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Linear Alkyl Benzene Sulphonic Acid

Linear Alkyl Benzene Sulphonic Acid is an anionic surface active agent with superior detergency and compatibility with a broad range of other anionic, nonionic and amphoteric surfactants. Linear Alkyl Benzene Sulphonic Acid is an anionic surfactant with molecules characterized by a hydrophobic and a hydrophilic group. They are nonvolatile compounds produced by sulfonation. As intermediate it is usually neutralized with various bases to produce sulfonates that are used in numerous industries, most commonly in the production of liquid and powder detergents, household and I&I cleaners, laundry detergents, dishwashing liquids, car wash products, hard surface cleaners etc. LAS can be used in both acidic and alkaline formulations as well as in liquid and powder forms. It is also compatible with other surfactants. LAS?s biodegradability and compatibility with other surfactants make it the best choice for detergent production. It may be used with other non-ionic and cationic surfactants to improve the cleaning ability of detergents. • HI&I cleaning • Emulsion polymerization • Metal working • Paints & coatings • Laundry detergents • Industrial auxiliaries • Oil fields • Agriculture Increase in demand for liquid detergents in various end-use industries such as food & beverage, textiles, and household across the globe is driving the global linear alkyl benzene sulfonic acid market. Linear alkyl benzene sulfonic acid offers excellent foaming properties and aids in removal of stain by reducing surface tension of the water. Also rise in demand for industrial cleaners to maintain industrial hygiene is also boosting the linear alkyl benzene sulfonic acid market in the region. The global Linear Alkyl Benzene Sulphonic Acid market size is expected to gain market growth in the forecast period of 2020 to 2025, with a CAGR of 3.3% in the forecast period of 2020 to 2025 and will expected to reach USD 4234.1 million by 2025, from USD 3711.3 million in 2019. Entrepreneurs who invest in this project will be successful. Few Indian major players • Nirma Ltd. • Reliance Industries Ltd. • Tamilnadu Petroproducts Ltd.
Plant capacity: 2 mt/ dayPlant & machinery: Rs. 246 Lakhs
Working capital: -T.C.I: Cost of Project: Rs. 465 Lakhs
Return: 22.00%Break even: 55.00%
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Trichloroisocyanuric Acid

Trichloroisocyanuric acid is an organic compound with the formula (C3Cl3N3O3). It is used as an industrial disinfectant, bleaching agent and a reagent in organic synthesis. Trichloroisocyanuric acid (TCCA) is a versatile and efficient reagent for chlorination and oxidation reactions. Depending on the reaction conditions employed, it can release either an electrophile chlorine atom (Cl+) or a radical chlorine atom (Cl.) promoting selectively different pathways of reaction. It was effectively used to synthesize many classes of compounds such as: chlorinated arenes, N?chloramines and amides, ??halo?carbonyl compounds, benzyl chlorides, esters, carboxylic anhydrides, and amides. It is widely used in civil sanitation for pools and spas, preventing and curing diseases in animal husbandry and fisheries, fruit and vegetable preservation, wastewater treatment, as an algaecide for recycled water in industry and air conditioning, in anti shrink treatment for woolens, for treating seeds and in organic chemical synthesis. It is used in chemical synthesis as an easy to store and transport chlorine gas source, it is not subject to hazardous gas shipping restrictions, and its reaction with hydrochloric acid produces relatively pure chlorine. Trichloroisocyanuric acid as used in swimming pools is easier to handle than chlorine gas. It dissolves slowly in water, but as it reacts, cyanuric acid concentrations in the pool will build-up. It is used in chemical synthesis as an easy to store and transport chlorine gas source, it is not subject to hazardous gas shipping restrictions, and its reaction with hydrochloric acid produces relatively pure chlorine. Intensifying demand for safe and treated water across the Asia Pacific region for constraining diseases that is innate from polluted water. Such factor is expected to significantly driving the trichloroisocyanuric acid market growth during the forecast period. Moreover, the positive impact of various regulations and standards regarding safe water infrastructure and system across North America and European region are also projected to lay a strong base for trichloroisocyanuric acid market growth in the upcoming years. The Middle East and Africa and Latin America are projected to witness robust growth in the global trichloroisocyanuric acid market during the forecast period. As a whole any entrepreneur can venture in this project without risk and earn profit. Few Indian major players • Aditya Birla Chemicals • Kashyap Industries
