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Investment Opportunities & Business Ideas in Mexico, North America - Identification and Selection of right Project, Thrust areas for Investment, Industry Startup and Entrepreneurship Projects

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DAIRY FARMING FOR MILK - Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Feasibility Study, Investment Opportunities, Cost and Revenue, Plant Economics

In India dairying has been practiced as a rural cottage industry since the remote past, semi commercial dairying started with the establishment of military dairy farms and co operative milk unions throughout the country towards the end of the 19th century. The importance of milk in human diet especially for children and expectant and nursing matters is vital. To meet the demand of the increasing population milk production in India has to be increased. The development and maintenance of a superior dairy herd can be a sourced a considerable price and satisfaction. Success in dairy farming, like any professional achievement, does not come, easily. It requires the very best of anyone’s ability to properly manage, feed, and breed a good herd of cows. The milk is used as a food. It is used to prepare curd, butter, ghee, cream and ice cream and it is used in hotels and restaurants as milk food preparation and in the preparation of tea. In 1998 India became the largest producer of milk in the world. It is also the largest consumer. There is very good market potential of these products. The developing country like India is increasing its foreign exchange by exporting dairy as well as other processed food products. Few Indian Major Players are as under: Amruth Agro Farms Pvt. Ltd. Adarsh Coop. Dairy Society Ltd. Bajaj Cattle Dairy Farms, Harihar Coop Dairy Society Ltd. Subarna Agro Dairy Pvt. Ltd. A B T Industries Ltd. Anik Industries Ltd. Bansal Naturevest Ltd. Belapur Industries Ltd. Dairyfield Ltd. Dempo Dairy Inds. Ltd. Diana Tea Co. Ltd. Dinshaw'S Dairy Foods Ltd. Goldline Milkfood Ltd. Heinz India Pvt. Ltd. I D L Agro Chemicals Ltd. Induri Farm Ltd. K S E Ltd. Kaira Can Co. Ltd. Mafco Ltd. Mahaveer Krishi Kendra Ltd. Metro Dairy Ltd. Milma Foods Ltd. Mirage Impex Pvt. Ltd. Mother Dairy Kerala Ltd. Nijjer Agro Foods Ltd. Rama Dairy Products Ltd. Ravileela Dairy Products Ltd. Rishabh Agro Inds. Ltd. Royal Dairy Ltd. Ruchi Acroni Inds. Ltd. Sri Skandan Inds. Ltd. Svera Agro Ltd. Umang Dairies Ltd. Vidya Dairy Cost Estimation: Capacity : 720000 Ltrs./Annum Total Cows 150 Nos. Assume 100 cows will give Milk Through out the year Avg. 20 Ltrs. Milk/Day/Cows
Plant capacity: -Plant & machinery: 12 Lakhs
Working capital: -T.C.I: 160 Lakhs
Return: 49.00%Break even: 32.00%
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CALCINED BAUXITE - 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 Layout

Calcined bauxite is an important raw material for two main markets: refractories and abrasives. Smaller volumes are consumed in other applications including proppants, welding fluxes, and antiskid surfaces. While the process of calcining bauxite for each of these applications is fundamentally the same. Calcined bauxite is in pure form and in different particle size. Calcined bauxite is widely used in various industries such as refractories, steel plants and so on. Calcined bauxite is one of the chief sources of aluminum. The most important use of bauxite is in metallurgical industry i.e., manufacturing of aluminium. But, it has a few non metallurgical uses also. In most of the uses, however, the products are based on an intermediate product namely, alumina which is made directly from bauxite. The important uses are: Aluminium metal, Semi-fabricated products or semis, Aluminium alloys, Reinforced aluminium composites, Petroleum refining and fertilizer manufacture, Aluminous cement, Proppant in oil wells and Ball mill grinder etc. There is very wide scope and good market potential of products manufactured in this sector.
