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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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COAL BASED POWER PLANT (500 MW) - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost & Revenue

Power Generation is an essential requirement of economic growth of a country. A weak power infrastructure does not lead to the growth potential and pulls. Generation involves with the production of power, and transmission and distribution function is of carrying the generated power to the doorsteps of the consumers. In the infrastructure sector, power has special significance. The growth rate of demand for power in developing countries is generally higher than that of gross domestic product (GDP). In India, the elasticity ratio (percentage increase in demand for power per cent growth in the GDP) was 3.06 in the first plan, and peaked to 5.11 during the third plan, and came down to 1.65 in the eighties. For the nineties, a ratio of around 1.5 is estimated. Thus, at present, it is more than 10 per cent. The demand for power has always been ahead of supply. From an installed capacity of around 1400MW at the time of independence the present installed capacity is 142,194.84MW as on around 43000 MW. The National Electricity Policy envisages "Power for all by 2012" and the per capita availability of power to be increased to over 1,000 units by 2011-12 from current level of about 644 units. To attain this, a total capacity addition of about 100,000MW was projected during 10th and 11th plan period. To meet the energy generation requirement of 1,029MU and a peak load of 152,746MW, with diversity and 5% spinning reserve, an additional capacity of 83,000MW is required during 11th plan. Meeting the additional requirement of 83,000MW would entail taking advantage of all economically viable sources of energy and working out a suitable strategy of energy mix with a view to gain the optimum advantage. India's current installed capacity (142,195MW) constitutes as under; 64% of thermal, 25% of hydro, 8% of renewable 3% of nuclear fuel. Coal is expected to be the mainstay of power generation in the years to come. Thermal projects with total capacity of 46,635MW of coal-based and 1,375MW lignite-based capacity have been identified for capacity addition during 11th plan. There is an ample space and good scope for new entrepreneurs to venture in power projects. Few Indian Major Players are as under: A D Hydro Power Ltd. Aban Energies Ltd. Aban Power Co. Ltd. Abohar Power Generation Ltd. Adani Power Dahej Ltd. Adani Power Ltd. Adani Power Maharashtra Ltd. Adani Power Rajasthan Ltd. Alaknanda Hydro Power Co. Ltd. Almi Hydro-Electric Projects Ltd. Andhra Pradesh Gas Power Corpn. Ltd. Andhra Pradesh Power Generation Corpn. Ltd. Andhra Valley Power Supply Co. Ltd. Ansal A P I Power Ltd. Arasmeta Captive Power Co. Pvt. Ltd. Asia Bioenergy (India) Ltd. Asian Renewable Energy Pvt. Ltd. Atria Power Corpn. Ltd. Auro Energy Ltd. Avantha Power & Infrastructure Ltd. Ayyappa Hydro Power Ltd. B F Utilities Ltd. B P L Power Projects (A P) Pvt. Ltd. B S E S Andhra Power Ltd. B S E S Kerala Power Ltd. Bahur Power Co. Pvt. Ltd. Baledh Energy Projects Ltd. Bhander Power Ltd. Bhartiya Rail Bijlee Co. Ltd. Bhilai Electric Supply Co. Pvt. Ltd. Bhilwara Energy Ltd. Bhoruka Power Corpn. Ltd. Bhushan Energy Ltd. Bina Power Supply Co. Ltd. Brahmanvel Energy Ltd. C E S C Ltd. Cauvery Hydro Energy Ltd. Central India Power Co. Ltd. Chambal Energy (Chhattisgarh) Ltd. Chambal Energy (Orissa) Ltd. Chhabra Power Ltd. Chhattisgarh Electricity