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

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DISPOSABLE PLASTIC SYRINGES - 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

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 disposable syringes are that no infection is transmitted since the injection is disposed off immediately after use. Long before in 1960’s glass syringes which were re-useable after sterilization were being replaced with disposable plastic syringes and single-use needles. With the replacement of traditional glass syringes by disposable syringes for convenience, safety, the demand for plastic disposable syringes is growing at very fast rate. 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 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. For more strength of people more number of needles is required with syringes. Tablets or capsules also play a great role in the life of human beings but injections are also a must to some extent. The disposable syringes market has now self-destructing or auto-disable (AD) syringe as a safe bet against re-use and spread of HIV, hepatitis and other infections. The national immunization policy has adopted the non-reusable, self-breaking syringes, though many States are yet to follow suit for the curative injections. Disposable surgical caps and mask are used considerably while performing an operation or undergoing surgical measures. Catheters are used for the purpose of passing urine for bed-ridden and emergency patients in hospitals, nursing homes etc. 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. Disposable syringes 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. New comer can well venture into this field. There is a good scope in this sector.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 36.00%Break even: 45.00%
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ETHANOL FROM RICE, RICE STRAW, RICE HUSK, RICE BRAN - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Cost of Project

Ethanol productions from cellulosic materials offer a solution to some of the recent environmental, economic, and energy problems facing worldwide. Nationally, energy costs are on the rise and forecasts of petroleum supply disruptions are once again making news. People are not immune to these events & feel the impact of rising energy prices every time they purchase gasoline, diesel or other petroleum products. Cereal straw, one of the most abundant renewable lignocellulose resources which possess valuable components, has gradually become the research hot spot as a promising substitute for both the fossil fuel resource & petroleum based industry with the increasing calling for bio-fuel and green chemistry. Fermenting sugars produces ethanol. Lignocelluloses materials such as agricultural, hardwood & softwood residues are potential sources of sugars for ethanol production. Ethanol from Rice Straw is manufactured by fermentation. The word fermentation referred originally to the anaerobic metabolism of organic compounds by micro organism compounds simpler than the starting material the modern definition is that of any microbial action controlled by man to make useful product. Some of the substances produced from carbohydrates on a commercial scale by anaerobic microbial metabolism include ethanol and lactic acid. The most important consideration in industrial fermentation is the selection of the proper micro organisms. This choice must provide suitable stability of the process, where upon the engineering and development aspects of process design may initiated. Stock cultures of micro organisms useful in industrial fermentations are usually maintained by the manufacturer, and less frequently in commercial collection or collections at academic or government laboratories. The ethyl alcohol is used as a blend with petrol and the potential for chemicals is being tapped in India. Many of these chemicals are now being made on a much larger scale from petroleum fractions or natural gas liquids. But the advantage of using ethyl alcohol is that the processes are simple, efficient and workable at a smaller capacity level in plants distributed all over the country and not concentrated in centralized complexes. While the technical possibility of chemical conversion of ethyl alcohol is wide, there is need to choose specific items where the advantages exist. India has emerged as the largest user of ethyl alcohol for chemicals over the past three decades. Ethyl alcohol derived from sulphite pulpine plants served as a base for limited quantities of select chemicals in Norway and Sweden in the immediate post-war years and ethyl alcohol derived from molasses was also used for chemicals in the U.K. at that time. In