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Best Business Opportunities in Syria, Middle East - Identification and Selection of right Project, Thrust areas for Investment, Industry Startup and Entrepreneurship

We can provide you detailed project reports on the following topics. Please select the projects of your interests.

Each detailed project reports cover all the aspects of business, from analysing the market, confirming availability of various necessities such as plant & machinery, raw materials to forecasting the financial requirements. The scope of the report includes assessing market potential, negotiating with collaborators, investment decision making, corporate diversification planning etc. in a very planned manner by formulating detailed manufacturing techniques and forecasting financial aspects by estimating the cost of raw material, formulating the cash flow statement, projecting the balance sheet etc.

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PACKAGED DRINKING WATER - 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

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 besleri 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 cherio, 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. Leading Brands Bailley, Bisleri, Peppy Minerelli, Trupthi, Kristal, Oasis, Yes, Penguin, Golden Eagle, Stream, Kingfisher, Jaldhara, Pondicherry, Himalayan, Golden Valley Stream, Evion, Aquafina, Perrier, Kinley, Pure Life, Ferra, Relle. Few Indian Major Players are as under: Bikaji Marketing Ltd. Bisil Plast Ltd. Bisleri (India) Pvt. Ltd. Haldiram Marketing Pvt. Ltd. Keventer Agro Ltd. Kothari Products Ltd. Mohan Meakin Ltd. Mount Everest Mineral Water Ltd. N E P C Agro Foods Ltd. Orient Beverages Ltd. Parle International Pvt. Ltd. Pepsico India Holdings Pvt. Ltd. Pondicherry Agro Service & Inds. Corpn. Ltd. S & S Industries & Enterprises Ltd. Southern Agrifurane Inds. Ltd. Sparkle Foods Ltd. Sri Sarvaraya Sugars Ltd. Surat Beverages Ltd. New capacity creation can be thought of for packaged drinking water as there is ample space for new entrepreneurs to venture into this field. Cost Estimation: Capacity : 12000000 Ltrs/Annum Packed in Pouches 250 ml size 18000 Ltrs/Day and Packed in Jars 20 Ltrs Size 22000 Ltrs./Day
Plant capacity: -Plant & machinery: 25 Lakhs
Working capital: -T.C.I: 100 Lakhs
Return: 44.00%Break even: 54.00%
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BATCHING PLANT FOR ASPHALT - 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

Asphalt is a humid, black and extremely thick liquid or semi solid that exists in most crude petroleum and also in a few natural deposits. Asphalt concrete is an important composite substance that is used for the construction of roads. Asphalt is utilized as a binder or glue for the aggregate elements. Asphalt consists of a mix of various sizes of rock, oil, and some other additives like lime. Changing the proportion of the elements causes different design mix. A design mixture for each specific work is selected in accordance with the soil conditions, moisture content, and temperature. The types of asphalt mixing plant normally used are the batch heater and the drum mix. The asphalt mixing plant is a machine used for an efficient mixing of road construction materials. Numerous composite materials, fillers, sand, and binders are combined in a suitable proportion, so that the aggregate material is transformed into a solid material. The raw materials are brought from hoppers to the drum at an accurately designed speed, where these materials are heated. The aggregates are coated by the binder spray. The change in mixture is varied by adjusting the feed rate of the aggregates, binder, and stone dust. The viscosity and temperature of the binder are carefully controlled to ensure production of the asphalt according to the desired specifications. Batch Asphalt Plants literally make Hot Mix Asphalt (HMA) one batch at a time. They have the advantage of being able to taylor each truckload of HMA to exact specifications, whereas a drum asphalt plant generally produces high volumes of the same recipe. Aggregate, RAP and asphalt cement are mixed in a pug mill mixer rather than a drum.
Plant capacity: 384000 MT/Annum Asphalt MixPlant & machinery: 121 Lakhs
Working capital: -T.C.I: 565 Lakhs
Return: 51.00%Break even: 26.00%
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BIO PLASTIC PRODUCTS - 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

