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

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PAPER NAPKINS, TOILET ROLL & FACIAL PAPER FROM TISSUE PAPER ROLLS - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study

Hygiene is an essential component of healthy living, integral to achieving health and preventing disease. Not just selecting the right food choices but also cooking & consuming them in a hygienic way is equally important in preventing the infectious diseases. Adopting hygienic practices and promoting hygiene in the community, schools and workplace prevents innumerable infectious disease. The hygiene-related products are an important part of our daily life. These products promote a hygienic lifestyle. These include automatic deodorizers, tissue paper, eco friendly tissues and towels, disinfectant and sanitizers. The major hygiene products tissues include facial tissues, toilet rolls, napkins and serviettes, kitchen towels, cleaning solutions, hand sanitizer, wet wipes, liquid hand wash etc. In a modern age people are more prone to sophisticated mode of maintaining health and hygiene conditions of their body through the contiguous of cosmetics and their allied measure. This is an elegantly achieved by the application of wet face freshener tissue. This is very economical item and portable .It can be easily carried in pocket while going in a car, rail, and flight. Tissue paper is often used for direct inside part wrapping as in jewellery, liquor, fruit and florist trade, various other tissue papers are used for specific purpose. Napkins are manufactured from tissue paper are becoming popular with catering industry due to its manifold uses. These are absorbent, hygienic, and light and can be held with attractive printing. There are many kinds of raw material which can be used in the production of tissue paper such as wood pulp or sorted waste paper, cellulose pulp from straw, linen, cotton & rags, jute etc. Facial tissue paper through recently introduced in Indian market is fast becoming popular with the public. The following brief utility of paper napkin obtained from tissue paper may be enumerated. The potential for growth in the personal care hygiene sector is huge. The Indian Economy is surging ahead by leaps and bounds, keeping pace with rapid urbanization, increased literacy levels, and rising per capita income are some of the key social drivers thus giving a strong signal to the possibility of Indian personal care industry realizing its huge potential in the near future. Now-a-days the demand of tissue paper is increasing day by day, so there is wide scope for new entrepreneurs to venture into this project.
Plant capacity: 3000 MT/Annum, 6 MT Paper Napkins, 2 MT Toilet Rolls, 2 MT Facial PaperPlant & machinery: 41 Lakhs
Working capital: -T.C.I: 923 Lakhs
Return: 49.00%Break even: 25.00%
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EXERCISE NOTE BOOK AND OFFSET PRINTING - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Exercise note book, registers, pads and files are widely known and vastly used as day to day products. Exercise note books are of different shapes and sizes, accordingly. Used for different purposes. With the growth of education among the masses particularly in rural areas, industrialization and commercialization with in the country, the demand of stationery, notebook, has been increasing very fast. Other factors like population growth, compulsory primary education Govt. incentives, and age statistics have only increased the demand. Now these items are essential almost for every one. With the growing population, demand of writing and printing papers in the form of registers, notebook, paper pads etc. has very bright future scope. Any new entrepreneur can venture in to this field. Offset printing, also referred to as offset lithography, is a type of printing process used by virtually all large commercial printers. Offset printing is a technology that has been around for over 100 years now. Offset printing produces a finished product where the ink is completely flat on the paper with a matte finish. The term "Offset" gets its name from the fact that the plate cylinder which holds the art information does not come in contact with the paper. Offset printing is the most commonly used printing method today. Over 40% of all print jobs are carried out using offset printing. Offset printing can be done on a web printing press, one that use huge rolls of continuously fed paper, or a sheet fed press that, uses sheets of paper. Both types of presses produce printed materials that can be cut to size after printing. Offset printing uses all of the latest technology in printing. Offset printing works because water and the inks used in the printing process do not mix. The images to be printed are created on the computer and then "burned" onto metal plates using a chemical developing process similar to photography. The metal plates are dampened with water which adheres to the areas without images. The ink is added next, one color at a time, where it sticks to the areas with images. The most modern systems use a direct-to-plate system in which the images are burned directly to the metal plates; the omission of a secondary step saves time and money. The offset printing process requires a fairly large investment in equipment and set up. However, once the infrastructure is in place, offset printing itself is relatively inexpensive. Thus, the initial investment in an offset printing press can be fairly high but the actual cost of offset printing turns out very economical. There is a very good scope in this segment. New entrepreneurs should venture into this field. Few Indian Major Players are as under: Blue Bird (India) Ltd. Lodha Offset Ltd. Sundaram Multi Pap Ltd. Tamil Nadu Newsprint & Papers Ltd.
