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

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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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Single Super Phosphate (S.S.P) - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue

Profile Single super phosphate is a highly demanded fertilizer mostly used at the time of preparation of land. It comprises of 16% water soluble phosphate which is readily accepted by the crops. The fertilizers effectiveness of SSP remains unquestioned. In fact it has become a standard of comparison for other fertilizers. SSP is primarily used as a crop nutrient source. However MCP and gypsum (the two primary ingredients in SSP) are widely used in many products. Properties Powder SSP (Green super phosphate) Granulated SSP (GSSP) • Moisture Contents: Max 12% Moisture Contents: Max 6% • Free Acidity: Max 4% Free Acidity: Max 4% • Water Soluble: Min 16 Water Soluble P2O5: Min 16% Production Procedure The main feeds (ingredients) for the process are concentrated sulphuric acid, and phosphate rock. The main aim of the super phosphate process is to convert this PO4 into a soluble form. • The phosphate rock is crushed into fine particles, • The rock is reacted with concentrated sulphuric acid, converting much of the PO4 into a soluble form. Most of this reaction occurs quickly, but it will continue slowly over the next few days, • The reacted mixture is granulated (turned into small pellets) and the granules are left to mature for weeks before use. Application SSP is an excellent source of three plant nutrients. The uses of SSP are: • Supplying plants with phosphorus, sulphur & calcium element • Fixing plant roots in soil and helping them combat pests • PSSP gives plants a better chance to carry out their bio-functions, such as germination, vegetation and ripeness • GSSP can be used to fertilize desert and calcareous lands and is perfectly usable in automatic/mechanical fertilization Market Potential There are about 80 plants of SSP in India and consumption of SSP is about 30 Lac MT. SSP contributes to 6.6% of total phosphatic inputs in India.India contributes 16% of the Global Fertilizer consumption. In India above 5 states have 80% consumption of total SSP. Acknowledging SSP as key Phophatic fertilizer at par with DAP on nutrient content, it is expected improved Productivity as soil will get the much desired Sulphur, farmer gets P at lower rate, government benefits due to lower subsidy bill, option with farmer at lower P price in SSP along with other nutrients (S & Ca) availability without additional cost, employment creation by local SSP manufacture and value within the country and win win situation to ensure that the NBS is sustained.
Plant capacity: 150000 MT/ Annum Plant & machinery: 1621 Lakh
Working capital: -T.C.I: Cost of Project : 2998 Lakh
Return: 45.00%Break even: 40.00%
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Polymer Modified Cementitious Tile Adhesives - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Profile Polymer modified adhesives are widely accepted in the industry and often referred to as thin-set mortars. The blended polymers interact with cement components to improve the physical and mechanical properties such as increased adhesion, reduced shrinkage and lower water absorption. The polymer modified adhesives are commonly available in two types. One comes with powdered polymer as premix. Hence, during the application, only water is required to be added to make a bed. Polymer modification of adhesives and grouts offers improvements including easier handling, increased tensile and flexural strength, enhanced adhesive characteristics, improved water resistance and greater durability. A key benefit is increased water resistance. The advantages are easier maintenance, increased durability and greater resistance to the potential damage from freezing and thawing cycles. Properties White Cement Based Cementitious Tile Adhesive: Appearance - Powder Composition - Cement, siliceous sand and additives Colour - Grey or White Density - 1.55 kg/lit ± 0.05 Application Following are some of the applications and advantages of polymer modifies cementitious tile adhesives: • Decorative Overlays: Wall coatings and textured building finishes (polymer-modified stucco). • Adhesion, tensile and flexural strength, exterior durability; toughness test of modified and unmodified mortar patches; Mortar Patches are feathered down to blend in with original substrate. • Flooring and Pavements: Can be used in mortar or heavy use concrete industrial/commercial flooring overlay formulations. Warehouses, factories, hospitals, stairways, garages, railway platforms, airport runways, etc. • Waterproofing: Basements, bulk water storage tanks, septic tanks, ship decks, roof decks, and concrete walls. Market Potential A cement based adhesive must be used for exterior work. Whilst standard cement based tile adhesives are suitable for exterior use, highly polymer-modified adhesives offer enhanced bond strength, reduced porosity and therefore better resistance to frost & greater resistance to movement (thermally induced movement is inevitable particularly for walls). The present market size of the construction chemicals industry in India is about 1,700 crore and is rapidly growing at the rate of around 20 per cent per annum. The demand for construction chemicals is dependent on the construction industry.