fact, the early production of polyethylene was based on ethyl alcohol in the U.K. France too was exploiting the ethyl alcohol route to chemicals. The U.S. installed a big plant for making synthetic rubber from the two intermediates, styrene and butadiene, derived from ethyl alcohol produced from corn (starch). But the end of the war led to it being closed down. The era of petroleum-derived chemicals, mostly using ethylene and propylene, began in the late Fifties and early Sixties displacing ethyl alcohol as feedstock. Ethyl alcohol ended its tenure as a chemical feedstock in Europe but emerged as a fuel for automobiles in Brazil and in the U. S. Brazil also took up alcohol-based chemicals in a limited way and is now lagging behind India in this area. The U.S. and Europe have little of ethyl alcohol as base for chemicals. Other sugar producing countries such as Cuba, Thailand and Malaysia have not entered this field. The main factor is the large demand and scale of operations, where a petroleum-base dominates. There is a good opportunity and scope for new players to venture into this field. Few Indian Major Players are as under: Amar Alcoholi Ltd. Andhra Sugars Ltd. Ashok Organic Inds. Ltd. Athani Farmers' Sugar Factory Ltd. Bajaj Hindusthan Ltd. Balrampur Chini Mills Ltd. Dalmia Cement (Bharat) Ltd. Dharani Sugars & Chemicals Ltd. Dwarikesh Sugar Inds. Ltd. Empee Sugars & Chemicals Ltd. Gangamai Industries & Constructions Ltd. Globus Spirits Ltd. Godavari Sugar Mills Ltd. Hanil Era Textiles Ltd. Harita-N T I Ltd. India Glycols Ltd. Jeypore Sugar Co. Ltd. K C P Sugar & Inds. Corpn. Ltd. K M Sugar Mills Ltd. Kanoria Chemicals & Inds. Ltd. Kirlampudi Sugar Mills Ltd. Kothari Sugars & Chemicals Ltd. Laxmi Organic Inds. Ltd. M A C Agro Inds. Ltd. [Merged] Maruti Organics Ltd. Mcdowell & Co. Ltd. [Merged] National Industrial Corpn. Ltd. Natural Sugar & Allied Inds. Ltd. Pioneer Distilleries Ltd. Purti Power & Sugar Ltd. Radico Khaitan Ltd. Rajshree Sugars & Chemicals Ltd. Riga Sugar Co. Ltd. Sakthi Sugars Ltd. Shree Renuka Sugars Ltd. Southern Agrifurane Inds. Ltd. Sri Sarvaraya Sugars Ltd. Swarup Vegetable Products Inds. Ltd. Tilaknagar Industries Ltd. Ugar Sugar Works Ltd. United Spirits Ltd. Vijayshree Chemicals (India) Ltd. X L Telecom & Energy Ltd. Yeast Alco Enzymes Ltd.
Plant capacity: 9000 Kls./AnnumPlant & machinery: -
Working capital: -T.C.I: -
Return: 43.00%Break even: 43.00%
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FURFURAL FROM CORNCOBS, RICE HUSK & SUGARCANE BAGASSE - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Plant Layout

Furfural is produced from agricultural waste biomass that contain pentosans, which are aldose to sugars, composed of small rings formed from short five-member chains, that constitute a class of complex carbohydrates, present in cellulose of many woody plants such as corn cobs, sugar cane bagasse, rice and oat hulls etc. Furfural is a clear, colorless motile liquid with a characteristic almond-benzaldehyde odor. Any material containing pentosans can be used for the production of furfural. Technically furfural is produced by acid hydrolysis of the pentosan contained in woody biomass. Furfural is the only organic compound derived from biomass that can replace the crude oil based organics used in industry. Furfural is used as a solvent in petrochemical refining to extract dienes from other hydrocarbons. Furfural, as well as its derivative furfuryl alcohol, can be used together with phenol, acetone, or urea to make solid resins. Furfural can be used for the production of lubricants; specialist adhesives and plastics; and nylons. It is the starting material for cycling shorts and many more. The demand for furfural and furfuryl alcohol in the international market will maintain stable growth for the next few years. Due to problems in environmental impact and cost, the output of furfural in advanced countries such as the United States and European countries will decline further owing to the relatively low production cost of furfuryl alcohol in India. Expanded production of downstream products can remarkably increase the added value of India’s furfural and furfuryl alcohol industrial chain. The production of the (tetrahydrofuran) and PTMEG (polytetramethylene ether glycol) using furfural as raw material is an important way to increase the added value and is worth great attention from furfural producers. Production of furfural and furfuryl alcohol is projected to increase at an average annual rate of 5% provided no shortage of raw material (corncobs) is experienced. China is the only major region where increased furfural production is expected in the next five years. There is a good scope to venture into this field for new entrepreneurs.
