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

Telangana is a state in the Southern region of India. It has an area of 114,840 km2 and is the twelfth largest state in India. Most of it was part of the princely state of Hyderabad, ruled by the Nizam of Hyderabad during the British Raj, joining the Union of India in 1948. Telangana was separated from Andhra Pradesh as a new 29th state of India, with the city of Hyderabad as its capital. Hyderabad will continue to serve as the joint capital city for Andhra Pradesh and Telangana for a period of not more than ten years. Telangana is situated on the Deccan Plateau, in the central stretch of the eastern seaboard of the Indian Peninsula. It covers 114,800 square kilometers (44,300 sq. mi). The region is drained by two major rivers, with about 79% of the Godavari River catchment area and about 69% of the Krishna River catchment area, but most of the land is arid. Telangana region has rich natural resources. About 45 per cent of the forest area in Andhra Pradesh state is in Telangana region while 20 per cent of the country's coal deposits in the country are also found here. Telangana is also rich in limestone deposits that cater to cement factories. Telangana has other mineral resources like bauxite and mica. Perennial rivers Godavari and Krishna enter Andhra Pradesh in Telangana before flowing down through other regions and ending up in the Bay of Bengal. Telangana region is sitting on potential oil and natural gas reserves, according to a report by Director General of Hydrocarbons (DGH). Telangana has a significant amount of Software export in India. While majority of the Industry is concentrated over Hyderabad, the other cities are also becoming significant IT destinations in the state. Hyderabad's IT exports exceeded $7 billion in 2014.There have been extensive investments in digital infrastructure.

 

AGRICULTURE

Rice is the major food crop and staple food of the state. Other important crops are tobacco, mango, cotton and sugar cane. Agriculture has been the chief source of income for the state's economy. Important rivers of India are the Godavari, Krishna flow through the state, providing irrigation. Telangana agriculture department separated from Andhra Pradesh as part of Andhra Pradesh bifurcation It aims promote agricultural trade and to boost up the agricultural production and productivity in the Telangana.

 

TOURISM IN TELANGANA

Telangana State Tourism Development Corporation (TSTDC) is a state government agency which promotes Tourism in Telangana. Telangana has a variety of tourist attractions including historical places, monuments, forts, water falls, forests and temples. Charminar, Golconda Fort, QutbShahi Tombs, Chowmahalla Palace, Falaknuma Palace and Bhongir Fort, are some of the monuments in the state. The Charminar, built in 1591 CE, is a monument and mosque located in Hyderabad, Telangana, India.

 

DEMOGRAPHIC PROFILE

Telangana with a population of 351.9 lakhs (according to the 2011 census) accounts for about 3.6% percent of the total population of India. Out of this, 177.0 lakhs (50.2%) are males and 174.9 lakhs (49.8%) are females. The sex ratio of the state is 988 as against the national figure of 943. The population density in the state is 307 persons/Sq.Km. In 2012-13, the services sector at Rs.  1, 14,046 crores, contributed 58.1% to the GSDP (at constant prices). It is followed by industry sector, contributing 27.9% (Rs. 54,687 crores) and the agriculture sector’s contribution of 14% (Rs. 27,450 crores). The services sector had fastest growth  of  11.31%  followed  by  industry  sector  (10.04%)  and  agriculture  sector  (6.89%) between 2004-05 and 2012-13.

The Telangana government has proposed to add 230 crore plants in the next three years under a flagship programme which envisages boosting of tree cover in the state by nearly 8%.

 

FOOD AND INDUSTRIAL PROCESSING SECTOR

The Telangana government plans to put greater emphasis on value-addition in the farm sector in its industrial policy. The departments of industry and commerce, agriculture and agro marketing would coordinate together to achieve value maximization for farmers. The government is also keen on encouraging e-marketing activities, which involves networking all agriculture mandis in the state so that farmers get access to prevailing prices across important markets and thereby helping them unlock the right value for their produce. The state in collaboration with research institutes in the country would facilitate an ideal adoption of latest practices ranging from seed technology and farm machinery to improve farm productivity. the state government is also considering specific projects such as setting up a pharmaceutical city near Hyderabad and a cotton hub in Warangal district, the largest producer of long-staple cotton. The Telangana government has begun a survey to identify land that can be offered to new industries in the state. The Telangana government is set to announce its new industrial policy under which scheduled castes and scheduled tribe entrepreneurs would be specially encouraged.