Plant capacity: 60,000 MT/Annum Plant & machinery: 438 Lakhs
Working capital: -T.C.I: Cost of Project : 1214 Lakhs
Return: 41.00%Break even: 63.00%
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CHROMITE BENEFICIATION 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

Chromite is an oxide of chromium and iron. The chemical composition of chromite is FeO.Cr2O3 or FeCr2O4. Chromite is the only commercial source of chromium. It occurs as a primary mineral of ultrabasic igneous rocks and is normally associated with peridotite, pyroxenite, dunite and serpentinite. World-wide, high-alumina chromite, largely from podiform deposits is used in refractory applications while iron-rich ores, largely from stratiform deposits are utilised in metallurgical and chemical applications. Chromite is an early magmatic oxide mineral. It forms ore bodies by crystallization and segregation. The chromite ore bodies are hosted invariably by the early magmatic silicate rock peridotite, pyroxenite and less commonly by anorthosite. In metallurgy, chromite is used in the manufacture of chromium metal and various alloys with iron, nickel, cobalt, tungsten, molybdenum, etc. Chromium imparts additional strength, hardness and toughness to its alloys. Chromite is used in refractory industry because of its resistance to corrosion, high temperature and ability to withstand sudden temperature changes, and its chemically neutral character. The ore is used in the form of lumps, bricks or cement in linings, specially of steel furnaces. Chromite is used for manufacturing important chromium compounds like chromates and bichromates of sodium and potassium, chromium pigments like chromic oxide green and chromic acid which, in turn, are used in chromium-plating solution. The number of reporting mines was 21 in both the years. Six principal producers operating 12 mines together accounted for 90% of the total production during the year. There is very good scope in this sector and new entrepreneur should venture into this field.
Plant capacity: 18,000 MT/Annum Chromite ConcentratePlant & machinery: 110 Lakhs
Working capital: -T.C.I: Cost of Project : 366 Lakhs
Return: 41.00%Break even: 65.00%
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MODIFIED POTATO STARCH - 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

PRODUCT PROFILE Potato starch is starch extracted from potatoes. The cells of the root tubers of the potato plant contain starch grains (leucoplasts). To extract the starch, the potatoes are crushed; the starch grains are released from the destroyed cells. The starch is then washed out and dried to powder. Potato starch is essential as a universal binding and food thickening agent. Leveraging on potato starch production and producing modified potato starch that is specially customized for various applications in food, textile and paper manufacturing industries. Product characteristics Appearance - powder a clear white colour Surface of starch granules app. 30 ha/g Specific density app. 1.55 g/ml Specific heat 1.22 J/g Bulk weight of starch 80% DS app. 0.7 g/ml DS of moist centrifuge app. 0.6 g/ml Brightness (MgO2 = 100%) app. 95 % Size ranges between 5 and 100 ?m Applications Starch and modified starches have a broad range of applications both in the food and non food sectors. The largest users of starch in the EU (30%) are the paper, cardboard and corrugating industries. Other important fields of starch application are textiles, cosmetics, pharmaceuticals, construction and paints. In the medium and long run starch will play an increasing role in the field of “renewable raw materials” for the production of biodegradable plastics, packaging material and moulds. The powder has very consistent as the major raw materials are available in house with very good quality. The best value provided by the modified starch over native starch is the reduction in downtime and improvement in paper quality. Additional benefits offered by the modified starches are improvement in wastewater discharge quality with charged starches, elimination of chemical and equipment for on site conversion of native starches, reduction in labor costs due to the simplicity of cooking and using modified starches etc. Global demand Starch, one of the most present biomaterials has witnessed significant developments over the years. After witnessing a temporary dip in growth in the year 2008 and 2009, the world market for starch, by consumption is expected to recover and register healthy growth to reach 80 million metric ton by 2015. The Global starch market is likely to get respite from deceleration in its market growth, with growth poised to receive a new lease of life in the next few years, thanks to the growing consumption of liquid starches and modified starches. The modified starch market is projected to be the fastest growing segment over the period 2007-2015. The US represents the largest geographic market for starch, having accounted for a share of about 51% in the total volume of starch consumed in 2009. Given the countrys large per capita income, the demand for starch in the US has been steadily on the rise. Asia Pacific represents the fastest growing market over the period 2007-2015. Growing employment opportunities, and subsequent increase in per capita income over the last few years, particularly in China and India, have been driving the growing demand for starch in the region. The demand of the product in the market is immense and therefore its market position is splendid. Hence it is an excellent field to venture.
