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Business Ideas: 2.5 - 3 Crore (Plant and Machinery): Selected Project Profiles for Entrepreneurs, Startups

We can provide you detailed project reports on the following topics. Please select the projects of your interests.

Each detailed project reports cover all the aspects of business, from analysing the market, confirming availability of various necessities such as plant & machinery, raw materials to forecasting the financial requirements. The scope of the report includes assessing market potential, negotiating with collaborators, investment decision making, corporate diversification planning etc. in a very planned manner by formulating detailed manufacturing techniques and forecasting financial aspects by estimating the cost of raw material, formulating the cash flow statement, projecting the balance sheet etc.

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Production Business of Blood Collection Tubes (Vacutainer)

A vacuum blood collection tube is a sterile glass or plastic test tube with a stopper that creates a vacuum inside the tube, allowing for the visualization of a predefined volume of liquid. The vacuum blood collection tube prevents needle stick injuries by preventing needles from coming into touch with humans and so being infected. In the vacuum blood collecting tube, a double-pointed needle is attached to a plastic tubular adaptor. Double-pointed needles are available in a wide range of gauge sizes. The needle's length ranges from one to one and a half inches. Vacuum blood collection tubes, which are used to preserve blood for treatment in a medical laboratory, may contain other materials. A vacuum blood collection tube is routinely used in clinics and laboratories to retain blood for future testing. A replacement for vacuum blood collection tubes that can preserve blood for testing purposes for an extended period of time has been created. Tubes for collecting blood under vacuum exist in a variety of diameters and specimen types. The vacuum created when a needle punctures the cap of a blood collection tube dissipates over time, and blood does not flow into the tube. With a CAGR of 7.1 percent from 2020 to 2025, the Blood Collection Tubes Market is expected to reach $2.81 billion by 2025. Many ailments necessitate the use of blood to diagnose and treat them. The blood processing process includes the collection, storage, and management of blood after it has been acquired from a donor. The blood collection tubes, also known as vacationers, are sterilised and include a safety-engineered stopper with several labelling options, including the volume and the colour of the caps, which indicate the additives in the tube. The rising usage of blood samples in diagnostics and the need for blood components in medical procedures are driving the need for blood collection tubes. Few Indian Major Players 1. Becton Dickinson India Pvt. Ltd. 2. Hindustan Syringes & Medical Devices Ltd. 3. Kriya Medical Technologies Pvt. Ltd. 4. Narang Medical Ltd. 5. Poly Medicure Ltd.
Plant capacity: Blood Collection Tubes (Vacutainer) 13x100 with EDTA: 100,000 Nos per day Blood Collection Tubes (Vacutainer) 13x75 Plain: 100,000 Nos per dayPlant & machinery: 345 Lakhs
Working capital: -T.C.I: Cost of Project: 983 Lakhs
Return: 30.00%Break even: 51.00%
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Automated Vehicle Scrapping and Recycling Unit

Vehicle recycling is the deconstruction of cars for spare parts. When vehicles reach the end of their useful lives, they have value as a source of replacement components, which has given rise to the car dismantling industry. Wrecking yards, auto dismantling yards, automotive spare parts suppliers, and, more recently, auto or vehicle recycling are all phrases that have been used to characterise the industry's business outlets. Vehicle recycling has long been a component of the process, but manufacturers have become increasingly active in recent years. A car crusher is commonly used to reduce the size of a junk car so that it can be transferred to a steel mill. The "Voluntary Car-Fleet Modernization Program," also known as India's vehicle scrapping programme, intends to usher in a new era of what it means to own and use a car in India. Nitin Gadkari, the Minister of Road Transport and Highways, introduced it in Parliament in March. The programme demands that all automobiles above a certain age be taken off the road in order to achieve higher pollution control and safety, which new vehicles provide. A commercial vehicle over 15 years old or a personal vehicle over 20 years old that fails an automatic fitness test, regardless of whether it runs on diesel or gasoline, is earmarked for scrapping. As a result, automobile recycling is essential. It's also crucial to handle them properly to avoid hazardous waste from being released into the environment. Such vehicles must be disposed of by professionals who are familiar with hazardous chemicals such as fuel, coolants, and brake fluids. Environmental Benefits: Steel is one of the most significant materials in the automobile's construction; it's utilised to make the bulk of the components, including the framework. Because iron ores are required for the production of steel, recycling automobiles contributes to the preservation of iron ores. All waste generated as a by-product of steel processing is avoided as well, guaranteeing that air pollution is not increased. Wildlife Preservation: It's also worth mentioning that proper car recycling can help preserve local flora and fauna. Steel mining is bad for the environment because it produces soil erosion and degradation, which means animals can't keep up with their normal habits and may become unwell as a result. Land erosion causes sediment flow into bodies of water, which has an impact on water quality and wildlife proliferation.