Plant capacity: 600 MT/AnnumPlant & machinery: 69 Lakhs
Working capital: -T.C.I: Cost of Project : 278 Lakhs
Return: 41.00%Break even: 52.00%
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HIGH FRUCTOSE CORN SYRUP (HFCS)- 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

Fructose is a simple monosaccharide found in many foods. It is a white solid that dissolves readily in water. Honey, tree fruits, berries, melons and some root vegetables, contain significant amounts of the fructose derivative sucrose (table sugar). Sucrose is a disaccharide derived from the condensation of glucose and fructose. Crystalline fructose and high-fructose corn syrup are often confused as the same product. Crystalline fructose, which is often produced from a fructose-enriched corn syrup, is indeed the monosaccharide. High-fructose corn syrup, however, is usually considered to be a mixture of nearly equal amounts of fructose and glucose. High fructose corn syrup provides sweetness intensity equivalent to sugar. High fructose corn syrup can replace sugar in one-for-one proportions. The sweetness profile of high fructose corn syrup enhances many fruit, citrus and spice flavors in beverages, bakery fillings and dairy products. High fructose corn syrup is composed of either 42 percent or 55 percent fructose, with the remaining sugars being primarily glucose and higher sugars. In terms of composition, high fructose corn syrup is nearly identical to table sugar (sucrose), which is composed of 50 percent fructose and 50 percent glucose. Glucose is one of the simplest forms of sugar that serves as a building block for most carbohydrates. Fructose is a simple sugar commonly found in fruits and honey. High fructose corn syrup is used in foods and beverages because of the many benefits it offers. In addition to providing sweetness at a level equivalent to sugar, High fructose corn syrup enhances fruit and spice flavors in foods such as yogurt and spaghetti sauces, gives chewy breakfast bars their soft texture and also protects freshness. High fructose corn syrup keeps products fresh by maintaining consistent moisture. The industry responses towards substitution of sugar by HFS are positive provided a) it does not interfere with the product quality; b) regular supply of HFS is ensured; c) its use offers a price advantage over sugar; d) it does not change colour on heating; e) preservative qualities for the products is as good as in the case of sugar; f) there is no objection in using HFS by FPO or other food related enforcement agencies. HFS can replace sugar in industrial and domestic applications. Among industries, the major consuming sectors include bakery, confectionery, processed foods, beverages, soft drinks, ice creams, baby foods. Now-a-days the demand for HFCS is increasing day by day, so there is wide scope for new entrepreneurs to venture into this project.
Plant capacity: 37500 MT/Annum (High Fructose Corn Syrup, 15000 MT/Anuum (Gluten)Plant & machinery: 2314 Lakhs
Working capital: -T.C.I: Cost of Project : 3430 Lakhs
Return: 46.00%Break even: 33.00%
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CEMENT 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, Plant Economics

The term cement is used to designate many different kinds of substances that are used as binders. The term cements as used henceforth will be confined to inorganic hydraulic cements, principally Portland cement. India is the second-largest producer of cement in the world after China with industry capacity of approximately 160 MT in 2006. The cement industry is regional in nature due to the concentration of limestone reserves located in a few states. This has resulted in a surplus situation in some regions and a deficit in others. Demand for cement has grown at a CAGR of 9.1% in the last two years with supply growing at a CAGR of 8.2% in the same period. With a large amount of infrastructure activities being planned in commercial, real estate and housing sector along with huge development works in roads, railways, ports and hydel projects, we expect the cement demand growth momentum to stay intact. We expect this to have a positive impact on cement prices in different regions till new capacities come up by mid-FY09. Demand for cement is correlated to the GDP growth of the country, infrastructure and industrial capex as well as exports. Strong GDP growth expected in the coming years and huge planned investments should result in healthy growth in the cement demand. The Indian economy continues to be on a much stronger growth path driven by increased amount of infrastructure spending and capex. The economy is expected to grow by 8% for the next two to three years, which will drive an increased demand growth for the cement industry. The cement demand is expected to grow at a CAGR of 10% at