Plastics have become an important part of modern life and are used in different sectors of applications like packaging, building materials, consumer products and much more. Plastic packaging is proving to be a major environmental problem. Most of today's plastics and synthetic polymers are produced from petrochemicals. As conventional plastics are persistent in the environment, improperly disposed plastic materials are a significant source of environmental pollution, potentially harming life. The plastic sheets or bags do not allow water and air to go into earth which causes reduction in fertility status of soil, preventing degradation of other normal substances, depletion of underground water source and danger to animal life. In the seas too, plastic rubbish from ropes and nets to the plastic bands from beer packs choke and entangle the marine mammals. In an effort to overcome these shortcomings, biochemical researchers and engineers have long been seeking to develop biodegradable plastics that are made from renewable resources, such as plants. The biodegradable polymers could be an alternative to the conventional plastic materials. The term biodegradable means that a substance is able to be broken down into simpler substances by the activities of living organisms, and therefore is unlikely to persist in the environment. There are many different standards used to measure biodegradability, with each country having its own. The requirements range from 90 per cent to 60 per cent decomposition of the product within 60 to 180 days of being placed in a standard composting environment. Biodegradable plastics or bioplastics are mainly derived from corn, wheat and potato starch. Biodegradable plastics products are thermoplastic materials which are processed with the same machines traditionally used to process conventional plastics. Biodegradable plastic products physical and chemical properties are similar to those of traditional plastics, but it is completely biodegradable in different environments, just like pure cellulose. The demand for bioplastics makes it one of the fastest growing thermoplastic product types globally. Global demand is expected to reach over one billion pounds by 2012. Currently, the biodegradable segment of bioplastics is the largest segment of the bioplastics category, but it is projected to be displaced by the non biodegradable bioplastics group of products, which may or may not be 100% derived from biomass. Packaging, disposable food service and fiber applications are major use areas. Polylactic acid polymer (PLA) demand is growing rapidly in both packaging and fiber applications. Demand for starch based polymers, in a modified form or blended with another polymer such as PLA for biodegradability or with a polyolefin such as polypropylene, will continue to grow. Disposable cutlery and containers are products that are a part of our day to day life. Disposable items like bags, cups, plates, saucers, glasses are being increasingly used. Biodegradable bags are becoming more and more commonly used, because they are better for the environment and most people are concerned about being more green. Though the demand for biodegradable plastics is increasing, acceptance of biodegradable polymers is likely to depend on factors like: Customer response to costs; Possible legislation by governments; and The achievement of total biodegradability Substantial technological progress has been made in bio based plastics in the past five years. Innovations in material and product development, environmental benefits as well as the gradual depletion of crude oil increasingly call for polymers made from renewable raw materials. Bioplastics will raise more than fourfold to 900,000 metric tons in 2013, valued at US$2.6 bln, according to a report by The Freedonia Group. The growth will be fueled by a number of factors, including consumer demand for more environmentally sustainable products, the development of bio based feedstocks for commodity plastic resins and increasing restrictions on the use of non-degradable plastic products, particularly plastic bags. Most important, however, will be the expected continuation of high crude oil and natural gas prices, which will allow bioplastics to become more cost-competitive with petroleum based resins. Non-biodegradable plant based plastics will be the primary driver of bioplastics demand. Biodegradable plastics, such as starch-based resins, polylactic acid (PLA) and degradable polyesters, accounted for the vast majority (nearly 90%) of bioplastics demand in 2008. Double-digit gains are expected to continue going forward, fueled in part by the emergence on the commercial market of polyhydroxy-alkanoates (PHAs). PLA will also see strong advances in demand as new production capacity comes online. Western Europe was the largest regional market for bioplastics in 2008, accounting for about 40% of world demand. Bioplastics sales in the region benefit from strong consumer demand for biodegradable and plant based products, a regulatory environment that favors bioplastics over petroleum resins, and an extensive infrastructure for composting. Demand will grow more rapidly in the Asia/Pacific region, which will surpass the West European market by 2013. Gains will be stimulated by strong demand in Japan, which has focused intently on the replacement of petroleum-based plastics. Europe is leading the way for induction of bioplastics in day to day use. Companies such as Novamont SpA, NatureWorks LLC, and Metabolix, Inc. are entering the market with new bio-based products. Demand for bioplastics is accelerating as more supply of all bioplastic types come into production. Though this product is now at a nascent stage in India but in the long run this product has a very promising future. New entrepreneurs should venture into this field. Cost Estimation: Capacity : 15000000Nos. (Bio Plastic Glasses) 1000000 Nos. (Bio Plastic Plates) 75000 Nos. (Bio Plastic Plastics)
Plant capacity: -Plant & machinery: 166 Lakhs
Working capital: -T.C.I: Cost of Project : 298 Lakhs
Return: 47.00%Break even: 51.00%
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WOODEN TOOTHPICK - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue, Plant Layout

