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Investment Opportunities & Business Ideas in Tanzania, East Africa - Identification and Selection of right Project, Thrust areas for Investment, Industry Startup and Entrepreneurship Projects

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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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Production of Lithium Ion (LiFePO4) Cell batteries for electric vehicles

In today's portable electronics, two types of batteries are used: lithium-ion and lithium iron phosphate. Although they have some similarities, the high energy density, long life cycles, and protection of both are significant differences. The majority of people are familiar with lithium-ion batteries since they own a smartphone, tablet, or computer. Lithium iron phosphate is a newer type of battery that is gaining popularity in the manufacturing industry due to its low cost materials and high temperature stability. Related books:- Automobile Industry, Automotive Components & Allied Products Engine Parts, Piston, Pin, Piston Ring, Valve, Control Cable, Engine Mounting, Auto Lock, Disc Brake, Drum, Gear, Leaf Spring, Shock Absorber, Silencer, Chain, Cylinder Block, Chassis, Battery Advantages of Lithium Ion (LiFePO4) Cell batteries High energy density paves the way for even greater capacities. When fresh, there is no need to prime it for a long time. All that is required is a single daily fee. Self-discharge is less than half that of nickel-based batteries, suggesting that they have a poor self-discharge. Low Maintenance: There is no need for a periodic discharge, and there is no memory. Specialty cells can provide a large amount of current to applications like power tools. Lithium Ion (LiFePO4) Cell manufacturing process Cathode, anode, electrolyte, and separator are the four primary components of Li-ion batteries. The continuous reactions of lithium in a lithium-ion battery produce electricity. Cathode A Li-ion battery's power and voltage are determined by its cathode. Since lithium is unstable in its element form, the cathode of a Li-ion battery is lithium oxide. The frame of the cathode is held together by a thin aluminium foil, which is coated with a paste made up of active material, conductive additive, and a binder. Related project: - Lithium Ion Battery Anode The anode is also coated with an active material that allows for the reversible absorption or emission of lithium ions released from the cathode while also allowing for the flow of electric current through the external circuit. Lithium ions are contained in the anode rather than the cathode when the battery is charged. Lithium ions migrate back to the cathode via the electrolyte as the conducting wire binds the cathode to the anode in the discharge state, and electrons are isolated from lithium ions and travel along the wire, producing electricity. Electrolyte The electrolyte in a Li-Ion Battery allows the transfer of lithium ions between the cathode and the anode, as well as the movement of electrons through the wire. To allow the movement of lithium ions, an electrolyte is usually made up of chemicals with high ionic conductivity. Separator The cathode and anode determine the battery's basic efficiency, while the electrolyte and separator determine the battery's safety. By holding the cathode and anode separate, the separator serves as a physical barrier. It also prevents electrons from flowing directly through the internal microscopic hole, allowing only lithium ions to pass through. Synthetic resins such as polyethylene (PE) and polypropylene (PP) are widely used in commercialized separators (PP). Market outlook The demand for lithium iron phosphate batteries in North America, Europe, Asia-Pacific, Latin America, and the Middle East and Africa. North America is divided into three parts: the United States, Canada, and Mexico. Germany, the United Kingdom, Italy, France, and the rest of Europe make up Europe. China, India, Japan, and the Rest of Asia-Pacific make up Asia-Pacific. Because of its proven automotive sector and rising consumer electronics demand, Asia-Pacific dominated the global market. From 2020 to 2027, the global lithium iron phosphate battery market is projected to expand at a compound annual growth rate (CAGR) of 15.2 percent. Related videos: - Renewable Energy Sector, Green Power, Solar Energy, Biofuel, Hydroelectric, Wind, Non-conventional Energy, New and Renewable Energy Govt policies On November 11, 2020, the government approved the production-linked incentive (PLI) scheme in advance chemistry cell (ACC) battery manufacturing, as well as 10 other industries. The battery strategy of the scheme aims to make producers more internationally competitive, increase exports, achieve economies of scale, and develop cutting-edge goods. This is part of an attempt to encourage the use of electric vehicles (EVs), which have been hindered in India by high battery costs and a lack of supporting infrastructure. Battery imports account for more than half of the cost of an electric vehicle in India. The government has suggested that