Co. Ltd. Coastal Tamil Nadu Power Ltd. D C M Shriram Thermal Energy Ltd. D C W Power Corporation Ltd. D L F Power Ltd. D P S C Ltd. D S L Hydrowatt Ltd. Dabripada Energy Ltd. Dakshin Haryana Bijli Vitran Nigam Ltd. Damodar Valley Corpn. Dheeru Powergen Pvt. Ltd. Dholpur Gas Power Ltd. Divyansh Powergen Pvt. Ltd. Durgapur Projects Ltd. East West Power Generation Co. Ltd. Emco Energy Ltd. Emco Power Ltd. Empee Power Co. (India) Ltd. Enercon (India) Ltd. Enercon Wind Farms (Karnataka) Pvt. Ltd. Enercon Windfarms (India) Ltd. Energy Development Co. Ltd. Essar Electric Power Devp. Corpn. Ltd. Essar Power (Orissa) Ltd. Essar Power Ltd. Essar Power M P Ltd. Eswind Green Power Ltd. Facor Power Ltd. Finolex Energy Corpn. Ltd. G I Power Corpn. Ltd. G M R Energy Ltd. G M R Mining & Energy Pvt. Ltd. G M R Power Corpn. Pvt. Ltd. G S P C Pipavav Power Co. Ltd. G V K Gautami Power Ltd. G V K Industries Ltd. G V K Power & Infrastructure Ltd. G V K Power (Goindwal Sahib) Ltd. Gati Infrastructure Ltd. Ghogarpalli Integrated Power Co. Ltd. Giral Lignite Power Ltd. Global Energy Ltd. Goriganga Hydro Power Pvt. Ltd. Greenview Power Projects Ltd. Gujarat Energy Transmission Corpn. Ltd. Gujarat Industries Power Co. Ltd. Gujarat N R E Power Ltd. Gujarat Paguthan Energy Corpn. Pvt. Ltd. Gujarat State Electricity Corpn. Ltd. Gujarat State Energy Generation Ltd. Gujarat Windfarms Ltd. H P L Cogeneration Ltd. Haryana Power Generation Corpn. Ltd. Hateshwari Om Power Enterprises Pvt. Ltd. Hemavathy Power & Light Pvt. Ltd. Himachal Pradesh State Electricity Board Himachal Sorang Power Pvt. Ltd. Hindustan Powergen Ltd. Hirakud Power Co. Ltd. I L & F S Wind Farms Ltd. Icomm Energy Ltd. Ind-Barath Energies Ltd. India Wind Power Ltd. Indiabulls Hydro Electric Power Ltd. Indiabulls Power Generation Ltd. Indiabulls Power Ltd. Indiabulls Power Services Ltd. Indo Lahari Bio Power Ltd. Indowind Energy Ltd. Indraprastha Power Generation Co. Ltd. Industrial Energy Ltd. Industrial Power Infrastructure Ltd. Industrial Power Utility Ltd. Ispat Energy Ltd. J R Power Gen Pvt. Ltd. J S W Energy (Ratnagiri) Ltd. J S W Energy (Vijayanagar) Ltd. J S W Energy Ltd. Jaiprakash Power Ventures Ltd. Jaiprakash Power Ventures Ltd. Jalashaayi Alamparathodu Hydro Power Ltd. Jambhora Energy Projects Ltd. Jamshedpur Power Co. Ltd. Jaypee Karcham Hydro Corpn. Ltd. Jaypee Powergrid Ltd. Jhabua Power Investments Pvt. Ltd. Jhabua Power Ltd. Jharkhand Integrated Power Ltd. Jindal India Power Ventures Ltd. Jindal India Thermal Power Ltd. Jindal Power Ltd. Joiner Hydro Power Projects Ltd. K P C Bidadi Power Corpn. Pvt. Ltd. K S K Dibbin Hydro Power Pvt. Ltd. K S K Narmada Power Co. Pvt. Ltd. K S K Vidarbha Power Co. Pvt. Ltd. Kamarhatty Power Ltd. Kameng Dam Hydro Power Pvt. Ltd. Kanti Bijlee Utpadan Nigam Ltd. Karma Energy Ltd. Karnataka Power Corpn. Ltd. Kasargod Power Corpn. Ltd. Kaveri Gas Power Ltd. Kaya Hydropower Projects Ltd. Kerala State Electricity Board Khandesh Energy Projects Ltd. Kinnera Power Co. Ltd. Kirloskar Power Supply Co. Ltd. Konark Met Coke Ltd. Konaseema Gas Power Ltd. Korba West Power Co. Ltd. Kurnool Power Projects Ltd. L & T Power Invsts. Pvt. Ltd. L & T Uttaranchal Hydropower Ltd. L V S Power Ltd. Lanco Green Power Pvt. Ltd. Lenus Power Ltd. M S M Energies Ltd. M S M Energy Ltd. Maa Usha Urja Ltd. Madkini Hydro Power Pvt. Ltd. Maharashtra State Electricity Board Maharashtra State Power Generation Co. Ltd. Maithon Power Ltd. Malana Power Co. Ltd. Malanpur Captive Power Ltd. Megha Technical & Engineers Pvt. Ltd. Meghalaya Power Ltd. Meghalaya State Electricity Board Meghmani Energy