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Maize, Corn and its By Products, value added Products, Derivatives, Maize Processing Industry, Corn Starch, Dextrose, Liquid Glucose, Sorbitol, Oil, Gluten, Germ Oil, Wet Milling, Maize Starch Plant & related Products, High-Fructose Corn Syrup (HFCS)

Agriculture is one of the strongholds of the Indian economy and accounts for 18.5 per cent of the country’s gross domestic product .Maize is a coarse grain and it is now being accepted as staple diet and its demand is increasing year by year. In India, maize is the third important cereal crop after rice and wheat in terms of area. Currently, 49 per cent of maize output is used as poultry feed, 12 per cent as animal feed, 25 per cent as food, 13 per cent in starch and other industries, and 1 per cent as seed. Andhra Pradesh, Karnataka and Maharashtra are the major maize producing states. The products from maize are value added products which include maize starch, liquid glucose, dextrose monohydrate, anhydrous dextrose, sorbitol, corn gluten to name a few.In India, the prime source of starch is maize and the textile industry is for long the largest buyer of maize starch in India.

In India, maize is a kharif crop with harvests and arrivals due only from October onwards. Kharif contributes over 80 per cent of the entire maize output. Bulk of the maize produced in the country goes for production of poultry feed. It is estimated that the demand for maize from the poultry industry would rise by about 6 per cent. About twelve states which include Bihar, Orissa, Uttar Pradesh, Uttarakhand and Delhi account for over 50 per cent of the total maize acreage in the country. Increasing demand from Poultry sector is likely to substantially hike maize consumption to go over 30 million tons by 2020.

The current level of maize yield in the country (2.17 MT/Ha) is far behind the global average of 5 MT/Ha, and there is a huge scope for improvement in yield by improving the adoption of hybrids, particularly in traditional maize growing regions. With the growing demand from feed and starch sector, the overall demand for maize is likely to grow at a brisk pace. India has a huge potential to increase its market share and to make its presence felt in the global maize market.

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Cold Water Starch Production Business