local manufacturing facilities be built in order to minimize costs and promote competition. The government has made it clear that it wants to drive India toward clean energy and transportation, as evidenced by the ambitious target of 450 GW of renewable energy production by 2020. Apart from promoting EVs, there has been a notable drive for renewable energy to be available around the clock, which includes energy storage like ACC batteries. Market Research; - Market Research Report The proposed battery policy is output-based rather than input-based, which is one of the scheme's key features. The subsidy is based on the amount of production generated and the amount of value added by private businesses. Only private companies would be eligible for a government subsidy if they reach a 60 percent value addition within five years of the project's start date, which is when full-scale development is planned. Any new technology that emerges in the next ten years will be eligible for a subsidy as well. Next, the government has set aside 570 billion (US$7.7 billion) for the car industry over the next five years as part of the programme. In reality, ACC manufacturing industries have been allocated 180 billion (US$2.4 billion) in advance. The government would pay the producer a fixed subsidy (as determined by the private entity's bid) for a period of ten years, subject to discounting over time. Economies of scale and lower production prices will be factored into the discounting. Key Players:- • BYD Company Ltd. • A123 Systems LLC, • K2 Energy • Electric Vehicle Power System Technology Co., Ltd. • Bharat Power Solutions • OptimumNano Energy Co., Ltd. • LiFeBATT, Inc. Related Projects: - Renewable Energy, Non-conventional Energy, Solar Energy, Biofuel, Biomass Projects Tags:- #LithiumIonBattery #LithiumIonBatteryProduction #LithiumIonBatteryIndustry #LithiumIonBatteryManufacturing #ElectricVehicles #ElectricVehiclesIndustry #ElectricVehiclesProduction #ElectricalIndustry #ElectricIndustry #RenewablePower #DetailedProjectReport #businessconsultant #BusinessPlan #feasibilityReport #NPCS #entrepreneurindia #startupbusiness #ProjectReport #startup #projectconsultancy #businessopportunity #IndustryDemands #profitablebusiness #ManufacturingBusiness
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Set Up an Industry for the Manufacture of Intravenous (IV) Catheters

Set Up an Industry for the Manufacture of Intravenous (IV) Catheters Introduction An IV Cannula, also known as an IV Catheter, is a Bevel-type needle that is used to make insertion smoother and less painful. This Catheter tube is flexible, kink-resistant, and double tapered with a rounded tip for a smooth introduction and minimal patient discomfort. Intravenous (IV) cannulation is a venous access operation that involves inserting a cannula into a vein. Blood should be drawn and fluids, medications, parenteral care, chemotherapy, and blood products can be delivered into a vein. Related projects:- Business Plan for Set up Manufacturing Unit of Intravenous (IV) Cannulas Uses of (IV) cannula An intravenous cannula is a flexible tube that can be placed into a patient's veins to deliver drugs and IV fluids, as well as take blood samples. Intravenous cannula sizes are color coded according to their intended use. The most popular cannula sizes are 14 to 24 gauges. Which cannula sizes should be used depends on the intent, the patient's condition, and the urgency with which intravenous fluid must be administered. The smaller the gauge, the greater the cannula's diameter, and the quicker the fluid flow. Rapid is one of their most popular applications. • replacement of fluid • Transfusion of blood • Major surgery and trauma . GOVT. Schemes for Promotion of Medical Devices Manufacturing Medical devices have been listed as a priority sector for the flagship 'Make in India' initiative, and the Indian government is committed to strengthening the manufacturing ecosystem. India is Asia's fourth-largest market for medical devices. The Indian market is currently heavily reliant on imports, but exports have recently increased. Related book:- Handbook on Medical and Surgical Disposable Products (Blood Bags, Plastic Gloves, I.V. Cannula, Infusion Set, Gowns, Masks, Catheter, Cotton and Bandage, Surgical Wear, Syringes) India's vision of being a global manufacturing center for medical devices is being boosted by the “Atma Nirbhar” Bharat mission. The Development Linked Incentive Scheme (PLI) and the Promotion of Medical Device Parks Scheme, for example, are recent initiatives that illustrate this. These schemes have been thoughtfully designed to encourage large-scale manufacturing and to provide the infrastructure necessary for the development of manufacturing clusters in India. The PLI Scheme for Medical Devices Manufacturing proposes a financial opportunity to improve domestic manufacturing and attract substantial investment in medical device segments such as cancer care devices, radiology and imaging devices, anesthetics devices, implants, and so on. The production process during the scheme's length, linked rewards worth up to INR 3,420 corer will