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

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CEMENT WATER PROOFING COMPOUND - 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

Water seepage is a major problem in construction industries particularly when the buildings are constructed in the damped environment. A large number of water proofing compounds containing hydrophobic groups are used. Majority of such compounds block the pores at the outer surface but do not affect the pores inside. Due to percolation of water inside, the outer surface is ruptured in due course of time. Because of this, number of harmful ions enter inside and make the structure weak and less durable. Water proofing in buildings is the core requirement for the life of the buildings as well as the quality of the life of the occupants during and before construction we should take measures to the treatment process before construction it should be ensured that the water logging conditions of the site be treated by proper foundation design with adding chemicals to the footings concrete and maintaining proper slope and drainage of the ground area surrounding the building and preferably cavity wall construction be adopted to prevent dampness inside the building and while roof casting commercial grade calcium chloride should be mixed with the concrete which will give quick setting and water proofing qualities to the roofs and also if proper slope is provided during casting it will also help in the free flow of the storm water without any heavy terracing treatment Using of the cavity wall CC blocks for masonry purpose will also help in the good water proofing as well as less thick plaster on the wall sides which proves to be economic also other factors like Rain water pipes Etc should be diverted to storage tanks for water harvesting that will give us an additional advantage of saving water. Uses and Applications Cement water proofing compounds or water repellent agents are widely used in civil construction works. Water proofing compounds are used in the structural and industrial construction works to make them completely impervious to water and water vapour, whether or not the water is under pressure. Their wide range of uses and applications are as follows: Water proofing compounds are used as an important ingredient in the masonry works like dams, canals etc. Water proofing agents or water repellents is used in structural and industrial works. Market Survey Among the various varieties of cement, the most commonly used in India is the Ordinary Portland Cement (OPC), which is popularly known as grey cement. Though specialised varieties of cement are gaining popularity, currently their share in the total cement consumption is negligible. The extent of under development of specialised cement used in European countries use some form of construction chemicals, while, in India, the corresponding figure is only 4%. The Indian cement industry is highly fragmented with the top few accounting for more than 50% of the industry capacity. The rest is distributed among the large number of small players. The cement industry in India has come forward as the second largest in the world, showing a total capacity of around 230 MT (including mini plants). However, on account of low per capita consumption of cement in the country (156 kgs/year as compared to world average of 260 kgs) there is still a huge potential for growth of the industry. Few Indian Major Players are as Under: C I C O Technologies Ltd. Chembond Ashland Water Technologies Ltd. Chemicals & Plastics India Ltd. Ion Exchange Speciality Chemicals Ltd. Nalco Water India Ltd. P I B C O Ltd. Pidilite Industries Ltd. ?
Plant capacity: 3000 Liters /dayPlant & machinery: 24 Lakhs
Working capital: -T.C.I: 419 Lakhs
Return: 52.00%Break even: 33.00%
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ALUMINIUM INGOTS FROM USED BEVERAGE CANS - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

A beverage can is a metal container designed to hold a fixed portion of liquid such as a carbonated soft drink, alcoholic beverage, fruit juice, herbal tea etc. Beverage cans are made of aluminium (75% of worldwide production) or tin plated steel (25% worldwide production). Worldwide production for all beverage cans is approximately 52 billion units. Aluminium recycling is the process by which scrap aluminium can be reused in products after its initial production. The process involves simply re melting the metal, which is far less expensive and energy intensive than creating new aluminium through the electrolysis of aluminium oxide (Al2O3), which must first be mined from bauxite ore and then refined using the Bayer process. Recycling scrap aluminium requires only 5% of the energy used to make new aluminium. For this reason, approximately 31% of all aluminium produced in the United States comes from recycled scrap. Used beverage containers are the largest component of processed aluminium scrap, with most UBC scrap manufactured back into aluminium cans. Ingot and billet play an integral part in the production of many aluminium products. Plate, sheet, foil, wire, rod, and bar products are all produced by pressing or rolling ingot and billet. Ingot and billet are cast from molten aluminium. In the cast house, crucibles of molten aluminium empty their silvery liquid either directly into molds or into a holding furnace where the metal is kept molten at temperatures between 1,200 and 1,500 degrees Fahrenheit. Alloying elements are then added. Most metal is cast by the direct chill (DC) process, which produces huge sheet ingot for rolling mills, round log like billet for extrusion presses, or square billet for production of wire, rod, and bar. Advantages The recycling of aluminium generally produces