Plant capacity: White Cement Tile Adhesive – 1500 MT/Annum,Ordinary Portland Cement Tile Adhesive – 1500 MT/Annum Plant & machinery: 106 Lakh
Working capital: -T.C.I: Cost of Project : 420 Lakh
Return: 44.00%Break even: 55.00%
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PP Woven Bags (for Cement Packing) - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Profile PP woven sacks laminated with PP liner have wider applications. PP woven sacks are much stronger & can withstand much higher impact loads because of PP strips elongation at break is about 15 to 25% as compared to 30% of Jute. These sacks are much cleaner & resist fungal attack. PP Woven Sacks can be unlaminated, Laminated and along with PE liners. The size range for bags made from tubular fabric is from minimum 24 inches (60 cm.) upto 61 inches (155 cm). Woven Sacks are the best and the most cost effective packaging solution for Industries like Cement, fertilizer, sugar, chemicals, food grains etc. off late Woven fabric, which is the first stage of Woven sacks, is a preferred medium for bale wrapping and rain protection in the form of Tarpaulin. Salient Features: • Flexible and high strength • Double side print • Water & dust proof design • Heat/Wave Cut & hemmed top • Flat or anti-slip weaving Applications PP woven bags and PP woven sacks with liners are specially designed for the packaging of pulverous & force flowing materials, which include the following: • Food Products: Flour, Corn, Grain, Sugar, Salt, Animal Feed • Chemicals & Fertilizers: Carbon, Caustic Soda, Potash, Phosphates • Petro chemicals: Polymers, Granules, PVC Compound, Master Batches • Minerals: Cement, Calcium Carbonate, Lime, Sand Advantages of PP Woven Bags Woven bags and sacks of PP offer several advantages over other industrial packaging material. Some of the advantages are: 1. Moisture Proof: PP Bags are inherently moisture repellent 2. Light Weight: PP Bags being lightweight, offers easy and cheap transportation. 3. Printing: Bright 2/3/4 Colour printing offers aggressive marketing prospects 4. Stackability: No problems in stacking. Can be gusseted to further improve stacking 5. Strength: High Tensile strength and long life. 6. Economical: Highly economical compared to other alternative packing material 7. Seepage: No Seepages especially in paper lined bags Market Scenario Woven bags enjoy a good market in India and will continue to do so in the coming years. Plastic woven sacks are rapidly replacing jute bags because they have often various advantages over the conventional jute fabrics as packaging materials. They have excellent chemical resistance; they are light in weight and more suitable for packing of various chemicals in the form of granules and powder. They are also: stronger and can withstand much higher impact loads. Their elongation at break is 15 to 25 per cent compared to 3 per cent for jute; they are much cleaner, both in use and production and can be used to handle food products as they are resistant to fungal attack. Because of such superior properties of plastic woven bags, it has high demand everywhere. Cement industry is increasing day by day.