Plant capacity: 1000 Vehicles per MonthPlant & machinery: Rs. 497 Lakhs
Working capital: -T.C.I: Cost of Project: Rs. 2090 Lakhs
Return: 29.00%Break even: 40.00%
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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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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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Start Bamboo Fiber & Yarn Manufacturing Business

Bamboo is a member of the Gramineae family, which includes over 90 genera and 1200 species. Bamboo is indigenous to the tropical and subtropical regions between 46° north and 47° south latitude in Africa, Asia, Central America, and South America. Several species from Europe and North America may also be able to thrive in moderately temperate climates. Bamboo is a plant that can grow in a variety of climates and soil types. Bamboo is a type of agroforestry crop that can be grown on terrain that isn't ideal for farming or forestry. Because the culms are hollow, they are light and may be collected and moved without the necessity of special equipment or trucks, unlike wood. It quickly separates for weaving, making it easy to handle for men and women alike. Bamboo is commonly planted on farms outside of the forest, where it is easier to handle. Processing typically does not necessitate highly specialised labour or unique expertise, and it can be started at a low cost by rural poor people. Bamboo's popularity and trade have grown in recent years. Bathrobes • Towels • Bedclothes • T-shirts • Socks • Sweaters • Summer Clothing • Mats • Curtains are all made of bamboo fibre yarn. Certain varieties can reach a height of one metre every day. Bamboo grass can be as small as one foot (30 cm) tall or as large as 100 feet tall bamboo wood plants (30 meters). Bamboo plants grow on every continent and are economically and culturally significant. Bamboo fibre and yarn are created from bamboo plants, which are grasses that thrive in tropical climates around the world. Bamboo fibre and yarn are gaining popularity because of their environmental friendliness, durability, softness, and washability, as well as their antibacterial characteristics. Bamboo fibre and yarn, on the other hand, must be processed extensively before being utilised. Bamboo fibre and yarn are created from bamboo plants, which are grasses that thrive in tropical climates around the world. Bamboo fibre and yarn are gaining popularity because of their environmental friendliness, durability, softness, and washability, as well as their antibacterial characteristics. Bamboo fibre is made from the stalks of bamboo plants, which can be found in tropical and subtropical areas all over the world. Textiles made from these stalks have been woven in Asia for thousands of years, dating back to the Han Dynasty (200 BC-AD 200), but the rest of the world has only recently discovered their beauty. Bamboo fibre is used in a variety of applications, including bathroom textiles, medicinal and hygienic clothes, bamboo fashion, and home furnishings. They are antifungal and antibacterial, have a flat surface, and are as thin as hairs. Despite growing concerns regarding its manufacturing volume, bamboo fibre demand is increasing as a result of a growing focus on environmentally friendly textile production. Increasing public awareness about environmental sustainability and conservation, as well as rising demand for natural fabrics, are expected to boost market demand throughout the forecast period. In the medium term, the usage of breakthrough eco-fiber production technologies such as enzyme technology, foam technology, and plasma technology is likely to bring up new prospects. The global Bamboo Fibers market was worth million US dollars in 2018 and is predicted to grow at a CAGR of between 2019 and 2025 to reach million US dollars by the end of 2025. Key Players • Amarjothi Spinning Mills Ltd. • Cheran Spinner Pvt. Ltd. • Gillanders Arbuthnot & Co. Ltd. • H P Cotton Textile Mills Ltd. • Lakshmi Mills Co. Ltd. • Wearit Global Ltd.
