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Best Business Opportunities in Mayotte, Africa- Identification and Selection of right Project, Thrust areas for Investment, Industry Startup and Entrepreneurship

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.

We also offer self-contained Pre-Investment and Pre-Feasibility Studies, Market Surveys and Studies, Preparation of Techno-Economic Feasibility Reports, Identification and Selection of Plant and Machinery, Manufacturing Process and or Equipment required, General Guidance, Technical and Commercial Counseling for setting up new industrial projects on the following topics.

Many of the engineers, project consultant & industrial consultancy firms in India and worldwide use our project reports as one of the input in doing their analysis.

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.

Page 17 of 75 | Total 747 projects in this category
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Rickshaw/Cycle Tyre & Tubes - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue

Bicycle and rickshaw tyres & tubes are the backbone of the bicycle and rickshaw. There are few numbers of organized manufacturing companies which are engaged in the quality grade cycles tyres and tubes and few unorganized private companies also engaged to manufacture bicycle/rickshaw tyres. Bicycles/rickshaw continues to be the principal mode of transport for the low and middle income families. This is because the bicycle is both environment and people friendly. India is the largest producer of bicycles next only to china. It Produces around 1.26 crore bicycles every year; with almost each day witnessing new designs, colours and features. Today, the Indian bicycle manufacturing and bicycle parts industry is widely recognized for its quality standards in the international market. The Indian bicycle industry over the years has introduced a variety of new models of bicycles, viz, sports and high-tech models, both for domestic and export market. Ludhiana in Punjab is popularly known as the bicycle capital of the country, accounting for as much as 80 per cent of the bicycles and bicycle parts manufactured in India. Kanpur, Mumbai, Sonepat (Haryana), Chennai and Kolkata are the other important production centres for manufacture of bicycles and bicycle parts. To be sure, with over 10 million cycles being sold in the country last year, India is one of the largest markets for cycles the world ever. Though the character of the Indian market is different (it still remains a vastly semi-urban and rural phenomenon), there are indications that it will soon tow the international line.
Plant capacity: Rickshaw & Cycle Tyres : 1,500.00 Nos./Day,Rickshaw & Cycle Tubes: 1,500.00 Nos./Day Plant & machinery: 128 Lakhs
Working capital: -T.C.I: Cost of Project : 570 Lakhs
Return: 26.00%Break even: 72.00%
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Water Treatment Chemicals (R.O., Boiler and Cooling Tower) - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study

Water is the universal solvent and is invariably used for a wide variety of domestic and industrial purposes. The major industrial uses of water are steam generation, cooling, washing, and conveying of materials etc., Above all, it is the major raw material which will become an ingredient in the finished product. Of the many uses of water, steam production is considered as the most important as it is a means of power generation and of several industrial uses. Steam is used to drive turbines and for heating, and to operate pumps, compressors and reciprocating engines. Most chemical process industries require an uninterrupted supply of steam to be used for varied purposes. Water and its impurities are responsible for the corrosion of metals and formation of deposits on heat-transfer surfaces, which in turn reduce efficiency and waste energy. Having seen the effects of corrosion and deposits, let us see how this can be prevented. The path to their prevention can best be approached through understanding their basic causes, why and how they occur. Traditional processes for water treatment will thus consist of a coagulating process including a separation step in the form of flotation and precipitation and sedimentation including a filtering step, and in addition a step of water treatment for corrosion control purposes. Such traditional processes are, however, comprehensive and expensive with respect to processing of lime to so as achieve supply of the lime without leading to operation problems. The addition of lime usually takes place by dosage from a raw material container in the form of a lime silo via a worm conveyor to a slurry tank to dissolve the lime in water, and is then subjected to a post- treatment step in a lime water processing unit, prior to supply to the crude water to be treated.
Plant capacity: 4000 Kgs/DayPlant & machinery: Rs 86 Lakhs
Working capital: -T.C.I: Cost of Project : Rs 495 Lakhs
Return: 30.00%Break even: 51.00%
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Solar Panel