be awarded. Surgical dressings and disposable perfusion sets are classified as Class A products by the central drug authority. If needles, urinary catheters, and other medical devices are classified as class B, bone cement, dialysis machines, and other medical devices are classified as class C due to the moderate-high risk they pose. Class D products, such as stents and heart valves, are high-risk. The low-risk, high-volume category has the most enforcement issues. Related videos:- Disposable Products The demand for consumables and patient aids is estimated to be worth $5.2 billion, or roughly 30% of the total. Large players dominate the hi-tech diagnostic imaging market, which would be the least affected. The government has set strict deadlines for the rule's enforcement for various items. The notice from the Ministry of Health includes all products, including instruments, apparatus, appliances, implants, materials, and other objects — whether used alone or in combination, including software or an accessory — that the manufacturer intends to be used specifically for humans or animals. The announcement comes at a time when the domestic medical device industry was anticipating a separate law to govern medical devices, rather than the existing regulation that classifies such devices as "drugs" and requires regulatory approval under the Drugs and Cosmetics Act. Market Outlook The market has been divided into three categories based on the material used in the construction of cannulas: • Metal • Plastic • Silicone In the cannula market, silicone material is expected to be the fastest growing segment. The non-irritant quality of the material is a major factor moving the silicone cannula market forward. Furthermore, since this form of cannula is more flexible and delicate, it is more convenient and manageable for both the health care professional and the patient to use. The cannula market is divided into four segments based on geography: North America, Europe, Asia Pacific, and the Rest of the World. The cannula market is divided into four segments based on geography: North America, Europe, Asia Pacific, and the Rest of the World. Market Research; - Market Research Report Boston Scientific Corporation, Teleflex Incorporated, Conmed Corporation, Sorin Group, Edward Life science Corporation, Medtronic plc. Terumo Corporation, Smith & Nephew plc. Smiths Medical, and Marquette Holding B.V. & Co. are among the major industry players in the cannula market. KG. The global peripheral intravenous (IV) catheter market is projected to hit USD 6.73 billion by 2025, up from USD 4.03 billion in 2017. The market is expected to expand at a CAGR of 6.1 percent from 2018 to 2025. KEY PLAYERS:- Angi Plast Pvt. Ltd. Global Medikit Ltd. Hemant Surgical Inds. Ltd. Hindustan Syringes & Medical Devices Ltd. Mediplus (India) Ltd. Smiths Medical India Pvt. Ltd. #DetailedProjectReport #businessconsultant #BusinessPlan #feasibilityReport #NPCS #entrepreneurindia #startupbusiness #ProjectReport #startup #projectconsultancy #businessopportunity #IVCannulas #CannulasMarket #CannulasIndustry #IntravenousCannulation #Medical #MAnufacturingBusiness #ProductionBusiness #DisposableProducts #DisposableBusiness #SurgicalProducts #SurgicalIndustry #SurgicalManufacturing #SurgicalBusiness #SurgicalIndustry #SurgicalMarket #DisposableMarket #DisposableIndustry
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Fiberglass Fabric Weaving Unit (For Composites)

Introduction For thermal insulation, an innovative design of fiberglass textile products was developed. The design is the result of extensive research into the construction of plain woven fiberglass textile and the factors that influence it. The selection of glass fibers, the manufacturing mechanism, and the level of insulation control were all highlighted. The new structure of thermal insulation fabrics was achieved using plain weave fabrics, tapes, and meshes methods. The work was expanded to include testing, characterization, and assessment of the various fiberglass textiles obtained in order to explain their performance and confirm the feasibility of the design conceived for the manufacture of these thermal insulation textiles in a variety of industrial applications, including welding, shipyards, refineries, power plants, and chemical plants, among others. Related books:- Plastics And Polymers, Polyester Fibers, Pet & Preform, Medical, Expanded Plastics, Polyurethane, Polyamide, Polyester Fibers, Additives, Colourants And Fillers, Extrusion, Moulding, Mould Designs, Optical Glass, Reinforced, Films, HDPE, Thermoset Uses of Fiberglass Fabric Glass fiber is made by extruding very thin strands of silica-based monofilament into fiberglass material. Glass is an amorphous solid, which means it lacks a crystalline structure in its solid state and instead behaves like a very viscous liquid. Because the thin fibers can easily bend, glass fiber lends itself to woven fabric. Glass fiber fabric has a high tensile strength, dimensional stability, heat and fire resistance, and resistance to a wide range of chemical compounds. Fiberglass fabric can also be used to