Ltd. Monnet Power Co. Ltd. Monnet Power Ltd. Mundra Power Sez Ltd. Murdeshwar Power Corpn. Ltd. My Home Power Ltd. N C C Power Corpn. Ltd. N C C Power Projects Ltd. N C L Energy Ltd. N H D C Ltd. N H P C Ltd. N L C Tamil Nadu Power Ltd. N S L Sugars Ltd. N T P C Hydro Ltd. N T P C Ltd. N T P C-S A I L Power Co. Pvt. Ltd. Nava Bharat Energy India Ltd. Nava Bharat Ventures Ltd. Neyveli Lignite Corpn. Ltd. Niskalp Energy Ltd. Non-Con Energies (India) Ltd. North Eastern Electric Power Corpn. Ltd. Northern Power Distribution Co. Of Andhra Pradesh Ltd. Nuclear Power Corpn. Of India Ltd. Om Shakthi Renergies Pvt. Ltd. Omaxe Powers Pvt. Ltd. Orient Green Power Co. Ltd. Orissa Hydro Power Corpn. Ltd. Orissa Integerated Power Ltd. Orissa Power Generation Corpn. Ltd. Patan Wind Energy Ltd. Patel Energy Ltd. Penna Electricity Ltd. Pentafour Solec Technology Ltd. Pioneer Wincon Pvt. Ltd. Pipavav Power Devp. Co. Ltd. Pragati Power Corpn. Ltd. Pravara Renewable Energy Ltd. Punjab Biomass Power Ltd. Punjab Genco Ltd. Punjab State Electricity Board R B C Motors India Ltd. R D F Power Projects Ltd. Raj West Power Pvt. Ltd. Rajasthan Rajya Vidyut Utpadan Nigam Ltd. Rajasthan Renewable Energy Corpn. Ltd. Ratnagiri Gas & Power Pvt. Ltd. Reliance Energy Trdg. Ltd. Reliance Infrastructure Ltd. Reliance Power Ltd. Reliance Utilities & Power Pvt. Ltd. Renewable Energy Systems Ltd. Renusagar Power Co. Ltd. Res Photovoltaics Ltd. Roshni Powertech Ltd. S I L Business Enterprises Ltd. S J V N Ltd. S L S Power Inds. Ltd. S M C Power Generation Ltd. S T I India Vidyut Ltd. Sagar Power Ltd. Sai Regency Power Corpn. Pvt. Ltd. Sakhigopal Integrated Power Co. Ltd. Saptashva Solar Ltd. Satya Maharshi Power Corpn. Ltd. Selco International Ltd. Selene Power Co. Ltd. Sentia Thermal Power & Infrastructure Ltd. Serida Power Ltd. Shapoorji Pallonji Infrastructure Capital Co. Ltd. Shivani Power Spinners Ltd. Shree Maheshwar Hydel Power Corpn. Ltd. Shriram Non Conventional Energy Ltd. Sikkim Hydro Power Ventures Ltd. Simhapuri Energy Pvt. Ltd. South Asian Agro Inds. Ltd. Southern Energy Devp. Corpn. Ltd. Spectrum Power Generation Ltd. Spic Electric Power Corpn. Pvt. Ltd. Sree Adi Sakthi Mukkuttathode Hydro Power Ltd. Sree Kailas Palchuram Hydro Power Ltd. Sree Rayalaseema Power Corpn. Ltd. Sri Panchajanya Power Pvt. Ltd. Sriba Industries Ltd. Srivathsa Power Projects Ltd. Subhash Kabini Power Corpn. Ltd. Sun Source (India) Ltd. Sundram Non-Conventional Energy Systems Ltd. Supreme Renewable Energy Ltd. Surana Green Power Ltd. Suryachakra Global Enviro Power Ltd. Suryachakra Power Corpn. Ltd. Synergy Shakthi Renewable Energy Ltd. T C P Ltd. Tamil Nadu Electricity Board Tamil Nadu Inds. Captive Power Co. Ltd. Tata Hydro-Electric Power Supply Co. Ltd. Tata Power Co. Ltd. Teesta Urja Ltd. Tehri Hydro Devp. Corpn. Ltd. Terra Energy Ltd. Tidong Hydro Power Ltd. Torrent Energy Ltd. Torrent Pipavav Generation Ltd. Torrent Power A E C Ltd. Torrent Power Ltd. Torrent Power S E C Ltd. Triton Energy Ltd. Tulsyan Power Ltd. U H L Power Co. Ltd. U P Hydro Projects Ltd. Upper Bari Power Generation Ltd. Uttar Haryana Bijli Vitran Nigam Ltd. Uttar Pradesh Rajya Vidyut Utpadan Nigam Ltd. V S Lignite Power Pvt. Ltd. Vadinar Power Co. Ltd. Vamshi Industrial Power Ltd. Vamshi Industries Ltd. Veer Energy & Infrastructure Ltd. Vemagiri Power Generation Ltd. Vennar Ceramics Ltd. Vidarbha Power Ltd. Videocon Power Ltd. Wardha Power Co. Ltd. Warora Power Co. Ltd. Websol Energy Systems Ltd. West Bengal Power Devp. Corpn. Ltd. West Bengal State Electricity Board Western Alliance Power Ltd. Youngthang Power Ventures Ltd.
