Working capital: -T.C.I: Rs. 105 Lacs
Return: 12.85%Break even: N/A
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MALEIC ANHYDRIDE - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue, Plant Layout

Maleic Anhydride is poly-functional chemical of significant commercial interest world-wide. About 90% of the maleic anhydride at present produced is derived from benzene oxidation. It has been known for over 150 years. It is widely used chemical as starting material in the manufacture of many end products such as unsaturated polyester resins, fumeric acid oil additives, agricultural chemicals, maleic acid etc. It is the principal raw material for fumeric acid. The largest use for fumeric acid is in the manufacture of sizing resins for paper. Maleic anhydride due to its excellent plasticity is a very good raw material for any type of synthetic resins like polyester resins, alkyd resins etc. the production of polyester resins is increasing over the years. It is used in boats, autos, building angles, electrical good and even in piping. The future of polyester resins industry is understood to be bright. Therefore the demand for maleic anhydride from polyester resins manufacturers are estimated to increase by 15% per annum. It will be profitable for new entrants to invest into this project.
Plant capacity: 1500 MT / AnnumPlant & machinery: 42 Lakh
Working capital: -T.C.I: Cost of Project : 132 Lakh
Return: 43.00%Break even: 56.00%
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SODIUM BOROHYDRIDE - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue

Sodium borohydride, also known as sodium tetrahydridoborate, and sodium tetrahydroborate[2] is an inorganic compound with the formula NaBH4. This white solid, usually encountered as a powder, is a versatile reducing agent that finds wide application in chemistry, both in the laboratory and on a technical scale. USES Sodium borohydride is a good reducing agent. Although not as powerful as lithium aluminum hydride (LiAlH4), it is very effective for the reduction of aldehydes and ketones to alcohols. By itself, it will generally not reduce esters, carboxylic acids, or amides (although it will reduce acyl chlorides to alcohols). It is also used in the second step of the oxymercuration reaction to replace mercury (Hg) with H. PROCESS A process for production of sodium borohydride. The process comprises the steps of: (a) combining a boric acid ester, B(OR)3 and sodium aluminum hydride to produce sodium borohydride and Al(OR)3; and (b) combining Al(OR)3 and sulfuric acid to produce alum and ROH. MAJOR INDUSTRIAL APPLICATIONS Sodium Borohydride is used for the reduction of carbonyls, peroxides and metal ions, as well as purification and removal of color, odor and oxidation precursors in organic chemical products. Pulp and Paper Pharmaceutical Industry Metal Recovery Textiles Organic Chemical Purification Bleaching agent in paper industry Purification agent Organoboranes GLOBAL PRODUCERS Montgomery Chemicals (Conshohocken, PA) Montgomery Chemicals is large manufacturer of sodium borohydride in North America. SCENARIO IN CHINA In China, pharmaceuticals is the largest application field for sodium borohydride showing 73% share in volume in 2013, which is different from overseas markets where paper making is the dominant field. Its consumption in electronic products, paper making, water treatment and perfume is small.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: 1.00%
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Acetic Anhydride

Acetic anhydride, or ethanoic anhydride, is the chemical compound with the formula (CH3CO) 2O. Commonly abbreviated Ac2O, it is the simplest isolable anhydride of a carboxylic acid and is widely used as a reagent in organic synthesis. It is a colorless liquid that smells strongly of acetic acid, which is formed by its reaction with moisture in the air. Acetic anhydride is manufactured by carbonylation of acetate. It is also manufactured by reaction of ketene with acetic acid. Acetic anhydride is also manufactured via recovered acetic acid from processes related to cellulose acetate. Acetic anhydride is colorless and has a pungent odor similar to acetic acid. Acetic anhydride is majorly consumed in cellulose acetates. The market for acetic anhydride is mainly driven by huge demand from cigarette tow market. Cellulose acetate is mainly consumed in cigarettes. Acetic anhydride is also used in fragrances & flavors, dyes and textile industry. Acetate cellulose in mainly used in acetate textile fibers thus driving the demand for acetic anhydride. The global acetic anhydride market is expected to witness a CAGR of approximately 4.2% during the forecasted period.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Phthalic Anhydride