dissipate heat and has electrical properties that make it suitable for use in electronic components. Related Projects:- TEXTILE BLEACHING, DYEING, SPINNING, WEAVING, PRINTING, FINISHING AND TEXTILE AUXILIARIES PROJECTS Manufacturing Process of Fiberglass Fabric Weaving To form a cloth structure, the weaving machine, or loom, interlaces the warp and filling yarns according to a weave pattern. The warp refers to the yarn system that runs the length of the cloth. On a loom beam, it is delivered to the weaving machine. Ends are a term used to describe warp yarns. Weft or filling refers to the yarns that cross the warp. They are inserted in the cloth by a weft feeder on the new loom generation, allowing for frequent unwinding. Glass product can be woven in almost any weaving pattern. Plain, basket, twill and their derivatives, unidirectional, and leno weaving are the most common patterns used to make meshes. There Are Five Basic Processes That Make Up The Weaving Process: Mechanism 1: The warp is distributed to the loom by the let-off motion. Mechanism 2: The warp yarn is moved up and down according to the weaving pattern by a warp shedding mechanism. Mechanism 3: a filling insertion system places the filling between the openings of the warp yarns (also known as sheds), which is done by the shedding mechanism. Modern picking systems are primarily used to fill glass products: • Air jet • Rapier • Projectiles • Needle (loom for narrow fabrics) Mechanism 4: the filling between the warp yarns is beaten against the cloth in formation by a reed moved by the beat-up motion. Mechanism 5: the filling density is controlled by a fabric take-up, and the fabric is wound onto a tube on the loom or by a separate winding device. Related Videos:- Plastic Products Market Outlook Building and construction, automotive and transportation, wind energy, aerospace and Defence, chemical, and other end-use industries have increased their demand for fiberglass fabric. Because of their comprehensive set of characteristics, such as high tensile strength, dimensional stability, high heat resistance, fire resistance, excellent thermal conductivity, good chemical resistance, and more, fiberglass fabrics are in high demand in a variety of industries. Furthermore, because of its lightweight, electrical, and durable properties, fiberglass fabrics are widely used in electrical and electronics applications, which is expected to boost the fiberglass fabric market during the forecast period. In terms of value, the global fiberglass fabric market is expected to reach USD 13.48 billion by 2022, growing at a CAGR of 7.62 percent between 2017 and 2022. Market Research; - Market Research Report Key Players • Everlast Composites Pvt. Ltd. • Goa Glass Fibre Ltd. • Jushi India Pvt. Ltd. • Magnus Composites Synergies Pvt. Ltd. • U P Twiga Fiberglass Ltd. • SAERTEX GmbH & Co.KG • Saint-Gobain Performance Plastics Corporation • Tah Tong Textile Co., Ltd. • Taiwan Electric Insulator Co., Ltd. • Valutex Reinforcements Inc. #DetailedProjectReport #businessconsultant #BusinessPlan #feasibilityReport #NPCS #entrepreneurindia #startupbusiness #ProjectReport #startup #projectconsultancy #businessopportunity #FiberglassFabric #FiberglassFabricManufacturing #FiberglassFabricProduction #FiberglassFabricMarket #FabricWeaving #Weaving #WeavingIndustry #WeavingFiber #WeavingProduction #FiberManufacturing #FiberProduction #FiberIndustry #FiberMarket #FiberPlant #ManufacturingBusiness #ProductionBusiness
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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How to Start a Production Unit of Magnesium Powder from Dolomite Stone

Introduction Magnesium Powder is a refined substance that is used in a variety of crafts. Magnesium (Mg) is a silvery white metal that resembles aluminium in colour but is one-third the weight. It is the lightest structural metal known, weighing just 1.738 grammes per cubic centimeter. It has a hexagonal close-packed (hcp) crystalline structure, so it loses ductility when worked, as do most metals with this structure. Furthermore, it is insufficiently powerful in its pure form for most structural applications. The addition of alloying elements, on the other hand, improves its properties to the point that both cast and wrought magnesium alloys are commonly used, especially where light weight and high strength are required. Related projects:- Pharmaceutical, Drugs, Fine Chemicals, Bulk Drug Intermediates, Pharmaceutical Drugs, Pharma Drug Ingredients Intermediates, Drug Intermediates, Speciality Chemicals, Raw Materials, Fine and Specialty Chemicals Intermediates, Pharmaceutical Bulk Drugs Magnesium is only found in nature in conjunction with other elements, and it often has a +2 oxidation state. The free element (metal) is highly reactive and can be generated artificially. Magnesium isn't as well-known as other metals, but it's an important component of everyday life. Magnesium is used in a wide range of applications, from dietary supplements to large-scale manufacturing processes. Magnesium is widely used to treat constipation, heartburn, low magnesium levels, pregnancy