Plant capacity: 500 MWPlant & machinery: 143200 Lakhs
Working capital: -T.C.I: Cost of Project : 158700 Lakhs
Return: 56.00%Break even: 25.00%
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DEHYDRATED ONION & ONION POWDER - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost of Project

Dehydrated Onions have been produced in small quantities since the nineteenth century. Onion is an important vegetable crop grown in India and forms a part of daily diet in almost all households throughout the year. India is the second largest producer of onion in the world. Onion is one of the most important but perishable groups known. It is also used for medical purpose. But due to non-availability of appropriate post-harvest storage facilities, 20-25% of the total produced onions are wasted, which in terms of value amounts to crores of rupees. Unprocessed foods are susceptible to spoilage by biochemical processes, microbial attack and infestation. The right post harvest practices such as good processing techniques, and proper packaging, transportation and storage (of even processed foods) can play a significant role in reducing spoilage and extending shelf life. Among various methods of preservation, dehydration of vegetables is one of the most popular and oldest methods. Dehydration increases the storage period of vegetables and make them available throughout the year and even in off-season, thus supplying the important nutrients in a concentrated form. Dehydrated foods are more concentrated source of minerals than any other preserved form of foodstuff. Almost all dehydrated onion products like-kibbled, sliced, rings (half & full), large kibbled, minced (in various cut sizes), chopped, granulates and powder forms are not new to households & restaurants. It has good potential in food processing industries, defense, pharmaceutical industries, hotels and restaurants, caterers, etc. In the food processing field, dehydration is sometimes described as the removal of 85% or more of water from a food substance, by exposure to thermal energy by various means. The main advantages of dehydrated onions are that they are easy to store, being lighter in weight and smaller in bulk than fresh or other processed onions. They are cheap to pack compared with canned goods. They do not require refrigerated storage as do frozen onions and the contents of a container can be used some time after opening provided they are not dehydrated. Dried onion is now available in market in the powdered or kibled form. The composition of the fresh and dried forms is given. The kibbled form has moisture content of about 10% microscopically onion powders shows abundant parent chymatous cells. In India dehydration of many food products especially vegetables and some fruits are in practices at home and industry level throughout year. As a whole the products have fair market demand. There is a good scope and good market potential in such products and new entrepreneurs should venture in such projects. Capacity : 1800 MT/Annum 900 MT/Annum Dehydrated Onion (Chopped and Sliced) 900 MT/Annum (Dehydrated Onion Powder)
Plant capacity: 1800 MT/Annum Plant & machinery: 224 Lakhs
Working capital: -T.C.I: 672 Lakhs
Return: 44.00%Break even: 41.00%
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HOSPITAL (30 BEDS) - Detailed Project Report, Profile, Business Plan, Trends, Market Research, Survey, Feasibility Study, Investment Opportunities, Cost and Revenue, Plant Economics, Working Capital Requirement, Plant Layout, Cost of Project

The growth in the health care services in the country is primarily driven by the 350 million strong middle class people aspiring for quality health care services, thus increasing international confidence on India as a potential, high quality and low cost medical tourism destination. According to the WHO report, India needs to add 80,000 hospital beds each year for the next five years to meet the demands of its growing population. High quality talent pool, proven track record, favourable government policies, ability to deliver health care services at low cost and high quality infrastructure has put India on the global map for outsourcing various health care related services. This has been further intensified by Government of India’s recent budget declarations, where enough emphasis has been given on setting up of health care delivery infrastructure mainly in Tier – I & Tier – II cities. In view of the aforementioned studies, Indian health care delivery industry is upbeat about the future of hospitals in the country. The Indian health care industry is in the growth path. While the manufacturing segment constitutes 47%, the services segment constitutes 53% of the Rs. 1736 billion industry (organized players) as at the end of 2007. The industry is growing at a CAGR of 13% to reach Rs. 3200 billion by 2012. Independently, the medical devices industry is expected to touch USD 4.98 billion by 2012, from USD 2.18 billion of 2007 (as per Ernst and Young study for CII), and the Indian pharmaceutical industry is projected to grow to USD 25 billion by 2010 (as per McKinsey study). The services segment, on the other hand, is expected to touch Rs. 1700 billion by 2012. The market size for the organized hospitals by the end of 2007 was between Rs 400 billion to Rs. 450 billion. There are already centers of excellence in India which have advanced facilities for Neurosurgery and Neuroscience, the most part of India with more than 300 million people, is very poorly provided for. Patients with neurological illness travel long distances to reach these advanced centers and obtain the treatment that they need. Many patients are however either unable to afford the costs of the journey across the country, or are suffering from such conditions, that make transfer impossible. Consequently thousands of patients, many of them young, are dying or becoming permanently disabled as a result of neurological diseases, which in other circumstances would be curable. A hospital's over arching goal is to provide patients compassionate care while working to develop new treatments that will lessen the toll of disorders. There is a very good scope in such projects in the long run. New entrepreneurs should venture into this segment.