Phthalic anhydride is the organic compound with the formula C6H4 (CO) 2O. It is the anhydride of phthalic acid. Phthalic anhydride is a principal commercial form of phthalic acid. It was the first anhydride of a dicarboxylic acid to be used commercially. This colourless solid is an important industrial chemical, especially for the large-scale production of plasticizers for plastics. In 2000, the worldwide production volume was estimated to be about 3 million tonnes per year. Phthalic anhydride (PA) is a white crystalline compound used to manufacture plasticizers, pigments, dyes and resins. One major consumer of PA is the phthalate plasticiser industry, the products of which are used to produce flexible plastic products such as wire & cable applications, hoses, pipes, coated fabrics, roofing membranes and swimming pool liners. The global phthalic anhydride market is expected to witness a CAGR of 4.27% owing to an increase in the utilization of plasticizers, which is used in the production of polyvinyl chloride in the Asia-Pacific region. The growing demand for glass fiber reinforced plastics in various industries is also likely to stimulate the phthalic anhydride market during the forecast period. Asia-Pacific is leading in the consumption of phthalic anhydride and is likely to continue its position due to increasing construction and automotive manufacturing activities in the region. The developing countries in this region will drive the demand for the market as the demand for buildings catering to education, healthcare, and social infrastructure is increasing. Some of the major players operating in the global phthalic anhydride market are BASF SE (Germany), Hongxin Chemical (China), NAN YA PLASTICS CORPORATION (Taiwan), ExxonMobil Corporation (U.S.), AEKYUNG PETROCHEMICAL Co., Ltd (Republic of Korea), I G Petrochemicals Limited (India), Polynt SPA (Italy), Koppers Inc. (U.S.), Mitsubishi Gas Chemicals Co. Inc. (Japan), and UPC Group (Taiwan).
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Maleic Anhydride Manufacturing Business

Maleic Anhydride Manufacturing Business. Commercial Production of Maleic Anhydride. Highly Profitable Chemical Business Ideas Maleic anhydride is an organic compound with the formula C2H2 (CO) 2O. It is the acid anhydride of maleic acid. Maleic anhydride is a colorless white solid which has a pungent odor. Maleic anhydride is produced by vapor-phase oxidation of n-butane and is biodegradable under aerobic conditions in sewage sludge as well as in soil and water. Maleic anhydride is a precursor to compounds, used for water treatment, detergents, insecticides and fungicides, pharmaceuticals, and other copolymers. It is also used in personal care products, and as artificial sweeteners and flavor enhancer in the food industry. Maleic anhydride is a colorless or white solid with an acrid odor. Maleic anhydride is a very versatile molecule that lends itself to many applications requiring a number of properties and functionalities. With three active sites (two carboxyl groups and one double bond), it is an excellent joining and cross linking agent. Its major end use, representing well over half of global demand, is in the manufacture of unsaturated polyester resins, where its cross-linking abilities are important. Maleic anhydride is used widely as there has been a change in the preference towards stronger and lighter fiberglass composite materials in construction, aerospace, automotive, and turbine industries. It is used in the production of gamma-butyrolactone, 1, 4-butanediol, and tetrahydrofuran. Maleic anhydride is used in the production of unsaturated polyester resin as well as in the manufacture of coatings, pharmaceutics, agricultural products, surfactants, and as an additive of plastics. A wide range of applications in lubricant, fuel oil, automotive, aerospace, turbine, and construction industries are driving the global market for Maleic Anhydride. Maleic Anhydride is the principal ingredient in unsaturated polyester resins which is used to make lighter, stronger and fiberglass, the most preferred product in various industries. Market Outlook The global maleic anhydride market size was valued at USD 2.77 billion in 2018 and is projected to expand at a CAGR of 6.7% from 2019 to 2025.Increasing demand for Unsaturated Polyester Resins (UPR) and 1,4-Butanediol (BDO) are expected to augment market growth over the forecast period. Increasing demand for maleic anhydride based unsaturated polyester from automobile and construction industries is a major factor expected to drive growth of the global maleic anhydride market over the forecast period. In addition, growing demand for maleic anhydride based 1, 