risks such as pre-eclampsia and eclampsia, and a particular form of irregular heartbeat (torsade de pointes). Magnesium has a lower density than aluminium, making it a desirable alloy for its lightness and strength. Related books:- Chemical Technology (Organic, Inorganic, Industrial), Fine Chemicals About Dolomite Stone Dolomite is a natural mineral that shapes rocks. CaMg (CO3)2 is the chemical formula for calcium magnesium carbonate. Dolomite can be found in sedimentary basins all over the world. It's thought to form when magnesium-rich groundwater alters lime mud and limestone after they've been deposited. It is the primary constituent of dolostone, a sedimentary rock, and dolomitic marble, a metamorphic rock. Dolomitic limestone is limestone that includes some dolomite. While dolomite is uncommon in modern sedimentary environments, dolostones are abundant in the rock record. Uses and Benefits They can cover a large area and be hundreds to thousands of feet thick. Dolomite is brittle, like most natural stones, and must be sealed to avoid staining. Although it performs better than true marble, it is susceptible to scratching and etching, so keep that in mind before installing it in a kitchen. Following iron and aluminium, magnesium is the third most widely used structural metal. Aluminium alloys, die-casting (alloyed with zinc), extracting sulphur in the manufacture of iron and steel, and the production of titanium in the Kroll process are the main applications of magnesium. Magnesium is used in materials and alloys that are super-strong and lightweight. A scientist uses magnesium in medicine. It's generally used to treat skin issues, attention deficit hyperactivity disorder (ADHD), anxiety, mania, and post-surgery recovery, among other items. Magnesium is abundant in this lush, leafy vegetable. Magnesium can also be found in whole grains, seeds, and nuts (most notably almonds). Magnesium is also present in the flashbulbs. When magnesium burns, it emits a bright light that aids photographers in taking images in low light. Related videos:- Chemicals (Organic, Inorganic, Industrial) Processing of Magnesium Powder Mechanical crushing (scratching of an ingot from magnesium card tape fixed on a revolving drum, milling of an ingot), atomization of molten metal, single-roller melt spinning, spinning water atomization, magneto-dynamic system in air, evaporation-condensation, and other methods of magnesium powder processing are discussed. We'll talk about electrolysis, additive friction stir processing, and the plasma transferred arc melting process for producing magnesium alloys. Magnesium powders and granules, as well as their alloys, have a wide variety of uses, including changing metal metallurgical properties, chemical reduction, and pyrotechnics. Characterization of additives in electric welding electrode flux, action as a light source in flares and photoflash bombs, development of constructional purpose details, and armor manufacturing SEM and optical micrographs reveal the characteristic structure and surface morphology of magnesium and magnesium alloy powders. The protection of powder and granule processing is taken into account. Inert gas atomization produces polydisperse magnesium powders with particle sizes varying from a few microns to 0.5–1 mm. The atomization hardware is identical to that used in the production of aluminium powder, and it is divided into required fraction particle sizes. Market Research; - Market Research Report Market Outlook Magnesium Powder is a pretty fragmented market. While key companies continue to drive innovation and, in most cases, digital transformations, market leaders and emerging players with niche offerings dominate the overall competitive ecosystem. The market for Magnesium Powder can be segmented based on product types, main applications, and key regions. The following are the major regions that play a significant role in the Magnesium Powder market: 1. North America. 2. The European Union. 3. China. 4. Japan. 5. Africa and the Middle East. 6. India. 7. South America. The global magnesium powder market has been growing at a faster rate with significant growth rates over the last few years, and it is expected to increase significantly between 2020 and 2027. Key Players:- 1. Next-Generation Steels and Alloys. 2. Galaxy Corporation. 3. Neeraj Industries. 4. Jagada Industries. 5. Ar Mines Industries. For more details:- https://www.entrepreneurindia.co/project-and-profile-details/Production%20of%20Magnesium%20Powder%20from%20Dolomite%20Stone Tags:- #DetailedProjectReport #businessconsultant #BusinessPlan #feasibilityReport #NPCS #entrepreneurindia #startupbusiness #ProjectReport #startup #projectconsultancy #businessopportunity #MagnesiumPowder #Magnesium #MagnesiumProcess #MagnesiumProcessing, #MagnesiumPlant #Dolimite #ChemicalIndustry #ChemicalCompund #ChemicalManufacturing #ChemicalProcessing #ChemicalProduction #ManufacturingBusiness #ProductionBusiness
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Business Ideas and Opportunities in Manufacturing of Vitamin C (Ascorbic Acid). Opportunities in Pharmaceutical Sector.