Plant capacity: 6,666 Kgs Per Day Plant & machinery: 273 Lakhs
Working capital: N/AT.C.I: Cost of Project: 725 Lakhs
Return: 26.00%Break even: 57.00%
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Start Printed Circuit Board (PCBs) Production Business

PCBs are used extensively in modern electronic products such as computers, telephones, televisions, and even smaller electronic devices such as smart watches and fitness trackers. Printed wiring boards (PWBs) are critical components that include a foundation board that supports all other parts and circuitry, as well as a patterned layer of electrical tracks printed on top. The four major components of a printed circuit board (PCB) are: • Substrate (optional): The substrate, which is usually constructed of fibreglass, is the first and most crucial phase. Fiberglass is employed in the PCB's core because it strengthens it and helps it withstand fracture. Consider the substrate to be the "skeleton" of the PCB. • Copper Layer: This layer can be copper foil or a full-on copper covering, depending on the board type. Regardless of which method is utilised, the copper's function is the same: it transmits electrical signals from the PCB to the brain and muscles, just like your nervous system. • Solder Mask: The solder mask, a polymer layer that protects the copper from short-circuiting when it comes into contact with the environment, is the third component of the PCB. The solder mask serves as the PCB's "skin" in this situation. • Silkscreen: The silkscreen is the final component on the circuit board. Part numbers, logos, symbols, switch settings, component reference, and test locations are commonly silkscreened on the component side of the board. The silkscreen is also referred to as Television sets, transistor sets, radios, amplifiers, ampligrams, stereo amplifiers, voltage stabilisers, calculators, communications equipment, power supply, public address equipment, computers, and defence and other research organisations all employ printed circuit boards. On today's PCBs, component connection leads are commonly in the shape of a little foot. As a result, they can be immediately soldered to the copper tracks and placed on the same side. This not only saves money by avoiding costly drilling and track hookups through the board, but it also allows for the use of surface mounting devices (SMDS), which are often smaller and potentially less expensive than their traditional counterparts and allow for significantly higher component packing density. Capacitors and resistors are the most common components found in SMD form. These are little rectangular blocks with metal caps on the ends that connect all of the interior electrodes. There are no cables connecting the components. PCBs can be found in practically every electronic product, from consumer electronics like PCs, tablets, cellphones, and gaming consoles to industrial and even high-tech items in the strategic and medical electronics industries. Given the importance of the PCB business in the electronics manufacturing ecosystem, an article titled 'How will the Indian PCB industry grow?' was published in the April 2016 issue of Electronics Bazaar, and included the perspectives of key industry stakeholders. The Indian market is unique in compared to the rest of the world. Because flexible circuits may reduce form factor and eliminate connectors, they are predicted to grow far faster in the worldwide market than rigid PCBs. Most Indian PCB producers, on the other hand, concentrate on single-sided, double-sided, and multi-layered PCBs with four to eight layers. The Indian electronics industry is one of the world's fastest expanding, with domestic manufacturing exceeding $100 billion and expected to reach $400 billion by 2022. As a result, the PCB industry will see significant growth. According to an ELCINA analysis, PCB consumption in the residential market is predicted to expand at a CAGR of 20.56 percent from 2015 to 2020, reaching over US$ 6 billion by 2020, up from US$ 2.38 billion currently. Key Players: • Akasaka Electronics Ltd. (2002) • Akasaka Electronics Ltd. • Amara Raja Electronics Ltd. • Ample Circuit Pvt. Ltd. • At & S India Pvt. Ltd. • B I T Mapper Integration Technologies Pvt. Ltd. • B L G Electronics Ltd.