4-butanediol from textile industry, is another factor expected to fuel growth of the target market during the forecast period. Rapid Industrialization and Growth in construction is driving the global Maleic Anhydride Market. The escalating growth in construction industry mainly in developing countries is expected to drive the growth of the unsaturated polyester resins. This, in turn, raises the demand for Maleic Anhydrides. This is mainly because of the use of unsaturated polyester resins in heat-resistant pipes and tanks in buildings and other structures. The increasing demand for automobiles due to rapid industrialization is also driving the global order. Asia-Pacific is leading the global Maleic Anhydride Market with a market share of approximately 40%, followed by North America. Rapid growth in building & construction and automotive industries which are the primary end users of the product and enormous growth opportunities for various sectors in this region are favoring it to lead the global market. Application-wise, the maleic anhydride market can be segmented into unsaturated polyester resin (UPR), copolymers, lubricant additives, alkenyl succinic anhydrides, malic acid, fumaric acid, and others. UPR segment, as of 2017, is dominating the market, whereas copolymers are expected to record the fastest growth rate during the forecast period. A key driver for the global maleic anhydride market is the increase in demand from developing countries. Strong contributions from developing economies such as India, China, Brazil, Mexico, and Indonesia have been contributing to the growth of the global maleic anhydride market. This has resulted in several maleic anhydride vendors shifting their manufacturing activities to these countries. In addition, factors such as easy availability of raw materials and land, low-cost labor, low transportation costs, and lenient government regulations and policies are augmenting market growth in the APAC region. Top Leading Companies are: Huntsman Corporation, Changzhou Yabang Chemical, Zibo Qixiang Tengda Chemical, Lanxess AG, Polynt Spa, Ashland Inc., Flint Hills Resources, Nippon Shokubai Co., Ltd, Mitsubishi Chemical Corporation, Bartek Ingredients Inc, China National Bluestar (Group) Co., Ltd., Thirumalai Chemicals Ltd., Other Manufacturers, Etc. Tags #Maleic_Anhydride, #Manufacture_of_Maleic_Anhydride, #Maleic_Anhydride_Manufacture, #Maleic_Anhydride_(MA)_Production_and_Manufacturing_Process, #Production_of_Maleic_Anhydride, #Commercial_Production_of_Maleic_Anhydride, Maleic Anhydride Production, #Maleic_Anhydride_Production_Process, Production Process of Maleic Anhydride, Maleic Anhydride Uses, Maleic Anhydride Manufacture, Maleic Anhydride Uses and Applications, Maleic Anhydride Manufacturing Process, #Manufacturing_Process_of_Maleic_Anhydride, Process For Preparing Maleic Anhydride, Process for Production of Maleic Anhydride, Maleic Anhydride Production Business, Maleic Anhydride Manufacturing Plant, Maleic Anhydride Process Flow Diagram, Maleic Anhydride Industry, Maleic Anhydride Manufacture in India, Maleic Anhydride Business, Start a Maleic Anhydride Manufacturing Business, Detailed Project Report on Maleic Anhydride Production, #Project_Report_on_Maleic_Anhydride_Production, Highly Profitable Chemical Business Ideas, Small Scale Chemical Business Ideas & Opportunities, Chemical Business Opportunities, How to Start a Chemical Industry, Chemical Business Ideas for Aspiring Entrepreneurs, Chemical Industry, Starting a Chemical Business, Commercial Production of Chemicals, Chemical Industry Projects, Starting Your Own Chemical Business, Chemical Compound, Industrial Chemical Manufacturing Business, Lucrative Chemical Business Ideas & Opportunities, Business Ideas for Chemical Industry, How to Start a Chemical Business? Pre-Investment Feasibility Study on Maleic Anhydride Production, Techno-Economic feasibility study on Maleic Anhydride Production, #Feasibility_report_on_Maleic_Anhydride_Production, Free Project Profile on Maleic Anhydride Production, Project profile on Maleic Anhydride Production, Download free project profile on Maleic Anhydride Production
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Sodium Borohydride usingTrimethyl Borate