Introduction Vitamin C (ascorbic acid) is the most abundant natural hydro-soluble antioxidant used as a dietary supplement for humans. It can be contained in a number of fruits and vegetables, including lemons, oranges, and broccoli. It is also a critical cofactor for a number of metalloenzymes in the human body. Furthermore, because of its antioxidant properties, ascorbic acid is needed by the agriculture, food, beverage, and pharmaceutical industries. The pharmaceutical industry is the largest user of ascorbic acid, accounting for one-third of total production. Related Project:- Investment Business Idea in Vitamin C Manufacturing Plant Uses of vitamin C Because of its antioxidative properties, industrially generated L-ascorbic acid is commonly used as a dietary supplement and preservative in the feed, food, and pharmaceutical industries. Vitamin C is an essential nutrient for the human body. It is needed to keep the skin, cartilage, teeth, bone, and blood vessels healthy. It's also used to keep your body's cells protected from injury. It's referred to as an ant. It is now commonly promoted as a natural cure to the common cold. Despite its popularity as an "immune booster," there is no evidence that taking vitamin C will actually prevent or treat infection. Related Books:- Pharmaceutical, Drugs, Proteins Technology Handbooks Production process of vitamin C Additional bio-oxidation steps with Ketogulonicigenium vulgare as a biocatalyst are used in the production process to transform d-sorbitol to the intermediate 2KGA without the use of chemicals. The enzymes involved have a wide substrate variety but exhibit remarkable regiospecificity. The preferences of these enzymes for some of the many isomeric structures that carbohydrate substrates follow in aqueous solution explain this perplexing specificity pattern. Novel enzymes have recently been discovered that produce l-ascorbic acid directly from L-sorbosone, an intermediate in the bio-oxidation of d-sorbitol to 2KGA. This removes the need for 2KGA chemical rearrangement and allows for a direct route from d-sorbitol to l-ascorbic acid. The development of d-isoascorbic acid, the C5 epimer of l-ascorbic acid, follows similar industrial principles. D-isoascorbic acid has the same C5 conformation as d-glucose and can be made more easily from this common carb than l-ascorbic acid. Related Videos:- Pharmaceutical, Drugs, Fine Chemicals, Bulk Drug Intermediates, Pharmaceutical Drugs, Pharma Drug Ingredients Intermediates, Pharmaceutical Bulk Drugs Market Outlook The strong application spectrum in the cosmetics, pharmaceutical, animal feed, and processed food industries is driving the market size of vitamin C. It's primarily found in fruits and vegetables, and it's also taken as a dietary supplement. It's used to avoid heart failure, vision disorders, immune system defects, skin wrinkling, and prenatal health problems. By 2024, the global vitamin market could be worth more than USD 10 billion. Vitamin C is a natural antioxidant that protects cells from free radical damage when they are exposed to radiation or UV rays. It is involved in protein metabolism and is needed for collagen biosynthesis. During the period 2020-2025, the ascorbic acid market is expected to develop at a CAGR of 5.1 percent. Books: - BOOKS & DATABASES Indian Govt Initiative for Vitamin C Production In the wake of domestic producers arguing for the implementation of a levy, India has launched an anti-dumping inquiry into vitamin C imports from China. The move comes days after the Directorate General of Trade Remedies (DGTR) of the Commerce Ministry placed a six-month provisional anti-dumping duty on anti-bacterial medication Ciprofloxacin Hydrochloride imports from China. The investigation has been launched after Bajaj Healthcare said that ‘dumped imports' of vitamin C from China are harming the domestic industry. Market Research; - Market Research Report “In terms of important product characteristics such as physical and chemical characteristics, manufacturing process and technology, functions and uses, product requirements, pricing, and distribution, subject products manufactured by domestic industry and PUC (product under consideration) imported from subject country (China) are comparable. The products' marketing and tariff classification,” the company had said. Key Players:- • Dishman Pharmaceuticals & Chemicals Ltd. • Glaxosmithkline Pharmaceuticals Ltd. • Gulshan Polyols Ltd. • Kasyap Sweetners Ltd. • M S Healthcare Pvt. Ltd. • Pfizer Healthcare India Pvt. Ltd. • Pfizer Ltd. For More Details:- https://www.entrepreneurindia.co/project-and-profile-details/Production%20of%20Vitamin%20C%20(Ascorbic%20Acid)
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Return: 1.00%Break even: N/A
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Ply Board from Poplar & Eucalyptus Wooden Logs

Ply Board is wooden made board or wooden like raw materials largely used for making ply board. There is large use of ply board nowadays in making wooden base furniture. Poplar and Eucalyptus Wooden Logs can be used for making ply board. Plywood is a building material consisting of veneers (thin wood layers or plies) bonded with an adhesive. There are two types of plywood: softwood plywood and hardwood plywood. Softwoods generally correspond to coniferous species. The most commonly used softwoods for manufacturing plywood are firs and pines. Hardwood plywood is made of hardwood veneers bonded with an adhesive. The outer layers (face and back) surround a core which is usually lumber, particleboard, or medium density fiberboard. Hardwood plywood may be pressed into panels or plywood components (e.g., curved hardwood plywood, seat backs, chair arms, etc.). Poplar wood is a species of wood most commonly used in the making of furniture, cabinets, wooden toys, plywood, etc. It is considered a hardwood, but is just about as easy to work with as pine boards or other soft woods. Poplar is a popular choice for interior work and is something that is always stocked throughout all of Builder locations. Poplar boards are white/ivory in tone with green or brown streaks running through the heartwood of the board. In addition, the wood is straight grained and uniform in texture. It has a medium density which allows paints and glues to adhere very well. Indian particle board and plywood industry dates back to the First World War. It has come a long way having grown nearly six-fold since its inception. The large producers account for 15% of the total production, producing some 38 mn sqm of plywood and blackboards. The ecological considerations had, however, placed the industry in jeopardy owing primarily to the restraints put on the use of timber. Alternate materials in form of agricultural wastes like stalks of cotton and wheat, rice husk and bagasse are slowly getting into the industry as raw material feeds. The Indian market for particle board and plywood is estimated in value terms, at over Rs 37 bn. Of the total market, particle board including medium density fiberboard (MDF board) accounts for nearly a quarter of the market. Nearly 85% of the particle board is supplied by the organized sector. Western India has emerged as the leader in the particle board segment. The Indian plywood market size reached US$ 4.5 Billion in 2019 and current Indian plywood market reached a value of INR 222.5 Billion in 2020. Plywood is manufactured by assembling thin layers of wood veneers bonded together using powerful adhesives. Global Plywood Industry reach 5 Billion by 2027, growing at a CAGR of 7.9% over the period 2020-2027. Hardwood, one of the segments analyzed is projected to grow at an 8.2% CAGR to reach US$58.8 Billion by the end of the analysis period. As a whole there is a good scope for new entrepreneur to invest in this business. Few Indian major players • Archidply Industries Ltd. • Asian Pre-Lam Inds. Pvt. Ltd. • Associate Decor Ltd. • Austin Plywood Pvt. Ltd. • Century Plyboards (India) Ltd. • Duroply Industries Ltd.