least for the next three years. The cement industry witnessed serious M&A activity in the past few years, as a result of which the top four players now account for almost 52-55% of the installed cement capacity of India, as against 40-42% in FY00.The M&A activity have also had global participants. The growing presence of international players bring with them better technology and operational efficiencies which could significantly alter pricing patterns. The cement industry has witnessed substantial reorganization of capacities during the last couple of years. Some examples of the consolidation witnessed during the recent past include: Gujarat Ambuja taking a stake of 14% in ACC; Gujarat Ambuja taking over DLF Cements and Modi Cement; India Cement taking over Raasi Cement and Sri Vishnu Cement; Grasim's acquisition of the cement business of L&T; Indian Rayon's cement division merging with Grasim; Grasim taking over Sri Digvijay Cements; L&T taking over Narmada Cements; ACC taking over IDCOL. There is a very good scope and market potential of cement right now. New entrepreneurs should venture into this field. Few Indian Major Players are as under: A C C Ltd. Alcon Cement Co. Pvt. Ltd. Ambala Cements Ltd. Ambuja Cements Ltd. Amirgadh Cements Ltd. Andhra Cements Ltd. Anjani Portland Cement Ltd. B R Cement Industry Ltd. Bagalkot Udyog Ltd. Balaram Cements Ltd. Banjara Cements Ltd. Barak Valley Cements Ltd. Basera Cements Ltd. Bheema Cements Ltd. Bhilai Jaypee Cement Ltd. Binani Cement Ltd. Birla Corporation Ltd. Bokaro Jaypee Cement Ltd. Burnpur Cement Ltd. C C L International Ltd. Cement Corpn. Of India Ltd. Cement Manufacturing Co. Ltd. Century Textiles & Inds. Ltd. Chaanakya Cements Ltd. Chenab Cement Ltd. Cheran Cement Ltd. Chettinad Cement Corpn. Ltd. Cochin Cements Ltd. Concorde Cement Pvt. Ltd. D L F Cement Ltd. Dakshin Cements Ltd. Dalmia Cement (Bharat) Ltd. Dalmia Cement Ventures Ltd. Deccan Cements Ltd. Desai Cement Co. Ltd. Deva Drill Tech (India) Ltd. Dhar Cement Ltd. G K W Cement Ltd. Gangotri Cement Ltd. Garden Cements Ltd. Greygold Cements Ltd. Gujarat High Tech Inds. Ltd. Gujarat Himalaya Cements Ltd. Gujarat Jaypee Cement & Infrastructure Ltd. Gujarat Sidhee Cement Ltd. Heidelberg Cement India Ltd. Hemadri Cements Ltd. Hics Cements Ltd. High-Tech Lime Products Ltd. I P I-S P Cement Co. Ltd. India Cements Ltd. Indo-American Cement Corpn. Ltd. J K Cement Ltd. J K Lakshmi Cement Ltd. Jagadamba Cements Ltd. Jagdish Constructions Ltd. Jaipur Udyog Ltd. Janpriya Cement Ltd. Jubilee Cements Ltd. Jupiter Cement Inds. Ltd. K C P Ltd. Kakatiya Cement Sugar & Inds. Ltd. Kakinada Cements Ltd. Kalinga Cement Ltd. Kalyanpur Cements Ltd. Karnataka Cement Ltd. Karnataka Instrade Corpn. Ltd. Keerthi Industries Ltd. Kohinoor Cements Ltd. L I Cement Pvt. Ltd. L I Eastern Pvt. Ltd. Lafarge India Pvt. Ltd. Lakshmi Cement & Ceramics Inds. Ltd. Lemos Cements Ltd. Lloyd Cements Ltd. Lok Cements Ltd. M G T Cements Pvt. Ltd. Madras Cements Ltd. Mahendra Cements Ltd. Makers Development Services Pvt. Ltd. Malabar Cements Ltd. Mangalam Cement Ltd. Meghalaya Cement Ltd. Modern Cement Inds. Ltd. My Home Inds. Ltd. N C L Industries Ltd. Namo Cements Ltd. Necem Cements Ltd. Neelgiri Cements Ltd. Nihon Nirmaan Ltd. Nilanchaal Cement Pvt. Ltd. Nirman Cements Ltd. North East Cements Ltd. O C L India Ltd. P R Cements Ltd. Panchmahal Cement Ltd. Panyam Cements & Mineral Inds. Ltd. Penna Cement Inds. Ltd. Prism Cement Ltd. Prudential Cements Ltd. Raasi Cement Ltd. Radhakishan Cement Ltd. Raghoji Cement Mfg. Co. Ltd. Rain Commodities Ltd. Rajapalayam Cement & Chemicals Ltd. Ranisagar Cement Co. Ltd. Rishi Cement Co. Ltd. Sabari Cements (Chennai) Ltd. Sagar Cements Ltd. Sahas Cements Ltd. Sainik Finance & Inds. Ltd. Sanjay Intra Ltd. Saraf Agencies Pvt. Ltd. Satkar Cement Co. Ltd. Satyam Cement Ltd. Saurabh Cement Ltd. Saurashtra Cement Ltd. Seetharam Cements Ltd. Shaktiman Cements Ltd. Shiva Cement Ltd. Shree Cement Ltd. Shree Digvijay Cement Co. Ltd. Shree I-Jee Cement Inds. Ltd. Shree Quality Cements Ltd. Shri Hariganga Cement Ltd. Shri Keshav Cements & Infra Ltd. Shubham Industries Ltd. Sigma Cements Ltd. Singhal Cement & Allied Inds. Ltd. Snhehadhara Industries Ltd. Somani Cement Co. Ltd. Someswara Cements & Chemicals Ltd. Sorabh Cement Ltd. South India Cements Ltd. Sri Simhadri Cements Ltd. Srichakra Cements Ltd. Star Cement Meghalaya Ltd. Sudarshan Cement & Multiprojects Ltd. Sukhchain Cements Ltd. Talavadi Cements Ltd. Tamil Nadu Cements Corpn. Ltd. Travancore Cements Ltd. Udaipur Cement Works Ltd. Ultratech Cement Ltd. Umrongso Cement Ltd. Uttar Pradesh State Cement Corpn. Ltd. Vaishno Cement Co. Ltd. Varun Cements Ltd. Vinay Cements Ltd. Virgo Cements Ltd. Visaka Cement Industry Ltd. Vishwakarma Cements Ltd. Viswam Cement Ltd. Zodiac Cements Ltd. Zuari Cement Ltd.