Cold Water Starch Production Business. Manufacturing of Cold Water Starch for Laundry, Dry Cleaning, Textile Finishing, Paper Smoothening, Printing Finishing, Gluing and Gumming Industry Cold water starch is a modified starch used to stiffen textile and other related fabric. Cold water starch is used to stiffen clothes and fabrics. It is used in cold water at room temperature on the fabric to be treated. Production of cold water starch is a lucrative business due to high demand for it. Cold water starch is easy to use; it does not require boiling water to prepare it, this has made it a darling to starch users and launderers. The raw materials for producing it are affordable and readily available in the market. Cold water starch is used during laundry and is applicable on a small or large scale. It is simply used in cold (room temperature) water or directly on the material to be treated. Types: There are two types, namely the powder and the liquid. However, the liquid is also found in aerosol pack. Uses: 1. Laundry and dry cleaning 2. Textile finishing (cloth, bandages, rug towels) etc. 3. Fishing and other nets finishing 4. Paper smoothening (in paper production) 5. Printing finishing (Anti-set-off powder) 6. Gluing and gumming (labeling, binding & gumming) Cold water starch, which is popularly used by many because it is easier to apply, comes in two variants, namely, the dry (powder form) and the liquid cold water starch. Making of cold water soluble starch is one profitable business anyone can venture into with minimal capital and generate steady income with remarkable high turnover. It is used during laundry and is applicable on a small or large scale. Home owners use the product including businesses that do laundry and dry cleaning. Manufacturing Process Mixing of Starches: • The waxy maize starch 20% and common corn starch 80% are mixed with water to get a slurry. • Ethanol -water mixture. • Prepare an ethanol 60%-water 20% mixture. • Add the mixture of starch (20%) to the ethanol-water mixture (80%). • Stir continuously and a slurry is prepared, • This slurry is pumped through a tubular jacketed reactor at a temperature 150-172°C for 2 minute residence time. • Cool the slurry to 40°C. • Filter the slurry by centrifuge and recycle the ethanol. • Dry the starch and • Filled in the poly bags and sent to store/ sale. Industrial starches are largely used as adhesives in paper and packaging material manufacturing, etc. There is an increase in the demand for the adhesive in the packaging industry, which is helping its growth. The growing demand for industrial starches in the construction industry and the high demand for food additives as thickeners are also responsible for the growth of the market. Growing demand for starch is mainly due to its use in the coating of papers as one of the binders. Coated paper from starch has enhanced smoothness, whiteness, stability, and hence, improves the printing quality, which has boosted sales of industrial starches. The demand for starches and derivatives looks very promising in India as all the major user segments of starches and derivatives are showing near double digit growth in their production. The major users of starches and derivatives are food, textile, paper and pharma sectors. The textile sector is one of the oldest industries in the Indian economy dating back several centuries. It is also one of the largest contributors to India’s exports with approximately 11 percent of total exports. The Indian textile industry, currently valued at around INR 7265 bn ($110 bn), is expected to reach $225 bn by 2021. The industry contributes about 5 percent of India’s GDP. Starch is an important raw material for the textile industry, with applications in sizing, finishing and printing. Approximately 80 percent of the starch used in textiles is in sizing and minor quantity of starches are used in garment finishing. The increasing consumption of industrial starch as adhesives in consumer products and packaging industry is anticipated to boost the growth of the global industrial starch market. The emerging trend of biofuels and biomaterials and the consumption of starch in this industry is expected to drive the growth of the industrial starch market. The global industrial starch market can be divided into seven regions, namely North America, Latin America, Western Europe, Eastern Europe, Asia Pacific Excluding Japan (APEJ), Japan and Middle East and Africa (MEA). APEJ holds major share in the industrial starch market in terms of consumption. This is attributed to the growth of end-use industries such as textile, paper and food industry in the emerging clusters of the region. North America also accounted for the significant share in the industrial starch market, owing to the rapid growth of industrial packaging in the region. The growing end-use industries and industrial packaging industry in Western Europe is anticipated to increase the share of the industrial starch market in the region. Tags Production of Cold Water Starch, Liquid Cold Water Starch Business, How to Start a Cold Water Starch Business, Starting a Cold Water Starch Company, How to Produce Cold Water Starch, Cold Water Starch Production, Production of Cold Water Starch Powder, How to Make Cold Water Starch Pdf, Cold Water Starch Production Business Plan, Cold Water Starch Production, Cold Water Starch Production Business, Production of Liquid Cold Water Starch, Uses of Cold Water Starch, Starch, Instant Cold Water Starch, How to make Liquid Starch for Clothes, Cold Water Soluble Starch for Textile Industry, Project Report on Cold Water Starch Production Industry, Detailed Project Report on Cold Water Starch Production, Project Report on Cold Water Starch Production, Pre-Investment Feasibility Study on Cold Water Starch Production, Techno-Economic feasibility study on Cold Water Starch Production, Feasibility report on Cold Water Starch Production, Free Project Profile on Cold Water Starch Production, Project profile on Cold Water Starch Production, Download free project profile on Cold Water Starch Production
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Biodegradable Plastic Bags from Corn Starch

Corn starch has 25% amylose and 75% amylopectin. The amylose molecules loose lose water increase biodegradation characteristic and amylopectin molecule is responsible for plasticizer properties. Corn starch used in making biodegradable plastic bags. Biodegradable plastic bags are made of polymers that degrade, or decompose, when exposed to air, water, or sunlight. Biodegradable Plastics Market by Type (PLA, PHA, PBS, Starch-Based Plastics, Regenerated Cellulose, PCL), by Application (Packaging, Fibers, Agriculture, Injection Molding, and Others) - Global Trends & Forecasts to 2020 says biodegradable plastics market is projected to be worth more than USD 3.4 billion by 2020 growing at around 10% CAGR.Entrepreneurs who invest in this project will be successful. Few Indian major players are as under • Arihant Industries Ltd. • Baroda Polyplast Ltd. • Jain Plastics & Chemicals Ltd. • Karwa Consolidated Mktg. Ltd. • Paradise Plastics Enterprise Ltd. • Shakun Polymers Ltd.
Plant capacity: Biodegradable Plastic Bags (Per Bag 25 gms wt.) : 360 MT/AnnumPlant & machinery: Rs 298 lakhs
Working capital: -T.C.I: Cost of Project : Rs 606 lakhs
Return: 25.00%Break even: 61.00%
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Biodegradable Plastic Bag Manufacturing Industry