Plant capacity: 45000 MT/AnnumPlant & machinery: 654 Lakhs
Working capital: -T.C.I: Cost of the project: 1618 Lakhs
Return: 43.00%Break even: 50.00%
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MAIZE PROCESSING (Maize Starch, Liquid Glucose, Gluten, Dextrose) - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study

PRODUCT PROFILE The maize also called "Corn or Indian Corn" is widely cultivated in India; Maize ranks high among the four or five principal cereal crops of the world. Maize is utilized in more diversified ways than any other cereal. Starch is the main product of a maize processing unit, which is consumed in various other industries like food, pharmaceuticals, textiles, paper, hotels and restaurants, etc. The other products include Gluten, Germ, Fiber (husk) and Corn Steep Liquor. Gluten has great demand in animal feed industry because of its high protein content (70%). Germ is expressed to extract germ oil which is low cholesterol containing edible oil. Fiber, mainly the husk, is used by animal feed manufacturers. It has demand in wet form itself for animal feed. Corn Steep Liquor is one of the substrates for culture media for manufacturing of antibiotics and other microbial production systems. Applications 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. Corn oil obtained from the embryo (i.e. young plant in its earliest stages of development) is used in paints, varnishes, rubber substitutes and as a cooking medium. 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. The further use of the products of maize are Dextrose (used in baking, beverage and canning industries), Maize Starch Syrup (used in the food processing industry, chiefly in confectionery), Pop corn and the various by products of maize are maize oil, seen, steep water etc. Global demand The viability of a maize processing plant depends upon the availability and uninterrupted supply of raw material to the unit. On an average, a unit with a crushing capacity of 100 MT/ day will require about 30000 MT of maize per year (assuming 300 days of operation of the plant). Hence, the availability of raw material is one of the important considerations in deciding the location of maize processing unit. Maize is the most widely grown crop in the Americas with 332 million metric tons grown annually in the United States alone. Approximately 40% of the crop 130 million tons is used for corn ethanol, transgenic maize (Genetically Modified Corn) made up 85% of the maize planted in the United States in 2009. While natural maize varieties grow to 12 meters (39 ft) tall, most commercially grown maize has been bred for a standardized height of 2.5 meters (8.2 ft). Sweet corn is usually shorter than field corn varieties. The starch is the main product of a maize processing unit, which is consumed in various other industries like food, pharmaceuticals, textiles, paper, hotels and restaurants, etc. The Starch industry in India is thus poised to rapid strides once again keeping behind the impacts of the global recession during recent years. The target of indigenous production of over 6 million MT will require the Indian Starch industry to increase their production during the next ten years. To meet the growing demand, per hectare yield of maize is estimated to rise to 2.36 MT as against 1.7 MT currently by the end of 2020. Therefore the scope for this product is very bright. An entrepreneur venturing into this project will find it very lucrative. Cost Estimation: Capacity: 200MT Maize processed/day Starch 133 MT/day Glucose 20 MT/day Gluten 18 MT/day Germ 8 MT/day Fiber 4MT/day Steep Water 12MT/day
Plant capacity: -Plant & machinery: 3175 Lakhs
Working capital: -T.C.I: 7310 Lakhs
Return: 33.00%Break even: 40.00%
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Fastener (Automatic Cold Forge Process) - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Profile: A fastener is a hardware device that mechanically joins or affixes two or more objects together. Fasteners mainly cover nuts, bolts, screws, studs and rivets and are segmented between MS (mild steel) and HT (high tensile) fasteners. These fasteners are used in engineering systems. All types of fasteners, except high tensile and special type fasteners, are reserved for the SSI sector. Bolt is cylindrical piece of metal that fasten objects together. It is a piece of steel forged at one end to make hexagonal, square or round head and the shank fully or partially threaded at the other end. Nut is hexagonal or square piece with a threaded hole at the center. Bolts and nuts can be zinc or cadmium plating to resist corrosion. Application: • Bolt and nut are used to fasten together loose parts mainly in industries and workshops. • In construction connectors between structural members bolt connections are used when it is necessary to fasten two elements tightly together. • Threaded metal bolts are always used in conjunction with nuts. • Another threaded partner is screw, which has countless application especially for wood construction. • The wood screw carves a mating thread in the wood, ensuring the tight fit. • Pins are used to keep two or more elements in alignment; since the pin is not threaded, it allows for rational movement, as in machinery parts. The general applications of various objects having screw threads are: Fastening: screws, nut-bolts and studs having screw threads are used for temporarily fixing one part on to another part Joining: e.g., co axial joining of rods, tubes etc. by external and internal screw threads at their ends or separate adapters Clamping: strongly holding an object by a threaded rod, e.g., in c clamps, vices, tailstock on lathe bed etc Indian Scenario: The Indian Fastener Industry is estimated to have a domestic market of around INR 1500 crore. Automobile industry is the biggest consumer of fasteners. Mild