Plant capacity: Trichoroisocyanuric Acid: 16.7 MT/day Hydrochloric Acid 32% by product: 24.5 MT/dayPlant & machinery: Rs.178 Lakhs
Working capital: -T.C.I: Cost of Project: Rs.1095 Lakhs
Return: 31.00%Break even: 73.00%
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Linear Alkyl Benzene Sulfonic Acid (LABSA) Business Plan for Production

Introduction (LABSA) Linear alkyl benzene sulfonic acidic is used to make anionic, non-anionic, and amphoteric surfactants, and its degradability in nature is crucial. It's a water-soluble emulsifying agent. Because of its low cost, high performance, and biocompatibility due to its linear chain, alkyl benzene sulfonic acid is one of the most commonly used anionic surfactants. Hydrophilic and hydrophobic groups coexist in this anionic surfactant. The sulfonation process produces these non-volatile compounds. These compounds are made up of phenyl and sulfonate groups in carbon chains ranging from 10 to 14 carbons long. Related Projects: - Production of Linear Alkyl Benzene Sulphonic Acid Linear Alkyl Benzene Sulphonic Acid’s Specific Uses Linear alkyl benzene sulfonic acid is primarily used in the manufacture of household detergents such as laundry powders, liquids, and other cleaners, as well as in a variety of industrial applications such as coupling agents and emulsifiers for agricultural herbicides and emulsion polymerization. In the first phases of the sewage-treatment process, a significant portion of the LAS is eliminated from the aqueous phase of the wastewater due to adsorption on the sludge or sedimentation in the presence of calcium or magnesium. When reacting with calcium, the LAS homologs with the longest alkyl chain have a higher propensity to adsorb on solids and become less dissolved. Related Books: - The Complete Technology Book on Chemical Industries Production of Linear Alkyl Benzene Sulphonic Acid The sulphonation reaction of Alkyl Benzene with Sulphur trioxide produces LABSA (Linear Alkyl Benzene Sulphonic Acid) (SO). Other processes can call for the use of oleum or sulfuric acid. The final decision will be influenced by a number of factors, including raw material availability, plant location, plant size, and plant operation mode, to name a few. Nonetheless, when major factors such as cost, availability, versatility, and protection are taken into account, SO remains the reaction's preferred reagent. LABSA is one of the most popular active ingredients in soaps and detergents. It also makes up a higher percentage of the raw materials used in the manufacture of liquid soaps. Chemithon and Ballestra are two of the major producers. Both companies use the same steps to create LABSA. However, the technology differs slightly, particularly at the sulphonation level, where Chemithon uses a Falling Film Reactor or Jet Reactor and Ballestra uses a Stirred Tank Reactor/Cascade Reactor or Multitube Falling Film Reactor. Market Outlook The market for linear alkyl benzene sulfonic acid can be divided into three categories: type, purity, and application. The market can be divided into two types: alpha-olefin sulfonate (AOS) and alkyl sulphate (AS). The market can be divided into linear alkyl benzene sulfonic acid (90 percent) and linear alkyl benzene sulfonic acid (90 percent) based on purity (96 percent). The global market can be divided into two categories based on application: soap and detergent and personal care. One of the active ingredients used in the soap and detergent industry is linear alkyl benzene sulfonic acid. It has outstanding foaming and consistency characteristics. North America, Asia Pacific, Europe, Latin America, and the Middle East and Africa are the regions in which the global linear alkyl benzene sulfonic acid market can be divided. The demand for linear alkyl benzene sulfonic acid is dominated by Asia Pacific, followed by