Plant capacity: 7500 Nos. Exercise Note Books/Day and Offset Press for Printing Job WorkPlant & machinery: 35 Lakhs
Working capital: -T.C.I: 2 Crores
Return: 48.00%Break even: 46.00%
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WHEAT FLOUR MILL (ATTA, MAIDA & SUJI)- Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Roller Flour mill serve the purpose of processing wheat to convert it into flour. The plant will have facility to produce, maida, suzi, atta and bran. These products will be sold as per the guidance issued for Food and Civil Supplies Department of the concerned state. Thus milling is an imperative physical function involved in converting wheat into its milled products. Separating the wheat grain into its constituents (bran, germ and endosperm) Wheat grains are the seed of the wheat plant, which is able to grow in kinds of soil and under widely differing climatic conditions. The principle wheat of commerce belong to the botanical groups Triticum vulgane, Triticum drum and triticum compactum. A grain of wheat is avoided in shape and it bears at one end a number of short fine Grains. The grains of wheat consists of three main parts the enveloping skins, the embryo and the endosperm. The relative proportions of these parts vary with the plumpness of the grain but the average composition of wheat is 83% endosperm, 2.5% embryo and 14.5% enveloping skins. The enveloping skins are pericarp consists of the epidermis, epicarp and endocarp. The pericarp represents about 6% of the grain. The seed coat consist of the testa, the hyaline layer which comprises about 2% of the grain. The aleurone layer representing about 6.5% of the grain wheat show a wide range of analytical data which is not unexpected in view of the many varieties which are grown and the very different conditions under which they are cultivated. Flourmill consists of following machineries as blender, sieves, breakrolls, smooth steel reduction, rolls aspirators, conveyors water washers etc. Flour is classified according to the amount of grain included in the final product. Grain processing systems are generally based on the separation of the following components of the grain: Bran is the hard, brownish outer protective skin of the grain (varies from 6% in corn to 16% in wheat). Bran layers include the cuticle, mesocarp, cross layer, tube cells and testa. The bran layers are a concentrated source of dietary fibre. Endosperm is the inner part of the grain (varies from 60% in rice, barley and oats to 80% of the grain in wheat). It provides the growing plant with food. The main nutrients in the endosperm are protein and carbohydrate. Aleurone consists of one or more layers of cells between the bran and the endosperm (8-10% of total grain). The number of layers varies from 1 cell thick in wheat, rye, oats and maize to up to 3 cells thick in barley and rice. The aleurone layer is a concentrated source of vitamins, minerals and other nutrients. Germ is the part of the seed that becomes a new plant if the seed is sown (varies from 12% in maize and 10% in sorghum to as low as 2% or 3% in other grains). It consists of the embryo and the scutellum. Most of the grain kernel's fat and vitamin E content is found in the germ. The RFM industry is basically in agro-based processing industry engaged in the manufacture of products based on wheat, namely maida, sooji, atta and bran. In some states, under special arrangements RFM units produce whole meal atta to meet the requirements of various distribution programmes. Apart from direct consumption by general consumers, maida and sooji produced by RFM units serve as the most important raw material to more than 55 thousand units manufacturing bread, biscuit and bakery products all over the country. Besides this the resultant wheat bran serves as the poultry feed. Few Indian Major Players are as under: Ambe Agro Inds. Ltd. Ambuja Flour Mills Ltd. Anirudh Foods Ltd. Ankit India Ltd. Aruppukottai Shri Ramalinga Roller Flour Mills Ltd. Bambino Agro Inds. Ltd. Bannari Amman Flour Mill Ltd. Calcutta Flour Mills Ltd. Cargill India Pvt. Ltd. Century Flour Mills Ltd. D F M Foods Ltd. Delhi Flour Mills Co. Ltd. Flour & Food Ltd. Gallantt Udyog Ltd. General Mills India Pvt. Ltd. Govind Mills Ltd. Gupta Nutritions Pvt. Ltd. Himanshu Flour Mills Ltd. Hyderabad Roller Flour Mills Co. Ltd. Jai Mata Foods Ltd. Kaushalya Roller Flour Mills Pvt. Ltd. Koodal Industries Ltd. Modern Flour Mills Ltd. Naga Ltd. Naga Overseas Pvt. Ltd. Nath Roller Flour Mills Pvt. Ltd. Okara Flour & General Mills Ltd. Parakh Agro Inds. Ltd. Patiala Flour Mills Co. Ltd. Pawan Udyog Ltd. Poona Roller Flour Mills Ltd. Prahlad Flour Mills Ltd. R K Patel Food Pvt. Ltd. Rohini Foods Pvt. Ltd. S K Roller Flour Mills Ltd. Sakthi Murugan Agro Foods Ltd. Sakthi Murugan Roller Flour Mills Ltd. Shakti Bhog Foods Ltd. Shree Bankey Behari Exports Ltd. Sita Shree Food Products Ltd. Sree Behariji Mills Ltd. Sunil Agro Foods Ltd. Super Bakers (India) Ltd. Trambakam Flour Mills Ltd. U F M Industries Ltd. Vasai Roller Flour Mills Pvt. Ltd. Vrundavan Agro Inds. Ltd. Wallace Flour Mills Co. Ltd. Wellgo Agro Inds. Ltd. Zest Gartex Ltd.