A toothpick is a small stick of wood, plastic, bamboo, metal, bone or other substance used to remove detritus from the teeth, usually after a meal. A toothpick usually has two sharp ends to insert between teeth. They can also be used for picking up small appetizers or as a cocktail stick. There is a large and growing market for toothpicks in domestic as well as globally for example in Nigeria and neighboring African countries. Virtually everybody use toothpicks daily to remove unwanted leftover food stuck to the teeth. Market for this product is readily available and can be sold locally or exported to earn foreign exchange because of its high export potentiality. There is a good scope for new entrepreneurs to start a toothpicks manufacturing unit. Cost Estimation: Capacity : 150000000 Pcs./Annum Tooth Pick of Dia 2.0 to 2.2 mm Length 65 mm 1 Pkt = 1000 Pcs. of tooth pick (500 Pkt./Day)
Plant capacity: -Plant & machinery: 6 Lakhs
Working capital: -T.C.I: 22 Lakhs
Return: 42.00%Break even: 62.00%
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TYRES AND TUBES FOR BICYCLE AND RICKSHAW - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Tyres and Tubes are the backbone of the bicycle and rickshaw. Bicycle and rickshaw continues to be the principal mode of transport for the low and middle income families. This is because the bicycle is both environment and people friendly. India is largest producer of bicycle next to only china. The future of the bicycle industry is bright. However, for survival the companies have to successfully restructure and modernize to achieve global competitiveness in terms of quality, cost and distribution system. The tyre & tube industry is a major consumer of the domestic rubber production. Cycle rickshaw is a local means of finance and also known as pedicarb, cycle or rickshaw in different parts of the world. Cycle rickshaws are human powered i.e. pulled by a person by foot. There is very good domestic as well as export demand of bicycle and rickshaw tyres and tubes. The entrepreneurs venture in to this project will be successful. Few Indian Major Players are as under: Govind Rubber Ltd. Krypton Industries Ltd. Pavan Tyres Ltd. Poddar Tyres Ltd. Ralson (India) Ltd. Ralson Industries Ltd.
Plant capacity: 300000 Nos. Tyres & 300000 Nos. TubesPlant & machinery: 158 Lakhs
Working capital: -T.C.I: Cost of Project : 351 Lakhs
Return: 42.00%Break even: 53.00%
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MANGANESE SULPHATE - 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

Manganese sulphate is commercially one of the most important compounds. It is an important mineral based chemical industry. The main constituent of this industry is manganese obtainable from mines, which can be converted in to manganese sulphate and manganese dioxide. Manganese finds number of uses in various industries like potteries, varnishes, medicines, textile dyeing, fertilizers, wines and many more. The consumption of this chemical is more than 1,50,000 MT per annum. This figure is likely to be increased every year due to coming up more and more manganese sulphate consuming industries. So, there is good scope for new entrants in this industry.
Plant capacity: 600 MT/Annum (Manganese Sulphate)Plant & machinery: 35 Lakhs
Working capital: -T.C.I: 135 Lakhs
Return: 47.00%Break even: 41.00%
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Iron ore Pelletization - 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

Iron ore pellets are spheres of typically 8-18mm (0.31-0.71 inch) to be used as raw material for blast furnace. They typically contain 67-72% Fe and various additional materials adjusting the chemical composition and the metallurgic properties of the pellets. Pellet plants can produce two varieties of pellets: blast furnace pellets and direct reduction (DR pellets) pellets. Blast furnace pellets are used in the coke based blast furnace process, which is most common method of producing hot metal (molten iron for steel making). It is mainly used in steel mills, where as DR pellet are used in the direct reduction processes to produce sponge iron, which is an alternative process route, as an initial stage from iron to steel. There are good demand of iron ore pellets, so new entrepreneurs can well venture in to this field.
Plant capacity: 1200000 MT/AnnumPlant & machinery: 3801 Lakhs
Working capital: -T.C.I: Cost of Project : 6183 Lakhs
Return: 47.00%Break even: 45.00%
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Iron ore Pelletization - 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

Iron ore pellets are spheres of typically 8-18mm (0.31-0.71 inch) to be used as raw material for blast furnace. They typically contain 67 to 72% Fe and various additional materials adjusting the chemical composition and the metallurgic properties of the pellets. Pellet plants can produce two varieties of pellets: blast furnace pellets and direct reduction (DR pellets) pellets. Blast furnace pellets are used in the coke based blast furnace process, which is most common method of producing hot metal (molten iron for steel making). It is mainly used in steel mills, where as DR pellet are used in the direct reduction processes to produce sponge iron, which is an alternative process route, as an initial stage from iron to steel. There are good demand of iron ore pellets, so new entrepreneurs can well venture in to this field.
Plant capacity: 1200000 MT/AnnumPlant & machinery: 3801 Lakhs
Working capital: -T.C.I: Cost of Project : 6183 Lakhs
Return: 47.00%Break even: 45.00%
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SODIUM TRI POLY PHOSPHATE - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue

PRODUCT PROFILE: Sodium triphosphate (STP) is an inorganic compound with formula Na5P3O10. It is the sodiumsalt of the polyphosphate penta anion, which is the conjugate base of triphosphoric acid. It is produced on a large scale as a component of many domestic and industrial products, especially detergents. Environmental problems associated with eutrophication are attributed to its widespread use. Product characteristics • CAS No : 7758-29-4 • Molecular formula : Na5P3O10 • Appearance : White free flowing slightly hygroscopic granule or powder. • Form :Hydrated form and anhydrous form • Solubility in Water : 20% at 25 deg C • pH(1% solution) : 9.2-10.2 • Moisture (at 110 °C) : 0.50% • Water insolubles : 0.07% • Purity :94.0% • PH Value : 9.5-10.0 • Whiteness : 85% min. It has got salient chelating capacity to ions of Ca and Mg etc. and can soften hard water to make suspension solution become into clear solution; It has got weak alkalinity but no corrosiveness. It is a surfactant, and has got outstanding emulsification to lubricants and fat. This product has two crystalline forms, namely Type I (high temperature type) and Type II (low temperature type). The chemical properties of the two types are the same, and the difference between them lies in the thermo stability, hygroscopicity, solubility and hydration heat when dissolving. Applications of Sodium triphosphate (STP): Some of the applications of STPP are: • Used as one of the main auxiliaries for synthetic detergent, synergist for soap • water softener, tanning agent for leather making, auxiliary for dyeing • As an effective dispersion agent for suspension solutions of coatings, kaolin, magnesium oxide, calcium carbonate and drilling mud etc. • As an oil contamination resistance agent in paper production. • In foodstuff industry it is used as quality improver in the process of canned food, fruit juice drinks, foodstuffs from milk or soybeans. • It may tender the meat in canned ham and soften the skin of horse bean in canned horse bean. • It may also serves as a softener or densifier in foodstuff industry. • Improves the water holding capacity of meat and seafood products • Prevents denaturation of proteins • Stabilizes the colour of the products • Improves the texture of meat and seafood products Food grade STPP is used as quality improver in the process of canned food, fruit juice beverages, foodstuffs from milk or soyabean and is also used as softener or densifier in food stuff industry. GLOBAL SCENARIO: Sodium Tripolyphosphate (STPP) is an inorganic sodium salt, which is used as a vital auxiliary in synthetic detergents sector. For several years, sodium tripolyphosphate has been used as a major ingredient in detergents, and played a vital role in enhancing the performance of detergents. The market for STPP is expected to benefit from the fact that phosphorus-free assistants are not a complete substitute for phosphorus-based assistants. In India, STPP predominantly finds application in the production of detergents. The other important areas of applications include ceramics and food industries. The application areas are highly relevant to the industrial and economic growth pattern. Therefore, the demand for STPP would go up in tune with the overall industrial and economic growth pattern. The global Sodium Tripolyphosphate market is projected to reach 3.4 million metric tons by the year 2015. Growth in the market is driven by the sustained demand from detergents market.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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LITHIUM HEXAFLUOROPHOSPHATE - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue

Product Profile Lithium hexafluorophosphate (LiPF6) is a typical electrolyte salt for lithium-ion batteries. Lithium hexafluorophosphate is an inorganic compound with the formula LiPF6. This white crystalline powder is used in commercial secondary batteries, an application that exploits its high solubility in nonpolar solvents. Specifically, solutions of lithium hexafluorophosphate in propylene carbonate with dimethoxyethane serves as an electrolyte in lithium batteries. LiPF6 catalyses the tetrahydropyranylation of tertiary alcohols. Lithium hexafluorophosphate is stable but readily hydrolyzes upon exposure to water or moist air. It is incompatible with strong oxidizing agents, strong acids. Product characteristics Chemical Name : Lithium hexafluorophosphate Molecular Formula : F6LiP Formula Weight : 151.91 Applications • Lithium hexaflourophosphate is a white crystalline powder used in commercial secondary batteries, an application that exploits its high solubility in non-polar solvents. Specifically, solutions of lithium hexafluorophosphate in propylene carbonate with dimethoxyethane serves as an electrolyte in lithium batteries. • LiPF6, is a conductive salt that is one of four critical components in rechargeable lithium-ion batteries. • The manufacturer uses industrial materials to lower the product cost by at least 60% compared with others in the circle, showing obvious energy saving effects; • The manufacturer uses its own designed and made non-standard sets of equipment to satisfy the production process in the normal temperature and pressure; • No use of hydrofluoric acid in the production process to enable low investment in environment protection, great safety and little pollution; Global scenario The global total production of LiPF6 was about 3800 metric tonnes in 2010. Currently, major global LiPF6 producers are distributed in Japan, South Korea and Taiwan region. Demand for lithium-ion batteries is expected to grow more than 40 percent, from $7.2 billion in 2010 to $10.1 billion in 2015, driven by demand for plugin hybrid and all-electric vehicles.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 0.01%Break even: N/A
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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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