Biodegradable Plastic Bag Manufacturing Industry. Production of Compostable and Biodegradable Bags from Corn Starch. Eco-Friendly Disposable Bags The corn starch bags look and feel just like the ones made of plastic. A factor behind the huge demand for the corn starch bags is inadequate raw material. Bags made out of corn starch are bio-based and renewable. Agricultural Crops like Corn can be harvested every year in the fields and are annually renewable. Through photosynthesis, they convert the energy from the sun into carbon chains, which can be processed into plastics and paper. They: • have a high barrier to air, grease and bacteria: ideal for food packaging • are watertight • have a hard and crinkly texture • can be heat sealed • are made from natural renewable resources • are biodegradable • are compostable in a compost facility • Use these bags to package dry goods, nuts, fruit, beans peas etc. These biodegradable bags are being liked over traditional plastic products, especially for the fast-moving consumer goods and food packaging. Market Outlook The biodegradable plastic bags and sacks market have consolidated landscape owing to increasing strategic business activities. The key players operating in the biodegradable plastic bags and sacks market are trying to provide improved and versatile products. The players are focusing to offer high quality and biodegradable additives so as to gain more shares than other rivals. In addition, several players are indulging in strategic business activities such as mergers and acquisitions to improve their global presence. The increasing dependence of the medical and food industry on environmental-friendly plastic packaging is a notable factor catalyzing the market demand for biodegradable plastics bags and sacks. Biodegradable Plastics Market Biodegradable plastics are plastics which decompose in the environment within a reasonable period of time. Biodegradable plastics are made up of renewable raw materials. Many of these plastics require biodegradable additives to enhance biodegradation process and some may require a specific environment to disintegrate. Time taken by plastics to decompose depends upon various factors such as raw material used and environmental conditions such as moisture and temperature. The global biodegradable plastics market size is projected to reach USD 6.73 billion by 2025. The starch based segment lead the global biodegradable market. Starch based plastics are used in various applications such as packaging, consumer electronics, agriculture, automotive and textiles. The Global Biodegradable Plastic market is primarily driven by a positive attitude of government towards green procurement policies and superior characteristics of biodegradable plastics. The government of different countries are initiating stringent actions for reducing the use of conventional plastics by implementing taxes on oil-based plastics and disallowing the use of conventional plastics. Rising consumer awareness about global warming and government legislation such as banned on plastic bags will increase the demand for biodegradable plastics across the globe. Plastics that decompose to carbon dioxide and water under the actions of microorganisms is known as biodegradable plastics. Packaging industry is leading segment in application of biodegradable plastics. Increasing demand of biodegradable plastics as major packaging applications in food & beverage, textiles, pharmaceuticals and consumer goods is augmented to market growth over the forecasted period. Changing lifestyle of consumer along with increase in packaged food products demand in developed regions are boosting the demand for biodegradable plastics in packaging industries. Rising awareness among farmers to build green houses for production of fruits and vegetables has boosted the biodegradable plastics in agriculture application. Growing electronic, medical and automobile industry has also boosted the demand of biodegradable plastics market. Biodegradable plastics are a billion dollar growing industry that is pushed by the increased regulations and bans against plastic bags and other single-use plastic items. The demand for biodegradable plastics worldwide is growing as more people become concerned about plastic waste. Consumer awareness of sustainable plastic solutions, government interest in the reduction of greenhouse gas emissions, and a pervasive, general desire to eliminate fossil fuel independence are the reasons for the market growth. Western Europe combines all of these factors and implements biodegradable plastics even in household and business products, such as foam packaging, mulch films, textiles, implants and sutures, down hole tools for oil and gas field operations, 3-D printing filament, etc. Biodegradable plastics is widely used in the packaging & bags industry. It is expected to be the fastest-growing end-use industry segment of the biodegradable plastics market between 2018 and 2023. Tags #Corn Starch Bag, #Biodegradable Packaging, #Biodegradable & Compostable Packaging, #Biodegradable Plastic Bags from Corn, #Biodegradable Plastic Bags, #Corn Starch Bag Making, #Production of Cornstarch Bag, #Biodegradable Corn Starch Bag Manufacture, #Biodegradable Corn Starch Bag Production, #Corn Starch Packaging, #Corn Starch Bag Manufacture, How to Make Corn Starch Bags, Corn Starch Bag Making Unit, Corn Starch Bags Manufacturing Process, Biodegradable Eco-Friendly Disposable Bags, Biodegradable Plastic Bag, Biodegradable Disposable Bags, Compostable Plastic Shopping Bag, Biodegradable and Compostable Alternatives to Conventional Plastics, Compostable Bag Made of Corn Starch, Starch Bags: an Alternative to Plastic Ones, Corn Starch Bags, Compostable Bag Made of Corn Starch, Corn Starch Biodegradable Bags, Corn Starch Biodegradable Bags, Compostable Bags, Biodegradable Bags Manufacturing Process, Eco-Friendly Corn Starch Bags, Biodegradable Plastic Bag Manufacturing Unit, Biodegradable Plastic Bag Making, Compostable and Biodegradable Bags Manufacturing, Production of Biodegradable and Compostable Bags, Eco Friendly Bag Making, Project Report on Biodegradable Bags Manufacturing Industry, Detailed Project Report on Biodegradable Bags Manufacturing, Project Report on Biodegradable Corn Starch Bag Production, Pre-Investment Feasibility Study on Biodegradable Bags Manufacturing, Techno-Economic feasibility study on Biodegradable Corn Starch Bag Production, Feasibility report on Biodegradable Corn Starch Bag Production, Free Project Profile on Biodegradable Corn Starch Bag Production, Project profile on Biodegradable Corn Starch Bag Production, Download free project profile on Biodegradable Corn Starch Bag Production
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Polyester Fiber from Corn/Starch