Sodium borohydride, also known as sodium tetrahydridroborate and sodium tetrahydroborate, is an inorganic compound with the formula NaBH4. This white solid, usually encountered as a powder, is a reducing agent that finds application in chemistry, both in the laboratory and on an industrial scale. It has been tested as pretreatment for pulping of wood, but is too costly to be commercialized. The compound is soluble in alcohols, certain ethers, and water, although it slowly hydrolyzes. Sodium Borohydride, also known as sodium tetrahydridroborate, is a white solid, usually encountered as a powder, widely used as a reducing agent in various industries like pharmaceuticals, pulp & paper, metal recovery, textiles, organic chemical purification and others. Sodium borohydride is an effective and a selective specialty reducing agent used in the manufacture of pharmaceuticals. Sodium borohydride is used for reduction of metal ions, carbonyls and peroxides as well as purification and removal of oxidation, odor and color of precursors in organic chemical products. Sodium borohydride is also used to control pollution and recycle noble metals. Sodium borohydride is a less expensive metal hydride and is an efficient and cost-effective reducing agent. Sodium borohydride finds wide area of applications in the synthesis of many intermediates used in manufacture of medicines and fine chemical products, pharmaceuticals, the recovery & preparation of catalysts, precious heavy metals & rare earth metals among others. Sodium borohydride is used as a reducing agent when reacting with ketone chlorine, aldehyde and ketone. Sodium Borohydride Market size is estimated to grow at a moderate rate from 2016 to 2024 owing to the growth in wood pulp, textile, and pharmaceuticals industries. Extensive usage as a bleaching agent in wood pulp and textiles industry will be a major driver for the global sodium borohydride market in the coming years. Pulp and paper industry is likely to grow on the account of increasing demand from the packaging industry. Environmental sustainability of pulp-based packaging material for food products will be a major boosting factor. Rising worldwide pulp consumption and growing textiles industry owing to changing consumer preference for natural fiber based textiles will also augment the industry growth. Sodium borohydride is also used as a hydrogen storage agent due to high hydrogen density, low cost, and relative air stability. With the current global trend to use alternative and clean energy rising, use of hydrogen as a clean fuel is being considered by many countries. Although this trend will lead to increased product use, but commercial and large-scale use of hydrogen as fuel is still far away due to technological limitations. Scope for the product to be used as hydrogen storage agent by energy and automobile industry is mostly at the research phase and will provide a plethora of opportunities for sodium borohydride market growth in the coming years. Sodium borohydride market will witness growth on the account of its application to produce sodium dithionite, a reducing agent used in wood pulp and bleaching industries. Sodium dithionite is also used to produce alcohols by reducing aldehydes and ketones which are used to manufacture various antibiotics. Growing antibiotics demand in the underdeveloped countries of Asia Pacific and Middle East & Africa will propel the global sodium borohydride market in the coming years. The product is also used in the synthesis of gold nanoparticles, which are used in various fields such as electron microscopy, chemotherapy, radiotherapy, medical research etc. Gold nanoparticles industry is expected to grow by over 25% CAGR in the forecast period which will drive the sodium borohydride market.
Plant capacity: Sodium Borohydride : 3,000 Kgs / dayPlant & machinery: Rs 92 lakhs
Working capital: -T.C.I: Cost of Project : Rs 711 lakhs
Return: 32.00%Break even: 61.00%
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Lucrative Business Opportunities Production of Sodium Borohydride (sodium tetrahydridoborate) Using Trimethyl Borate.

Lucrative Business Opportunities Production of Sodium Borohydride (sodium tetrahydridoborate) Using Trimethyl Borate. Business Ideas in Chemical Industry Sodium borohydride is a white to grayish crystalline powder. It is decomposed by water to form sodium hydroxide, a corrosive material, and hydrogen, a flammable gas. The heat of this reaction may be sufficient to ignite the hydrogen. The material itself is easily ignited and burns vigorously once ignited. It is used to make other chemicals, treat waste water, and for many other uses. Sodium borohydride is an inorganic sodium salt and a metal tetrahydridroborate. Sodium borohydride (NaBH4) is the most commonly available borohydride, synthesized by reacting methyl borate with sodium hydride in mineral oil. It is employed as a precursor for producing other metal borohydride. Various approaches for qualitative and quantitative monitoring of sodium borohydride have been explained the potential of NaBH4 to store as well as generate hydrogen for fuel cells has been investigated. Projects- Project Reports & Profiles Preparation Sodium borohydride is prepared by reacting sodium hydride with trimethyl borate at about 250°C: 4 NaH + B (OCH3)3 ? NaBH3 + 3NaOCH3 Also, sodium borohydride can be made by passing diborane, B2H6, through a solution of sodium methylate, NaOCH3, in methanol: 2B2H6 + 3NaOCH3? 