A solar panel is a collection of solar cells. Lots of small solar cells spread over a large area can work together to provide enough power to be useful. The more light that hits a cell the more electricity it produces, so spacecraft are usually designed with solar panels that can always be pointed at the Sun even as the rest of the body of the spacecraft moves around, much as a tank turret can be aimed independently of where the tank is going. Solar panel refers either to a photovoltaic module, a solar thermal energy panel, or to a set of solar photovoltaic (PV) modules electrically connected and mounted on a supporting structure. A PV module is a packaged, connected assembly of solar cells. Solar panels can be used as a component of a larger photovoltaic system to generate and supply electricity in commercial and residential applications. Uses Assemblies of photovoltaic cells are used to make solar modules which generate electrical power from sunlight, as distinguished from a "solar thermal module" or "solar hot water panel." The electrical energy generated from solar modules, colloquially referred to as solar power, is an example of solar energy. The PV MARKET has been on an upward trend for years now. The market is expected to continue to grow until 2050. The demand far outstrips supply and there is a huge gap to be filled. In India, there is about 1.4 GW of module manufacturing capacity and this is expected to increase in the future since the solar PV segment is one part of the entire value chain where the barriers to entry is relatively low. Thus, as an entrepreneur, solar module production offers an exciting opportunity to you. Few Indian Major Players are as under • Central Electronics Ltd. • Environ Energy-Tech Services Ltd. • Epic Energy Ltd. • Euro Multivision Ltd. • H B L Power Systems Ltd. • Helios Photo Voltaic Ltd. • I T I Ltd. • Indosolar Ltd. • J S W Green Energy Ltd. • Jupiter Solar Power Ltd. • N E P C India Ltd. • P L G Power Ltd. • Pentafour Solec Technology Ltd. • Photon Energy Systems Ltd. • Rajasthan Electronics & Instruments Ltd. • Reliance Industries Ltd. • Renewable Energy Systems Ltd. • Res Photovoltaics Ltd. • Shurjo Energy Pvt. Ltd. • Surana Ventures Ltd. • Tata Power Solar Systems Ltd. • Titan Energy Systems Ltd. • Udhaya Semiconductors Ltd. • Ujaas Energy Ltd. • Usha (India) Ltd. • Websol Energy System Ltd. • X L Energy Ltd.
Plant capacity: Solar Panel 5MW/AnnumPlant & machinery: Rs 109 Lakhs
Working capital: -T.C.I: Cost of Project: Rs 450 Lakhs
Return: 25.00%Break even: 62.00%
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E–Waste Recycling Plant - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue

E-waste is a popular, informal name for electronic products nearing the end of their "useful life." Computers, televisions, VCRs, stereos, copiers, and fax machines are common electronic products. Many of these products can be reused, refurbished, or recycled. Unfortunately, electronic discards are one of the fastest growing segments of our nation's waste stream. Electronic wastes, "e-waste", "e-scrap", or "Waste Electrical and Electronic Equipment" ("WEEE") is a description of surplus, obsolete, broken or discarded electrical or electronic devices. Technically, electronic "waste" is the component which is dumped or disposed or discarded rather than recycled, including residue from reuse and recycling operations. ? A range of techniques is currently applied for retrieving components and materials from WEEE. The essential features of these systems generally conform to a scheme of: sorting/disassembly; size reduction; separation. The main components of WEEE, in terms of weight, are iron and steel followed by plastics as can be seen, iron and steel are the most common materials found in electrical and electronic equipment and account for almost half of the total weight of WEEE. Plastics are the second largest component by weight representing approximately 21% of WEEE. Non-ferrous metals including precious metals represent approximately 13% of the total weight of WEEE and glass around 5%. WEEE has been identified as one of the fastest growing sources of waste in the India, and is estimated to be increasing by 16-28 per cent every five years. Within each sector a complex set of heterogeneous secondary wastes is created. Although treatment requirements are complicated, the sources from any one sector possess many common characteristics. However, there exist huge variations in the nature of electronic wastes between sectors, and treatment regimes appropriate for one cannot be readily transferred to another. Thus, as an entrepreneur, E- Waste recycling offers an exciting opportunity to you.
Plant capacity: Monitors:10 Nos./Day•Plastic Granules: 4,600.00 Kgs/Day •Copper Wire Scraps:20 Kgs/Day •Glass from CRT: 260 Kgs/Day • Other Metals:1100 Kgs/DayPlant & machinery: Rs 233 Lakhs
Working capital: -T.C.I: Cost of Project: Rs 613 Lakhs
Return: 8.00%Break even: 59.00%
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Bicycle Tubes - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue, Plant Economics