Europe. Rise in population in Asia Pacific developing economies, improvement in people's lifestyles, and increased focus on investment. Related videos: - Chemicals (Organic, Inorganic, Industrial) Rise in population in developing economies of Asia Pacific, improvement in lifestyle of the people, and increase in emphasis on improving hygiene standards in the food & beverages industry are propelling the demand for linear alkyl benzene sulfonic acid in Asia Pacific. Germany, the United Kingdom, and France are Europe's top consumers of linear alkyl benzene sulfonic acid, owing to their large customer bases. The largest consumers of linear alkyl benzene sulfonic acid in Europe are Germany, the United Kingdom, and France, owing to their large customer bases and rising demand for dishwashing cleaners and liquids. The linear alkyl benzene sulfonic acid market in the region is also benefiting from an increase in demand for industrial cleaners to maintain industrial hygiene. In North America, the United States is the largest producer of linear alkyl benzene sulfonic acid. The global Linear Alkyl Benzene Sulphonic Acid market is projected to expand at a CAGR of 3.5 percent from 2021 to 2026, from 3606.9 million USD in 2021 to 4601.4 million USD by the end of 2026. Key Players: - • Nirma Ltd. • Reliance Industries Ltd. • Tamilnadu Petroproducts Ltd. For More Details, Click Here: - Handbook on Chemical Industries #DetailedProjectReport #businessconsultant #BusinessPlan #feasibilityReport #NPCS #entrepreneurindia #startupbusiness #ProjectReport #startup #projectconsultancy #businessopportunity #IndustryDemands #profitablebusiness #ManufacturingBusiness #LinearAlkylBenzeneSulfonate #LinearAlkylBenzeneSulfonateMarket #LASProduction #LABSProduction #LASBusiness #ChemicalBusiness #ChemicalIndustry #ChemicalProduction
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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Business Opportunities in Silica Gel Crystal & Beads Processing Industry. Profitable Business Industry for Beginners.

Introduction: Silica gel is an amorphous material that is synthesized into hard granules. It resembles irregular crystal beads in shape. Since their microporous makeup has interlocking cavities, the gel has an incredibly large surface region, making it an ideal high-capacity desiccant. Water molecules can easily stick to its surface because it has a lower vapour pressure than the air around it. When equal pressure is formed, absorption is no longer possible. As a result, the higher the humidity in the air, the greater the water absorption. It's important to remember that high humidity, particularly above 50%, can harm the gel being transported or stored. Silica gel is a hazy type of silicon dioxide that is synthesized in the form of firm irregular granules that resemble crystals or hard normal beads. Related Project: Manufacturing of Silica Gel Crystal & Beads Silica Gel is a popular desiccant and adsorbent that is used in a variety of industrial and consumer applications. Silica has become a part of everyday life for consumers, and it can be used in a variety of applications. Silica gel is a hazy type of silicon dioxide that is synthesized in the form of firm irregular granules that resemble crystals or hard normal beads. Silica Gel is a popular desiccant and adsorbent that is used in a variety of industrial and consumer applications. Silica has become a part of everyday life for consumers, and it can be used in a variety of applications. Silica Gel is a highly activated adsorbent that comes in a variety of mesh sizes to meet the needs of different industrial applications. It's non-toxic, non-corrosive, tasteless, odourless, chemically inert, and non-toxic. Related Book: The Complete Technology Book on Chemical Industries Silica Gel is regenerated by heating the crystals in an oven at a temperature of no more than 300° F (149° C) for around three hours, or until they turn blue or translucent white. Heating the desiccant in a microwave oven may also be used to dehydrate it. Heat the crystals in a 900-watt oven for three minutes at a time before the colour changes. The exact amount of time needed is determined by the oven's wattage. Uses Silica Gel Crystal & Beads: A stationary phase in chromatography is a silica gel. The stationary phase in column chromatography is usually made up of 40–63 m silica gel