Plant capacity: Poplar Ply Board Size: 8' x 4' Thickness: 18mm:250.0 Nos. Per Day Eucalyptus Ply Board Size: 8' x 4' Thickness: 18mm:250.0 Nos. Per DayPlant & machinery: 260 Lakh
Working capital: -T.C.I: Cost of Project:536 Lakh
Return: 28.00%Break even: 63.00%
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Wood Plastic Composite (WPC)

Wood-plastic composites (WPCs) are a product class that has been developing over the last 40 years resulting in increased applications and expanded market share. More specifically, WPCs are composites containing a wood component in particle form (wood particles/wood flour) and a polymer matrix. They are used in a variety of structural and non-structural applications ranging from component and product prototyping to outdoor decking. WPC can be manufactured in a variety of colors, shapes and sizes, and with different surface textures. Depending on the processing method, WPCs can be formed into almost any shape and thus are used for a wide variety of applications, including windows, door frames, interior panels in cars, railings, fences, landscaping timbers, cladding and siding, park benches, molding and furniture. Wood is often used in plastics as a means to reduce price compared to a solid plastic product. Wood used in WPCs often comes from side streams such as sawdust produced while manufacturing lumber or recovered wood products, and is much cheaper to produce than the plastic that it replaces in many products. This often helps to reduce prices for consumers. Wood plastic composite is good to solve the problem arises in the environment. There is scope of use agricultural waste product. In this case we will use waste polypropylene or polyethylene, or it may be used virgin polypropylene or polyethylene, waste wood floor. Rice husk, plastic additives like (DOP, DBP etc.). There are different percentages of raw material used for the production of pallets decking, outdoor furniture like park bench, windows and door shutter frames etc. Indian particle board and plywood industry dates back to the First World War. It has come a long way having grown nearly six-fold since its inception. The large producers account for 15% of the total production, producing some 38 mn sqm of plywood and blackboards. The Indian market for particle board and plywood is estimated in value terms, at over Rs. 37 bn. Of the total market, particleboard including medium density fiberboard (MDF board) accounts for nearly a quarter of the market. Nearly 85% of the particleboard is supplied by the organized sector. The wood-plastic composites market is projected to reach USD 5.84 Billion by 2021, at a CAGR of 12.4% from 2016 to 2021. Based on application, the wood-plastic composites market has been segmented into building & construction products, automotive components, industrial & consumer goods, and others. Based on type, the market has been segmented into polyethylene (PE), polyvinylchloride (PVC), polypropylene (PP), and others. Entrepreneurs who invest in this project will be successful. Few Indian major players • Amazon Wood Pvt. Ltd. • Archidply Industries Ltd. • Aryan Enterprises Pvt. Ltd. • Asian Pre-Lam Inds. Pvt. Ltd. • Associate Decor Ltd. • Austin Plywood Pvt. Ltd. • Best Board Ltd.