Plant capacity: 30 Bedded (Special Ward 10 Bedded),(General Ward 20 Bedded)Plant & machinery: 5153 Lakhs
Working capital: -T.C.I: 7211 Lakhs
Return: 33.00%Break even: 47.00%
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QUININE SULPHATE FROM CINCHONA BARK - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Quinine sulfate belongs to the anti-malarial category of drugs and it is the sulfate of an alkaloid obtained from the bark of species of Cinchona. The bark of cinchona produces several alkaloids. The most important alkaloid, quinine, has certain febrifuge properties. Of 38 species of cinchona, four species have economic value for the production of quinine: C. calisaya, C. legeriana, C. officianalis and C. succirubra. It contains not less than 99 percent and not more than 101 percent of total alkaloid salt, calculated as (C20H24N2O2)2•H2SO4, on the anhydrous basis. Cinchona trees remain the only practical source of quinine. Cinchona is a genus of tropical evergreen trees and shrubs, belonging to the family Rubiaceae. Not all species of cinchona can be used to produce quinine. Quinine is the chief alkaloid of cinchona bark (known as 'Fever Bark'), a tree found in South America. It is a natural white crystalline alkaloid having antipyretic (fever-reducing), antimalarial, analgesic (painkilling), anti-inflammatory properties and a bitter taste. It is a stereoisomer of quinidine which, unlike quinine, is an anti-arrhythmic. Quinine contains two major fused-ring systems: the aromatic quinoline and the bicyclic quinuclidine. In 1820, Pelletier and Caventou isolated quinine and cinchonine from cinchona. Though it has been synthesized in the lab, the bark of the cinchona tree is the only known natural source of quinine. Even today, quinine is obtained entirely from the natural sources due to the difficulties in synthesizing the complex molecule. The Indian pharmaceutical industry is the fourth largest in the world in terms of volume of output and thirteenth in domestic demand. The growth has been driven by many factors, such as legislative reforms, growth in contract manufacturing and outsourcing, value added foreign acquisitions and joint ventures and India's acu-men and expertise in reverse engineering of patented drug molecules. India has, in the meantime, been trying to comply with the World Trade Organization's Trade Related Intellectual Property Agreement (TRIPs) obligations. There is a very good scope for new entrepreneurs in this sector.
Plant capacity: 60 MT/AnnumPlant & machinery: 497 Lakhs
Working capital: -T.C.I: Cost of Project : 747 Lakhs
Return: 45.00%Break even: 54.00%
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POTATO POWDER, FLAKES & GRANULES WITH COLD STORAGE - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Production Schedule

Potato is considered to be one of the traditional food items of India. Potato is the staple food for 2/3rd of the world population. India is presently the 3rd largest potato growing country in the world. Potato is one of the important tuber vegetables, which is consumed throughout the year. Its Botanical name is Solanum tuberosum. The main edible part is its tuber. Potato is one of the most important but perishable groups known. Unprocessed foods are susceptible to spoilage by biochemical processes, microbial attack and infestation. The right post harvest practices such as good processing techniques, and proper packaging, transportation and storage (of even processed foods) can play a significant role in reducing spoilage and extending shelf life. Among various methods of preservation, dehydration of vegetables is one of the most popular and oldest methods. Dehydration increases the storage period of vegetables and make them available throughout the year and even in off-season, thus supplying the important nutrients in a concentrated form. Dehydrated foods are top-quality biological products and foods, picked in the peak of their ripeness and after cleaning and trimming, dehydrated with 98% of their moisture taken out. Dehydrated foods are more concentrated source of minerals than any other preserved form of foodstuff. Almost all dehydrated potato products like flakes, granulates and powder forms are not new to households & restaurants. It has good potential in food processing industries, defenses, pharmaceutical industries, hotels and restaurants, caterers, etc. Potato powder, Granules and flakes are processed dehydrated potato products. The processing of potatoes increases the shelf life of potatoes. There are various machines which are required for the processing of potatoes. Most of the machines are indigenously available & very few of them may be imported. There are plenty of well varieties of potato available for processing. There are few good technologists available, for supplying process technology. There is environmental pollution problem within this industry but can be solved using proper treatment. As a whole the products have fair market demand. There is a good scope for new entrepreneurs. Few Indian Major Players are as under: Tipsy-Topsy Exports Superveg Agrotech Pvt. Ltd. Sifter International Nile Valley Company Rice, Spice and Paper Inc.