steel fasteners are primarily manufactured by the unorganized sector while the high tensile fasteners require superior technology and dominated by companies in the organized sector. The organized sector commands nearly 70 percent of the fasteners market while the rest is controlled by the unorganized sector and imports. Global Scenario: Global demand for industrial fasteners is projected to increase 4.8 per cent annually to US$ 66 billion in 2012. All types of fasteners, except high tensile and special type fasteners, are reserved for the SSI sector. Total market size of the fastener industry is estimated at around €272m in revenues. Fasteners market can be classified into mild steel (MS) and high tensile (HT) fasteners. MS fasteners constitute about 30% of the market size and are mainly produced by the unorganized sector, while HT fasteners are produced primarily by the organized sector. Automobile sector is the major demand driver for the bearing industry and constitutes almost 50% of the total demand in value terms. The bearings industry consists of bimetal bearings and anti friction bearings. The anti friction bearings comprise €270 360 mn of the bearings market and bimetal bearings comprise the rest of the market. Imports comprise approximately 25 to 30% of the total market. Therefore the scope for this product is very bright. An entrepreneur venturing into this project will find it very lucrative.
Plant capacity: 2400 MT/AnnumPlant & machinery: 120 Lakhs
Working capital: -T.C.I: Cost of project: 417 Lakhs
Return: 42.00%Break even: 59.00%
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Lead Acid Battery - 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

Profile: The lead-acid storage battery, an important energy storage device, is the most widely used secondary storage cell by automobile and other industries. Storage cells are devices which release a flow of electron through an external circuit as a result of reactions occurring between the active electrode materials and ions transported by the electrolyte. The cells in which the reactions are reversible are called secondary cells. In these cells the active materials can be returned to their original state by applying electrical current from an external source in the opposite direction to the flow of the cells discharge current. We are dependent on lead acid batteries for many uses in our lives that can be subdivided into four broad categories: engine starting, motive power and standby power, valve regulated battery. There are two distinct designs of recombination battery currently use: Absorbed electrolyte and Gelled electrolyte. Lead acid battery industry is divided into three main sectors: SLI batteries, industrial batteries and transaction batteries. SLI batteries are primarily used in motor vehicle. Industrial batteries include those used for uninterrupted power supply and transaction batteries are used to power electric vehicles such as forklifts. Characteristics: The lead battery uses lead oxide as the active material of the positive electrode and metallic lead in a high surface area porous structure, as the negative material. The physical and chemical properties of these materials are listed below: • Typically a charged positive electrode contains both variations, ? PbO2 (Orthorhombic) and ? PbO2 (Tetragonal) • The equilibrium potential of the ? PbO2 is more positive than that of ? PbO2 by 0.01V. • The cured plate consists of lead sulphate, lead oxide and some residual lead (?5%). • The electrolyte is a sulfuric acid solution, about 1.28 specific gravity or 37% acid by weight in a fully charged condition. • As the cell discharges, both electrodes are converted to lead sulfate and the process reverses on charge. Application: The lead acid battery is used in a wide variety of applications, and in the past few years many new applications have arisen: • The most common use of the lead acid battery is for starting, lighting, and ignition in automobiles and other vehicles with internal combustion engines. • Lead acid batteries are used as the power source in off the road vehicles such as golf carts, forklift trucks, mining vehicles, and construction and industrial equipment. • It also has applications in DC Power System which includes a battery charger (rectifier/charger) which has a sufficient capacity to recharge the batteries at the proper voltage while simultaneously supplying power to the dc load. • In Static uninterruptible AC Power System (UPS) a storage battery is linked to the utility power to provide a continuity of service in the event of an interruption of the utility power. • Valve regulated batteries are used for standby applications such as in telephonic systems, uninterruptible power systems, burglar, fire alarms and emergency lighting. Global Scenario Lead acid batteries are considered to have one of the fastest global growth rates. Usage of lead acid battery is expected to grow further with technological advancements in the electric vehicles market. Although efforts are on to develop a miracle battery for electric vehicles, lead acid batteries are one of the few battery technologies that are considered as the workhorses of today’s Electric Vehicle fleet. The influx of cutting edge technology has brought forth a new genre of long lasting, lead acid batteries featuring smaller size and lightweight attributes. The global market for Lead Acid Batteries (Automotive) is forecast to reach US$15.4 billion by the year 2015, charged by sustained demand from automobiles industry, specifically the aftermarket/replacement market. Emergence of next generation electric vehicles (EVs) and hybrid electric vehicles (HEVs) will further drive the market. Since there is a huge demand for Lead acid battery in market therefore the entrepreneur venturing in this field expects an enormous success.