Plant capacity: Multilayer High Density Interconnect PCBs: 40 SqMtrs. Per Day Multilayer Flex PCBs: 40 SqMtrs. Per Day | Multilayer High Power PCBs: 40 SqMtrs. Per DayPlant & machinery: 260 Lakhs
Working capital: N/AT.C.I: Cost of Project: 594 Lakhs
Return: 27.00%Break even: 58.00%
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Hexamethoxymethyl Melamine Resin (HMMM) Manufacturing Plant

Hexamethoxymethyl melamine resin belongs to the melamine resin chemical family (HMMM). Because of its exceptional water resistance, hardness, and corrosion resistance, it's often used in glues and adhesives, textile treatments, and a variety of wood finishing products. Hexamethoxymethyl Melamine Resin (HMMM) is a multifunctional resin that is resistant to alkalis, acids, and heat. Melamine formaldehyde resin, melamine formal resin, or melamine resin are other names for it. It's a translucent yellow powder that can dissolve in water and alcohol but not in acetone or benzene. In acid-free coating materials, HMMM can be employed as a fixing agent. Hexamethoxymethyl Melamine Resin (HMMM) is a multi-purpose chemical used to create plastic objects such as water bottles, coffee cups, food packaging, and other items. These types of plastics were previously made with BPA, but research has shown that BPA can cause health concerns in humans who consume or ingest things made with BPA-laced polymers on a regular basis, so HMMM was developed as a replacement. Melamine resin hexa (methoxymethyl) hexamethoxymethyl melamine (HMMM) (HMMM). It's used as a crosslinking agent with resorcinol or a novolak resin, as well as an adhesion promoter, in rubber compounds with a variety of substrates. Because it is less toxic and has a shorter scorch time, it is a good alternative for hexamethylene-tetramine. Yes, Hexamethoxymethylmelamine (HMMM) is a commercially available liquid crosslinking agent. It may crosslink both organo-soluble and water-borne polymeric compounds. It is soluble in most common organic solvents but not in water; nevertheless, when combined with most other water-reduciable resins, it tolerates dilution in water. Either hydroxyl or amide groups should be present in the polymeric compounds. Because of the high degree of alkylation, the interaction with hydroxyl, carboxyl, and amide functionalities on other polymers is commonly catalysed by strong acid. Alkyds, polyesters, acrylic, epoxy, urethane, and cellulosics are examples of polymeric materials. Due to its high functionality and minimal sensitivity to self-condensation, it is a very effective crosslinking agent. When mixed with polyesters, it can offer films a lot of flexibility. The ability of this product to tolerate severe temperatures without compromising the integrity or purity of its contents or its function is one of its most remarkable features. Adhesives, wood treatments, hot melt coatings, and fire retardants are just a few of the applications for HMMM resin. Protective coatings in the paper, textile, and plastics sectors, as well as binders in rubber products, paints, and coatings, are just a few of the uses for Hexamethoxymethyl Melamine Resin. Due to its high dielectric strength, it is also employed as an adhesive in brake linings and electromagnetic interference shielding applications. Because it does not conduct electricity when exposed to damp or weather, this resin can also be used as an insulator on wires. Melamine demand is being driven by strong development in the global construction industry, as well as growing demand for lightweight and low-emission automobiles. MF resins are frequently utilised in the manufacturing of laminated wooden panels. Because of their excellent resistance to heat, stain, abrasion, and chemical reaction, these resins are commonly used in building applications such as remodelling, furniture, and speciality laminates for electrical usage. Rapid urbanisation, rising disposable income, and rising living standards are all contributing factors to the industry's explosive growth. In the melamine sector, this is one of the most important drivers. Melamine resins are also utilised to manufacture adhesives for panel laminations, vehicle seat fastening, headlamps, trim, and other interior component