Plant capacity: 14400 MT Potato Powder,14400 MT Potato Flakes,6000 MT Potato GranulesPlant & machinery: 12900 Lakhs
Working capital: -T.C.I: Cost of Project : 15800 Lakhs
Return: 44.00%Break even: 34.00%
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SYNTHETIC IRON OXIDE FROM IRON OXIDE LIQUOR/SLUDGE BY LAUX PROCESS (RED, YELLOW, GREEN, BLUE) - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials

Pigments are a group of insoluble colorants in form of finely ground solid particles that are mixed with a liquid to be applied in printing inks, oil and water based paints and plastics. There are two major types of pigments- organic and inorganic. Organic ones are obtained widely from the plant and animal kingdoms. They contain carbon in them. They are also produced synthetically through complex carbon-containing chemistry involving different materials such as petroleum, coal tar and natural gas. Inorganic Pigments are produced either from naturally mined materials such as sienna, umber and ochre or from synthetically manufactured materials like iron oxide, carbon black, etc. Sometimes they are produced by combining both of these processes. Synthetic red Iron Oxide Pigments were first made in a Laboratory setting by the 18th century. These pigments were given the name Mars Red. These pigments contained all the properties of their counterparts, i.e. Natural Iron Oxide Pigments. These properties included durability, permanence etc. From 19th century, the manufacturing of these synthetic iron oxide pigments started on regular basic. Gradually, the improvements have been taken place with every production process. In the early 1920, the yellow synthetic iron oxide pigments (Mars Yellow) were produced for the first time. Vital improvement processes have been taking place along with its production. By modifying the manufacturing processes of Mars Red and Mars Yellow, the manufacturing process of Brown Iron Oxide Pigments has been evolved. The common colors of these pigments are orange, red brown and yellow. Basic chemicals are used for manufacturing of synthetic iron oxide pigments. To produce synthetic iron oxide pigments, iron salts or iron compounds are decomposed. By precipitating of iron salts and reducing the organic compounds by iron, pigments of synthetic iron oxide can be prepared. The total volume of global market for inorganic, organic and special pigments was approximately 7.4 million tons in 2006. This volume will rise to 9.8 million tons by 2016 which is growing at a rate of 2.9% pa. Today, there is a lot of varieties of Synthetic Iron Oxide Pigments are available in the market. These synthetic pigments are found in different colors, having superior uniformity, excellent quality and high purity. The synthetic iron oxide pigments are best for tile, paper, paint, primer. Over the years, the market of iron oxide has grown at a composite rate of 2-4% per year, and even though there have been exponential ups & downs, this rate have been steady. These iron oxide pigments are extensively used for fulfilling the requirements of fields like construction, coatings, ceramics, paint, ink, rubber, plastics, and cosmetics and the major markets for colors and pigments include textiles, printing inks, plastics, paints and coatings. The other markets include ceramics, glass and minerals, leather; toner, cosmetics and toiletries, paper and paperboard etc. There is a very good scope for new entrepreneurs to venture in this field. Few Indian Major Players are as under: Adi Rasayan Ltd. Amal Ltd. Anirox Pigments Ltd. Clariant Chemicals (India) Ltd. Coltech Chemicals (India) Ltd. Dynamic Industries Ltd. Geecee Ventures Ltd. Gharda Chemicals Ltd. Iota Chemiculture Ltd. Jaysynth Dyestuff (India) Ltd. Jaysynth Impex Ltd. Jesons Industries Ltd. Jyoti Resins & Adhesives Ltd. Lambodar Investments & Trading Co. Ltd. Lona Industries Ltd. Mazda Colours Ltd. Meghmani Organics Ltd. Micro Inks Ltd. Omni Dye-Chem Exports Ltd. Oxides & Specialities Ltd. Pigment Specialities India Ltd. Pigments India Ltd. Pratiksha Chemicals Ltd. Riverside Industries Ltd. Shreyas Intermediates Ltd. Sudarshan Chemical Inds. Ltd. Swastik Oxides Ltd. Tata Pigments Ltd. Vanavil Dyes & Chemicals Ltd. Capacity : 375 MT Red SIOP/Annum 375 MT Yellow SIOP/Annum 375 MT Orange SIOP/Annum 375 MT Brown SIOP/Annum
Plant capacity: -Plant & machinery: 146 Lakhs
Working capital: -T.C.I: Cost of Project : 507 Lakhs
Return: 42.00%Break even: 50.00%
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TAURINE - 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