particles. Since particle size is related to surface area, different particle sizes are used for different types of column chromatography. The particle size of the silica gel determines whether it should be used for flash or gravity chromatography. Because of the polarity of the silica gel, non-polar components appear to elute before more polar ones in this application, hence the term normal phase chromatography. As hydrophobic groups are bound to the silica gel, however, polar components elute first, resulting in reverse phase chromatography. Related Videos: Chemicals (Organic, Inorganic, Industrial) For thin layer chromatography, silica gel is often added to aluminium, glass, or plastic sheets. The surface hydroxy (OH) groups of silica can be functionalized to create specialty silica gels with distinct stationary phase. These so-called functionalized silica gels are also used as insoluble reagents and scavengers in organic synthesis and purification. As a dehumidifier, Silica Gel plays a critical role. Silica Gel dehumidifiers are commonly used in a variety of industries for moisture and water drying. Oil and natural gas, air conditioners, food manufacturing, electronic products, and pharmaceuticals are among these industries. Because of their low cost, replacements for silica gel are used in a variety of applications such as bioterrorism, biohazard, and gas and liquid dehydration. Manufacturing Process: The method of making a silica gel involves mixing the reactants together in a one-pot operation, which reduces the time needed for ageing without losing the ability to produce pore sizes that are targeted. The pH of the reaction drives pore size growth in this way. Market Research: - Market Research Report As a result, a more effective process can be adopted in terms of costly drying/heating steps being cut down on time, if not entirely eliminated. Silica gels are made from a variety of raw materials. Manufacturer of synthetic amorphous silica, a tasteless, colourless, and odourless type of silicon dioxide. The term silica-gel comes from the manufacturing process used to create this material, sol-gel. To produce monomeric silicic acid, two raw materials, sodium silicate and mineral acid, are combined in a wet process. These monomers polymerize to form silica sol, which is a type of primary silica particle. Market Outlook: Silica Gel is a highly activated adsorbent that comes in a variety of mesh sizes to meet the needs of different industrial applications. It's non-toxic, non-corrosive, tasteless, odourless, chemically inert, and non-toxic. Silica gel is a porous silica gel with a wide internal surface area. Since the silica gel does not undergo any chemical reactions during adsorption, it does not form a crystalline structure. Silica gel may be segmented based on its intended use, as demand varies depending on the application. Related Books: - BOOKS & DATABASES The market can be segmented accordingly, and growth in either sector would increase silica gel demand. Other factors driving the global demand are the growing change from traditional to physical water treatment, as well as strict government regulations. Over 2030, the global silica gel market is expected to develop at a CAGR of 3.5 percent. The Silica Gel Market is segmented by product form, application, end-use industry, and geography. Desiccant and adsorbent are the main application segments, and they are expected to continue to grow in the forecast years. Silica Gel has gained worldwide popularity as a readily available and inexpensive moisture absorbent due to its easy manufacturing technique and high absorbing qualities. Key Players: • B A S F India Ltd. • Clariant Chemicals (India) Ltd. • Evonik Catalysts India Pvt. Ltd. • Multisorb Technologies India Pvt. Ltd. • Thermo Fisher Scientific India Pvt. Ltd. For More Detail: https://www.entrepreneurindia.co/project-and-profile-listing?CatId=129&SubCatId=171&CatName=Chemicals%20(Organic,%20Inorganic,%20Industrial) #DetailedProjectReport #businessconsultant #BusinessPlan #feasibilityReport #NPCS #entrepreneurindia #startupbusiness #ProjectReport #startup #projectconsultancy #businessopportunity #NewBusinessPlan #BusinessProfessional #BusinessConsulting #SilicaGel #Crystal&Beads #ChemicalIndustry #ChemicalProduction #ChemicalBusiness #IndustrialBusiness #ChemicalMarket #ChemicalReport