assembly in the automotive industry. Hexamethyl methoxy melamine is a popular filler and crosslinking agent used in industry. Coils, cans, and automobiles are all made with HMMM-containing coatings and polymers. As a crosslinking agent, it's used in conjunction with novolak resin and resorcinol. Hexamethyl methoxy melamine is recommended as an alternative for hexamethylene-tetramine because to its lower toxicity and less effect on scorch times. Asia Pacific is expected to be the fastest growing region in the hexamethyl methoxy melamine market throughout the projected period due to rising use of fillers and additives in the paints and coatings sector. According to the India Brand Equity Foundation, the paints and coatings business earned US$ 3.6 billion in 2011 and is expected to expand to US$ 8.2 billion by 2017. Industry Major Market Players: • Suzhou VosunChemical Co. Ltd. • SancaiIndustry Co. Ltd. • Dalian RichonChemCo. Ltd. • Western Reserve Chemical • AllnexGroup • ParchemFine & Specialty Chemicals • Tokyo Chemical Industry Co. Ltd. • Hangzhou DayangChemCo. Ltd. • Qingdao Sun Tech Industries & Trading Co. Ltd. • ChemsonIndustrial (Shanghai) Co., Ltd. • Adarsh Chemicals & Fertilisers Ltd. • Gujarat State Fertilizers & Chemicals Ltd. • Jay Chemical Inds. Pvt. Ltd. • Kanoria Chemicals & Inds. Ltd. • Shree Benzophen Inds. Ltd.
Plant capacity: 8 MT per dayPlant & machinery: 280 Lakhs
Working capital: -T.C.I: Cost of Project:745 Lakhs
Return: 26.00%Break even: 56.00%
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3-Chloropivaloyl Chloride Manufacturing Business Plan

The hazardous yellow or orange liquid 3-chloropivaloyl chloride has a horrible odour. In addition to being utilised as an intermediate in chemical synthesis, it has been used in research applications for DNA modification. When inhaled or absorbed through the skin, 3-chloropivaloyl chloride is flammable, moisture and oxygen sensitive, and dangerous. It is water insoluble, but alcohols, ethers, chloroform, and carbon tetrachloride quickly dissolve it. It interacts violently with oxidising substances including potassium permanganate, nitric acid, and peroxides. It should be kept away from heat and flames, and should only be handled while wearing protective clothing. 3-Chloropivaloyl chloride is used as an intermediate in the organic synthesis of medicines and agrochemicals. Antibiotic properties can be found in the chemical. It can be used to make furfural, picolinic acid, methanol chlorohydroxide, alpha acetylsalicylic acid (aspirin), 3-chloro acetic acid, and paratoluenesulfonic acid. It's also a precursor to pesticides such as aldrin, dieldrin, endosulfan, and lindane. It's also utilised in the manufacture of perfumes like rose oxide and civetone. It is also utilised in the production of pesticides such as fenitrothion. The chemical is used in the production of dyes, paints, and rubber compounds. It's also used to extract gold from ores using the cyanidation process. It can also be used as an epoxidation catalyst. Amine hydrochlorides are created by mixing ammonia with hydrogen chloride and neutralising with sodium or calcium hydroxide. Amino hydrochlorides are commonly used to make herbicides like butachlor and dimethylamine hydrochlorides, which act as plant growth regulators. To use all of the phosgene, this reaction is normally carried out using a significant amount of acetyl chloride. 3-Chloropivaloyl Chloride is a synthetic organic chemical that is employed as an intermediate in the manufacturing of a wide range of downstream goods, including photographic developers, agrochemicals, and rubber compounds. Acid chlorides are used as especially reactive intermediates to generate carboxylic acid derivatives such as anhydrides, esters, and amides due to the two strong electron withdrawing chlorine and oxygen on the carbonyl molecule, as well as the positive charge carbon. By replacing an organic group for the halides, acid chlorides can be employed with Gilman reagents to generate giant molecules from small ones. 3-Chloropivaloyl Chloride, a multi-methylated acetyl chlorine with an additional chloride at the terminal carbon, is used to make photographic developers, herbicides, insecticides, and