Taurine, or 2-aminoethanesulfonic acid, is an organic acid. It is a major constituent of bile and can be found in the lower intestine and, in small amounts, in the tissues of many animals, including humans. Taurine is a derivative of the sulfur-containing (sulfhydryl) amino acid cysteine. Taurine is one of the few known naturally occurring sulfonic acids. Taurine is possibly best known as a health supplement, and is used in a variety of products. Bodybuilders take supplements of taurine coupled with creatine which may help in reducing muscle fatigue and soreness. Energy drinks, which are becoming hugely popular, especially among the teen and young adult set, often list taurine as one of its main supplemental ingredients. Applications: The main use of taurine is in infant formula to make it more like human milk (cow's milk is deficient in taurine). Taurine is also used in a wide variety of different functional drinks, ranging from "smart drinks" to "energy tonics" and is often used in conjunction with caffeine. Taurine is used in milk, dairy products, beverages, supplements, complex monosodium glutamate and certain specific foods. In the recent research on the effect of taurine on human intelligence and health, it has been discovered that taurine plays an active role in promoting the development of brain, maintaining the physiological functions of retina, regulating the conduction of nerve, enhancing the absorption and the acid- base metabolism of gall and promoting the functions of heart, liver and internal secretion. Emerging application: The new applications include that taurine can be used to treat “hangover” symptoms caused by excessive drinking and help the treatment of anxiety disorders and obesity. In the future, the demand from weight control food and alcoholism preventing health care products will drive the continuing growth of the international taurine consumption. A deficiency may impair vision and problems with fat metabolism may appear. Synthetic taurine is obtained from isethionic acid (2-hydroxyethanesulfonic acid), which in turn is obtained from the reaction of ethylene oxide with aqueous sodium bisulfite. Another approach is the reaction of aziridine with sulfurous acid. This leads directly to taurine. The global demand for taurine is in the region of 100 000 tonnes per annum and It is expected that the annual growth rate of the international taurine market will reach 15% in the few years. The import of taurine to India is around 11-12 MT per annum. There is an ample space and market for this product. Major taurine producers:Hubei Qianjiang Yongan Pharmaceutical Co., Ltd, China, Hubei Fu Chi chemical Pharmaceutical Co., Ltd,China , Changshu Renoke Food-additive Science Co., Ltd, China and others.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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GLYCERIN - 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

Glycerin is a simple polyol compound. It is a colorless, odorless, viscous liquid that is widely used in pharmaceutical formulations. Glycerol has three hydrophilic hydroxyl groups that are responsible for its solubility in water and its hygroscopic nature. The glycerol backbone is central to all lipids known as triglycerides. Glycerol is sweet-tasting and of low toxicity. Glycerin is a 3 carbon polyol. It is an inevitable constituent of all animal and vegetable oils and fats. It is a product with many applications in pharmaceuticals and cosmetics. It is also a chemical intermediary in adhesives, tensio-actives and explosives. It is extracted chemically from castor oil before cracking. Glycerin is also a by-product in soap and oleochemical production, using natural fats and oils as raw materials or as a by-product in biodiesel production, during transesterification of vegetable oils into methyl esters. It is a clear, water-white, viscous, sweet tasting hygroscopic liquid. Crude glycerine is an essential by-product obtained from the manufacture of soaps, fatty acids, fatty alcohols and fatty acids methyl esters. After refining, glycerine will be used in many applications which cover pharmaceutical, cosmetics/toiletries, resins, cellulose films, paper, polyols, tobacco, food and drink, esters, nitration and other chemical uses and applications. Glycerin is an important raw material used in the manufacture of synthetic resins, namely alkyd resins and explosives. It is also used in the manufacture of lubricants, drugs, plasticizers, etc. In foods and beverages, glycerol serves as a humectant, solvent and sweetener, and may help preserve foods. It is also used as filler in commercially prepared low-fat foods and as a thickening agent in liqueurs. Glycerol is also used to manufacture mono- and di-glycerides for use as emulsifiers, as well as polyglycerol esters going into shortenings and margarine. The market for glycerine in domestic and international market is good. Some of the highest quality glycerin produced in the world is supplied by Malaysia and Indonesia. Glycerine competes in the market with other products such as sorbitol, glycols and many polyols from petrochemical feedstocks. If glycerine prices drop dramatically, also these products will be confronted with the unfair competitive situation created by the reduction in excise duties. Price of glycerin has increased in recent times,largely due to increase in vegetable oil prices. The forecast growth for glcerine is around 2.2% per year, driven mainly by personal care and food products. Good solubility, taste and lower pricing give glycerin an edge on sorbitol in toothpastes and mouth washes. Glycerin is used in food products either directly or as one of its derivatives, such as glycerol mono-stearate. The demand for glycerin in the food sector is growing as a result of the continuing trend toward lowering the fat content in foods. There is a very good scope for this product and new entrepreneurs should venture into this field.