Plant capacity: 300000 Nos./AnnumPlant & machinery: 416 Lakhs
Working capital: N/AT.C.I: Cost of project : 1327 Lakhs
Return: 44.00%Break even: 56.00%
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Maize Wet Milling Process - 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

Profile Maize is third important cereal/crop after wheat and rice and has a great potential of processing due to its high nutritive value and commercial uses. Maize (also known as corn) is common name for a cereal grass widely grown for food and livestock fodder. Maize ranks with wheat and rice as one of the world’s chief grain crops. Starch is produced from maize than any other crop. Maize is the most important raw material for industrial starch. Other products are germ; corn gluten and fiber. There is basic series of dry milling or wet milling process required for getting optimum quality products. Both the milling processes have merits and demerits of the quality of products and cost effectiveness. In case of wet milling there is series step for cleaning, steeping wet grinding centrifuging, drying and packaging. The whole wet milling process required large amount of demineralized water. There is also larger amount environmental pollution problem, which should be neutralized by preliminary treatment to get neutral effluent. There is larger amount of raw material available in India, which can exploit by manufacturing different available product in the maize. Manufacturing process technology is available in India, for the manufacturing of maize base products. Major plant and machineries are available in India. Few of them require to import. All the products manufactured from maize are food base product so it has very good market demand now as well as it will be stay in future also due to rapid population growth. As a whole the project is good one. Properties Starch: It is white, amorphous non crystalline powder, it can be acid hydrolyzed to form dextrose or it may be enzymatic hydrolysis to form dextrose. It is insoluble in water and forms irreversible gel in the hot water. It swells water at room temperature Zein/Maize Protein: White to slightly yellow powder; odorless, nontoxic protein of the prolamine class, derived from corn; contains 17 amino acids; tasteless; free of cystine, lysine, and tryptophane. A resinous material dispersible in water with neutral sulfonated castor oil; soluble in dilute alcohol; insoluble in water, dilute acids, anhydrous alcohol, turpentine, esters, oils, fats; d 1.226 Combustible. Germ: It is yellowish solid product & Content mostly total part as fat. Fiber: It is bright yellow crystal powder, ash content about 5% ? Applications Maize has several kinds of applications in the form of maize starch, maize fiber, germ, corn etc. Maize starch forms viscous, relatively short and opaque paste with cereal flavor. Its paste sets to stiff gels. It is widely used for thickening sauces, gravies, puddings and pie fillings. Maize starch finds numerous uses in the bakery industry for the production of cakes, cookies, in ice cream preparations etc. In Paper industry a large quantity of starch is consumed as a surface sizing agent, as a binder, as a paper coating agent etc. In textile industry, starch is used in sizing to strengthen the warp yarn, in finishing and changing the appearance of fabric after it is bleached, dyed or printed, in printing and increase the consistency of printing pastes. Also starch is used as a component in finishing agent to glaze and polish sizing thread. Maize Fiber can be used for the preparation of cattle feed production, manufacturing of non caloric high fiber food products, essential chemicals, vitamins and for making of natural food colour. Germ is used for making corn oil; maize (corn) protein is used for manufacturing of gluten, preparation of glutanic acid as well as other available amino acids. It may also be used for the protein substitute in the different food products. Market Scenario The production of maize is likely to go up by 19 per cent to touch 21 million tons in 2010 11. India is estimated to generate an annual demand of nearly 23 million ton of corn by 2011-12. According to Vision 2025, released on Thursday by Indian Maize Development Association (IMDA), India's demand for maize is likely to be 22.73 million tons in 2011-12, out of which 19.66 million tons would be for non-food uses like poultry and cattle feed. IMDA also said that total production of maize is estimated to rise to 42 million tons in 2025 from a projected 22 million tons in 2010, if the output increases by 6 to 7 million ton in every five year. India, Asia’s second-largest grower of corn after China, generally sells around two to three million tons of corn a year in global trade of about 90 million tons. Cost Estimation: Capacity : Maize Starch: 69300 MT/Annum Maize Zein/Protein: 5940 MT/Annum Maize Fiber Flour: 7920 MT/Annum Maize Germ: 7920 MT/Annum