PLA has been utilized as biodegradable plastics for short-term use, such as rigid packaging containers, flexible packaging films, cold drink cups, cutlery, apparel and staple fibres, bottles, injection- and extrusion-moulds, coatings, and so on. All of them can be degraded under industrial compositing conditions.Polyester staple fiber is a material produced from synthetic chemical compounds with a variety of uses in the textile, automotive and furniture industries. India Polyester Staple Fibre (PSR) Market is anticipated to post robust growth by 2023, owing to the growing consumer shift towards sustainable fashion due to rising environment-consciousness. Sustainable Fashion refers to as the adoption of environment friendly fibres such as the polyester stable fibre that can act as an alternative to cotton at a much lesser price.This facilitates the development of new technologies and ensures a high quality product. Few Indian major players are as under • AppolloFibres Ltd. • Arora Fibres Ltd. • B L S Ecotech Ltd. • Futura Polyesters Ltd. • Ganesha Ecosphere Ltd. • India Polyfibres Ltd.
Plant capacity: Polyester Fiber : 80 MT/DayPlant & machinery: Rs. 11660 lakhs
Working capital: -T.C.I: Cost of Project : Rs. 15974 lakhs
Return: 14.00%Break even: 54.00%
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Production of Polyester Fiber from Corn/Starch