Plant capacity: 100 MT/Day, 9500 MT Maida/Annum, 3000 MT Atta/Annum, 10000 MT Suji/Annum, 6600 MT Bran/AnnumPlant & machinery: 132 Lakhs
Working capital: -T.C.I: Cost of Project : 1329 Lakhs
Return: 51.00%Break even: 29.00%
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FRUIT PROCESSING (Mango, Lychee, Pineapple, Orange & Pomelo for Concentrates, Juice in Cans)- Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials

Fruit juice is a naturally contained liquid in fruit or vegetable tissue. Juice is prepared by mechanically squeezing or macerating fresh fruits or vegetables flesh without the application of heat or solvents. Many commercial juices are filtered to remove fiber or pulp, but high-pulp fresh orange juice is a popular beverage. Juice may be marketed in concentrate form, sometimes frozen, requiring the user to add water to reconstitute the liquid back to its "original state". However, concentrates generally have a noticeably different taste from that of their "fresh-squeezed" counterparts. Other juices are reconstituted before packaging for retail sale. Common methods for preservation and processing of fruit juices include canning, pasteurization, freezing, evaporation and spray drying. The Fruit Juice Market is generally Sub-Divided into three Main Types: Long life juice, short life juice, freshly squeezed juice. Long life and short life products are pasteurized to varying degrees, which then has a direct affect on their shelf life. Long life juices usually keep for 6-12 months while the packaging is kept sealed, and because of the pasteurization process applied and packing method, do not require chilling. Short life juices have a shelf life of up to 30 days and must be kept chilled.Freshly squeezed fruit juices do not undergo any pasteurization treatment and are usually packed and delivered to retailers within 24 hours. Therefore freshly squeezed juice must be kept chilled and has a shelf life of only a few days. Fruit juices consist of 100% pure fruit juice made from the flesh of fresh fruit or concentrates and contain no preservatives or any other added ingredients. Some minor exceptions exist in order to ensure that the final product is of an acceptable taste. These exceptions are very specific and are controlled by government legislation in the form of the Fruit Juices & Nectars Regulations.