Telangana Government is mulling to set up a 'Pharma City' near the state capital in about 8,000 acres. The City will include industries as well as residential colony, and a power plant with 500 MW capacity will be set up adjacent to the pharma city to provide captive, dedicated and uninterrupted power supply to the industry. The pharma city is expected to accommodate about five lakh employees besides their families in the residential colony touching about twenty lakh over a period. Delegation of Drugs Manufacturers' Association that an international consultancy organisation with expertise in developing in the information technology and pharmaceuticals manufacturing sectors may become backbone of Telangana economy, leaving power production, ports and oil and natural gas to play a pivotal role in driving prosperity in the residuary state. Industrial estates should be contacted to design the pharma city. Telangana's per capita income of Rs 24,409 in 2004-05 has phenomenally grown to a whopping Rs 83,020. While Hyderabad has less number of households using open toilets at 0.9 per cent, Mahabubnagar is at 71.1 per cent. The land-locked state is expected to have nearly Rs 4,000 crore surplus budget, but lingering power deficit may force the new government to spend more on the power purchase. Telangana, spread in 1,14,840 square kilometres, has 66.46 per cent literacy rate with a population of 3.52 crore.

 

ECONOMY OF TELAGANA

The Economy of Telangana is mainly driven by agriculture. Two important rivers of India, the Godavari and Krishna, flow through the state, providing irrigation. Rice, cotton, mango and tobacco are the local crops. Recently, crops used for vegetable oil production such as sunflower and peanuts have gained favour. There are many multi-state irrigation projects in development, including Godavari River Basin Irrigation Projects and NagarjunaSagar Dam, the world's highest masonry dam. Telangana is a mineral-rich state, with coal reserves at SingaerniColleries. The population of Telangana is over 35 million now – much more than 30 million for the whole of Andhra Pradesh, including Telangana, at the time of its formation in 1956. The demands on governance have multiplied over this half a century. Apart from commitment to the development of the region, a smaller state being more easily accessible to the common people can intelligently and speedily grapple with their problems.

 

INDUSTRIAL POLICY FRAMEWORK FOR STATE OF TELANGANA

Industrialization will be the key strategy followed for economic growth and development for Telangana, the 29th state of the country. People of the new state have very high expectations from the Telangana State Government for creating jobs for the youth, promote development of backward areas, maximize growth opportunities by optimum utilization of the available resources, harness the talents and skills of the people etc. The Government of Telangana State realizes that industrial development requires large-scale private sector participation, with the government playing the role of a facilitator and a catalyst. The government is committed to provide a graft-free, hassle-free environment in which the entrepreneurial spirit of local, domestic and international investors will thrive to take up their industrial units in the state of Telangana as the preferred investment destination.

The new Telangana State Industrial Policy will be rooted in certain core values, as follows:

 

                • The Government regulatory framework shall facilitate industrial growth

                • Entrepreneurs will thrive in a peaceful, secure and progressive business regulatory                                        environment

                • Industrial development will lead to massive creation of jobs benefitting local youth

                • Industrialization shall be inclusive and facilitate social equality

 

The new Telangana State Industrial Policy will strive to provide a framework which will not only stabilize and make existing industries more competitive, but also attract and realize new international and national investments in the industrial sector. It is expected that the most significant outcome of this approach will be the production of high quality goods at the most competitive price, which establishes “Made in Telangana-Made in India” as a brand with high global recognition. The Industrial Policy Framework has the following mandate for departments that have any responsibility in the industrialization of the State—Minimum Inspection and Maximum Facilitation.

The Government of Telangana State is determined to create an ecosystem in which the ease of doing business in the state matches and even exceeds the best global standards. Telangana State Government is aware that offering a hassle-free system is considered to be of the highest priority by the industrialists, and accordingly the government will implement a very effective industrial clearance system that will go beyond the traditional single window system.

 

THRUST AREAS AND CORE SECTORS

•             Life Sciences including, bulk drugs, formulations, vaccines, nutraceuticals, biological,   incubation centers, R&D facilities and medical equipment.

•             IT Hardware including bio-medical devices, electronics, cellular communications.

•             Precision engineering, including aviation, aerospace, defence.

•             Food processing and nutrition products including dairy, poultry, meat and fisheries.

•             Automobiles, Transport Vehicles, Auto-components, Tractors and Farm Equipment.

•             Textiles and Apparel, Leather and leather value added products like shoes, purses, bags,         artificial   material infused and coated textiles, paper and paper products.

•             Plastics and Polymers, Chemicals and Petro-chemical, glass and ceramics.

•             FMCG and Domestic Appliances.

•             Engineering and Capital Goods, including castings, foundry and Ferro-alloys and other    metallurgical industries.

•             Waste Management and Green Technologies.

•             Renewable Energy and Solar Parks.

•             Mineral-based and wood-based Industries.

•             Transportation/Logistic Hub/Inland Port/Container Depot.

 

Telangana has emerged as a State that provides that right climate for the growth of IT business and is now one of the most preferred destinations in the Country.

The State of Telangana is poised towards creating a benchmark in Information & Communication Technology (ICT) endowed with a high quality state-of-the-art physical & communication infrastructure of international standards, harnessed human resources, and proactive business friendly policies of the Government.