Plant capacity: 90,000 MT/Annum Plant & machinery: 1296 Lakhs
Working capital: -T.C.I: Cost of Project : 1750 Lakhs
Return: 42.00%Break even: 47.00%
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Rice Bran Based Solvent Extraction Plant - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Rice has been and continues to be the largest source of human nutrition. Rice bran is a by-product of the rice milling process. Rice bran is the most important source of edible oil among the unconventional sources. Rice bran is the brown coating around the white starchy rice kernel, which is obtained by dehusking paddy and polishing the rice. While white rice holds little nutritional value, the bran that is removed contains 65 percent of the rice kernel’s nutrients and boasts a bounty of healthful benefits. The thin brown layer that is milled off in the processing of white rice, rice bran is just as effective as the other bran’s in fighting high cholesterol and providing high-grade fiber. India produces about 80 million tonnes of paddy annually. This can yield about 5 million tonnes of rice bran and to the extent of 8 lakhs tonnes of rice bran oil. Production of rice bran oil is currently estimated at about 2 lakhs tonnes and hardly 10-15 per cent of it is of edible grade, although the potential availability is reckoned at about 8 lakhs tonnes. The wide gap between the actual production and the potential availability of rice bran oil is primarily due to the fact that at present around 70 per cent of the paddy produced in the country is processed through huller mills while only 30 percent is processed by modern sheller mills. It has been estimated that huller mills number about 80,000 while there are only 28,000 modern sheller mills. Rice bran oil is natural oil that is created using the hull or bran of the rice grain. One of the advantages of using rice bran oil in cooking is that the oil has a high smoking point. This means the oil is ideal for frying foods without running the risk of overheating and burning the food before the meat or coated vegetables are cooked all the way through. The creation of rice bran oil involves the pressing of the hull or bran of the rice grain. By pressing on the hull, small amounts of oil can be extracted and collected. The oil released from the rice bran contains a hefty amount of Vitamin E, gamma oryzanol and the essential fatty acids that lend a great deal of taste to the oil. The presence of a number of antioxidants also help to make rice bran oil a healthier alternative for use in salad dressings and as an ingredient in baked goods. Rice Bran Oil alone has the potentiality of wiping out a large part of the deficit oil in the country. India is the biggest producer of rice in the world, next to China. However only a very small proportion of the rice bran is processed and large quantity of oil in rice bran is wasted. According to the solvent Extractor's Association of India, the total production of oil from indigenous sources amounted to 76.2 lakhs tonnes in oil year 2003-2004 and in the current oil year this is expected to rise to around 80.6 lakhs tonnes. The government estimated that the total shortfall in supply was of the order of about 6 lakhs to 7 lakhs tonnes. However, it imported about 11 lakhs tonnes last year, which is expected to go up to about 15 lakhs tonnes in the current year. The government is importing just the double of its own stated shortfall. There is an ample of scope and space for new entrepreneurs to venture into this field. Few Indian Major Players are as under: A G Fats Ltd. Agrawal Oil Extractions Ltd. Balaji Agro Oils Ltd. Boppana Oils Ltd. Cethar Foodoil Ltd. Chaitanya Oils Ltd. Goa Agro Oil Ltd. Godavari Edible Bran Oil Ltd. J R Foods Ltd. J S P Oils & Fats Ltd. K G N Agro Internationals Ltd. Kedia Overseas Ltd. Kirti Dal Mills Ltd. Lakshmi Energy & Foods Ltd. Madras Vanaspati Ltd. Midland Industries Ltd. Modi Naturals Ltd. Morinda Overseas Inds. Ltd. Organic Chemoils Ltd. Patliputra Industries Ltd. Prakash Solvent Extractions Ltd. Raghunath Cotton & Oil Products Ltd. Rasoi Ltd. Ravindra Solvent Oils Ltd. Rice Oil & Foods Ltd. Rom Industries Ltd. S K M Animal Feeds & Foods (India) Ltd. Sambandam Solvent Extraction Ltd. Satyakala Agro Oil Products Ltd. Shanti Kunj Solvent Ltd. Shree Madhav Edible Products Ltd. Shree Shakthi Agro Oils Ltd. Siddaganga Oil Extractions Pvt. Ltd. Sidh Industries Ltd. Sonitpur Solvex Ltd. Sree Tulasi Solvent Extractions Ltd. Sri Murugarajendra Oil Industry Ltd. Srihitha Refineries Ltd. Thapar Agro Mills Ltd. Unique Organics Ltd. Vijay Agro Products Pvt. Ltd.