Plant capacity: 1500 MT/Annum (Mango, Lychee, Pineapple, Orange & Pomelo) Concentrates & Juice Pack in 1 & 20 Ltrs.Concentrate Pack in 1 Kg.Plant & machinery: 211 Lakhs
Working capital: -T.C.I: 585 Lakhs
Return: 44.00%Break even: 39.00%
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DRY LEMON POWDER AND LEMON OIL - 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

The lemon is a small evergreen tree (Citrus limon) originally native to Asia and is also the name of the tree's oval yellow fruit. The fruit is used for culinary and non-culinary purposes throughout the world – primarily for its juice, though the pulp and rind (zest) are also used, mainly in cooking and baking. Lemon is about 5% (approximately 0.3 mole per litre) citric acid, which gives lemons a sour taste, and a pH of 2 to 3. This makes lemon juice an inexpensive, readily available acid for use in educational science experiments. Because of the sour flavor, many lemon-flavored drinks and candies are available, including lemonade and sour heads. Lemons are used to make lemonade, and as a garnish for drinks. Lemon zest has many uses. Many mixed, soft drinks, iced tea, and water is often served with a wedge or slice of lemon in the glass or on the rim. The average lemon contains approximately 3 tablespoons of juice. Fish are marinated in lemon juice to neutralize the odor. Lemon juice, alone or in combination with other ingredients, is used to marinate meat before cooking. Lemons, alone or with oranges, are used to make marmalade. The grated rind of the lemon, called lemon zest, is used to add flavor to baked goods, puddings, rice and other dishes. Pickled lemons are a Moroccan delicacy. Numerous lemon liqueurs are made from lemon rind. Apart from the juice, the essential oil extracted by steam distillation is an important product from the fruit. Lemon oil is highly beneficial for medicinal purposes. The main chemical components of lemon oil are a-pinene, camphene, b-pinene, sabinene, myrcene, a-terpinene, linalool, b-bisabolene, limonene, trans-a- bergamotene, nerol and neral. India tops the production list with ~16% of the world's overall lemon and lime output followed by Mexico (~14.5%), Argentina (~10%), Brazil (~8%) and Spain (~7%). The Indian market for processed foods is growing at over 12 per cent a year, propelling demand for flavours in savoury foods and beverages as the large food makers make inroads into the region. Globally, the flavours and fragrances industry is estimated at about €14.8 billion, of which the top five players account for 40 per cent of the market. These top five companies have a substantial presence in the €187 million Indian flavours and fragrance market - flavours make up 45 per cent of the market, and fragrances 55 per cent. Fragrances will continue to play an important role in product differentiation, aiding demand growth. Environmental fragrance goods will also experience healthy gains through 2012, driven by advances in aromatherapy and household applications, as well as consumer desires for more sophisticated and blended fragrances. Food will remain the largest market for flavors and fragrances, based on the widespread application of flavor materials in processed food, dairy and bakery products, candy and confectioneries, and other items such as breakfast cereals and bars, meat and seafood products, snack food and meal supplements/replacements. The further expansion of fortified food -- as well as beverages -- will provide opportunities, since flavors are often used to cover up the off-tastes of vitamins, minerals, antioxidants and other additives. There is a good scope for new entrants and entrepreneurs should venture into this field.
Plant capacity: 19 MT per Annum Lemon Powder, 13500 Nos. Bottles of Oil Per Annum (Bottle 500 Ml.) Plant & machinery: 141 Lakhs
Working capital: -T.C.I: Cost of Project : 290 Lakhs
Return: 43.00%Break even: 49.00%
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GOOD FUTURE PROSPECTS FOR SOLAR THERMAL POWER PLANT - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Production Schedule

The growing industrialization and associated use of energy have led the world to face energy crisis which is gaining serious concern day by day. In principle, solar energy can supply all the present and future energy needs of the world on a continuous basis. This makes it one of the most promising of the non-conventional energy sources. India has made marked gains in the construction of both hydro-electric and thermal power generating plants. Installed generating capacity has increased manifold since demand has increased at an even faster rate. Thus the burden of power generation is still on fossil fuels. Solar energy can play an important role in meeting energy demands in future years. Thus greater stress should be given on technical development for collection and storage of solar energy. If this solar energy is converted to electricity this can meet the growing demands. Thus Indian Industries will get a great benefit. Solar systems are powered by energy from the sun. Two generic types of solar-electric systems are solar photovoltaics and solar thermal electric. The direct utilization based on thermal and photovoltaic are of prime importance because it involves both storage and conversion into chemical as well as electrical form of energy. Solar thermal technologies convert radiant energy from the sun of thermal energy. For low-temperature applications (typically below about 200ºF [95ºC]) such as domestic water heating, concentration of the sunlight is not required. To achieve the high temperatures required for generation of electrical power, the solar energy must be concentrated. All solar thermal electric technologies include a collector, which redirects and concentrates the insolation on a receiver. In the receiver, the solar energy is absorbed, heating a fluid that powers a heat engine to generate electricity. In some systems, a heat exchanger may be used for power generation. Three principal solar thermal concentrator concepts are currently under development for power generation: parabolic trough, central receiver, and parabolic dish. The parabolic trough is the most advanced of the concentrator systems. This technology is used in the largest grid connected solar-thermal power plants in the world. A parabolic trough collector has a linear parabolic-shaped reflector that focuses the sun's radiation on a linear receiver located at the focus of the parabola. The collector tracks the sun along one axis from east to west during the day to ensure that the sun is continuously focused on the receiver. Because of its parabolic shape, a trough can focus the