Plant capacity: ---Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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ASEPTIC PAPER - 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

Aseptic packaging systems have fundamentally changed the handling of sensitive liquid foods. Distribution and storage no longer require refrigeration, with the result that the shelf life of the package contents is considerably extended. The need for aseptic packaging is rapidly increasing and the system has proved to be invaluable in the distribution of milk and other products. Today, two thirds of Tetra Pak packages are aseptic. Aseptic packaging systems have played a vital role in providing people all over the world with essential nourishment. Aseptic packaging can be defined as the filling of a commercially sterile product into a sterile container under aseptic conditions and hermetically sealing the containers so that reinfection is prevented. This results in a product, which is shelf-stable at ambient conditions. The term “aseptic” is derived from the Greek word septicos which means the absence of putrefactive micro-organisms. Aseptic paper comprises of liquid paper board (type of paper) and four or five layers of low-density polyethylene and one thin layer of aluminum foil. The structure of aseptic paper is made by extrusion and laminating machines that combine the paper with the other layers of plastic and aluminium foil. Generally, liquid paper board represents 75% of the total weight of the package. Aluminium foil accounts for 5% of the total weight and polyethylene layer accounts for 20% of the total weight. In practice, generally there are two specific fields of application of Aseptic packaging technology: Packaging of pre-sterilized and sterile products. Examples are milk and dairy products, puddings, desserts, fruit and vegetable juices, soups, sauces, and products with particulates. The second is packaging of non-sterile product to avoid infection by micro-organisms. Examples of this application include fermented dairy products like yoghurt. The demand for aseptic liquid foods is growing, especially in Asia and in Eastern Europe and South America. The fastest growth rate in the emerging markets is particularly China. Aseptic packaging technology will be oriented to high-tech integration, high reliability and high speed and extend its applications to a diversity of industrial sectors. On the other hand, as an important approach to achieve technology advancement in the beverage industry, aseptic cold filling technology will see a rapid growth. The demand is increasing for new aseptic fillers of bottles, paper, and plastic for added value dairy products, both ambient and chilled. Lower total costs of operation and increased system flexibility are the main benefits of aseptic packaging to filling companies. The most rapidly growing application is for plastic pouches and continued growth of around 15% per year is forecast upto 2013 for plastic pouches. Much of this growth will be in China, although there will be an increased use of the pack type in other developing markets. The average annual growth rate (AAGR) for aseptic packaging in the coming year 2013 in packs will be around 5.9% per annum. The leading producers of aseptic paper are Tetrapak, followed by SIG Combibloc and Elopak. The market structure is highly concentrated with the above three organizations (Tetrapak, Combibloc and Elopak). These three units account for almost all liquid carton packaging board demand in the European Economic Association (EEA). Thus aseptic packaging is very well accepted in food service applications worldwide as a safe and high-quality packaging option.
Plant capacity: ---Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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CELLULOSE ACETATE - 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

Cellulose acetate is a man-made substance that is derived from the naturally occurring organic compound - cellulose. Cellulose is the main structural ingredient of plants, and is usually considered to be the most common organic compound on earth. Cellulose acetate fibres are used for textiles and clothing. Cellulose acetate is also used in filtering and other applications like magnetic computer tape, wound dressings, personal hygiene products, absorbent cloths and wipes, as specialty papers, as filter media, including cigarette filters etc. Such materials are often referred to as “tow”. Cellulose acetate film is also used in photography. Cellulose acetate polymers have some good properties like good toughness, deep gloss, and high transparency with a feel that can be described as “natural”. Commercially, cellulose acetate is made from processed wood pulp. The pulp is processed using acetic anhydride to form acetate flake from which products are made. Coming from wood pulp, means that unlike most man-made fibres, it comes from a renewable resource and is biodegradable. Another technique for producing cellulose acetate involved treating cotton with acetic acid, using sulfuric acid as a catalyst. Cellulose acetate is available in the form of flake, powder, granules of fibre and the flakes, which are non hazardous. Major players profiled in the report include Celanese Corporation, Celanese Acetate, Daicel Chemical Industries, Eastman Chemical Company, Mitsubishi Rayon Company Limited, Primester, Rhodia Acetow GmbH, and SK Chemicals Co. Ltd. Cellulose acetate is a mature product and has experienced a decline in volumes in practically all major world areas except China, Central Europe and Russia during the last several years. New polymers and textiles with enhanced properties have eroded textile fiber applications formerly held by cellulose acetate. It is estimated that the global market will grow at 1 to 2% per year to reach 840,000 to 850,000 tonnes by 2015. The world cellulose acetate fiber market is predominantly controlled by smaller cigarette filter tow manufacturing companies, which are also engaged in the manufacture of textile fibers. There is no production of cellulose acetate in India. Most of the demand is met by imports. Demand for cellulose acetate in all major global markets has matured over the years, while regions such as Russia, Central Europe and China continue to pose large demand for cellulose acetate, largely driven by the growing filter tow market. Healthy growth in the number of smokers in regions such as Eastern and Central Europe, India, China and Latin America is being attributed as a major factor driving growth of tow consumption in these regions. This is directly boosting the cellulose acetate market. Moreover, emergence of newer legislations that demand for lesser emission of nicotine and tar in the smoke are paving way for increased use of filter tows, and the absence of stringent rules and regulations to guide the consumption of cigarettes is further bolstering the demand for cellulose acetate.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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  • One Crore is equivalent to ten million (10,000,000)
  • T.C.I is Total Capital Investment
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