It is estimated that about 20 lakh acres of land is available in the state that has been identified as unfit for cultivation in Telangana. Based on a detailed survey of these land parcels and identification of those parcels that are fit for industrial use, an industrial land bank for the State of Telangana will be developed.

The development of industrial and related infrastructure will be the responsibility of the Telangana State Industrial Infrastructure Corporation (TSIIC). The financial base of the TSIIC will be strengthened and it will be made to function as an effective organization. All lands in the State identified as fit for industrial use will be transferred to the TSIIC.

To support industrialization, the Government of Telangana will earmark 10% of water from all existing and new irrigation sources for industrial use. Water pipelines will be laid as a part of infrastructure creation for each industrial park by TSIIC. The Government of Telangana State recognizes that quality power and uninterrupted power supply are keys to the growth of the industrial sector. The State has a clear short-, medium-, and long-term plans to first overcome the power shortage and eventually become a power surplus state. Accordingly, uninterrupted power supply will be arranged in each industrial park. The Telangana State Government will encourage usage of non-conventional energy for industrial purposes.

The Telangana State Government is committed to encourage the process of industrialization by making various kinds of incentives available to the entrepreneurs. The Telangana State Government also assures an entrepreneur-friendly and graft-free regime of disbursing the incentives. The Telangana State Government will consider providing incentives to the entrepreneurs in the following areas-

•             Stamp duty reimbursement

•             Land conversion cost

•             Investment subsidy

•             VAT reimbursement

•             Interest subsidy

•             Clean production measures

•             Reimbursement of infrastructure development costs etc.

A sound industrial policy has to ensure that the state taxation structure is conducive to industrial growth and state financial resource augmentation. Distortions in the tax structure leads to evasion of taxes and clandestine transport of industrial inputs and outputs to neighbouring states, which may have advantageous tax rates. The presence of important national and state highways, coupled with the availability of resources and opportunities, provides a great potential for development of industrial corridors in the state along these roadways.

The Industrial Corridors that will be developed initially will be:

 

1) Hyderabad-Warangal Industrial Corridor

2) Hyderabad-Nagpur Industrial Corridor

3) Hyderabad-Bengaluru Industrial Corridor

The new Industrial Policy brought out by the Government of Telangana promises to revolutionise the way industrial sector has been viewed by successive governments in this country. A day is not far when the new Industrial Policy of Telangana will shine as an exemplar among the best in the world.

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Masala Powder - 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

Spices are non-leafy parts (e.g. bud, fruit, seed, bark, rhizome, bulb) of plants used as a flavoring or seasoning, although many can also be used as a herbal medicine. A closely related term, ‘herb’, is used to distinguish plant parts finding the same uses but derived from leafy or soft flowering parts. The two terms may be used for the same plants in which the fresh leaves are used as herbs, while other dried parts are used as spices, e.g. coriander, dill. Spices are no longer regarded as wonders of medicine, but they still play an important part in the manufacture of many cosmetics and perfumes and are grown commercially for their coloring and preservative properties. Nutmeg and mace are no longer the main crops of the Moluccas, but instead are grown on a large scale on the West Indian island of Grenada. Cloves, however, still come from Madagascar and Zanzibar-names that are still evocative and romantic and hint strongly of spices. Spices can be aromatic or pungent in flavors and peppery or slightly bitter in taste. In order to keep their fragrance and flavor intact, they are generally added in the cooking recipes at the last moments since, prolonged cooking results in evaporation of essential oils. Spices are being used in the preparation of season soups, barbecue sauces, pickling and as a main ingredient in a variety of curry powders.Spices along with some seasonal herbs are being used to enhance the flavor and taste of vegetable, chicken, fish and meat dishes. Any entrepreneur venture into this field will be successful. Few Indian Major Players are as under • A V T Mccormick Ingredients Pvt. Ltd. • A V Thomas Intl. Ltd. • Chordia Food Products Ltd. • Devon Foods Ltd. • Eastern Overseas Ltd. • Empire Spices & Foods Ltd. • Indian Chillies Trdg. Co. Ltd. • Indian Products Ltd. • J C R Drillsol Pvt. Ltd. • Jamnadas Madhavji Intl. Ltd. • Kedar Spices Ltd. • Kohinoor Foods Ltd. • M T R Foods Pvt. Ltd. • Madhur Industries Ltd. • N H C Foods Ltd. • Nedspice Processing India Pvt. Ltd. • Ramdev Food Products Pvt. Ltd. • S T C L Ltd. • Shalimar Chemical Works Pvt. Ltd. • Swani Spice Mills Pvt. Ltd. • Vinayak Ingredients (India) Pvt. Ltd. Capacity: • Red Chilli Powder: 400 Kgs/Day • Sambhar Masala : 400 Kgs/Day • Biryani Masala: 400 Kgs/Day • Chicken Fry Masala : 400 Kgs/Day • Garam Masala: 400 Kgs/Day
Plant capacity: Red Chilli Powder:400 Kgs/Day •Sambhar Masala :400 Kgs/Day •Biryani Masala:400 Kgs/Day •Chicken Fry Masala:400 Kgs/DayPlant & machinery: Rs 54 Lakhs
Working capital: -T.C.I: Cost of Project:Rs 317 Lakhs
Return: 30.23%Break even: 50.14%
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MACARONI, VERMICELLI & ATTA NOODLES - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Macaroni are made from wheat flour, carbonic salt water, pure salt, soft water and other additives. Carbonic salt water with sodium or potassium carbonate as the main constituent is an important additive giving the stickiness, elasticity, smoothness and good taste. Mixing or compounding wheat powder and additives (powder state) or their solution, is the most important factor deciding the quantity of the dough (paste state) of the additives are incorporated, with wheat powder, either dissolved or dispersed in carbonic salt solution or in emulsion state. The quantity of water and salt used in the process differs in summer and winter, as viscosity and osmotic pressure are sensitive to temperature. Vermicelli is the symbol of religious festivals in India. It is prepared at the occasion of Rakshabandhan in the Hindu custom and at the occasion of Id-ul-fitter in the Muslim custom. Besides, it is regularly consumed by so many families as a sweet-dish, or curry or fired and salty. Atta instant noodles is a ready to cook and serve snack food which has become very popular in India in the recent years The noodles must contain 5.5% of the solids of eggs as percent of the total solid in the finished product. The egg solids can be put into the product by addition of frozen yolks, dried yolks, frozen whole eggs, dried whole eggs, or fresh whole eggs or yolks. As a whole it is a good project for entrepreneurs to invest. Few Indian Major Players are as under • Indo Nissin Foods Ltd. • M T R Foods Pvt. Ltd. • Nestle India Ltd. • Om Oil & Flour Mills Ltd. • Surya Agroils Ltd.
Plant capacity: Macaroni :1MT/Day •Vermicelli : 1MT/Day •Atta Noodles: 1MT/DayPlant & machinery: Rs 33 Lakhs
Working capital: -T.C.I: Total Cost Of Investment:Rs 151 Lakhs
Return: 45.00%Break even: 39.00%
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METHYL METHACRYLATE - 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