sun at 30 to 100 times its normal intensity (concentration ratio) on a receiver pipe located along the focal line of the trough, achieving operating temperatures over 400 degrees Celcius. A collector field consists of a large field of single-axis tracking parabolic trough collectors. The solar field is modular in nature and is composed of many parallel rows of solar collectors aligned on a north-south horizontal axis. A working (heat transfer) fluid is heated as it circulates through the receivers and returns to a series of heat exchangers at a central location where the fluid is used to generate high-pressure superheated steam. The steam is then fed to a conventional steam turbine/generator to produce electricity. After the working fluid passes through the heat exchangers, the cooled fluid is recirculated through the solar field. The plant is usually designed to operate at full rated power using solar energy alone, given sufficient solar energy. Flat Plate Collectors are the most common type of solar water heating systems for residential and commercial applications. Flat plate collector systems are used comfort heating of a home or commercial building in the winter and for domestic hot water production throughout the year. Flat plate collectors usually heat water to temperatures ranging from 150º to 200º F (66º to 93º C). The efficiency of flat plate collectors varies from manufacturer to manufacturer, and system to system, but usually ranges from as low as 20% to as high as 80%. Solar thermal power is one of the most promising ways to provide renewable energy, giving the fact that it can compete in the middle/long term with conventional power plants. As a result of international cooperation and government grants, many demonstration projects have been carried out or are still in progress. India supports development of both solar thermal and solar photovoltaics (PV) power generation. To demonstrate and commercialize solar thermal technology in India, MNES is promoting megawatt scale projects such as the proposed 35MW solar thermal plant in Rajasthan and is encouraging private sector projects by providing financial assistance from the Ministry. Involvement in the project of various players in the energy sector, such as local industries, the private construction and operations contractors, Rajasthan State Power Corporation Limited (RSPCL), Rajasthan State Electricity Board (RSEB), Rajasthan Energy Development Agency (REDA), Central Electricity Authority (CEA), MNES and others, will help to increase the capacity and capability of local 5technical expertise and further sustain the development of solar power in India in the longer term.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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SOLAR PHOTOVOLTAIC POWER 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

The growing industrialization and associated use of energy have led the world to face energy crisis which is gaining serious concern day by day. The development of a new energy basis for continued economic growth has therefore become an urgent necessity. With the help of solar power technology, we can tap sun energy in many ways. Solar cells, otherwise known as photovoltaic or photoelectric cells are the most popular devices that help to convert sunlight into electricity. In combination with modules, they are used to manufacture solar panels. Solar energy is also used in the functioning of solar water heaters, melting steel, creating hydrogen fuel and making electricity through solar furnaces. The reflective surfaces used in these solar furnaces helps in concentrating all of sun’s energy into a strategic point which in turn generates a large amount of heat and there by electricity. The majority of photovoltaic modules are used for grid connected power generation. For more than three decades, solar power generated electricity has been dismissed as too costly. But the cost of solar generated electricity is consistently coming down, while the cost of conventional electricity is increasing. Advances in solar cell technology, conversion efficiency and system installation have allowed photovoltaic system (PV) to achieve cost structures that are competitive with other peaking power sources. PV has the unique advantage among renewable resources of being able to produce power anywhere: deserts, cities or suburbs. Though the installation cost of PV is more, but it can be selectively deployed on the grid wherever and whenever needed to reduce distribution capacity constraints and transmission congestion while producing pollution-free power. Both capital costs and operating and maintenance costs are driven by the choice of technology and the area of the solar system. The time is right for the world to adopt the clean and renewable energy source as the major electricity producer. With most part of India enjoying close to 300 sunny days a year, even if 0.5% of land area is brought under solar power, it can meet the entire energy requirement of India in 2030. The Indian government has announced its Solar Mission under the National Action Plan on Climate Change in November 2009 with the goal to generate 1,000 MW of solar power by 2013 and 20,000 MW by 2020. World solar photovoltaic (PV) market installations reached a record high of 7.3 GW in 2009, representing growth of 20% over the previous year, according to the annual PV market report issued by Solarbuzz. The PV industry generated $38.5 billion in global revenues in 2009, while successfully rising over US$13.5 billion in equity and debt, up 8% on the prior year. Indian Government has taken several steps, both on the supply side and the demand side, to offer key incentives to aid the development of solar PV industry. Currently India has 10-12 solar PV cells manufacturers producing about 100 MW of solar PV cells and about 20 manufacturers engaged in module manufacturing with installed capacity of 120 MW. Moreover, currently India has more than 200 manufacturers of solar water heaters and 40 solar cooker manufacturers, and also 5-6 manufacturers are involved in producing solar drying, cooking, process heat, and air conditioning applications. India already is witnessing a huge surge in applications for solar power, varying from street lighting to water heating. Decentralized Distributed Generation (DDG) for meeting rural demand, back-up power for telecommunications, roof based captive systems for individual industries and grid interactive solar power plants are some prominent sectors offering significant market potential for solar PV in India. There is a bright future and good scope for new entrepreneurs in this sector in the coming years.