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Profitable Business of Magnesium Sulphate

Magnesium sulphate is an inorganic salt with the formula MgSO4(H2O)x, where 0x7 is the number of atoms in the formula. Epsomite (MgSO4•7H2O), often known as Epsom salt, is a heptahydrate sulphate mineral that is commonly encountered. It works by boosting water in the intestines and replacing magnesium in the body. Magnesium sulphate is a laxative that can be taken orally to ease occasional constipation and to treat magnesium deficiency; however, the bulk of it is used in agriculture. The FDA has not approved all external applications for magnesium sulphate. Magnesium Sulphate is a chemical compound that contains magnesium, oxygen, and sulphur. Magnesium sulphate is also known as sulphate mineral and epsomite, both of which are used to make Epsom Salt. Magnesium sulphate has use in a variety of areas, including healthcare, agriculture, medicines, food additives, and others. It is employed both internally and externally in the medical field. Depending on the concentration, magnesium sulphate has a bitter or salty flavour. At low concentrations, it has a salty flavour, however at high concentrations, it has a bitter flavour. As a result, it may have the potential to be utilised as a salt substitute. Magnesium sulphate comes in heptahydrate, monohydrate, anhydrous, and dry forms, each carrying the equivalent of 2 to 3 hydration fluids. Natural sources of magnesium sulphate include saltwater, mineral springs, and minerals like kieserite and epsomite. The heptahydrate of magnesium sulphate is made by dissolving kieserite in water and then crystallising the heptahydrate. Magnesium sulphate is a fertiliser, a food supplement in animal feed, and a cathartic and analgesic in medicine. It is employed as a coagulating agent in rubber and plastics, in various plating baths, and as a drying agent for various organic solvents in the textile industry, as well as in the manufacturing of citric acid, magnesium stearate, monosodium gluconate, and various photographic solutions. After rising at a CAGR of 5.1 percent from 2021 to 2026, the Magnesium Sulfate Market is expected to reach $1,233.3 million by 2026. In the years ahead, the growing requirement to produce high agricultural yields, combined with the significant growth of the global agricultural business, is likely to be the primary driver of demand growth. Furthermore, the increased use of magnesium sulphate in the personal care and cosmetics sector to formulate a variety of important personal care items, such as hair products, skincare products, sun-tan products, and skin fresheners, will create new opportunities for the global magnesium sulphate industry to grow. Few Indian Major Players 1. Aksharchem (India) Ltd. 2. Liberty Phosphate Ltd. 3. Pioneer Magnesia Works Pvt. Ltd. 4. Sam Industries Ltd. 5. Welterman International Ltd. 6. Yash Chemex Ltd.
Plant capacity: Magnesium Sulphate: 72 MT Per DayPlant & machinery: 2.56 Cr
Working capital: -T.C.I: Cost of Project: Rs. 9 Cr
Return: 29.00%Break even: 58.00%
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Production Business of Zinc Sulphate

Zinc sulphate is a crystalline substance that is highly water soluble, clear, and colourless. It's also known as white vitriol and comes in the heptahydrate form, ZnSO4 •7H2O. It's found naturally in the mineral goslarite and can be made by reacting zinc with sulfuric acid. It's used to make lithopone, coagulation baths for rayon, electrolyte for zinc plating, as a mordant in dyeing, as a preservative for skins and leather, and as an astringent and emitic in medicine. Zinc sulphate is primarily utilised in fertiliser applications and as a supplement in animal feed. It's used on crops like pecans, deciduous fruits, peanuts, cotton, corn, and citrus, as well as in swine and poultry feeds. The most frequent dry fertiliser is zinc sulphate, and the most common liquid fertiliser is zinc chelates. Zinc sulphate is a preferred chemical for supplying zinc values in agricultural applications due to its excellent solubility in aqueous environments. Zinc is a necessary component of plant and animal life. It acts as a growth hormone in plants and impacts protein synthesis. Zinc deficiency causes plant stunting, yellowing of the leaves, and lower seed, grain, vegetable, and fruit production. The most popular and most effective long-term technique