Methyl methacrylate (MMA) is an organic compound with the formula CH2=C(CH3)COOCH3. This colourless liquid, the methyl ester of methacrylic acid (MAA) is a monomer produced on a large scale for the production of poly(methyl methacrylate) (PMMA) but another major application is in surface coatings. MMA is also used as co monomer in methyl methacrylate butadiene styrene resins, used as a modifier for polyvinyl chloride (PVC). Methyl Methacrylate Monomer offers significant advantages as an additive in a wide range of copolymer-based products and is used in molding and extruded resins and extruded sheet (PMMA), in mineral surface composites, and coatings. Emerging uses of MMA in digital signboards and displays in the advertising industry and in optical applications such as LCD, LED screens, and flat panel displays in the electronics industry are stimulating growth in the market. Growing healthcare spending is spurring demand for PMMA in the production of medical devices. MMA is used for the production of pure or almost pure homopolymers (PMMA), but there is also wide variety of copolymer uses. Within the PMMA consumption categories, the largest is for cast and extruded transparent acrylic sheet (PMMA sheet). Liquid crystal displays : Acrylics is used in Liquid Crystal Displays (LCD) and the current and projected growth for large LCD screens for home theatre etc. has been a major driver for MMA expansions, especially in Asia, where virtually all the LCD manufacturing market is now concentrated. Moulding resins : MMA is used in the production of moulding resins (excluding the resin beads prepared for extruded acrylic sheet production). Most of the final products are destined for automotive parts and electrical appliances. Surface coatings : MMA is used for the production of surface coatings, both for industrial solvent based systems and increasingly, for water based acrylic dispersions for domestic and industrial use. MMA is used in water based acrylic dispersions for exterior masonry and wood coatings and semi gloss emulsions for interior decorative coatings. Gujarat State Fertiliser Company (GSFC) is the only producer of MMA in India. Installed capacity of 5,000 metric tonne per annum of MMA, along with plants for PMMA sheets (2,000 metric tonne per annum) and PMMA pellets (1,500-metric tonne per annum ). The consumption pattern of MMA in India differs from that of the rest of the world. The major use of the monomer in India is in the coatings industry, which accounts for about 70% of total consumption. Only 12% of total consumption is for making PMMA sheets and mouldings. Other applications include small uses of textile auxiliaries, sizing materials, modifier for PVC modifiers etc. With over 70% of Methyl Methacrylate (MMA) used in the production of Polymethyl Methacrylate (PMMA), the growing demand for PMMA against the backdrop of strong electronics production is benefiting growth in the MMA market. The growth in the market is also benefiting from emerging new applications of MMA, and its derivatives in a wide range of industries. Construction and automotive industries represent other major end-users of MMA in addition to electronics. Recovery in global GDP is poised to benefit consumption of MMA and its derivatives in architecture and construction, guided by the improving investments in residential and commercial construction projects. Stable automobile production trends worldwide are also expected to help boost global consumption of MMA. Polymethyl Methacrylate (PMMA) is expected to emerge as a substitute for existing medical polymers, against the backdrop of growing concerns over the health hazards caused by the use of PVC and polypropylene in addition to low biocompatibility issues. The presence of phthalate plasticizers in PVC is generating significant interest in PMMA in the healthcare industry. The growing use of plastics as a result of the increased focus on manufacturing light vehicles is helping spur demand for MMA/PMMA in automobile production. Stringent vehicle emission norms worldwide will additionally lend traction to growth in this sector. The automotive industry is one of the largest end user of MMA especially in molding and extrusion compounds. The use of MMA/PMMA in automotive plastics in addition to weight reduction also helps minimize vehicle vibration, cabin insulation, noise control, and enhance aesthetics. Specialty products such as optical-grade plexiglass, compact disk plexiglass and radiation shielding plexiglass are expected to offer lucrative growth potential. PMMA liquid membrane roofing system is a major advancement in the market, used in a wide range of applications including plaza decks, garden roofs, small roofs and irregular shaped roofs. The PMMA liquid membrane system is widely used in roofing crews owing to several benefits such as substrate compatibility, ease of use, speed and versatility
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Biodiesel - 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