Plant capacity: 1 Lakh No.s/dayPlant & machinery: 171 Lakh
Working capital: -T.C.I: Cost of Project : 561 Lakh
Return: 47.00%Break even: 49.00%
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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

Profile Water forms an essential part of every human being. Since it is a human necessity it makes best sense to do business in. As a normal human being requires an average of 2 & 3 liters of water every day and world population is more than one billion (growing at 2 & 3% annually) the business opportunity is enormous and the potential is largely untapped. The water used for potable purposes should be free from undesirable impurities. As the name implies, the mineral water is the purified water fortified with requisite amounts of minerals such as Barium, Iron, Manganese, etc which can be absorbed by human body. It is either obtained from natural resources like spring and drilled wells or it is fortified artificially by blending and treating with mineral salts. The mineral water shall be manufactured and packed under hygienic conditions in properly washed and cleaned bottles in sterilized conditions. Application Packaged drinking water ensures safe, clean, potable water for human consumption. Mineral water is bottled under very hygienic conditions under strict quality control before being marketed. Its major use is in five star Hotels and Hospitals where good quality pure water is required for potable purposes. It is marketed at places and regions where hygienic drinking water is not freely available. Market Scenario The global bottled water sales have increased dramatically over the past several decades. The growing demand for bottled water speaks volumes of the scarcity of clean drinking water and the quality of tap water. It has become an icon of healthy lifestyle emerging in India. Selling safety i.e. pure and simple water has now become one of the fastest growing industries in India despite the harsh truth it is build on the foundation of bad governance, inequality and obvious exploitation. However, bottled water provides the 3 distance advantages of convenient packing, consistent quality and is ubiquitous. These are boom time for the Indian bottled water industry more so because the economics are sound. India is the tenth largest bottled water consumer in the world. The consumption of smaller units of 500 ml has increased by around 140% perceptibly. Capacity : 108 Lakh Pouches (200 ml)/Annum 52.2 Lakh Bottles (500 ml)/Annum 26.1 Lakh Bottles (1 L)/Annum 26.1 Lakh Bottles (2 L)/Annum 14.4 Lakh Bottles (5 L)/Annum 5.1 Lakh Cans (25 L)/Annum
Plant capacity: -Plant & machinery: 131 Lakh
Working capital: -T.C.I: Cost of Project : 350 Lakh
Return: 40.00%Break even: 58.00%
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Disposable Plastic Cups, Plates & Glasses - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

The plastic industry in India plays a very important and key role in Industrializations. A wide spectrum of plastics and articles manufactured by the industry has touched the life of every Indian in many ways through consumer plastics. The disposable plastic cups are manufactured by thermoforming technique. They are fast replacing conventional cups. Ice cream and other dairy products are packed in disposable cups. Besides Ice cream industry, hotels, restaurants, canteens etc. have been increasingly using disposable cups as against conventional glass wares or ceramic cups. Disposable cups are mainly used for food items and are made out of polypropylene or polystyrene sheets. Sheets having thickness 0.35 mm to 18 mm are used for these items in thermoforming machine. The disposable cups are gaining popularity due to attractive look, low weight for container, ease of transportation and low impermeability. Organizations like Railways, Airlines are using disposable cups for serving coffee, tea etc. now a days. Disposable cups, glasses, plates and spoons are used in daily life nowadays. In addition to be used at home these are largely used during at parties and other functions. The use of disposable items is increasing day by day because of better hygienic conditions, low cost, easy usability and impressive appearance. Plastic cups are largely used for tea, juices, coffee and other purposes. APPLICATION: Thermoformed disposables are generally used for Tea, Water and Packing of Beverages etc. These Thermoform shapes are created from a process where a sheet of plastic is heated and vacuumed on top of a model or die. The die can be made up from variety of materials. PROPERTIES: One of the most renowned names in the field of Plastic Disposable Glass, Cups and Plates. These days nobody has the time, or sometimes even the money, to afford expensive china utensils for their party purposes, so we produce an easy solution to this by producing Printed Drinking Cups which are not only easy to use and cheap but at the same time recyclable and stylish as well, adding style to your celebrations. MARKET SCENARIO: Disposable Plastic Drinking Cups are a common sight around our homes, offices, workplaces and other places. Disposable Plastic Drinking Cups are a ubiquitous part of our lives today. It is hard to find a place where one will not get to see these cups. A person goes for a jog, works out and after he/she is done with the daily exercise routine, the first thing they reach out for is a Disposable Plastic Drinking Cup for a sip of water. Pointing on disposable items is also quite easy and cheaper. The technology and machines are available in India and the cost is also less. This makes the disposable items more competitive and helps in increasing its market.