3NaBH3 + B (OCH3)3 Alternatively, diborane may be be passed through a solution of sodium tetramethoxyborohydride at low temperatures: 3 NaB (OCH3)3 + 2B2H6 ? 3NaBH3 + 4B (OCH3)3. Uses Sodium borohydride (NaBH4) is a versatile reducing agent used in a number of industrial processes. Major applications include organic and pharmaceutical synthesis, wastewater treatment, and paper pulp bleaching. Sodium borohydride plays such a significant role in organic synthesis. It is a good reducing agent which has stable performance and selective reduction. It can be used as the reducing agents of aldehydes, ketones and acid chlorides; also as foaming agent for plastic materials, hydrogenating agent of making dihydrostreptomycin, intermediate of making potassium borohydride, raw materials in synthesizing borane, as well as the treatment agent of paper industry and mercury-containing waste water. Related Projects: - Chemicals (Organic, Inorganic, Industrial) Projects Sodium borohydride provides organic chemists a very convenient and mild means for reduction of aldehydes and ketones. Before this, people usually use metal/alcohol approach to reduce carbonyl compound. Sodium borohydride enables the reduction of carbonyl of aldehydes and ketones under very mild conditions to produce primary alcohols and secondary alcohols. Reduction procedure is as below: First dissolve the substrate in a solvent (typically methanol or ethanol), then cool with an ice bath. Finally add sodium borohydride powder to the mixture until the reaction is completed. The reaction process can be monitored by thin layer chromatography. If the solvent is not an alcohol, we need to additionally supply methanol or ethanol along with the reaction. Sodium borohydride is a reducing agent with medium strength, and thus exhibiting good chemical selectivity. It only reduces active aldehyde and ketone carbonyl group, and does not react with the ester, amide. Production Methods Sodium borohydride boric acid ester method: Pour boric acid and appropriate amount of methanol to distillation kettle, slowly heated at 54 °C for total reflux 2h. Then collect the azeotropic liquid of methyl borate and methanol solution. After treatment of azeotropic liquid by sulfuric acid, using fine distillation can yield relative pure product. Feed sodium hydrogen obtained with reaction between hydrogen gas and sodium into the condensation reaction tank. Heat with stirring to about 220 °C and then begin to add boric acid ester. Stop heating once the temperature reaches 260 °C; Keep the feed temperature below 280 °C, continue the stirring after the addition of boric acid ester to ensure the thorough reaction. After the completion of reaction, cool the temperature below 100 °C, centrifuge to obtain a condensation product pellet. Add an appropriate amount of water to the hydrolysis reactor and slowly transfer the filter pellet into the hydrolysis reactor, keep the temperature lower than 50 °C, heat to 80 °C after the complete of adding the filter pellet. Centrifuge and separate, transfer the hydrolysis solution to stratification vessel to keep still for 1h for automatic layering. The hydrolysis solution in the lower layer corresponds to sodium borohydride. The reaction formula is as below: H3BO3+3CH3OH?B (OCH3)3+3H2O 2Na+H2?2NaH 4NaH+B (OCH3)3?NaBH4+3CH3ONa Related Books: - Chemical Technology (Organic, Inorganic, Industrial), Fine Chemicals Market Outlook In the textile industry, Sodium Borohydride used in combination with sodium bisulfite, and it is used instead of replacement for Sodium Hydrosulfite in vat dyeing, indigo dyeing, color stripping, reductive clearing, machine cleaning and many other applications where a stable, environmentally desirable reducing agent is required. In organic chemical purification, Sodium Borohydride improve the color, odor and stability of organic chemicals. Sodium Borohydride works by reducing ketones, aldehydes, peroxides and metal impurities that can lead to color, odor and product instability. The global Sodium Borohydride market is valued at 536.3 million USD in 2020 is expected to reach 881.9 million USD by the end of 2026, growing at a CAGR of 7.3% during 2021-2026. Pulp & Paper is expected to be the major segment during the forecast period, however pharmaceuticals is anticipated to grow at highest CAGR compare to other end-use segments. Increase in research & development activities in pharmaceutical for inventing different medicinal drugs and usage of sodium borohydride