Biodiesel (chemically known as fatty acid methyl ester) is an alternative fuel to conventional diesel (obtained from crude petroleum). When vegetable oil or animal fat is chemically reacted with an alcohol (methanol) and catalyst(caustic soda or caustic potash or sodium methoxide), biodiesel is produced along with glycerineas by product. This process is called transesterification. Biodiesel fuel has chemical properties that are similar to conventional diesel fuel and does not require any engine modifications or new equipment to enable its use as a blend stock or substitute for conventional diesel.Unlike conventional diesel fuel, biodiesel is renewable fuel and significantly reduces levels of harmful pollutants and global warming gases. The feedstock (vegetable oil and fats) include the following • Vegetable oils produced from oil seeds (like rape seeds / canola, soybean, sunflower, palm, jatropha, corn, cotton seed, etc) • Oil obtained from algae • Used cooking oil and grease (yellow, brown, etc) • Animal fat (beef tallow, poultry fat, pork fat, etc) • Fatty acids including palm fatty acid distillate • Wastes (e.g. waste oils, food processing wastes, etc), agricultural residues (straw, corn stover, etc), forestry residues and novel feedstocks, such as algae. Current R&D on biofuels is mainly focused on: • Developing cost-competitive advanced technologies to convert wastes into fuels; • Producing fuels with advanced properties that are compatible with existing engines and infrastructures (for air, long-distance freight, and shipping). However, biofuels production cannot be viewed in isolation. Biofuels are part of a growing global bioindustry, driven by the need to reduce reliance on fossil fuels, to decelerate climate change, increase fuel security and develop a greater range of bioproducts. With a growing global population, mean there is increasing local and global competition for land, feedstocks and water for food production (i.e. crops and livestock), non-food use (e.g. timber for construction), bioproducts (e.g. soaps, textiles, biopolymers, etc), and bioenergy (heat and power), as well as liquid biofuels. ? Selected producers of biodiesel in India • Universal Biofuels Pvt. Ltd • Southern Online Bio tech Ltd • Bannari Amman Sugars • My Ecoenergy • Emami Biotech Ltd To maximise the value of biomass resources, cascading production of bio products, liquid fuels and may be integrated in biorefineries. At the same time, biodiversity (species of plants and animals) need to be conserved, and forested areas must be protected as they act as important habitats and carbon sinks. In other words, the forests store large amounts of carbon in vegetation and soil. If areas are cleared for logging, grazing, crop production or constuction, the carbon is released into the atmosphere and habitat is lost. In order to ensure that communities, biodiversity and land are protected, a number of certification schemes and sustainability initiatives have been put in place for biofuels. These include initiatives by trade organisations, civil societies (NGOs), and government bodies. Further details are provided on the pages covering sustainability and certification of biofuels. In the coming decades, biofuels will be required for road, air, rail and shipping. An integrated biofuels strategy is required for meeting the competing needs of these different transport types at national and international level.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Melamine - 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