rubber additives. It is used as a chain reaction initiator in vinyl chloride-propylene copolymers. India's demand for acid chlorides is predicted to grow at a CAGR of more than 8% between 2020 and 2024. The Indian market is expected to grow substantially throughout the forecast period due to rapidly increasing population and urbanisation. Over the forecast period, rising demand for acid chlorides is expected to be driven by increased exports of organic and inorganic chemicals, increased production of dyes and dye intermediates such as reactive acid and direct dyes, and rising demand for polymer from various end-use sectors such as automotive, construction, and healthcare. The pharmaceutical industry has been growing at a healthy rate in recent years, and this trend is expected to continue, particularly in emerging markets. As the population of emerging countries expands, the agriculture industry is likewise under pressure to improve crop production. Overall market dynamics favour chloropivaloyl chloride growth, which is expected to drive up chloride demand in the future years. Asia is the most important area in the worldwide Chloropivaloyl chloride market since bulk manufacturers and procurers are located in China. Increasing demand will come from increased manufacturing output, which is also pushing industrial production and the chemical industry. In terms of demand, Europe is expected to lag behind Asia. Due to strict safety rules in the production and use of pivaloyl chloride, which is deemed poisonous, and replacement by substitutes, Europe and North America will witness muted to moderate growth following Asia. Industry Major Market Players • Dafeng Chemical • Fude Chemical • Minji Chemical
Plant capacity: 3-Chloropivaloyl Chloride: 4 MT Per Day Hydrochoric Acid (30%) - by product:3 MT Per DayPlant & machinery: 252 Lakhs
Working capital: -T.C.I: Cost of Project:686 Lakhs
Return: 27.00%Break even: 62.00%
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Lithium Ion Battery(LiFePO4) Business Plan

Lithium ions travel from the negative electrode to the positive electrode during discharge and then back to the negative electrode during charging in a lithium-ion cell, also known as a Li-ion battery. Alternative cathode materials based on elements other than cobalt or manganese have been developed due to safety concerns. Lithium iron phosphate is one of these materials. This material has several advantages over other cathodes, including the ability to withstand higher charge/discharge currents without deterioration, the ability to cycle more times than other battery types, and a low self-discharge rate. In fact, a fully charged LiFePO4 battery will keep 90% of its capacity after three months of idleness. They are useful for solar energy storage systems and electric vehicles when extended intervals between charges are foreseen (EVs). Features: The following are some of the benefits of lithium iron phosphate batteries: • Lower discharge rate • Higher power density • A discharge curve that is straight • Less expensive heating • Charge cycles have been increased. • enhanced safety Lithium iron phosphate batteries are distinguished from other lithium-ion batteries by their ability to maintain a constant voltage and a charge cycle of 2000 to 3000 cycles. LFP batteries are a wonderful choice because they are both environmentally friendly and structurally sound. They have a modest rate of discharge and a low energy density. Phosphate-based technology is safer since it is more thermally and chemically stable than Lithium-ion technology created using other cathode materials. Lithium phosphate batteries are incombustible in the event of charge or discharge mismanagement; they are more stable in overcharge or short circuit situations, and they can withstand high temperatures without degrading. If the phosphate-based cathode material is treated incorrectly, it will not ignite or induce thermal runaway. Phosphorus chemistry has a longer cycle life. Benefits of LiFePO4 Batteries: LiFePO4 batteries have a high discharge rate due to their lack of internal resistance. They can thus be utilised to power autos and other electrical devices. Lithium-ion batteries, which are often