Plant capacity: 1354 Lakh Pcs./annumPlant & machinery: 51 Lakhs
Working capital: -T.C.I: 216 Lakhs
Return: 40.87%Break even: 45.83%
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ELECTROLYTIC MANGANESE DIOXIDE - 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

EMD is a complex composite of various crystals of manganese and oxygen that is produced through electro-winning. It is used primarily as the active constituent of alkaline batteries and increasingly as the feedstock for the cathodic material in lithium-ion batteries. The structure of EMD is highly disordered, but predominantly made up of the manganese dioxide crystal ramsdellite, depicted here, with the red balls signifying the oxygen atoms in the green manganese dioxide crystal lattice. Electrolytic manganese dioxide is a high purity product with molecular formula MnO2 that possesses the ‘recipe specific’ electrical characteristics desired by battery producers. Natural manganese dioxide (NMD) can be used in the Leclanche cells. But in alkaline, lithium and other batteries, synthetic managanese dioxide with higher purity is required. Electrolytic manganese dioxide (EMD) is used as a cathode mixture material for dry cell batteries, such as alkaline batteries, zinc-carbon batteries rechargeable alkaline batteries. Among the large variety of manganese dioxides, y-type managanese dioxide is extensively used, as y-variety compounds have high intercalation voltage. They have the ability to maintain high discharge rates, a good performance over a wide temperature range and have a long storage life. EMD is stable under normal temperature conditions. ELECTROLYTIC MAGNESIUM DIOXIDE NUCLEATION: Electrolytic manganese dioxide has been used worldwide in the manufacture of primary ZnMnO2 alkaline and Lechlanche type cells for decades. Their low cost and reliability impair their replacement by higher performance and secondary batteries. The performance of these batteries depends on the manufacture method of the manganese oxide due to the variation of the properties of the oxide with its crystallite size, density of lattice imperfections and extent of hydration. Sometimes the intercalation of lithium ions is carried out to improve performance characteristics of MnO2, for high energy density and high drain power application. Electrolytic manganese dioxide are doped with Bi, Pb and Ti ions is used for the manufacture of rechargeable alkaline manganese oxide cells. These ions are known to stabilize the MnO2 lattice towards dimensional changes that occur during charging and discharging cycles of the cells. The production of EMD is carried out through the electrolysis of hot MnSO4 and sulphuric acid solutions. Stainless steel or lead is the materials normally used as cathode, where hydrogen evolution takes place. Carbon, lead or titanium can be used as anode. Titanium anodes are preferred because the EMD is purer than that obtained with carbon and lead anodes. MARKET SCENARIO: As electric vehicles penetrate the auto market, EMD demand stands to benefit. The launch of electric cars and their expanding production is expected to increase demand for EMD for use in lithium-ion secondary batteries cathodes of the lithium manganese oxide and tertiary compound type. The highest potential growth segment for EMD is in large scale rechargeable batteries used in electric vehicles and electronics. At present, the rechargeable manganese battery segments account for less than 10% of total EMD demand. Alkaline batteries are a low growth end use, expected to track well below GDP growth rates over the forecast period. In small scale electronics, EMD use projected at historical growth rates of 4%. EMD is mostly used in alkaline and other small scale, consumer electronic batteries. World demand is estimated around 3,50,000 metric tonnes per annum in 2012 with growth rate in demand around 5%.
Plant capacity: Electrolytic Manganese Dioxide 5 MT Per DayPlant & machinery: 89 Lakhs
Working capital: -T.C.I: Cost of Project: 576 Lakhs
Return: 27.00%Break even: 57.00%
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PP Bags 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

Packaging is both a symbol of societys consumption habits and reflection of its progress. The user expects it to have better strength, easier handling, to be lighter, more aesthetic, safer from a hygiene point of view, etc. The manufacturer undertakes research and development to meet these demands and to offer a high quality product. In addition to its standard attributes, today's packaging just also contributes to protecting the environment, and certainly must not damage it besides being friendly to human health. PP oriented strips are becoming increasingly popular in India & have caught the eye of many end users for their requirement of packing materials. They have become popular on account of their inertness towards chemical, moisture & excellent resistance towards rotting & fungus attack. They are non toxic. Lighter in weight & have more advantages than conventional bags. Polypropylene Bags Polypropylene is a form of plastic. It’s available in a wide variety of forms but is essentially a flexible resin polymer. While the formal chemical name for the material is polypropylene, the generic layman’s term is non-woven simply because it’s really a large sheet of plastic and not a woven fabric. The material has been debossed to give it the appearance of woven cloth, yet it is really a non-woven material. Polypropylene bags are made from virgin polypropylene plastic. Polypropylene bags are versatile, attractive bags most commonly used for packaging small items such as beads and lollies. These bags can be sealed with a heat sealer like many other plastic