Plant capacity: 1 MWPlant & machinery: 1435 Lakhs
Working capital: -T.C.I: Cost of Project : 1871 Lakhs
Return: 11.00%Break even: 93.00%
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FRUIT PROCESSING (Mango, Lychee, Pineapple, Orange & Pomelo for Concentrates, Juice in Cans) - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials

Juice is the liquid that is naturally contained in fruit or vegetable tissue. Juice is prepared by mechanically squeezing or macerating fresh fruits or vegetables flesh without the application of heat or solvents. For example, orange juice is the liquid extract of the fruit of the orange tree. Juice may be prepared in the home from fresh fruits and vegetables using a variety of hand or electric juicers. Many commercial juices are filtered to remove fiber or pulp, but high-pulp fresh orange juice is a popular beverage. Juice may be marketed in concentrate form, sometimes frozen, requiring the user to add water to reconstitute the liquid back to its "original state". However, concentrates generally have a noticeably different taste from that of their "fresh-squeezed" counterparts. Other juices are reconstituted before packaging for retail sale. Common methods for preservation and processing of fruit juices include canning, pasteurization, freezing, evaporation and spray drying. Fruit juices consist of 100% pure fruit juice made from the flesh of fresh fruit or concentrates and contain no preservatives or any other added ingredients. Some minor exceptions exist in order to ensure that the final product is of an acceptable taste. These exceptions are very specific and are controlled by government legislation in the form of the Fruit Juices & Nectars Regulations. The branded fruit juices market inclusive of nectars is placed at about Rs 10 billion. The pure fruit juices are the preferred drink among the fruit drinks. This segment is growing at around 10% annually. The market for fruit juices is expected to grow to Rs. 7.50 billion by end 2009-10 from nearly Rs. 4.75 billion presently. Consumption per capita of juices in India is very low. It is estimated at a fraction of a liter - 20 ml. China has attained a consumption level of 1500 ml. The consumption in India is basically an urban phenomenon. Nonetheless, it is gaining slow but steady penetration into the rural areas. The market size of the food processing industry is likely to increase from Rs 4600 billion in 2003-04 to Rs 8200 billion in 2009-10, and to Rs 13,500 billion in 2014-15.In the coming years India’s share in the global processed food industry will get a raise from one per cent to three per cent. Indian food processing activity is still largely based on primary processing, which accounts for 80 per cent of the value addition. In the area of packaging, Tetra-Pak India, a part of the $ 10 billion Tetra Laval group, has become the major source of brick cartons amenable to aseptic packaging and imparting long product shelf-life to the foods. Tins, nonetheless still continue to be in the market in family size packing. There is an ample space and good market potential for new entrepreneurs in this field.