for addressing zinc deficiency is to apply zinc sulphate to the soil. Zinc sulphate can be sprayed in a band near the seed or as a broadcast treatment that is tilled into the soil. The most efficient placement of the band is to the side and below the seed. Zinc sulphate solution can be used to manufacture zineb (zinc ethylene bisdithiocarbamate). Zineb is a typical agricultural fungicide used to protect crops like apples, pears, cabbage, broccoli, and ornamentals, as well as citrus, stone fruit, cotton, and wheat. Zinc sulphate is used in agriculture to destroy weeds and protect crops from pests. Zinc sulphate is a significant element of the precipitating bath in the manufacturing of viscose rayon and in the electrolyte for zinc plating. Zinc sulphate is used as a mordant in dyeing, as a skin and leather preservative, and as an astringent and emetic in medicine. In the period 2020-2026, the global zinc sulphate market is expected to rise at a robust CAGR of 4.2 percent. The market is being driven by increasing usage as a fertiliser additive in the agriculture industry to prevent and repair zinc deficiency in crops, increased demand for applications of raw material for manufacturing latex products, and usage as a moss control herbicide. Zinc sulphate is used to treat zinc deficiency in humans and as a fertiliser in agricultural sprays to increase soil nutrition, and it is projected to play a significant role in market growth. Few Indian Major Players 1. Agro Phos (India) Ltd. 2. Aksharchem (India) Ltd. 3. Indian Farmers Fertiliser Co-Op. Ltd. 4. Jayshree Chemicals Ltd. 5. Liberty Phosphate Ltd. 6. Yash Chemex Ltd.
Plant capacity: Zinc Sulphate 33%: 2 MT Per Day Zinc Sulphate 21%: 2 MT Per Day Zinc Sulphate 12% Soln.: 2 MT Per DayPlant & machinery: 1.21 Cr
Working capital: -T.C.I: Cost of Project: Rs. 3.70 Cr
Return: 22.00%Break even: 60.00%
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Sodium Hydrosulphite Manufacturing Business

The chemical substance sodium hydrosulfite, commonly known as sodium dithionite or sodium hydrosulfide, has the formula NaHSO2. The chemical is the sodium salt of hydrosulfuric acid, consisting of sodium ions linked to two sulphur dioxide molecules. It's utilised in chemical operations as an oxygen scavenger, as well as in the filtration of drinking water and wastewater. Sodium hydrosulfite is also frequently used as a food additive in beer, salt, and egg powder, as well as in the synthesis of anhydrous sodium sulphate for leather components and as a water treatment agent. It's also utilised in the production of sulfuric acid and other compounds. Gray or white crystal irregular cube or block that is soluble in water but only marginally soluble in ethanol or methanol. Because sodium hydrosulfite is a strong reducing agent and can effectively react with the colours in the pulp, it is also particularly successful in bleaching recycled pulp. Furthermore, most recycled furniture contains mechanical pulps that can be bleached using sodium hydrosulfite. The sodium hydrosulfite bleaching conditions for recycled pulp are fairly similar to those for mechanical pulps. If the supply, such as mixed office waste, contains primarily chemical pulps, a hydrosulfite (Y) stage at a significantly higher temperature, 80–100°C and a pH of 7.0, could result in significant brightness gain. • It is widely used in the textile industry for vat dyeing, reduction cleaning, printing and stripping, and textile bleaching. • It is also used in bleaching paper pulps, particularly mechanical pulps; it is the most suitable bleaching agent in pulps. • It is used in bleaching kaolin clay, fur bleaching and reductive whitening, bleaching of bamboo products and straw products. Up to 2024, the market for sodium hydrosulfite is expected to develop at a CAGR of over 4%. Because of its widespread use as a reductive bleaching agent for pulp in the paper production process, the global sodium hydrosulfite market will rise through 2024, owing to increased paper product demand in Asia Pacific. Consumer confidence is rising, as is disposable money, and customers' desire to keep up with the latest fashion trends, to name a few main drivers fueling the textile market's expansion. Key Players 1. Demosha Chemicals Pvt. Ltd. 2. Gulshan Chemicals Pvt. Ltd. 3. Kanoria Chemicals & Inds. Ltd. 4. Orchid Pharma Ltd. 5. Shankar Lal Rampal Dye-Chem Ltd.