Plant capacity: -Plant & machinery: 2531 Lakhs
Working capital: -T.C.I: Cost of project : 4639 Lakhs
Return: 46.00%Break even: 44.00%
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Goat Farming for Meat and Breeding - Cattle Breeding Farm, Fodder, Livestock Farming, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Feasibility Study, Investment Opportunities, Cost and Revenue, Plant Economics

Profile Goat is one of the world’s smallest domesticated livestock, have been actively managed for food and fiber earlier and longer than cattle and sheep. Goats can survive on bushes, trees, desert scrub, and vegetation that sheep and cattle are not able to consume. This dietary versatility and adaptability combined with a hardy constitution is what makes goats a primary livestock animal for most of the world. The goat; a mini cow is multipurpose animal to provide milk meat, hide, hair (fur) and manure for soil. In hilly areas goats are also used for hauling light load. Now in rural areas goat farming plays a vital role to solve unemployment. The economic return from keeping goats is high compared to other farming enterprises. Goats can reproduce under extreme conditions that would eliminate other species. They can live in hot, tropical climates as well as cool, temperate climates. They seem to be able to live and even flourish under desert conditions. These factors have made goats a very important domestic animal. Goat farming can be a profitable occupation of a farmer and can be fit well into mixed farming. Classification of Goats The wild goats have four species as follows Ibex (Capra ibex), Spanish Idex (Capra pyrenacia), Markhor (Capra falconeri), and Wild Goat (Capra aegarus). On the basis of body weight goat breeds in India can be broadly classified as large sized (Jamunapari, Beetal, Jhakarana), mediusm sized (Sirohi or Marwari/Golwadi, Zalabari, Kitchi, Surti, Sangamneri, Osmanabadi, Gaddi, Ganjam, Chegu) and small sized (Bengal types, Assam hill goat). The scientific name of domestic goat is Capra hircus aegagrius. Advantages of Goat Farming / Utility of Goats: • The goat is a multipurpose animal producing meat, milk, hide, fiber and manure. In hilly areas, goats are also used for hauling light loads. • Goats have very few demands of housing and management. They hardly need separate housing and happily share their homes with their owners or his other livestock. • Goats can be raised by landless agricultural labourers, ladies and children because they can thrive well on variety of leaves, shrubs, bushes, kitchen waste etc. • Goat farming can be a profitable occupation for a farmer and can fit well into mixed farming. • Goats are cheaper to maintain, easily available and have a friendly disposition. • Goats are capable of adapting to various agro climatic conditions ranging from arid dry to cold arid to hot humid. They can be raised in plains, hilly tracts, sandy zones and at high altitudes. • Goats are more tolerant to hot climate than other farm animals. • Goats suffer from fewer ailments than other large animals. • Goats are called the foster mother of man, as their milk is considered better for human nutrition than other species of livestock. Milk is cheap, wholesome, easily digestible and nutritious. • Goat milk is finer than cow milk i.e. the fats and proteins are present in a finer state and are more easily digestible, especially by children and invalids. • Goat milk has lesser allergic problems than other species of livestock. • Goat milk is used as ayurvedic medicine for personas ailing with asthma, cough, diabetes etc. And has higher buffering qualities and this enhances its value for patients suffering from peptic ulcers, liver dysfunction, jaundice, billiard disorders and other digestive problems. • Goat hide is used for the manufacture of leather products. • Goat hairs are used for the manufacture of rugs and ropes. • Pashmina shawls, Mohair and Kashmere carpets are