Plant capacity: 1475 Kls/Annum Fruit Juice, 25 MT/Annum Fruit Juice ConcentratePlant & machinery: 210 Lakhs
Working capital: -T.C.I: 580 Lakhs
Return: 44.00%Break even: 39.00%
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DISPOSABLE PLASTIC SYRINGES WITH NEEDLES - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Disposable syringes are a great innovation in the field of medical equipment. They are used for intramuscular and intravenous injections and are disposed off immediately after usage. The major advantages of using plastic disposable syringes are that no infection is transmitted since the injection is disposed off immediately after use. The open end of the syringe may be fitted with a hypodermic needle, a nozzle, or tubing to help direct the flow into and out of the barrel or cylindrical tube. Disposable needles are becoming more popular in the medical world due to its lower cost and higher accuracy. Plastic can be used in place of metal without any problem. The procedure is also relatively easy and cheaper. Only one disadvantage is that there is not so much heat resistance as compared to hypodermic needle. Even then the disposable needle has widely replaced hypodermic needle because of lower cost, easy compatibility and higher sterilization. Disposable needle is widely used by doctors for injection purpose with the help of syringes. With the increase in population in our country, requirement of medicine and injections has increased. Plastic syringes are typically manufactured by a process called injection molding. The machines used are called injection molding machines. These machines inject liquefied plastic into a mold which is the shape of a syringe. When the plastic cools, it forms a syringe. For quick relief, needles are used by surgeons, dental surgeons, Veterinary Surgeons and by the breeders in the poultry farm, where the farm birds are periodically injected against epidemics. During epidemics, for better control, disposable needles are of much use. Veterinary Surgeons and doctors find it more useful to use needles. With the development of pharmaceutical industries the use of syringes and disposable needles will also develop. About 70% pharmaceutical industries are in small-scale sector. The output of small-scale sector covers a wide spectrum, anti T.B. drugs, antidysentery drugs, unit rhenemsties, haematirines, hormonal preparations, tranquilizers, analagesties and anti-Ryrities. According to McKinsey & Co. a leading industrial and management consulting organization, the Indian healthcare sector, including pharmaceutical, diagnostics and hospital services, is expected to more than double its revenues to Rs 2000 billion by 2010. Expenditure on healthcare services, including diagnostics, hospital occupancy and outpatient consulting, the largest component of this spend is expected to grow more than 125% to Rs 1560 billion by 2012 from Rs 690 billion now. Now production is very low according to demand will be raised. On that basis it can be concluded that there is a good scope for few new entrepreneurs. Few Major players are as under: Albert David Ltd. Kolkata Disposable Medi-Aids Ltd. Chennai H L L Lifecare Ltd. Thiruvananthapuram Hindustan Syringes & Medical Devices Ltd. Central Delhi Iscon Surgicals Ltd. Jodhpur La Medical Devices Ltd. Faridabad Lifeline Injects Ltd. Mahendragarh Lifelong Meditech Ltd. Gurgaon Nirma Ltd. Ahmadabad Raaj Medisafe India Ltd. Dhar Sangam Health Care Products Ltd. Hyderabad Surgiplast Ltd. Gandhinagar Transmedica (India) Ltd. Chennai
Plant capacity: 120 Lakhs/ AnnumPlant & machinery: 90 Lakhs
Working capital: -T.C.I: Cost of Project : 253 Lakhs
Return: 42.00%Break even: 48.00%
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BLOOD BAGS - 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

Blood bag is a disposable bio-medical device used for collection, storage, transportation and transfusion of human blood and blood components. The system consist of a single or multiple bag connected with tubing’s, needle, needle cover, clamp etc. The Blood Bags are made of plastic-material, which are compatible with blood. Plasticized-PVC blood bags have been used since the 1950s for the collection of whole blood, the processing of this into plasma, platelets etc., and storage. The phthalate plasticizers, when fed in large quantities to rats, can cause cancer. This does not prove that the storage of whole blood in plasticized PVC bags is a health risk. However, there has been a search for alternative polymers for blood bags. Blood Bags can successfully replace the use of glass bottles for collection storage, transportation and transfusion of blood and blood components since bottles require exhaustive cleaning, rinsing and autoclaving procedures and there are chances of breakage at any stage. Further, use of disposable bags eliminates the possibility of any contamination. In recent times, Blood Bags have become a conspicuous item and a dire need of hospitals and nursing homes to meet blood - infusion emergencies. Blood Bags are most ostensibly serving the medical field in crucial hour. As the number of hospital, nursing home & etc are increasing, the demand for the blood bags, too, is increasing tremendously. Technologies advances achieved by medicare in the recent years have been historic. The Indian scenario has not remained immune to these changes. While IT (information technology) has come to the aid of the breakthroughs, the progress recorded in the medicare area is as impressive as it is in the IT sector itself. The changes are in both, form and content, as well as quantitative and qualitative. These have pervaded almost all specialities, from diagnostics to physiotherapy, from cardiology to oncology, from non-invasive surgery to transplants. In India, the emergence of private medicare services, especially through commercialization and corporatization, has contributed to the transformation. Thanks to rapid commercialization of the medical practices with the establishment of multimillion hospitals, nursing homes & diagnostic centres (specialized and general) the demand has registered a very high growth rate in the recent years. There is a good scope and market potential for new entrepreneurs to venture into this field.
Plant capacity: 30000 Nos./Day Each Bag of Capacity – 450 ML.Plant & machinery: 281 Lakhs
Working capital: -T.C.I: 2186 Lakhs
Return: 45.00%Break even: 36.00%
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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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