Plant capacity: 60.0 MT per DayPlant & machinery: 280 Lakh
Working capital: -T.C.I: Cost of Project: 934 Lakh
Return: 29.00%Break even: 58.00%
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Lucrative Business Plan for Calcium Sennosides from Senna Leaves Production

Calcium Sennoside is one of the most common substances in multivitamins, health care products, and food additives, and it has a variety of functions in the human body, including bone growth, tooth remineralization, and muscular contraction. It can also be used to make calcium enriched milk powder, calcium fortified beverage powder, and calcium fortified bread, among other functional foods. Calcium sennosides are made via a fermentation method involving many types of industrial yeasts and a variety of basic ingredients. The FDA has approved Calcium Sennoside for the purpose of stimulating bone growth and mineralization, which is notably beneficial to osteoporosis patients. It has become quite popular in the market place as a novel and safe product in the field of bone health. The price of Calcium Sennoside will provide you extra benefits in your production business of this type of product because of its exceptional quality. One of the most well-known herbal remedies is Calcium Sennoside (Senna Extract). Calcium Sennoside is extracted from the leaves of the Senna plant. It's an excellent laxative. It has a subtle bitterness to it. Senna has long been used to treat constipation. Sennosides are glycosides obtained from Senna leaves that contain hydroxyanthracene. They've been utilised as natural, safe, time-tested laxatives in both traditional and modern medical systems. Constipation is treated with sennosides. They can also be used to flush the intestines before to a bowel inspection or surgery. Stimulant laxatives are known as sennosides. They function by maintaining water in the intestines, causing the intestines to move. The global demand for herbal extracts, dietary supplements, and herbal-based beauty aids is increasing as people become more aware of the negative effects of allopathic drugs, as well as the medicinal benefits and therapeutic effects of herbal products. According to the Associated Chambers of Commerce and Sector of India (ASSOCHAM), the herbal business's market size, which is now estimated at Rs. 7,500 crores, will double to Rs. 15,000 crore by 2022, with the industry rising at a compounded annual growth rate of over 20%. India's vast supply of medicinal plants and traditional treasure of knowledge in this domain, according to an ASSOCHAM report on Herbal Industry and Global Market 2015, is deemed quite meagre at the moment. A cursory calculation of the potential suggests that India can produce raw stock worth roughly Rs. 300 billion and easily attain value added products worth around Rs. 150 billion. As a result, India is only able to realise about half of its potential. Surprisingly, both raw materials (herbs) and herbal products have a global market. ASSOCHAM Secretary General D.S. Rawat, who released the findings, said that Ayurvedic Medicines and Dietary Supplements (including health drinks), extracts, Oils and other derivatives, skincare and beauty aids are appropriate niche markets for India to focus on. Key Players • Alchem International Pvt. Ltd. • Indena India Pvt. Ltd. • Kothari Phytochemicals & Inds. Ltd. • Vidya Herbs Pvt. Ltd.