Melamine is an organic compound that is often combined with formaldehyde to produce melamine resin, a synthetic polymer which is fire resistant and heat tolerant. Melamine resin is a very versatile material with a highly stable structure. Uses for melamine include whiteboard, floor tiles, kitchenware, fire retardant fabrics, and commercial filters. Melamine can be easily molded while warm, but will set into a fixed form. This property makes it ideally suited to certain industrial applications. Melamine resin is manufactured by mixing melamine with formaldehyde, and sometimes urea, under heat and pressure. The substances begin to polymerize and are forced into a mold which will create the desired shape. Under pressure, melamine releases water, which could make the plastic unstable if it is not removed. The materials finish polymerizing and create a finished product, melamine resin. Melamine resin is known as a thermoset plastic, because the plastic is fixed after molding. If exposed to enough heat, melamine will decompose. For this reason, melamine dishware should not be exposed to high temperatures like those in the oven and microwave. The plastic is able to withstand higher temperatures than other plastics, however. Because it is a thermoset plastic, melamine resin is difficult to recycle. Melamine is stable, when stored under normal warehouse conditions. Although not particularly hygroscopic, powdered melamine must still be protected from wetting because, like most powders, it will form lump over extended storage period. The use of melamine as fertilizer for crops had been envisaged during the '50s and '60s because of its high nitrogen content (2/3). However melamine is much more expensive to produce than other common nitrogen fertilizers, such as urea. To be effective as a fertilizer, it is essential that the plant nutrients are released or made available in a manner that matches the needs of the growing crop. The nitrogen mineralization process for melamine is extremely slow, making this product both economically and scientifically impractical for use as a fertilizer. New project proposal under implementation In India Company: Gujarat State Fertilisers & Chemicals Ltd.,(GSFC) Capacity: 40000 metric tonne per annum Project cost: Around Rs.1000 crore Location: Vadodara,Gujarat The contract has been signed for supply of knowhow, basic engineering and proprietary equipment with M/s. Casale, Switzerland. Project is planned to be operational in 2nd quarter of 2017-18. To check adulteration in milk and milk products, the Food Safety and Standards Authority of India (FSSAI) has notified the maximum permissible level of the contaminant — melamine —in dairy products. According to the notification, FSSAI has imposed a permissible limit of 1 mg of melamine in every kg of powdered infant formula, 0.15 mg a kg in liquid infant formula and 2.5 mg a kg in other foods. This has been introduced in the Food Safety and Standards (Contaminants, Toxins & Residues) Amendments Regulations 2015. Global scenario Global production / demand (Period:2015):1.3 million metric tonne .China is the largest single participant in the melamine market, accounting for half of world consumption. Melamine capacity in China was 2.40 million metric tonne per annum in 2014, around 70% of the world total. China has around 29 melamine producers. Europe is the second largest melamine market, accounting for nearly 25% of world consumption. United States accounts for only about 4 to 5% of global melamine consumption. Melamine consumption structure consists of 50% laminates, followed by adhesives and resins for wood. The demand for melamine is likely to go up in tune with the performance of the laminate / plywood/ particle board industry, which in turn would increase in tune with the growth of the construction / furniture industry . During the next few years, global melamine consumption will grow at rate of about 4% per year, driven by China‘s growth and increases in other regions such as other Asian countries (not including Japan), Central and Eastern Europe, and the Middle East. Annual growth in Central and Eastern Europe is expected to be 3 to 4%, largely the result of increased production of laminates and wood adhesives. Consumption growth in Western Europe is forecast at more modest rate of 1 to 2% per year. Other Asian countries (excluding Japan) are expected to show good consumption growth at an average annual rate of 4%.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Blood Bags - 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