significant cost savings over the production of new aluminium even when the cost of collection, separation and recycling are taken into account Over the long term, even larger national savings are made when the reduction in the capital costs associated with landfills, mines and international shipping of raw aluminium are considered. Aluminium recycling is economically beneficial to both the aluminium and recycling industry. The capital cost for the production of recycled aluminium is already recognized to be far lower than making new aluminium. The financial benefit has also spurred the development of the recycling program. The price of scrap aluminium has fluctuated in the market but its traditionally high value has generated enough income. Aluminium cans are the poster child of the recycling movement. This is by far the most valuable component in the solid waste stream. The aluminium can is also the most recognized recyclable item among household waste. The aluminium beverage can is 100 percent recyclable into new beverage cans indefinitely demonstrating recycling at its finest. Aluminium can recycling helps fund the entire collection system. The aluminium can is the only packaging material that more than covers the cost of collection and re processing for itself. It also helps subsidize the collection of other recyclable materials. Market Survey The worldwide capacity to produce alumina was placed at around 80 mn tonnes in 2007 and was slated to touch 100 mn tonnes in 2010. Alumina accounts for about 22% of the cost in the production of aluminium. India's share in world aluminium market is estimated at around 3%. India ranks fifth in bauxite production after Australia (62 mn tonnes), Guinea (17.50 mn tonnes), Brazil (16.20 mn tonnes) and China (10.75 mn tonnes). With a total output of 9.25 mn tonnes, the country contributes about 6% of the world's total production of 159 mn tonnes, India holds the fifth position in reserves base and is ahead of China with 2300 mn tonnes. India ranked seventh in alumina production with a total output of 3 mn tonnes, a share of nearly 5% of the global production of 61 mn tonnes. However, internationally, the pattern of consumption is in favour of transportation, primarily due to large scale aluminium consumption by the aviation industry. White goods account for nearly 5% of aluminium consumption in the country. The products include electric fans, air conditioners, refrigerators and coolers. The white goods industry uses both extruded products and flats. In the transportation sector, aluminium is used for panelling, floors and windows. So far, it is not used for structural parts and bodies of automobiles. An Indian car uses only about 54 kg of aluminium against a global average of 100 to 110 kg. This sets the high potential for growth with the increase in the automobile sector. Demand for aluminium is estimated to grow at 4 to 6% per annum. The demand for the metal is expected to pick up as the scenario improves for user industries like power, infrastructure and transportation, which are all on the move.
Plant capacity: 1000 Kg /dayPlant & machinery: 109 Lakhs
Working capital: -T.C.I: Cost of Project : 298 Lakhs
Return: 24.00%Break even: 51.00%
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Aluminium Foil Container - 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

Aluminum is the most widely used non ferrous metal and is extensively used in packaging materials. It is an excellent material for creating all types of containers. However, despite the fact that about seven billion aluminum foil containers are produced annually, most packaging engineers and packaging users know very little about the advantages that these containers bring to the packaging and food service industries. Aluminum foil containers are formed by combining mechanical and air pressure to force light gauge aluminum foil into a shaped die cavity. Esthetically appealing aluminum foil containers are ideal for table ready service after the container has functioned first as a package and a heating utensil. Foil containers also come in a variety of colors and special purpose coatings. Aluminium foil containers are used to prepare, freeze, store, transport, cook and serve a variety of foods. Containers made from aluminium foil are the only containers that can be used in all types of ovens such as microwave, conventional, convection and broiler. Use & Applications Aluminium Foil Containers greatly used in day life,it also used in the kitchen, principally for the commercial preparation, packing and conveyance of food . Used in baking industry to contain food during the production and cooking phase. The food is subsequently conveyed and sold in the foil container. Aluminium foil containers are perfect for take home and delivery meals. Designed with a leak proof metal wall, they will not absorb moisture or grease, promoting freshness, increasing shelf life, and maintaining flavor. Then there is the added convenience – foil containers are rigid enough to transport and stack easily. Market Survey Aluminium one of the best material on Earth .Aluminium foil containers serve a number of markets. A wide range of container designs are available in the retail market. Baking pans, roasting pans, muffin pans, pizza pans, cookie sheets, carryout containers, etc., are widely available to the Indian consumer. Generally, these containers also come in a variety of sizes, depending on the specific consumer needs. Aluminium foil container growth has been over 40% in the past ten years. This rapid growth can be attributed, at least in part, to the U.S. consumer’s preference for easy to prepare foods, whether in the supermarket freezer or purchasing take home entrees or complete meals from restaurants and other retail outlets.