Plant capacity: 400 Kgs per DayPlant & machinery: 291 Lakh
Working capital: -T.C.I: Cost of Project: 607 Lakh
Return: 28.00%Break even: 59.00%
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Zinc Oxide from Zinc Dross (White Seal) Production Business Plan

Although zinc oxide has been known since ancient times, it is only recently that it has been used as a pigment. It was created to replace basic lead carbonate as a pigment. Because the lead pigment turned black when exposed to the air, it was phased out. Zinc dross is a byproduct of zinc recovery. Zinc types can be recovered from galvanised sheets, batteries, automobile components, and galvanising processes, among other things. Zinc ashes develop on the surface of molten zinc baths, and while they are mostly zinc oxide, finely divided zinc particles will stick to the oxide as well. Processes are used to purify various forms of zinc to obtain pure zinc metal. Zinc oxide has the formula ZnO and is an inorganic substance. Rubbers, plastics, ceramics, glass, cement, lubricants, paints, ointments, adhesives, sealants, pigments, meals, batteries, ferrites, fire retardants, and first-aid tapes all contain zinc oxide, which is a white powder that is insoluble in water. Although zinc oxide is found naturally in the mineral zincite, the majority of zinc oxide is manufactured synthetically. ZnO belongs to the II-VI semiconductor group and has a large bandgap. The semiconductor's native doping is n-type, which is caused by oxygen vacancies or zinc interstitials. Zinc oxide, often known as zinc white, is a white or grey powder with a coarse texture. The amount of contaminants it contains has an impact on its whiteness. A wide range of colours can be created through good heat treatment or other ways, ranging from white to yellow, green, and brown to red. Rubber, paint, ceramics, chemical textiles, and other industries employ zinc oxide. Zinc salts (zinc stearate, etc.) feed additive; semiconductor in electronic devices; electronic ceramics; raw material to produce zinc phosphate as steel coating; ointment; pigment and mould growth inhibitor in paints; ceramics; floor tile; glass; zinc salts (zinc stearate, etc.) feed additive; semiconductor in electronic devices; zinc phosphate as steel coating. Zinc oxide is used in metal protective coatings, and zinc oxide and paint tinted with zinc dust are the most popular coatings for galvanised surfaces. Zinc oxide is used in general-purpose primers for ferrous surfaces, together with red lead and/or zinc yellow. It aids in the production of a durable, adherent coating that is resistant to abrasion and chalking in these priming paints. Rubber vulcanization relies heavily on zinc oxide. It's an inorganic basic accelerator that helps speed up the vulcanization reaction between rubber and sulphur. The market for zinc oxide has gathered significant traction in recent years as a result of the rising morbidity of bacterial infections in the public healthcare system. Outbreaks of pathogenic strains have increased the demand for antibacterial components in numerous nations, with zinc oxide emerging as a promising option. This has to do with the fact that they are more effective against gram-positive bacteria than most nanoparticles. The growing impact of such microorganisms on food safety, particularly in the ready-to-eat segment, has fueled zinc oxide market product development. Zinc oxide's increasing use in antimicrobial packaging is likely to expand its biomedical applications. In 2020, the global zinc oxide market was worth over 1,400 kilotons, and it is predicted to rise at a CAGR of over 4% in volume over the forecast period (2021-2026). Growing demand from various end-use industries, as well as increased investments in R&D projects, are some of the key contributing factors driving the Global Zinc Oxide Market forward. Key Players • Bharat Zinc Ltd. • Ess Vee Alloys Pvt. Ltd. • Hindustan Zinc Ltd. • K A Wires Ltd. • Lords Chemicals Ltd.
Plant capacity: 12 MT per DayPlant & machinery: 181 Lakh
Working capital: -T.C.I: Cost of Project: 595 Lakh
Return: 31.00%Break even: 59.00%
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  • One Lac / Lakh / Lakhs is equivalent to one hundred thousand (100,000)
  • One Crore is equivalent to ten million (10,000,000)
  • T.C.I is Total Capital Investment
  • We can modify the project capacity and project cost as per your requirement.
  • We can also prepare project report on any subject as per your requirement.
  • Caution: The project's cost, capacity and return are subject to change without any notice. Future projects may have different values of project cost, capacity or return.

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