Production of Polyester Fiber from Corn/Starch. Corn Fibre Manufacturing Business Polyester fibers are manufactured from recycled or virgin PET. These fibers can be colored by the method of pigmentation or dope dyeing. Polyester fibers can be classified as staple fibers and bulk continuous fibers (BCF) depending on their length. These fibers can also be manufactured in various geometries such as square, rectangular, triangular, hexagonal and circular depending upon the area of application. Polyester is the most used and most preferred fibre in the textiles industry due to its better physical properties, lower price, versatility, and recyclability, which offer a completely unique set of benefits unmatched by any other natural or synthetic fibres. Polyester fibers are extremely strong, resistant to most chemicals and shrinking, stretching, abrasion, wrinkle and mildew resistant. Polyester fibers are hydrophobic in nature and dry quickly. Therefore, they can be used to provide insulation in the form of hollow fibers. Polyester fibers withstand wear and tear longer than cotton and retain their shapes in extreme climatic conditions and are thus preferred for manufacturing outdoor clothing. Polyester fiber offers superior properties and is cost-effective than the substitute products making it one of the preferred materials for the textile manufacturers. Increasing use of this cost efficient and superior quality product in fabrics used for industrial purposes will further drive the polyester fiber market in the upcoming years. Corn Fiber is made using fermentation of simple plant sugar to create a range of textile products and applications. Although the fiber itself comes from corn starch, which generates a lactic acid (the basis for a polymer) by fermentation, it is not "natural" since there is chemical transformation. It is however considered 'renewable' since it does not come from a fossil product. Corn fiber is a manmade fiber derived entirely from annually renewable resources. These fibers have the performance advantages often associated with synthetic materials, and complementing properties of natural products such as cotton and wool. Corn fibre is composed of lactic acid, which is produced by converting corn starch into sugar & then fermenting it to get lactic acid. Lactic acid can be considered a commodity chemical sleeping giant, with advantages including: • It can be made from biomass. • It has both a hydroxyl group and a carboxylic acid group. • It is optically active. The fabric made from corn fibre is easy to care for, cheap and very comfortable to wear. Moreover, it is stain-resistant and UV resistant. This fabric can be used for several applications such as readymade apparel, diapers, bedding, carpets and upholstery. Moreover, the production of this fabric requires the use of less fuel, and is hence environment-friendly as well. Advantage of Corn Fibre: • High melting point. • High crystallization degree and good clarity. • The fiber also has the high strength which is same as normal poly fiber, so its use is very abroad. The Corn fiber has the characteristics of lustrous silk, has excellent hand touch and brightness and so on. Garments in corn fiber reportedly demonstrated good soil release, quick drying and show excellent after-wash appearance. Market Outlook The soluble corn fibre market can be segmented on the basis of its application as food & beverages, nutraceuticals and clinical nutrition, animal nutrition and others. It can also be classified on the basis of end-user usage pattern of soluble corn fibre into breakfast, lunch, dinner and on-the-go eating. One of the major advantages of soluble corn fibre is, it can be used as low-calorie fillings in a range of food items, specially baked goods and confectionery. In addition, there is a growing demand for soluble corn fibres in frozen entrees such as pasta and tortillas in packaged food industry. Regionally, the market can be divided into Asia-Pacific, North America (the U.S., Canada and Mexico), Western Europe, Eastern Europe, Middle East and North Africa, and Rest of the World (Latin America and South Africa). With the rise in disposable income and a shift towards leading a healthy life, the industry has felt an augmented demand for soluble corn fibres. In addition, advancement in food technologies to produce label-friendly products happens to be a major supply side driver of this market. One of the restraints of the market could be the process stability of corn-soluble ingredients as these products are highly application specific. Tags #Corn_Fibres, #Polyester_Staple Fibre, #Polyester_Fiber_from_Corn/Starch, #Manufacture_of_Polyester_Fibres, #Manufacturing_Process_of_Polyester_Fiber, #Polyester_Fiber_Production, Production Process of Polyester Fiber, Manufacturing of Polyester Fiber, Flow Chart of Polyester Fiber Production, Polyester Fiber and its Uses, Processing of Polyester Fibers, Polyester Fiber Production Using Corn, Polyester Fiber Manufacture, Polyester Staple Fiber Production Process, Polyester Fiber Industry, #Project_Report_on_Polyester_Fiber_manufacturing_Industry, #Detailed_Project_Report_on_Polyester_Fiber_Production, Project Report on Polyester Fiber Production, #Pre_Investment_Feasibility_Study_on_Polyester_Fiber_Production, Techno-Economic feasibility study on Polyester Fiber Production, #Feasibility_report_on_Polyester_Fiber_Production, Free Project Profile on Polyester Fiber Production, Project profile on Polyester Fiber Production, Download free project profile on Polyester Fiber Production, Production of Corn Fiber, Corn Fiber / Maize Fiber
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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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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