Plant capacity: 147,5000 NOS./dayPlant & machinery: 55 Lakhs
Working capital: -T.C.I: 2018 Lakhs
Return: 53.00%Break even: 21.00%
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Aluminium Conductors - 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

Aluminium Conductors (i) All Aluminium Conductors (AAC) (ii) All Alloy Aluminium Conductors (AAAC), and (iii) Aluminium Conductors Steel Reinforced (ACSR) are used in Transmission and Distribution system to carry the generated electrical energy from generating station to end user. The Electrical energy is normally generated at the power stations far away from the urban areas where the consumers are located. There is a large network of conductors between the generating stations and the consumer. The network is called the Transmission and Distribution system. The Transmission system is to deliver bulk power from power stations to the load centres and large industrial consumers beyond the economical service range of the regular primary distribution lines where as distribution system is to deliver power from power sector . Uses and Applications Aluminium has many advantages for electrical applications. It is lightweight, strong, corrosion resistant, and a highly efficient conductor (aluminium has twice the conductivity, per pound, of copper)—rendering it the material of choice for transmitting power from generating stations to homes and businesses. It is also infinitely recyclable, making it a perfect fit for today’s environment. In 2010, electrical market applications rose 13.1 percent, to 1.472 billion pounds. Shipments of ACSR, bare cable, and insulated wire and cable products totaled 631 million pounds, off 11 million pounds from the previous year. The North American electrical market was the fourth largest for aluminium, accounting for 7.3 percent of all aluminium shipments during the year. Market Survey India is a big aluminum producer in the world. It also houses a number of aluminum plants which includes aluminum smelting plants, aluminum extrusion plants, alumina refineries, FRP plants, wire rod plants, and aluminum foil plants. India holds the rank of the eighth biggest primary aluminum producer in the world. Following Australia, Guinea, Brazil, and Jamaica, India ranks as the fifth biggest alumina producer in the world. The aluminum production of the country represents approximately 5% of the overall amount of aluminum produced in the world. The country is also a big storehouse of bauxite reserves and the bauxite reserves of the country are projected to remain for more than 350 years The market for power conductors is set to boom in the XII Plan period thanks to a much higher power transmission outlay. With private sector companies lending a supporting hand in mega transmission lines, demand for power conductors is expected to soar. Aluminum conductors have been successfully utilized in the electrical industry for over 100 years. Electricity is transmitted from the utility power plant to point of use meters using aluminum wiring almost exclusively. The Indian market for power conductors is by and large an organized one, with three players dominating the market. Sterlite Technologies Ltd is by far the industry leader, followed by Apar Industries Ltd and Diamond Power Infrastructure Ltd. These three companies together account for 70 per cent of India's power conductor market, with the remaining 30 per cent shared by a large number of smaller players spread nationwide. As of today, the power conductor market is estimated at some 5,600 crore. Few Indian Major Players are as Under:- Aluminium Industries Ltd. Apar Industries Ltd. Aravali Infrapower Ltd. Birla Ericsson Optical Ltd. C M I Ltd. Cable Corpn. Of India Ltd. Central Cables Ltd. Concepta Cables Ltd. Crystal Cable Inds. Ltd. Cybele Industries Ltd. Diamond Power Infrastructure Ltd. East India Udyog Ltd. Finolex Cables Ltd. Fort Gloster Inds. Ltd. G R Cables Ltd. G T C L Mobile Com Technology Ltd. Galada Power & Telecommunication Ltd. Gammon India Ltd. Gem Cables & Conductors Ltd. Gujarat Optical Communication Ltd. Gujarat Telephone Cables Ltd. Gwalior Transmission System Ltd. H G S (India) Ltd. Haryana Telecom Ltd. Hindustan Cables Ltd. Hindusthan Vidyut Products Ltd. Hirakud Industrial Works Ltd. Incab Industries Ltd. Indo Power Cables Ltd. Industrial Cables (India) Ltd. Kei Industries Ltd. Lunkad Aluminium Ltd. M P Telelinks Ltd. Madhya Pradesh Electricals Ltd. Marine Cables & Wires Pvt. Ltd. Murarka Cables & Conductors Ltd. Nicco Corpn. Ltd. Nicco Corporation Ltd. [Erstwhile] Nicco Industries Ltd. Omega Cables Ltd. Opal Industries Ltd. Optel Telecommunications Ltd. Paramount Communications Ltd. Paramount Wires & Cables Ltd. Pashupati Cables Ltd. Pawan Power & Telecom Ltd. Pennar Aluminium Co. Ltd. Plasmac Machine Mfg. Co. Ltd. R P G Cables Ltd. R R Kabel Ltd. S G N Telecoms Ltd. Savant Infocomm Ltd. Shashi Cables Ltd. Skytone Electricals (India) Ltd. Smita Conductors Pvt. Ltd. Spectra Punjab Ltd. Sterlite Technologies Ltd. Sterlite Telecom Ltd. Sterlite Telelink Ltd. Tamilnadu Telecommunications Ltd. Telelink Nicco Ltd. Telephone Cables Ltd. Torrent Cables Ltd. Torrent Cables Ltd. Traco Cable Co. Ltd. U M Cables Ltd. Uniflex Cables Ltd. Universal Cables Ltd. Upcom Cables Ltd. V H E L Industries Ltd. Vimal Flexsol Ltd. ?