Bicycle tubes are the backbone of the bicycle industries. Few numbers of companies in organized sector are engaged in the quality grade cycles tyres and tubes and few unorganized sector also engaged to manufacturing bicycle tyre and tubes. An inner tube is basically a doughnut-shaped balloon, with a valve for inflation. The only requirement for an inner tube is that it should not leak. Being rubber, they have no rigid structure. If an inner tube is inflated outside of a tire, it will expand to 2 or 3 times its nominal size, if it doesn't explode first. Without being surrounded by a tire, an inner tube can't withstand any significant air pressure. Most of the basic raw materials are indigenously available but there is short supply of natural rubber, it is required to import. Natural rubber is used in the carcass of passenger car cross-ply tyres for its building tack, ply adhesion, and good tear resistance. It is also used in the sidewalls of radial ply tyres for its fatigue resistance and low heat buildup. In tyres for commercial and industrial vehicles, natural rubber content increases with tyre size. Almost 100% natural rubber is used in the large truck and earthmover tyres which require low heat buildup and maximum cut resistance. Natural rubber is also used in industrial goods, such as hoses, conveyor belts, and rubberized fabrics; engineering products, for resilient load bearing and shock or vibration absorption components; and latex products such as gloves, and adhesives. Tubes of motorcycles and bicycle are used in the appropriate vehicle for riding the vehicle. Bicycles continue to be the principal mode of transport for the low and middle-income families. This is because of the bicycle is both environment and people friendly. India is the largest producer of bicycles next only to china. Today, the Indian bicycle manufacturing and bicycle parts industry is widely recognized for its quality standards in the international market. As bicycle continues to be the most popular mode of transport both in urban and rural areas, the demand for bicycle tubes is likely to increase day by day. Moreover, this is a labour intensive type of unit and can be located in rural areas solving rural unemployment problem. Small scale bicycle tube unit can also function as ancillaries to establish large scale manufacturers. As a whole it is a good project for entrepreneurs to invest. ? Few Indian Major Players are as under • Atlas Cycles (Haryana) Ltd. • Avon Cycles Ltd. • Cycle Corporation Of India Ltd. • Dewan Rubber Inds. Ltd. • Dewan Steels Ltd. • Eastman Industries Ltd. • Freedom Industries Ltd. • G R L International Ltd. • Hamilton Industries Pvt. Ltd. • Hero Cycles Ltd. • Majestic Auto Ltd. • Metro Tyres Ltd. • Milton Cycle Inds. Ltd. • Pavan Tyres Ltd. • Poddar Tyres Ltd. • Ralson (India) Ltd. • Rishabh Industries Ltd. • Roadmaster Industries Of India Ltd. • Roxy Exports Ltd.
Plant capacity: Bicycle Tubes: 10,000 Nos. /DayPlant & machinery: Rs 118 Lakhs
Working capital: -T.C.I: Cost of Project: Rs 622 Lakhs
Return: 26.00%Break even: 45.00%
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SILICON METAL - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue, Plant Economics