Plant capacity: 10,000,000 Sq.Ft. per annumPlant & machinery: 142 Lakh
Working capital: -T.C.I: Cost of Project:687 Lakh
Return: 28.00%Break even: 57.00%
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English Willow Cricket Bat

A cricket bat is a specialized piece of equipment used by batsmen in the sport of cricket to hit the ball, typically consisting of a cane handle attached to a flat-fronted willow-wood blade. It may also be used by a batter who is making their ground to avoid a run out, if they hold the bat and touch the ground with it. The length of the bat may be no more than 38 inches (965 mm) and the width no more than 4.25 inches (108 mm). Its use is first mentioned in 1624. Since 1979, a law change stipulated that bats can only be made from wood. The willow used in making bats in Kashmir was brought in by the British, who ruled India, during the 1820s. The industry combines traditional tools with modern technology. Some of the districts where these bats are made in Kashmir are Anantnag, Baramula, and Pahalgam. Traditional Indian cricket bats are made in the regions of Jammu and Kashmir, Punjab, Haryana, Gujarat, Uttar Pradesh and Rajasthan. In Kashmir they are made out of willow found in northern India. Some bats made in Kashmir are of international standards and are/were used by national players in India Sunil Gavaskar, Virender Sehwag and Yuvraj Singh. English willow bats with minor visual defects such as grains which are not perfectly straight, or dis-colourations, are also cheaper. Geoffrey Boycott, former England captain and one of the most successful Test players in history, has stated that such bats will play just as well as better-looking ones and that players ought to buy the cheaper ones to get the same performance at a better price. Further, with projected demand of cricket bats expected to increase to 4 million per annum in the global market by the year 2020, the future of this industry looks very promising because the Kashmir willow comprises about 60 percent of the total bats manufactured in India. Additionally, with a compound growth rate of about 8.4 percent, the potential turnover from the export of this commodity is projected to increase to 100 million per annum in the year 2030. The top cricket bat manufacturers in India. Cricket Bats over the years have faced a massive change. Initially, it had followed two rules. Firstly, it should be a Kashmir willow or an English willow. Secondly, the dimensions will be 956 mm*108mm. But nowadays, the bats are customized according to the needs of the batsmen. Bats have carbon-reinforced fabric polymer down the bat, size of handles are varied, bats weigh less than the bats used in the 1990s, etc. As a whole there is a good scope for new entrepreneur to invest in this business. Few Indian major players • Adidas India Pvt. Ltd. • Hike Pvt. Ltd. • Nike India Pvt. Ltd. • Puma Sports India Pvt. Ltd. • Sanspareils Greenlands Pvt. Ltd. • Sporting & Outdoor Ad-Agency Pvt. Ltd.
Plant capacity: 6.7 Nos. Per DayPlant & machinery: 8 Lakh
Working capital: -T.C.I: Cost of Project:22 Lakh
Return: 29.00%Break even: 81.00%
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Maize Processing Unit (Starch, Glucose, Germs, Fibres, Gluten & Steep Water)

Globally, maize is known as queen of cereals because it has the highest genetic yield potential among the cereals. It is cultivated on nearly 150 m ha in about 160 countries having wider diversity of soil, climate, biodiversity and management practices that contributes 36% (782 mt) in the global grain production. The U.S. of America (USA) is the largest producer of maize contributes nearly 35% of the total production in the world and maize is the driver of the US economy. The USA has the highest productivity (> 9.6 t ha-1) which is double than the global average (4.92 tha-1). Whereas, the average productivity in India is 2.43 tha-1. In India, maize is the third most important food crops after rice and wheat. Besides food, maize and maize products have numerous industrial uses such as in adhesives, explosives and soaps, and for textile sizing, etc. Maize starch is employed in the manufacture of asbestos, ceramics, dyes, plastics, oil cloth, linoleum, paper, and paper boards, and in textiles, mining, deep oil drilling, and cosmetic and pharmaceutical industries. The derivatives of maize starch include glucose or corn syrup, corn sugar, dextrin, and industrial alcohol, which is employed in different industries. The grain is used for making various alcoholic beverages. Maize starch is extensively used as a sizing material in the textile and paper industries. In the food industry, it is used in the preparation of pies, puddings, lad dressings and confections. It is used to manufacture tablets, as a binder and used as a substitute to cellulose. It fulfils all specifications of pharmaceuticals. In textile Industry:- It improves weaving performance. It is used in textile finishing. It increases the stiffness of the fabric and improves the texture. Glucose syrup is used in the food processing industry, chiefly in confectionery. One of the main and most important uses of maize fiber is that it is used to prepare sweeteners, starches and ethanol. It thus finds use in several industries. India corn starch market is estimated to be valued at 1.37 Billion in 2018 and is estimated to grow at a CAGR of 3.9% during the forecast period 2019–2024. India Corn Starch market growth can be attributed to the easy availability of corn and its wide range of applications in various industries such as food and beverage, pharmaceutical, animal feed, textile industry, paper industry, and others. Thus, due to demand it is best to invest in this project. Few Indian major players • Aksharchem (India) Ltd. • Amaravati Agro Ltd. • Cargill India Pvt. Ltd. • Devi Corn Products Ltd. • Gayatri Bioorganics Ltd. • Gujarat Ambuja Exports Ltd.
Plant capacity: Maize Starch:30 MT per day Liquid Glucose:30 MT per day Gluten:4.50 MT per day Germs:6 MT per day Fiber:14 MT per day Steep Water:6 MT per dayPlant & machinery: 3206 Lakh
Working capital: -T.C.I: Cost of Project:4496 Lakh
Return: 21.00%Break even: 49.00%
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Information
  • 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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