Plant capacity: 8100 MT/AnnumPlant & machinery: 486 Lakhs
Working capital: -T.C.I: Cost of Project : 804 Lakhs
Return: 42.00%Break even: 54.00%
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DISPOSABLE PLASTIC SYRINGES - 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

Disposable plastic syringes are a great innovation in the field of medical equipment. Disposable needle is widely used by doctors for injection purpose with the help of syringes. A disposable plastic syringe is one of the fastest ways to administer life saving drugs and vaccinations to a patient. The major advantage of using disposable syringes is that no infection is transmitted since the injection is disposed off immediately after use. With the increase in population in our country, requirement of medicine and injections have increased. For more strength of people more number of needles is required with syringes. Tablets or capsules also play a great role in the life of human beings but injections are also a must to some extent. The disposable syringes market has now self-destructing or auto-disable (AD) syringe as a safe bet against re-use and spread of HIV, hepatitis and other infections. The national immunization policy has adopted the non-reusable, self-breaking syringes, though many States are yet to follow suit for the curative injections. Disposable surgical caps and mask are used considerably while performing an operation or undergoing surgical measures. Catheters are used for the purpose of passing urine for bed-ridden and emergency patients in hospitals, nursing homes etc. 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. Disposable syringes 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. New comer can well venture into this field. There is a good scope in this sector. Few Indian Major Players are as under: Albert David Ltd. Disposable Medi-Aids Ltd. H L L Lifecare Ltd. Hindustan Syringes & Medical Devices Ltd. Iscon Surgicals Ltd. La Medical Devices Ltd. Lifeline Injects Ltd. Lifelong Meditech Ltd. Nirma Ltd. Raaj Medisafe India Ltd. Sangam Health Care Products Ltd. Surgiplast Ltd. Transmedica (India) Ltd.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 41.00%Break even: 50.00%
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INTEGRATED UNIT OF RICE MILL, RICE BRAN OIL EXTRACTION WITH CAPTIVE POWER PLANT - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials

The economics of rice milling industry is largely dependent on the useful commercial utilization of its by-products. The purpose of Integrated Unit is to ensure the total utilization of all the resources or by-products available at disposal from the rice milling process are used efficiently and effectively. The by-products such as rice bran will be used for extraction of rice bran oil; the rice husk will be used for effective co generation of electricity and steam/heat for in-house consumption. The project activity is helping in conservation of natural resources like coal and HSD and above all efficient waste disposal management. Over the last decade and half, India Inc has established itself as a vibrant economy with growing domestic consumption coupled with huge export potential. Stable political environment, dependable democratic fabric of the country, strong legal system, huge talent pool and cost advantage have made India a reliable business partner of the global community, attracting good foreign investment. While the growth trend is set off, there is tremendous need for building the background infrastructural support system to sustain the trend. Rice is the staple food for 65% of the population in India. India has the largest area under paddy in the world and ranks second in the production after China. Country has also emerged as a major rice consumer. Rice is the largest consumed calorie source among the food grains. Rice bran and rice husk are the by-products of the rice milling process. Rice bran is the most important source of edible oil among the unconventional sources. Rice husk, considered as an agricultural waste is a proven clean and efficient biomass fuel which can replace conventional