Blood bag is a disposable bio-medical device used for collection, storage, transportation and transfusion of human blood and blood components. The system consists of a single or multiple bag connected with tubings, needle, needle cover, clamp etc. The Blood Bags are made of plastic-material, which are compatible with blood. The introduction of flexible PVC bags for the storage of blood and its components totally replaced the use of glass bottles because of its numerous advantages. Blood bags enable better separation of blood components in a more sterile manner and safer transfusion of components. This has led to increasingly wider use of blood component therapy than whole blood use, thus enabling more effective use of the scarce donor blood that is available. Blood Bags can successfully replace the use of glass bottles for collection storage, transportation and transfusion of blood and blood components since bottles require exhaustive cleaning, rinsing and autoclaving procedures and there are chances of breakage at any stage. Further, use of disposable bags eliminates the possibility of any contamination. Blood bags contain an anticoagulant solution and a red blood cell preservative solution, and are used in blood banks which both collect donor blood and separate blood components. Blood bags are made from imported, medical grade PVC granules & sheets in Class 10000 Clean room environments. Increase in the healthcare facilities will further act as a driver for the growth of medical devices sector in India. The blood bag market is expected to grow further in the coming years owing to continuous developments and rising demand for better blood collection technology. As a whole it is a good project for new entrepreneurs to invest.
Plant capacity: 10000 Nos./DayPlant & machinery: Rs 176 Lakhs
Working capital: -T.C.I: Cost of Project:Rs 1106 Lakhs
Return: 25.24%Break even: 69.15%
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Precipitated Silica from Rice Husk Ash - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Rice husk is an agricultural residue easily available in rice producing countries. India is a major rice producing country, and the husk generated during milling is mostly used as a fuel in the boilers for processing paddy, producing energy through direct combustion & or by gasification. The rice husk contains about 75% organic volatile matter & the balance 25% of the weight of this husk is converted into ash during the firing process, is known as rice husk ash (RHA). This RHA in turn contains around 85%–92% amorphous silica. Silica is one of the valuable inorganic chemical compounds. It can exist in gel, crystalline and amorphous forms. It is the most abundant material in the earth’s crust. Silica is the major constituent of rice husk ash. With such a large ash content & silica content in the ash it becomes economical to extract silica from the ash, which has wide market & also takes care of ash disposal. Precipitated Silica (also called particulate silica) is composed of aggregates of ultimate particles of colloidal size that have not become linked in massive gel network during the preparation process. Precipitated Silica soluble silicate solutions are of fine controlled particle size & porous in nature. Precipitated silica powders have a more open structure with higher volume than dried pulverized gels. Precipitated silica is used as filler for paper & rubber as a carrier & diluents for agricultural chemicals, as an anti caking agent, to control viscosity & thickness and as a cleansing agent in toothpastes & in cosmetics. Precipitated silica also finds its applications as anti caking agents in food industry & as thermal insulators. Precipitated silica is perhaps the best not black filler and reinforcing agent used in rubber industry especially for the production of silicon rubber. Precipitated silica market is fragmented and major portion of the global market share is constituted by regional players. Therefore, precipitated silica market has high price sensitivity. Moreover low capital investment has increased the threat of new entrants in the market mainly in the developing economies. There has been surge in investment by major players in the emerging economies. Thus, as an entrepreneur this project offers an exciting opportunity to you.
Plant capacity: Precipitated Silica:10 MT/Day • CaCO3 (by product):20.6 MT/DayPlant & machinery: Rs 864 Lakhs
Working capital: -T.C.I: Cost of Project:Rs 1255 Lakhs
Return: 25.00%Break even: 50.00%
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Distribution Transformer - 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

A distribution transformer is a transformer that provides the final voltage transformation in the electric power distribution system, stepping down the voltage used in the distribution lines to the level used by the customer. If mounted on a utility pole, they are called pole-mount transformers (or colloquially a pole pig). If the distribution lines are located underground, distribution transformers are mounted on concrete pads and locked in steel cases, thus known as pad-mount transformers. Because of weight restrictions transformers for pole mounting are only built for primary voltages under 30 KV. The transformers is a device that transfers electricity or energy from one electric circuit to another without change of frequency and usually, but not always, with a change in voltage. In India the role of transformers assumes an added significance since in most of the states; electric supplies are not only erratic but are also characterized by wide variations in frequencies or voltages. These causes enormous damage to the electrical appliance like refrigerators, television and other industrial machinery engaged in the production of commodities. The transformer industry with the help of innovative methods, upgradation in technology etc., will have to manufacture transformers which offer maximum functional efficiency and are at the same time less hazardous or dangerous and economically viable. With some fast moves at launching fast track projects to augment supplies, the Indian industry needs to improve its competitiveness. The Indian market is growing and multinationals with newer technologies are now more active. The industry, as a consequence, needs strategic alliances and tie-ups with technology suppliers to upgrade their supplies. Thus, due to demand it is a good project for entrepreneurs to invest. Few Indian Major Players are as under • Accurate Transformers Ltd. • Andrew Yule & Co. Ltd. • Apex Electricals Ltd. • Crompton Greaves Ltd. • I M P Powers Ltd. • Indo Tech Transformers Ltd. • Kerala Electricals & Allied Engg. Co. Ltd. • Kirloskar Electric Co. Ltd. • Rams Transformers Ltd. • Shilchar Technologies Ltd. • Star Delta Transformers Ltd. • Tarapur Transformers Ltd. • Tesla Transformers Ltd. • Transformers & Rectifiers (India) Ltd. • Ujaas Energy Ltd. • Victory Electricals Ltd. • Victory Transformers & Switchgears Ltd.
Plant capacity: 2000 Nos./AnnumPlant & machinery: Rs 44 Lakhs
Working capital: -T.C.I: Cost of Project:eRs 391 Lakhs
Return: 28.00%Break even: 67.00%
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Seamless Pipes and Tubes - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue

The seamless steel pipe industry is almost one century old. The prime reason for the development was provided by transportation sector. Petroleum sector consumes largest quantities of seamless tubes. The Indian seamless tube industry is about 55 Years old. Seamless pipe as the name suggests is a pipe without a seam or a weld-joint in contrast to Seam or Welded pipe. In a Seam or Welded pipe, the seam or the weld-joint is the weaker part of the pipe limiting the strength of the pipe to the strength of the weld-joint. Whereas the seamless pipe does not have any such joint and thus has uniform structure & strength all over the pipe body. Thus the seamless pipe can withstand higher pressure, higher temperature, higher mechanical stress & corrosive atmosphere and find wide applications in Oil & Gas, Refinery, Petrochemical, Chemical, Fertilizer, Power, Automotive, Bearing, Mechanical & Structural applications. The greatest advantage of seamless steel pipes is their increased ability to withstand pressure. The weakest point in a welded steel pipe is the welded seam. But because a seamless steel pipe has not been welded, it doesn’t have that seam, making it equally strong around the entire circumference of the pipe. Stainless steel pipes are used in petrochemicals, fertilizers, dairy industries power stations and nuclear plants. Other corrosion resistant applications as of food processing industry are also significant users. These pipes are used extensively by Nuclear Fuel Corporation. As a whole it is a good project for entrepreneurs to invest. Few Indian Major Players are as under • Bharat Heavy Electricals Ltd. • Gandhi Special Tubes Ltd. • I S M T Ltd. • Indian Seamless Enterprises Ltd. • Indian Seamless Metal Tubes (Kalyani Seamless Tubes) Ltd. • Indian Seamless Metal Tubes Ltd. • Indosin Pvt. Ltd. • Jindal Saw Ltd. • Mahalaxmi Seamless Ltd. • Maharashtra Seamless Ltd. • Oil Country Tubular Ltd. • P S L Ltd. • Patels Airflow Ltd. • R M G Alloy Steel Ltd. • Tubetec Seamless Ltd.
Plant capacity: 50 MT/DayPlant & machinery: Rs 636 Lakhs
Working capital: -T.C.I: Cost of Project:Rs 2695 Lakhs
Return: 27.98%Break even: 39.79%
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Micronutrients Fertilizer for Banana, Vegetables and Citrus - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study

Micronutrients are elements which are essential for plant growth, but are required in much smaller amounts than those of the primary nutrients; nitrogen, phosphorus and potassium. The micronutrients are boron (B), copper (Cu), iron (Fe), manganese (Mn), molybdenum (Mo), zinc (Zn), and chloride (Cl). While chloride is a micronutrient, deficiencies rarely occur in nature, so discussions on supplying micronutrient fertilizers are confined to the other six micronutrients. Deficiencies of micronutrients have been increasing in some crops. Some reasons are higher crop yields which increase plant nutrient demands, use of high analyses NPK fertilizers containing lower quantities of micronutrient contaminants, and decreased use of farmyard manure on many agricultural soils. Micronutrient deficiencies have been verified in many soils through increased use of soil testing and plant analyses. A micronutrient fertilizer composition should fulfill the following criteria in order to secure the best effect and optimum plant growth: It should contain a number of the essential micronutrients, and preferably all of the essential micronutrients which are not readily available from the soil; It should be formulated and applied so as to ensure the best possible absorption of the micronutrients by the plant; It should be applied at the proper time in relation to the growth of the plant, i.e. especially at the beginning of the plant's growth cycle and when the soil temperature is at least about 5°C It has now been found that crop plants can easily and inexpensively be provided with a suitable balance of the essential micronutrients in a readily available form by means of a novel solid micronutrient fertilizer composition comprising the micronutrients in the form of metal salts together with at least one water-soluble nitrate. As a whole it is a good project for entrepreneurs to invest. Few Indian Major Players are as under • Ajay Bio-Tech (India) Ltd. • Aries Agro Ltd. • Asian Fertilizers Ltd. • Chambal Fertilisers & Chemicals Ltd. • Gujarat State Fertilizers & Chemicals Ltd. • Indian Farmers Fertiliser Co-Op. Ltd. • Madras Fertilizers Ltd. • Mangalore Chemicals & Fertilizers Ltd. • Nava Bharath Fertilizers Ltd. • Navkisan Bio Plaantec Ltd. • Rashtriya Chemicals & Fertilizers Ltd. • Recon Agrotech Ltd. • Shivashakti Bio Technologies Ltd. • Tata Chemicals Ltd.
Plant capacity: Micronutrients Fertilizer for Banana:500 Kgs/Day •Micronutrients Fertilizer for Vegetables:500 Kgs/Day •Micronutrients Fertilizer for Citrus: 500 Kgs/DayPlant & machinery: Rs 7 Lakhs
Working capital: -T.C.I: Cost of Project:Rs 30 Lakhs
Return: 30.00%Break even: 72.00%
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  • One Lac / Lakh / Lakhs is equivalent to one hundred thousand (100,000)
  • One Crore is equivalent to ten million (10,000,000)
  • T.C.I is Total Capital Investment
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  • Caution: The project's cost, capacity and return are subject to change without any notice. Future projects may have different values of project cost, capacity or return.

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