as hydrogen carrier in fuel cell is estimated to offer major opportunities to the sodium borohydride market in the next few years. Sodium borohydride is an inorganic compound sold as a white crystalline powder or in an aqueous solution. This compound is widely used in laboratories and other technical applications. The function of sodium borohydride is to act as a polyvalent reducing agent. Related Videos:- Chemicals (Organic, Inorganic, Industrial) Sodium Borohydride Market Drivers: The sodium borohydride market is increasing due to the growing demand of the pharmaceutical industry, which is an important raw material for the manufacture of various pharma products. The intensification of antibiotic research and development efforts is a reason to raise awareness in the health sector. These are the determining factors that will boost the demand for sodium borohydride in the coming years. In addition, the demand for innovative technologies such as hydrogen on demand has increased significantly, offering huge opportunities for the sodium borohydride market in the coming years. In addition, the expansion of the pulp and paper industry that requires high quality sodium borohydride has helped increase market revenues. Market Research Reports :- Market Research Reports, India and Global Industry Analysis ,Market Trends, Market Insight, Market structure, Market Outlook, Indian Industry Size, Share, Trends, Analysis and Forecasts report, Sector Growth Driver, Company Profiles The product is also used in the synthesis of gold nanoparticles, which are used in various fields such as electron microscopy, chemotherapy, radiotherapy, medical research etc. Gold nanoparticles industry is expected to grow by over 25% CAGR in the forecast period which will drive the sodium borohydride market. Key Players Examples of some of the key players identified across the value chain of the Global Sodium Borohydride market are: Zhangjiagang City Jinyuan Biochemical Co., Ltd, Jiangsu Huachang Group Co., Ltd, Shandong Guobang Pharmaceutical Co., Ltd, JSC Aviabor, Vertellus Holdings LLC, The Dow Chemical Company, Nantong Hongzhi Chemical Co., Ltd, Montgomery Chemicals, Kemira, Demosha Chemicals Pvt. Ltd, Finar Ltd, Gulbrandsen Chemicals Pvt. Ltd, Gulshan Chemicals Ltd, Tags:- #sodiumborohydride #SodiumHydride #TrimethylBorate #ChemicalIndustry #DetailedProjectReport #businessconsultant #BusinessPlan #feasibilityReport #NPCS #industrialproject #entrepreneurindia #startupbusiness #startupbusinessideas #startupideas
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Methyltetrahydrophthalic Anhydride (MTHPA)

Methyl TetrahydroPhthalic Anhydride (MTHPA). It is used in the production of adhesives, acrylic resins, paints & lacquers. It is one of the best solidifier or curing agent for epoxy resins. Methyl tetrahydrophthalic Anhydride, one of the MTHPA anhydride referred to as MTHPA, MeTHPA, has two isomers, namely 4-methyltetrahydrophthalic anhydride and 3-methyltetrahydrophthalic anhydride, having a melting point of 65°C and 63°C. It is rarely used as a curing agent alone. The actual commodity is a liquid mixture that isomerized to various isomers. The molecular weight is 166.17, and light yellow color, transparent oily liquid, relative density of 1.20-1.22. Freezing point <-20°C. The boiling point is 115-155°C. Viscosity (25°C) 40-80 mPa•s. The refractive index is 1.4960 to 1.4980. The anhydride group content is ? 40%. MTHPA is mainly used as a curing agent for epoxy resins. It has a low tendency to absorb moisture from the air and zero or minimal formation of carbon dioxide when mixed with tertiary amine accelerators. MTHPA can be easily blended with various liquid resins providing stable, low viscous mixture and long pot lives. In the field of reinforced plastics, it is used for filament wound products (pipes for oil, poles and sport goods), laminated sheets, and printed circuit boards, switch gears. Thanks to its excellent insulating properties, MTHPA found a lot of applications for the production of electrical parts such as: capacitors, resistors, wiring parts transformers, ignition coils, fly back transformers. The Methyltetrahydrophthalic Anhydride (MTHPA) market will depend on market share (sales and revenue) of key companies and growth opportunities of the Methyltetrahydrophthalic Anhydride (MTHPA) market by type, application, key manufacturers and key regions and countries. The market is expected to reach $14.19 billion in 2025 at a CAGR of 5%. Entrepreneurs who invest in this project will be successful.
Plant capacity: 16,000 Kgs Per DayPlant & machinery: 234 Lakh
Working capital: -T.C.I: Cost of Project:897Lakh
Return: 28.00%Break even: 57.00%
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