Plant capacity: 4 MT/DayPlant & machinery: 93 Lakhs
Working capital: -T.C.I: Cost of Project : 393 Lakhs
Return: 37.00%Break even: 37.00%
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Starch & Starch Derivatives (Starch, Glucose, Maltodextrin, High Maltose Syrup & Powder, Dextrose Monohydrate, Dextrose Anhydrate & Sorbitol)- Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey

Maize (Zea mays) is classified into dent, flint, waxy, sweet and pop corn categories. Dent corn also known as field corn, containing both hard and soft starch, becomes indented at maturity. Flint corn having hard, horny, rounded or short and flat kernels; with the soft and starchy endosperm is enclosed by hard outer layer. Both of these varieties are used for industrial purposes. Popcorn has small pointed and rounded kernels with very hard endosperm which on exposure to dry heat popped or evereted by the expulsion of the contained moisture and forming a White starchy mass many times the size of the original kernel. Sweet corn is distinguished by kernels containing a high percentage of sugar in the milk stage and therefore suitable for table use. Indian maize has white, red, purple, brown or multicoloured kernels and is characteristically dent corn. The dent corn is useful for starch processing by wet milling method. Among all cereals, maize occupies the fifth largest in area, fourth largest in output and third largest in yield. India is the tenth largest producer with a production of 11.10 mMT from an area of 6.6 million ha. The average yield in India is 1.77 MT/ha which is very low as against 7 MT/ha in temperate areas of developed economies and 3.8 MT/ha of global average. USES Maize starch chemical formula (C6H10O5)n also know as Corn starch or flour is a fundamental ingredient in most of the packaged food and industrial products; it is extracted from the corn kernel and has a distinctive appreance and feed. Maize starch in natural ,modified, pregeletanised and dextrinised forms provides viscosity, texture and other desired properties to all types of food & paper, products from canned chilled frozen to microwaveable goods, dry mixes and extruded snacks. Practically every industry in existence uses starch or its derivatives in one form or another. Market Survey Starch is not an uniform commodity, however. It is a heterogeneous commodity used in the manufacture of myriad food and non food products. Market demand for starch is strongly and positively correlated with average per capita income. Starch extracted from different commodities has different properties. Many end users require specific kinds of starch for making their products, and therefore demand starch derived from specific commodities. If the kind of starch they require is not available, then starch may undergo further processing and modification. The demand for modified starch is increasing rapidly but is still far below that of native starch (also called primary starch) in developing countries. Further, starch quality may be affected by post harvest practices. India is the tenth largest producer with a production of 11.10 million MT from an area of 6.6 million ha. The quantity of starch consumed in food and non food products in a country is closely associated with the level of economic development and income of that country. As per capita incomes rise, consumers demand a more varied set of food and manufactured products that use starch in their making. Thus, there is a close and positive relationship between income and quantity of starch demanded. Few Indian Major Players are as under: Amaravati Agro Ltd. Bharat Starch Inds. Ltd. [Merged] E I C L Ltd. Gayatri Bioorganics Ltd. Gujarat Ambuja Proteins Ltd. [Merged] Gulshan Polyols Ltd. Hindustan Maize Products Ltd. Indian Maize & Chemicals Ltd. International Bestfoods Ltd. [Merged] Jayant Vitamins Ltd. K G Gluco Biols Ltd. [Merged] Kamala Sugar Mills Ltd. Laxmi Starch Ltd. Origin Agrostar Ltd. Rai Agro Inds. Ltd. Riddhi Siddhi Gluco Biols Ltd. Santosh Starch Ltd. Santosh Starch Products Ltd. Sayaji Industries Ltd. Starch & Chemicals Ltd. Sukhjit Starch & Chemicals Ltd. Tan India Ltd. Tirupati Starch & Chemicals Ltd. Unicorn Organics Ltd. Unique Sugars Ltd. Universal Starch Chem Allied Ltd. Wockhardt Health Care Ltd. [Merged] Cost Estimation Capacity Maize Starch : 100 MT/Day Liquid Glucose : 50 MT/Day Malto Dextrin Syrup : 20 MT/ Day Malto Dextrin Powder: 10 MT/ Day Dextrose Monohydrate: 50 MT/ Day Dextrose Anhydrous: 30 MT/ Day Sorbitol : 50 MT /Day Cattle Feed as By Product :150 Mt/ Day
Plant capacity: -Plant & machinery: Rs.145 Crores
Working capital: -T.C.I: Cost of Project : Rs.213 Crores
Return: 44.00%Break even: 31.00%
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Starch & Allied Products from Maize with Co Generation Plant - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Plant Layout