fossil fuel uses. Power being one of the most crucial needs for industrial growth finds its priority and as a result the National Electricity Policy rightly envisages Power for all by 2012. To attain this target, a total capacity addition of about 100,000 MW was projected for 10th and 11th plan period. Although there has been some hectic activity in capacity addition, the possibility of attaining the target looks remote. This increases the responsibility of each industry so as to become self-reliant in power, not only to ensure reduced operational expenses but also to contribute towards making the country self-sufficient in power. There is a very good scope with ample of space for new entrepreneurs to venture into this field. Capacity : Rice 106029 MT/Annum Broken Rice 8389 MT/Annum Rice Bran Oil 2573 MT/Annum Deoiled Rice Bran Oil 13486 MT/Annum Power Distribution 15750 MWh/Annum
Plant capacity: -Plant & machinery: 4373 Lakhs
Working capital: -T.C.I: Cost of Project : 8016 Lakhs
Return: 38.00%Break even: 40.00%
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PACKAGED DRINKING WATER WITH PET BOTTLES - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Bottled Water means water intended for human consumption and which is sealed in bottles and other containers with no added ingredients except that it may occasionally contain safe anti-microbial agent. Now-a-days safe and pure drinking water is major necessity for human being. Bottled water industry, colloquially called, the mineral water industry, is a symbol of new life style emerging in India. While a large segment of the population is struggling to get access to potable water supply, a new generation - especially in the urban areas is getting accustomed to bottled water paying handsome prices. PET is the most extensively recycled plastic of the present time. Bottled water is available in differently sized packaging from 200 ml (popular on flights) to 500 ml (a huge hit among the youth) to 1 liter and 2 liter. Despite the large number of small producers, this industry is dominated by the big players – Parle, Bisleri, Coca-cola, Pepsico, Parle Agro, Mohan Meakins, SKN Breweries bottled water in the country when it introduced Bisleri in India 25 years ago. Apart from domestic and commercial use of packaged water, the Indian Railways is a huge potential market. According to officials at Cheerio, the railway ordered 10,000 cases (of 12 bottles each) a day. In coming years the demand of packaged drinking water will be increased very rapidly, so there is a huge scope for new entrepreneurs to venture into this project. The bottled water market is growing at a rapid rate of around 20% a year (down from 50 to 60%). At this growth rate, the Rs 7000 million per year market is estimated to overtake the soft drinks market soon. Multinationals, Coca-Cola, Pepsi, Nestle and others are trying to grab a significant share of the market. There are more than 180 brands in the unorganized sector. The small players account for nearly 19% of the total market. The government decided towards end of the year 2000 to bring about stringent guidelines for packaged water. All companies were made to sell their products only under the BIS (Bureau of Industrial Standards) certification mark. The BIS certification was made mandatory for the segment from April 1, 2001. The bottled water is to be classified as food and has been brought under the Prevention of Food Adulteration Act. They would have to adhere to rules pertaining to colour, odour, taste, turbidity, total dissolved solids and aerobic microbial count. There is a good scope and good market potential for new entrepreneurs to venture into this field. Few Indian Major Players are as under: Atco Corporation Ltd. Bikaji Marketing Ltd. Bio Green Inds. Ltd. Dharampal Satyapal Ltd. Golden Anchor Pvt. Ltd. Keventer Agro Ltd. Manchanda International Ltd. Mount Everest Mineral Water Ltd. N E P C Agro Foods Ltd. Nuway Organic Naturals India Ltd. Orient Beverages Ltd. Pondicherry Agro Service & Inds. Corpn. Ltd. Sparkle Foods Ltd. Sri Sarvaraya Sugars Ltd. Surat Beverages Ltd. Vijay Shanthi Builders Ltd.