found in computers and cell phones, can be made smaller and more compact. If they are damaged or overheated, they are also less prone to catch fire. The lithium concentration of these batteries, according to some experts, may help to lessen the health concerns linked with nickel and cadmium, two chemicals often found in traditional batteries. Finally, LiFePO4 batteries are regarded greener than many other types of rechargeable batteries because they do not contain cobalt, a rare metal that is commonly mined in war zones or under hazardous conditions. Uses and Applications: • Large electric vehicles include buses, electric automobiles, tour buses, hybrid vehicles, and other attractions. • Electric bicycles, golf carts, miniature cars, forklifts, and cleaning wheelchairs for electric vehicles are examples of light electric vehicles. Power tools include lawn movers, electric saws, and electric drills. • Toys that can be controlled remotely, such as cars, boats, and planes • Storage systems for solar and wind energy. • Warning lights, UPS, and miner's lamp are examples of emergency lights. • Small and portable medical instruments and equipment. • Laptop computers, cell phones, camcorders, iPods, and other modern equipment are widely used. • Lithium ion batteries are used in a range of cutting-edge electric vehicles, including the first of its kind, the Tesla Roadster. Market Size in India: The India lithium-ion battery market is estimated to grow at a robust CAGR of 29.26% over the forecast period of 2018-2023. The Indian automobile sector is one of the country's most important, contributing for about 7% of GDP. The industry produced 25.31 million cars in the first quarter of 2017, compared to 24.01 million the previous year, including commercial, passenger, two- and three-wheeled vehicles, and commercial quadricycles. In contrast, India has set a lofty target of having only electric vehicles (EVs) by 2030, which is expected to increase lithium-ion battery consumption in the country. Market Size Globally: The market for Lithium Iron Phosphate (LiFePO4) batteries is predicted to grow to USD 15.25 million by 2028. In terms of revenue, the vehicle industry in 2020 will have overtaken the global industry. Throughout the projection period, Asia-Pacific is expected to be the greatest source of revenue for the global lithium iron phosphate battery business. Increased demand for LiFePO4 batteries from the automotive industry is propelling the industry forward. The use of lithium iron phosphate batteries has increased dramatically in recent years as the demand for battery electric cars has skyrocketed. The vehicle industry's rising demand for LiFePO4 batteries is a primary driver for the company. Its acceptance is expanding in lockstep with the acceptance and use of battery electric vehicles (EVs). Gasoline and diesel prices are expected to rise as fossil fuel stockpiles run out. Consumers are being pushed to switch to battery electric vehicles as a result of this, as well as the associated environmental issues. Technological advancements, growing smart device adoption, and stringent regulatory constraints all contribute to the need for batteries over the forecast period. The battery sector is growing as a result of increased use of LiFePO4 batteries in renewable energy storage systems, expanding consumer electronics demand, and the resulting stringent government requirements. Industry Major Market Players • A123 Systems LLC. • Bharat Power Solutions • BYD Company Ltd. • CENS Energy Tech Co., Ltd. • Electric Vehicle Power System Technology Co., Ltd. • Formosa Energy & Material Technology • GS Yuasa Corporation • K2 Energy • LiFeBATT, Inc. • LITHIUMWERKS, • OptimumNano Energy Co., Ltd. • Panasonic Corporation • RELiON Batteries • Samsung SDI Co. Ltd • Toshiba Corporation • Valence Technology Inc.
Plant capacity: Lithium Ion (LiFePO4) Battery Back of Power 4.8 KWH (No. of Cells 800) for Three Wheeler: 26 Nos Per Day Lithium Ion(LiFePO4)Battery Back of Power 18 KWH (No. of Cells 3000) for Four Wheeler: 24 Nos Per Day Plant & machinery: 289 Lakhs
Working capital: -T.C.I: Cost of Project: 970 Lakhs
Return: 29.00%Break even: 54.00%
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