Silicon Metal is known as a semi-metallic or metalloid, having several of the characteristics of metals. It is the second most abundant element in the Earth’s crust after oxygen, naturally occurring in various forms of silicon dioxide or silicates and very rarely in its pure form in volcanic exhalations. It takes its name from the Latin Silicus, which means flint. Silicon is also utilized in the fast growing industries of high speed communication and solar energy. The manufacturing of semiconductor chips, optical fiber and liquid crystal displays is made possible due to the conducting properties of Silicon. Ultra high purity Silicon is being used in the manufacturing of solar panels, making it possible to use the sun’s rays to generate electricity to provide power in a large number of industrial and domestic uses, such as remote telecommunication stations, weather and irrigation projects and street lighting. Silicone compounds are the main raw material for a large and growing number of industrial and consumer products, including silicone rubber parts, urethane foam, sealants, adhesives, lubricants, food additives, coatings, polishes and cosmetics. Silicones are substitutes in many applications for petroleum-based compounds and the demand for silicones benefits from higher oil prices. USES: Used mainly in the production of aluminium alloys for foundry, for the automotive and aircraft industries, etc. In the chemical industry, silicon metal is employed for the production of silanes, resines, silicones and lubricants. Silicon metal is also used in the production of super high purity silicon by metallurgical or chemical routes, destined to the manufacture of parts for the segment of advanced electronics, as computers, space communications, defence systems, photo-voltaic panels, etc. PRODUCTION OF SILICON METAL On a commercial scale metallurgical silicon metal is produced by the carbothermic reaction of silica (quartz) in an electric arc furnace using carbon electrodes where the temperature in the main reaction zone of temperatures exceeds 1800ºC. Commercially produced metallurgical grade silicon metal is typically Si 98% pure and is notably produced in China, Russia, Brazil, Norway, South Africa and USA. INDIAN SCENARIO At present, silicon metal is not produced in India.No new project is under implementation. Import of silicon metal Period (April to March) Import in tonnes 2006-07 25733 2007-08 25523 2008-09 19998 2009-10 24245 2010-11 32052 2011-12 35380 2012-13 36885 DEMAND DRIVERS The demand for silicon metal would largely be driven by the performance of the end user sectors namely aluminium silicon alloy industry, silicones and electronic grade silicon used semi conductor industry and solar grade silicon used in the photovoltaic cells (solar power). In India, silicones and polycrystalline silicon (solar grade and electronic grade) are not produced. Silicones are imported and formulated to suit the consumer requirements. Similarly, silicon wafers are imported for use in solar panels and semiconductor components. Demand for aluminum has grown steadily in recent years, reflecting increased economic activity in both the developed and developing world, as well as new uses as a lighter, more economical replacement for other materials. Silicon metal consumption by aluminum manufacturers has grown accordingly. Global scenario Installed capacity 3.2 million metric tonnes Global production 2.1 million metric tones REGION-WISE PRODUCTION Region in Production '000 tonne per annum Americas (Including North and Western Europe south America) 420 Western Europe 357 China 1155 Rest of the world 168 Total 2100
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: 1.00%
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Water Treatment Chemicals (Antiscalants and Membrane Cleaners) - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study

There has been a dramatic increase in the number of reverse osmosis and nano-filtration plant over the past ten years. There has also been a proliferation in the variety of feed sources used, including seawater, surface waters and, increasingly, effluents of varying qualities. Not surprisingly, therefore, is the parallel increase in the degree of scaling and fouling, resulting in the need for not only novel preventative antiscalant products in the field, but also new and improved cleaners where deposition has occurred. An essential part of the ability to correctly select and apply the most appropriate products lies in the development of laboratory analysis and predictive tools. Fouling potential is an inherent characteristic of membrane module design. The high membrane packing density required for good production rates results in low voidage for feed water flow. However, this need not result in detrimental performance. Fouling has been widely documented and researched since the first commercial use of membrane separations. It is important that this subject is addressed because membrane replacement is a considerable expense in the operation of an RO plant. In the case of large municipal and industrial systems, this cost can be prohibitive. Pre-treatment systems for RO plants are designed to produce a feedwater with a reduced fouling potential by removing potential fouling species prior to membrane treatment. Common foulants include: Calcium carbonate and calcium sulphate scales, Organic matter, Iron, Colloidal material, Bio-film and microorganisms, Silica, Natural humic and fulvic acids. Fumaric Acid Polymers are used as Antiscalants. The synthesis of the fumaric acid polymers follows a novel process that avoids the insolubility and low reactivity of fumaric acid in free radical reactions and that produces the polymer in high yield.
Plant capacity: Capacity Antiscalants: 5MT/Day, Membrane Cleaners: 5 MT/DayPlant & machinery: Rs 88 Lakhs
Working capital: -T.C.I: Cost of Project: Rs 613 Lakhs
Return: 27.82%Break even: 63.96%
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Biodegradable Disposable Cups and Plates using Sugarcane Bagasse