Plant capacity: 60000000 Nos. Bottles/AnnumPlant & machinery: 217 Lakhs
Working capital: -T.C.I: Cost of Project : 454 Lakhs
Return: 45.00%Break even: 60.00%
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CLINKER GRINDING FOR CEMENT - 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 most commonly used cement in the world is Portland cement, which is formed at high temperatures that chemically combine the ingredients into new components, including calcium silicates and calcium aluminates. When the cement clinkers are ground with approximately 5% gypsum, they form Portland cement. These compounds allow cement to set when combined with water and to form strong bonds that can withstand pressure, water immersion, and other elements. In the manufacture of Portland cement, clinker is lumps or nodules, usually 3-25 mm in diameter, produced by sintering limestone and alumino-silicate during the cement kiln stage. Cement clinkers are formed by the heat processing of cement elements in a kiln. Limestone, clay, bauxite, and iron ore sand in specific proportions are heated in a rotating kiln at 2,770° Fahrenheit (1,400° Celsius) until they begin to form cinder lumps, which are also known as cement clinkers. Cement clinkers are usually ground with gypsum to produce the fine powder later mixed with liquid to produce cement, although some manufacturers ship cement clinkers in their lump form to cut down on dust. Cement is heavily relied upon to produce mortar, grouts, and concrete, and cement clinkers are the first stage, post firing, in making cement. Cement has strong bonding qualities when mixed with gypsum and water to form a hydration reaction, and it forms approximately one tenth of concrete, mixed with rocks, sand, and other materials and used in building construction all over the world. Concretes high versatility makes it an ideal tool for building projects of all shapes and sizes, from skyscrapers to pool sides. Concrete can also be recycled when it has outlived its usefulness and converted back into cement clinkers through careful processing. Clinker is ground (usually with the addition of a little gypsum, that is, calcium sulfate dehydrate) to become Portland cement. It may also be combined with other active ingredients or chemical admixtures to produce: ground granulated blast furnace slag cement, pozzolana cement & silica fume cement. The cement industry is one of the main beneficiaries of the infrastructure boom. With robust demand and adequate supply, the industry has bright future. The Indian Cement Industry with total capacity of 165 million tones is the second largest after China. Cement industry is dominated by 20 companies who account for over 70% of the market. Individually no company accounts for over 12% of the market. The major players like L&T and ACC have been quiet successful in narrowing the gap between demand and supply. Private housing sector is the major consumer of cement (53%) followed by the government infrastructure sector. Similarly northern and southern region consume around 20%-30% cement while the central and western region are consuming only 18%-16%. India is the 2nd largest cement producer in world after china. Right from laying concrete bricks of economy to waving fly overs cement industry has shown and shows a great future. Domestic demand for cement has been increasing at a fast pace in India. Cement industry has contributed around 8% to the economic development of India. Outsiders (foreign players) eyeing India as a major market to invest in the form of either merger or FDI (Foreign Direct Investment). Cement industry has a long way to go as Indian economy is poised to grow because of being on verge of development. The company continues to emphasize on reduction of costs through enhanced productivity, reduction in energy costs and logistics expenses. The cement sector is expected to witness growth in line with the economic growth because of the strong co-relation with GDP. Future drivers of cement demand growth in India would be the road and housing projects. As per the Working Group report on Cement Industry for the formulation of the 11th Plan, the cement demand is likely to grow at 11.5 per cent per annum during the 11th Plan and cement production and capacity by the end of the 11th Plan are estimated to be 269 million tones and 298 million tones, respectively, with capacity utilization of 90 per cent. There is a very good scope in this sector and new entrepreneurs should venture into this field. Few Indian Major Players are as under: ACC Ltd. Almora Magnesite Ltd. Ambuja Cement Eastern Ltd. Ambuja Cement Rajasthan Ltd. Barak Valley Cements Ltd. Bhilai Jaypee Cement Ltd. Binani Cement Ltd. Birla Corporation Ltd. Cement Manufacturing Co. Ltd. Century Textiles & Inds. Ltd. Chettinad Cement Corpn. Ltd. Deccan Cements Ltd. Dhar Cement Ltd. Greygold Cements Ltd. Gujarat High Tech Inds. Ltd. Gujarat Sidhee Cement Ltd. Heidelberg Cement India Ltd. Hemadri Cements Ltd. India Cements Ltd. Keerthi Industries Ltd. Lafarge India Pvt. Ltd. Lemos Cements Ltd. Malabar Cements Ltd. Mangalam Cement Ltd. Meghalaya Cement Ltd. My Home Inds. Ltd. N C L Industries Ltd. Namo Cements Ltd. Narmada Cement Co. Ltd. Penna Cement Inds. Ltd. Rain Commodities Ltd. Ramco Industries Ltd. Rishi Cement Co. Ltd. Sagar Cements Ltd. Sainik Finance & Inds. Ltd. Sanghi Industries Ltd. Saurashtra Cement Ltd. Shaktiman Cements Ltd. Shiva Cement Ltd. Shree Digvijay Cement Co. Ltd. Shri Hariganga Cement Ltd. Snhehadhara Industries Ltd. Sorabh Cement Ltd. Sparta Cements & Infra Ltd. Sri Vishnu Cement Ltd. Srichakra Cements Ltd. Sudarshan Cement & Multiprojects Ltd. Tata Chemicals Ltd. Ultratech Cement Ltd. Vinay Cements Ltd. Virgo Cements Ltd. Visaka Cement Industry Ltd. Zuari Cement Ltd.
Plant capacity: 75000 MT/AnnumPlant & machinery: 433 Lakhs
Working capital: -T.C.I: Cost of Project : 727 Lakhs
Return: 43.00%Break even: 58.00%
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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
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  • 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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