in great demand and are sold at very high prices. • Goat manure is 2.5 times richer in nitrogen and phosphoric acid than cow manure. Market Scenario The world population of goats is approximately 674 million, of which 94% are found in the developing countries. Africa and Asia account for about 81% of the total population in the developing countries, including a bewildering variety of breeds. Goat rearing is the backbone of economy of small and landless farmers in India. It is an insurance against crop failure and provides alternate source of livelihood to farmers all the year round. Goats play an important role in income generation, capital storage, employment generation and improving household nutrition. Goats are among the main meat-producing animals in India, whose meat (chevon) is one of the choicest meats and has huge domestic demand. Besides meat, goats provide other products like milk, skin, fibre and manure. Goats are important part of rural economy, particularly in the arid, semi arid and mountainous regions of the country with more than 124 million population. The largest amount of goat milk is produced in India, followed by Bangladesh and Sudan. China has the largest total number of goats in the world, but they are mainly kept for meat production. ?
Plant capacity: 1000 GoatsPlant & machinery: 6 Lakhs
Working capital: -T.C.I: 115 Lakhs
Return: 47.00%Break even: 33.00%
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SS Sheet Rolling - 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 Layout

Profile Rolling allows sheet metal to be formed in to cylindrical shapes. This gives us the ability to make tanks, cylinders, bands and virtually anything that requires a rolled rounded form. We can roll sheet metal, angle iron, channels, and flat bar. In metallurgy, stainless steel, also known as inox steel is defined as a steel alloy with a minimum of 10.5% to 11% chromium content by mass. Stainless steel does not corrode, rust or stain with water as ordinary steel does, but despite the name it is not fully stain proof. It is also called corrosion resistant steel or CRES when the alloy type and grade are not detailed, particularly in the aviation industry. Application Advantages of Stainless Steel Kitchenware and House ware items 1. Corrosion Resistance: It gives protection against rust. 2. Strength: Stainless steel has high tensile strength, excellent fatigue properties and good weld ability. 3. Toughness and impact resistance: Stainless steel of certain grades has high toughness from elevated temperatures to sub zero temperatures. 4. Formability: It is possible to bend and form different shapes. 5. Heat resistance: Special high Chromium and Nickel alloyed grades resist high temperature and retain strength. 6. Low on maintenance: Stainless steel normally requires only a periodic wash with soap and water to maintain its original finish. Market Potential India has a very low per capital consumption of steel as compared to other industrialized and developing countries in the world, thus indicating a vast potential for the steel industry. India is a huge market for kitchenware and house ware products mainly comprising Indian manufacturers, exporters and suppliers. The stainless steel industry in India is in an upbeat mood. Stainless Steel production in India is rapidly growing every year and stainless steel in India is perceived as a “metal for utensils”. Today about 75% of the end use of stainless steel is in kitchenware and house ware segment. India being such a culturally rich and diverse country has a special place for beautiful and utilitarian pottery and kitchenware.
Plant capacity: 9000 MT SS Rolled Sheet/Annum,4500000 No.s of Set SS Utensils/Annum Plant & machinery: 3642 Lakh
Working capital: -T.C.I: Cost of Project : 6391 Lakh
Return: 46.00%Break even: 49.00%
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  • One Lac / Lakh / Lakhs is equivalent to one hundred thousand (100,000)
  • One Crore is equivalent to ten million (10,000,000)
  • T.C.I is Total Capital Investment
  • We can modify the project capacity and project cost as per your requirement.
  • We can also prepare project report on any subject as per your requirement.
  • Caution: The project's cost, capacity and return are subject to change without any notice. Future projects may have different values of project cost, capacity or return.

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