Agricultural wastes constitute one of the main alternative raw materials for the pulp and paper industry. Wheat straw, bagasse, reed, and rice straw as a one of the important non-wood fibers sources for pulping and paper making. Waste disposal is one of the most important problems facing anyone who wants to live an eco-friendly lifestyle. So many of the things we use every day get tossed in the trash and end up buried at the bottom of a landfill or down cycled into less useful products. Bagasse is commonly used as a substitute for wood in many tropical and subtropical countries for the production of pulp, paper and board, such as India, China, Colombia, Iran, Thailand and Argentina. It produces pulp with physical properties that are well suited for generic printing and writing papers as well as tissue products but it is also widely used for boxes and newspaper production. Due to the recent change in the life style of urban class the demand for disposable cups is increasing at a rapid rate. Apart from being used at home, they also come in handy during parties, picnics and other functions and get-togethers. Plastic disposable cups are also used by Ice-cream industry, hotels, restaurants, canteens etc. but the major customer of disposable cups is ice-cream industry and they have started using plastic cups instead of paper ones that were being used earlier.
Plant capacity: •Disposable Paper Cups :7.5 MT/Day •Disposable Paper Plates:7.5 MT/DayPlant & machinery: Rs 32 Lakhs
Working capital: -T.C.I: Cost of Project: Rs 314 Lakhs
Return: 28.18%Break even: 56.37%
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Vanilla Farming - Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Feasibility Study, Investment Opportunities, Cost and Revenue, Plant Economics, Working Capital Requirement, Plant Layout

Vanilla is a tropical orchid, cultivated for its pleasant flavour, which is one of the costliest spices in the international market. Though more than 50 species of vanilla exist, only three are important as sources of vanillin. Vanilla planifolia Andrews is the most preferred commercially and therefore, cultivated widely. Karnataka leads in the country's vanilla cultivation followed by Kerala and Tamil Nadu. Sixty percent of the 1,000 hectares under vanilla cultivation in India, is in Karnataka. Vanilla (Vanilla planifolia Andrews) is a climbing orchid. It is native of the Atlantic coast from Mexico to Brazil. It is second most expensive spice after saffron, valued for its pleasant flavour. The principal sources of vanillin (?-glycosidase) is obtained from its cured beans (pods). Vanilla essence is largely used in the preparation of Ice-cream, Chocolates, bakery products, puddings, pharmaceuticals, liquors and perfumes.The desirable flavor attributes of vanilla make it one of the most common ingredients used in the global marketplace, whether as a primary flavor, as a component of another flavor, or for its desirable aroma qualities. In the industry, vanilla can be used in many forms. However, in retail stores or household uses, the use of vanilla is divided between vanilla beans and vanilla extract.
Plant capacity: Vanilla Beans:12 Kgs/DayPlant & machinery: Rs 19 Lakhs
Working capital: -T.C.I: Cost of Project:Rs 47 Lakhs
Return: 25.59%Break even: 56.42%
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Detergent Cake - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue, Plant Economic

Detergents are defined as complete washing or cleaning products, which contain among their ingredients an organic surface-active compound (Surfactant) that passes soil-removal properties. The term detergent originated from the latin word detergine (i.e. wipe off), is now-a-days applied to all synthetic washing compounds. Synthetic detergent is not only used as household cleaning material but also have industrial applications in textiles, pesticide industry as carriers, etc. Frequently the term detergent is used synonymously with surfactant but common industry practice treats the surfactant as one component of a done here. Additionally this discussion treats primarily, only the so-called synthetic detergents, excluding those products in which soap is the sole or predominant surfactant. Detergent cake and detergent powder largely used in the domestic houses, commercial sectors, hotel industries, garment industries and in many other sections of the society. There is high price, medium price and low priced detergent available. There are different kinds of raw material used in the industries. There is large demand of this consumer item. There are renowned organised as well as unorganised private sectors, engaged in this production. The technology, involved in the high priced detergent powder and cakes, is charged nowadays. Few Indian Major Players are as under • Arochem Silvassa Ltd. • B B F Industries Ltd. • Calcutta Detergents Pvt. Ltd. • Corona Plus Inds. Ltd. • Ghari Industries Pvt. Ltd. • Jyothy Laboratories Ltd. • K T C Pvt. Ltd. • Kanpur Detergents & Chemicals Pvt. Ltd. • Nirma Ltd. • Pee Cee Cosma Sope Ltd. • Power Soaps Ltd. • R S P L Ltd. • Shri Lal Mahal Overseas Ltd.
Plant capacity: 4MT/DayPlant & machinery: Rs 18 Lakhs
Working capital: -T.C.I: Cost of Project:Rs 228 Lakhs
Return: 26.00%Break even: 43.00%
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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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