bags. While polypropylene is similar to cello, polypropylene bags are much clearer with neater seals, and have the advantage of being less expensive than cello bags. ? Uses It is used for Packaging of Cement, Fertilizers, Tarpaulins, Sugar, Plastics Polymers, Food grains, Chemicals, Salt, Bale Coverings & sand. Market Survey Woven bags enjoy a good market in India and will continue to do so in the coming years. Plastic woven sacks are rapidly replacing jute bags because they have often various advantages over the conventional jute fabrics as packaging materials. They have excellent chemical resistance; they are light in weight and more suitable for packing of various chemicals in the form of granules and powder. They are also: stronger and can withstand much higher impact loads. Their elongation at break is 15 to 25 per cent compared to 3 per cent for jute; they are much cleaner, both in use and production and can be used to handle food products as they are resistant to fungal attack. Because of such superior properties of plastic woven bags, it has high demand everywhere. Cement industry is increasing day by day. The packaging industry is estimated at Rs 150 bn and is growing at 14-15% annually. This growth, according to industry watchers, is expected to double in the next two years. It is estimated that more than 80% of packaging in India constitutes rigid packaging and the rest being flexible. The per capita consumption of the packaging industry is only 3 kgs as compared to 100 kgs in developed countries. This is an indication of the market potential of the packaging industry. In the packaging segment, laminated products are the fastest growing segment, which was growing at a rate of 15%. In order to meet the expanding demand, cement companies are fast developing new plants. The cement industry is poised to add 111 MT of annual capacity by the end of 2009 to 10 (FY 2010), riding on the back of approximately 141 outstanding cement projects.
Plant capacity: 36000000 Nos./ Annum Plant & machinery: 408 Lakhs
Working capital: -T.C.I: Cost of Project : 835 Lakhs
Return: 38.00%Break even: 50.00%
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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

Cement is a material with adhesive and cohesive properties which make it capable of bonding minerals fragments into a compact whole. It can be defined as any substance, which can join unite two or more pieces of some other substance together to form a unit mass. Cement, as used in construction industries, is a fine powder which when mixed with water and allowed to set and harden can join different components or members together to give a mechanically strong structure. Thus cement can be used as bonding material for bricks or for bonding solid particles of different sizes (rubber masonry) to form a monolith. The name Portland cement is given originally due to the resemblance of the color and quality of the hardened cement to Portland stone Portland Island in England. The most common type of cement used by concrete manufacturers is Portland cement, which is prepared by igniting a mixture of raw materials mainly composed of calcium carbonate or aluminium silicates. According to ASTM standard specification C 150, Portland cement is defined as a hydraulic cement produced by pulverizing clinker consisting essentially of hydraulic calcium silicates, usually containing one or more of the forms of calcium sulfate as an inter ground addition . The phase compositions in Portland cement are shown below and they are denoted as tri calcium silicate (C3S), di calcium silicate (C2S), tri calcium aluminate (C3A), and tetra calcium alumino ferrite (C4AF) Uses & Applications The most common use for cement is in the production of concrete. Concrete is a composite material consisting of aggregate (gravel and sand), cement, and water. As a construction material, concrete can be cast in almost any shape desired, and once hardened, can become a structural (load bearing) element. Users may be involved in the factory production of pre cast units, such as panels, beams, road furniture, or may make cast in situ concrete such as building superstructures, roads, dams. Market Survey Indian cement industry, a leading manufacturing sub-sector in India, entered a new era after the partial decontrol in 1982 and near total free market in 1989, ahead of the dawn of the liberalisation era in the country. The industry was totally delicensed in 1991 under the Industries Development and Regulation Act. India is the second largest producer of cement in the world after China. It is followed by Japan and the USA. The overall turnover of the industry is placed at Rs 600 bn. India accounts for a share of about 6% against China's 37% and the USA's 5% of global production. The demand for cement mainly depends on the level of development and the rate of growth of the economy. There are no close substitutes for cement and hence the demand for cement is price inelastic.
Plant capacity: 6000 MT/AnnumPlant & machinery: 777 Lakhs
Working capital: -T.C.I: Cost of Project : 1253 Lakhs
Return: 48.00%Break even: 39.00%
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  • One Lac / Lakh / Lakhs is equivalent to one hundred thousand (100,000)
  • One Crore is equivalent to ten million (10,000,000)
  • T.C.I is Total Capital Investment
  • We can modify the project capacity and project cost as per your requirement.
  • We can also prepare project report on any subject as per your requirement.
  • Caution: The project's cost, capacity and return are subject to change without any notice. Future projects may have different values of project cost, capacity or return.

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