Maize is third important cereal/crop after wheat and rice and has a great potential of processing due to its high nutritive value and commercial uses. Maize (also known as corn) is common name for a cereal grass widely grown for food and livestock fodder. The major maize growing states are Uttar Pradesh, Bihar, Rajasthan, Madhya Pradesh, Punjab, Andhra Pradesh, Himachal Pradesh, West Bengal, Karnataka and Jammu & Kashmir, jointly accounting for over 95% of the national maize production. Maize ranks with wheat and rice as one of the world’s chief grain crops. Starch is produced from maize than any other crop. Starch is a naturally occurring biodegradable polymer and readily available from agriculture. It is widely used in food and non food applications and isolated from crops such as maize, potatoes, tapioca, rice and wheat. Starch is therefore an inexpensive and commodity material. For packaging use however, dry starch is not thermoplastic and its granular form is unsuitable for most uses in the plastics industry, mainly due to processing difficulties during extrusion or injection moulding. Uses Maize starch is used in the textile industry as an adhesive to strengthen yarn and to improve its resistance to abrasion during weaving. It is used in finishing changing the appearance after it is bleached, dyed and printed. It is used in printing of textiles to increase the consistency of the printing paste. It is used for glazing and polishing sewing thread. It is used as a thickener in improving the texture of many foods. Texture is a major factor in the acceptability and palatability of most food products. It is used for thickening sauces, gravies, puddings and pie fillings. Maize starch makes hard wheat flour softer, which is preferred for cakes. Cornstarch is used to give strength to ice cream cones and sugar wafer shells. It is used as an inert ingredient in baking powder and in salad dressings. In paper industry it is used to increase paper strength, to increase stiffness and rattle of paper. Drugs and medicine are taken in small but accurate dose. This is done by their administration in the form of pills, which contain fillers. Starch is preferred because it is bland, odourless and easily capable of digestion. Starch is also used in foundry industry. The major use of raw starches as abrasives is in corrugated boards, laminated paperboard etc. Market Survey Market demand for starch is strongly and positively correlated with average per capita income. Starch extracted from different commodities has different properties. Many end users require specific kinds of starch for making their products, and therefore demand starch derived from specific commodities. India is the tenth largest producer with a production of 11.10 million MT from an area of 6.6 million ha. Demand for starch is high from varied users like food, pharmaceuticals, textiles, paper, packaging etc. The demand is likely to increase to 186 lakh MT by 2013 2014. The trends in India indicate that coarse cereals are now increasingly used as industrial products such as starches. Efforts are required to develop high yielding varieties of coarse with desired characteristics for different uses and to explore new food uses. The growth of glucose industry is also understood to have grown more or less at the same rate. Further the capacity utilization on an average is also under stood to be at around 45% in case of glucose industry. With the increasing demand and with increasing capacity utilization, it is expected that the glucose production would also increase substantially in the future and thereby it would contribute to the demand for starch as well in the future. With such a growth, the demand for liquid glucose is also simultaneously increasing which account for a major consumption in the industry. There is larger amount of raw material available in India, which can exploit by manufacturing different available product in the maize. All the products manufactured from maize are food base product so it has very good market demand now as well as it will be stay in future also due to rapid population growth. As a whole the project is good one. Few Indian Major Players are as under: Amaravati Agro Ltd. Bharat Starch Inds. Ltd. E I C L Ltd. Gayatri Bioorganics Ltd. Gujarat Ambuja Proteins Ltd. Gulshan Polyols Ltd. Hindustan Maize Products Ltd. Indian Maize & Chemicals Ltd. International Bestfoods Ltd. Jayant Vitamins Ltd. K G Gluco Biols Ltd. Kamala Sugar Mills Ltd. Laxmi Starch Ltd. Origin Agrostar Ltd. Rai Agro Inds. Ltd. Riddhi Siddhi Gluco Biols Ltd. Santosh Starch Ltd. Santosh Starch Products Ltd. Sayaji Industries Ltd. Starch & Chemicals Ltd. Sukhjit Starch & Chemicals Ltd. Tan India Ltd. Tirupati Starch & Chemicals Ltd. Unicorn Organics Ltd. Unique Sugars Ltd. Universal Starch Chem Allied Ltd. Wockhardt Health Care Ltd. ? Cost Estimation Capacity Starch : 100 MT/Day Dextrose Monohydrate : 13 MT/ Day Dextrose Anhydrous : 10 MT/ Day Sorbitol : 17 MT /Day Vitamin C : 0.5 MT /Day Gluten Feed : 22.50 MT/ Day Germ Oil : 10.00 MT/ Day
Plant capacity: -Plant & machinery: Rs.1029 Lakhs
Working capital: -T.C.I: Cost of Project : Rs.2807 Lakhs
Return: 52.00%Break even: 30.00%
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Sorbitol - 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

Sorbitol is one of many sugar alcohols found in nature that gets metabolized slower in our bodies than other normal dietary sugars. Also known as glucitol, sorbitol is a result of the hydrogenation of the aldehyde moiety of glucose, giving glucose a terminal hydroxyl group. This is significant in its pharmacology and lower caloric yield. Sorbitol is low caloric refined sugar alcohol, which is produced from dextrose. Chemically it is hexahydric alcohol and is also known as hexatol, D Glucitol and D Sorbitol. Chemically, Sorbitol is a hexitol, C6H14O6, found in nature as the sweet constituent of many berries and fruits best known from Sorbus aucuparia (Rowan or European Rowan) from which it was isolated for the first time in 1872. Sorbitol is today commercially produced from starch by enzymatic hydrolysis and catalytic hydrogenation. It has wide applications as a sweetener and humectant. Sorbitol has a smooth mouth feel with a sweet, cool and pleasant taste. It shares many applications with propylene glycol and glycerine and glycerine provides hard competition in the market for humectants. Sorbitol acts as a crystallization modifier or inhibitor; it can prevent syrups from forming crystals of sugar. It is used to add body and viscosity to mixtures, and can protect against damage from freezing (cryoprotectant) and drying. Applications & Uses Sorbitol, together with other polyhydric alcohols such as glycerol, is one of the ingredients in alkyl resins and rigid polyurethane foams manufacturing. In tobacco industries, sorbitol may give mild effect in sniff, good humectant agent, and avoid acrolein formation which formed in burned glycerine. Sorbitol is used as softener and colour stabiliser in textiles and as softener in leather industries. Sorbitol sweet tastes form a viscous solution, stabilises moisture, possesses bacterio static property and is generally chemically inert. These features and properties make sorbitol an ideal and preferred ingredient in many products. It is being used by pharmaceutical industry, tooth paste manufacturers, food products industry, Oral Hygiene, Skin Cream and Cream Foundation, Textiles, Tobacco, Confectionery, Cosmetics, Emulsion, Diabetic Diets and many others. The increasing use of sorbitol in various end uses has made many big manufacturers to take interest in manufacturing of this. Looking to the trends the world economy. Market Survey Sorbitol is an organic chemical, having varied end uses. It is edible, non crystalline, odorless, white powder and having sweet cooling taste. It is highly soluble in water and slightly in methylalcohol. Sorbitol solutions are high stable. It is marketed mostly in the form of 70 per cent solution. The process involved is very simple, raw materials are indigenously available, technical knowhow is easily available and all these make the project very attractive one. An attempt is made here to study the state and structure of the industry. It is felt that sorbitol will have a very good future. The demand for sorbitol would depend upon the development of its end uses and the shape these end uses industries are likely to take in the future. Pharma and the dentifrice sector are expected to continue dominating the market for sorbitol. A newly developing outlet for sorbitol is its use in producing clarifying agents for polypropylene. Clarifying agents enable polypropylene to substitute for higher cost polymers in food packaging, drinking cups and house wares. Demand for transparent packages and resin moldings are increasing worldwide. Few Indian Major Players are as under: Amaravati Agro Ltd. Gayatri Bioorganics Ltd. Gulshan Polyols Ltd. Hindustan Maize Products Ltd. Jayant Vitamins Ltd. Sukhjit Starch & Chemicals Ltd. Tan India Ltd. Unicorn Organics Ltd.
Plant capacity: 47 MT/DayPlant & machinery: Rs. 869 Lakhs
Working capital: -T.C.I: Cost of Project : Rs. 1235 Lakhs
Return: 26.00%Break even: 41.00%
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Blending of Lube Oil from Mineral Base Oil - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

A lubricant is a substance introduced to reduce friction between moving surfaces. It may also have the function of transporting foreign particles. The property of reducing friction is known as lubricity. One of the single largest applications for lubricants, in the form of motor oil, is protecting the internal combustion engines in motor vehicles and powered equipment. Typically lubricants contain 90% base oil (most often petroleum fractions, called mineral oils) and less than 10% additives. Vegetable oils or synthetic liquids such as hydrogenated polyolefins, esters, silicones, fluorocarbons and many others are sometimes used as base oils. Additives deliver reduced friction and wear, increased viscosity, improved viscosity index, resistance to corrosion and oxidation, aging or contamination, etc. Lubricants such as 2 cycle oil are added to fuels like gasoline which has low lubricity. Sulfur impurities in fuels also provide some lubrication properties, which has to be taken in account when switching to a low sulfur diesel; biodiesel is a popular diesel fuel additive providing additional lubricity. Uses Automotive, Engine oils, Petrol (Gasoline) engine oils, Diesel engine oils, Automatic transmission fluid, Gearbox fluids, Brake fluids, Hydraulic fluids, Tractor (one lubricant for all systems), Universal Tractor Transmission Oil – UTTO, Super Tractor Oil Universal – STOU – includes engine, Other motors, 2 stroke engine oils, Industrial, Hydraulic oils, Air compressor oils, Gas Compressor oils, Gear oils, Bearing and circulating system oils, Refrigerator compressor oils, Steam and gas turbine oils, Aviation, Gas turbine engine oils, Piston engine oils, Marine, Crosshead cylinder oils, Crosshead Crankcase oils, Trunk piston engine oils, Stern tube lubricants. Market Survey The lubricating oil and grease market in India is of the order of about 4.6 mn tonne and is growing at around 4.5% annually. The moderate growth is paradoxically due to the supply of better quality of lubricants which have longer servicing capability. The lube market consists of two major segments, automotive and industrial, the two having a market share of 65% and 35%, respectively. Most of the competition is crowding into the first category. In the automotive segment, while cars and two/three wheelers segment accounts for 37% of the market, diesel operated engines, trucks and other heavy vehicles have the bulk share of 63%. The market has got increasingly specialised. Two major features of the product trans formation are eco friendliness and energy efficiency. Accordingly, biodegradable oils and long life greases will be in greater demand. Aviation and defense lubricants have been specialised areas which require very meticulous adherence to specifications. Aviation lubricants demand high value addition and is expected to grow faster with commercial aviation. The global lubricant market is generally competitive with numerous manufacturers and marketers. Overall the western market may be considered mature with a flat to declining overall volumes while there is strong growth in the emerging economies. The lubricant marketers generally pursue one or more of the following strategies when pursuing business. Few Indian Major Players are as under: Alicid Organic Inds. Ltd. Asia Refinery Ltd. Bharat Petroleum Corpn. Ltd. Bharat Shell Ltd. Burmah Petro Products Ltd. Caltex Lubricants India Ltd. Canara Sales Corpn. Ltd. Castrol India Ltd. Chemoleums Ltd. Continental Petroleums Ltd. Gantley Speciality Products Ltd. Gujarat Indo Lube Ltd. Gujarat Oiland Inds. Ltd. Gujarat Speciality Lubes Ltd. Gulf Carosserie India Ltd. Gulf Oil Corpn. Ltd. Gulf Oil India Limited [Merged] Gulf Oil India Ltd. [Merged] Houghton Hardcastle (I) Ltd. Iccon Oil & Specialities Ltd. Indian Additives Ltd. Indian Oil Blending Ltd. [Merged] Lubrizol India Pvt. Ltd. M P Petrochem Ltd. Motorol (India) Ltd. Motorol Speciality Oils Ltd. Nandan Petrochem Ltd. Panama Petrochem Ltd. Paras Lubricants Ltd. Petrosil Lubricants Ltd. Powerlink Oil Refinery Ltd. Renaissance Petrolube Ltd. Sagar Petroleums Ltd. Sah Petroleums Ltd. Savita Oil Technologies Ltd. Savita Polymers Ltd. Shiva Petro Synth Specialities Ltd. Southern Refineries Ltd. Speciality Petrolubes Ltd. Sunstar Lubricants Ltd. Tata B P Lubricants India Ltd. [Merged] Tide Water Oil Co. (India) Ltd. Total Lubricants India Ltd. Unique Oils India Ltd. Universal Petrochemicals Ltd. Valvoline Cummins Ltd. Velloils Lubricants & Petrochem Ltd. Waxpol Industries Ltd. Witmans Petrochem Pvt. Ltd.
Plant capacity: 25 Million Ltrs./AnnumPlant & machinery: Rs. 487 Lakhs
Working capital: -T.C.I: Cost of Project : Rs. 1557 Lakhs
Return: 43.00%Break even: 44.00%
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Cassava Starch (Tapioca Starch)- 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

Starch (C6H10O5)n, the principal reserve poly Saccharide in plants constitutes substantial portion of human diet. It is the principal components of most seeds, tubers, and roots, and is produced commercially from Wheat, Rice, Tapioca, Potato, Sago, and other sources. Starch is a mixture of linear (amylase) and branches (amylopection) polymers of alpha D glucopyranosyl units. Natural starch occurs usually as granules composed of both linear and branch starch molecular. However, some starches are composed only of branched molecule and there are termed waxy starches because of the Vitreous sheen of a cut sheet surface. The roots of tapioca plant (Manihol uteillissima) forms one of the major sources of starch ranking next is potato in the consumption Undamaged starch granules are insoluble in cold water but impipe water reversibly and swell slightly. Hydrolysis of starch is an important industrial reaction which is accomplished by acid, enzymes or both. Starch gives a characteristic blue color with Iodine. This characteristic blue colour has burned both over qualitative and quantitative test for starch in various systems. Cassava has many advantages for starch production: High level of purity; Excellent thickening characteristics; A neutral (bland) taste; Desirable textural characteristics; A relatively cheap source of raw material containing a high concentration of starch (dry matter basis) that can equal or surpass the properties offered by other starches (maize, wheat, sweet potato and rice). Uses Unmodified starch is mainly is nonfood application in the naming adhesive and paper Industries. Unmodified starches are used for the manufacture of gun candies because they form hot concentrated pastes that gel firmly on cooling. Heat treated starches are used in food applications to bind and carry flavors and colors. Swelling agents are made from starch by enzymatic or acid ferment. Starch derivatives like cation starch, starch phosphate and starch acetate has numerous uses. ? Market Survey Global starch consumption is projected to reach 133.5 million metric tons. Rise in per capita consumption, and growing demand for starch products from developing nations translates into a bright outlook for the sector. Starch end use applications have grown in number over the years, and now include diverse applications ranging from food and beverages to medicine, cosmetics, pharmaceuticals and more. Usage of starch by the food industry is being fueled by the increasing number of government policies stipulating the usage of natural substances in food products. With the increasing demand for low fat and low calorie food, many food companies are replacing fats with gums and carbohydrates, such as starches and hydrocolloids. The major cassava starch and flour importers are, by order of importance, China, Japan, Malaysia, Indonesia, Singapore, the United States and the Philippines. In India also, production of starch from potatoes is limited due to availability of cheaper sources of starch such as maize and tapioca. Few Indian Major Players are as under:- Amaravati Agro Ltd. Bharat Starch Inds. Ltd. E I C L Ltd. Gayatri Bioorganics Ltd. Gujarat Ambuja Proteins Ltd. Gulshan Polyols Ltd. Hindustan Maize Products Ltd. Indian Maize & Chemicals Ltd. International Bestfoods Ltd. Jayant Vitamins Ltd. K G Gluco Biols Ltd. Kamala Sugar Mills Ltd. Laxmi Starch Ltd. Origin Agrostar Ltd. Rai Agro Inds. Ltd. Riddhi Siddhi Gluco Biols Ltd. Santosh Starch Ltd. Santosh Starch Products Ltd. Sayaji Industries Ltd. Starch & Chemicals Ltd. Sukhjit Starch & Chemicals Ltd. Tan India Ltd. Tirupati Starch & Chemicals Ltd. Unicorn Organics Ltd. Unique Sugars Ltd. Universal Starch Chem Allied Ltd. Wockhardt Health Care Ltd.
Plant capacity: 80 MT/dayPlant & machinery: Rs.358 Lakhs
Working capital: -T.C.I: Cost of Project : Rs.737 Lakhs
Return: 36.00%Break even: 45.00%
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CLC Blocks (Cellular Light Weight Concrete Blocks) with Steam Curing Method - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Plant Layout

Cellular light weight concrete is also known as CLC, foamed cement, and light weight cement, world over thanks to its advantages over ordinary building materials. CLC blocks are environment friendly. The energy consumed in the production of CLC blocks is only a fraction compared to the production of red bricks and emits no pollutants and creates no toxic products or by products. Foam concrete blocks are made of a type of cellular material made with a mixture of cement, sand, fly ash, stable foam and special additives. The lightweight properties are a result of an ingeniously simple idea of the hardened material consisting of small enclosed bubbles making it lighter than its competitors. CLC Blocks made with (Profo) Protein Based Foaming Agent are competitive with bricks in pricing and offer significant savings for finished structures. Cellular Light weight Concrete is very light colored. The addition of foam into the concrete mixture creates millions of tiny voids or cells in the material, hence the name cellular concrete. Main Features of CLC Blocks CLC Blocks are very light in weight to Density ranging from 400 to 1800 Kg/m3 can be produced as required.CLC Blocks are excellent for Thermal and Sound insulation which keeps the house cool in Summer and warm in Winter saving energy/electricity for cooling and heating.CLC Blocks are Environment friendly using more than 30% of Fly Ash from Thermal Power Stations and converting directly into valuable Building Materials. CLC Blocks will also replace Clay Bricks which is destroying Agricultural top soil. Our Technology will save Environment and Ecology from the hazardous & polluting material to Fly Ash and prevent destruction of Valuable Agricultural Land.CLC Blocks being light weight the handling and transportation is easy. CLC Blocks can be transported by Mules to difficult terrains since the material is light weight. CLC is excellent Fire Retardant and can be used for firefighting operations in Coal Mines, Forests, etc. CLC is excellent for Roofing Thermal Insulation and sound Insulation for Floor Slabs. CLC is excellent for Fire Breaks in the Buildings. Market Survey The excellent engineering property and durability of CLC blocks enlarges its scope for application in building construction and development of infrastructure, construction of green buildings, and low cost houses. The Government of India has supported this effort of improving the environment through conversion of waste into useful building products, by providing some import concession. This has enabled even normal walling masonry using these cellular lightweight concrete blocks, to complete favourably with conventional clay brick alternative. The biggest challenge in the growth of CLC is the lack of knowledge of its advantages and users need to be educated about the benefits of the product. In areas with high demand of burnt clay bricks, CLC bricks compete favourably as an alternate material. These are very useful building products that reduce dead weight of structures and accelerate the pace of construction when used as pre cast elements for walling and flooring. ?
Plant capacity: 50 Cu Mtr/DayPlant & machinery: Rs.127 Lakhs
Working capital: -T.C.I: Cost of Project : Rs.413 Lakhs
Return: 16.00%Break even: 57.00%
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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.
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  • Caution: The project's cost, capacity and return are subject to change without any notice. Future projects may have different values of project cost, capacity or return.

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