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

Automotive Industry: Project Opportunities in Tamil Nadu

 

PROFILE:

The automotive industry in India is one of the largest in the world and one of the fastest growing globally. India's passenger car and commercial vehicle manufacturing industry is the seventh largest in the world, with an annual production of more than 3.7 million units in 2010. Automotive industry is the key driver of any growing economy. It plays a pivotal role in country's rapid economic and industrial development. It caters to the requirement of equipment for basic industries like steel, non-ferrous metals, fertilisers, refineries, petrochemicals, shipping, textiles, plastics, glass, rubber, capital equipments, logistics, paper, cement, sugar, etc. It facilitates the improvement in various infrastructure facilities like power, rail and road transport. Due to its deep forward and backward linkages with almost every segment of the economy, the industry has a strong and positive multiplier effect and thus propels progress of a nation. The automotive industry comprises of the automobile and the auto component sectors.

 

RESOURCES:

Tamil Nadu is being popularly hailed as “Detroit” of India as it has a large Automobile and Ancillary sector. Automobile industry plays a crucial role in the State economy and has been one of the key driving factors, contributing 8% to State GDP and giving direct employment to 2,20,000 people. More than100 companies in the Automotive and Auto Ancillary industry are located in this state, maintaining highest production norms by implementing internationally recognized quality standards. Chennai has emerged as India's largest automobile and auto components exporter in India. Hyundai has made Chennai the manufacturing and export hub for its small cars. Tamil Nadu has the largest auto components industry base. Currently, Tamil Nadu accounts for above 32% of India's production capacity. Automobile manufacturers operate "Just - in-Time" avoiding inventory costs. The state has a well-developed automotive and auto component industry. It is the hub of Indian automobiles industry. Several automobile and automobile ancillary units are located in Tamil Nadu. It has manufacturing facilities across the automotive spectrum from tractors to battle tanks. Global auto majors like, Hindustan Motors and Mitsubishi have commenced production plants. Ashok Leyland and TAFE have set up expansion plants in Chennai. Fortune 500 companies such as Hyundai and Ford have established manufacturing facilities in the state.

 

GOVERNMENT POLICIES:

Government brought out a very innovative Policy "Ultra Mega Policy for Integrated Automobile Projects" that offers a very attractive package of support to automobile projects investing more than Rs.4000 Crores. As a result of this Policy, since May 2006, investments attracted by Tamil Nadu is automobiles & components manufacturing is Rs.21900 Crores, almost 5 times of the Investments attracted during previous 15 years (May 1991-April 2006). The total employment potential in these new projects is: 1.20 lakhs (direct + Indirect). Govt of India is currently implementing a project "National Automotive Testing R&D Infrastructure Project" (NATRIP) in Oragdam near Chennai at a project cost of about Rs.450 Crores. This project aims at facilitating introduction of world-class automotive safety, emission and performance standards in India as also ensure seamless integration of our automotive industry with the global industry.

 

Textile: Project Opportunities in Tamil Nadu

 

PROFILE:

The textile industry is primarily concerned with the production of yarn, and cloth and the subsequent design or manufacture of clothing and their distribution. The raw material may be natural or synthetic using products of the chemical industry. India Textile Industry is one of the leading textile industries in the world. Though was predominantly unorganized industry even a few years back, but the scenario started changing after the economic liberalization of Indian economy in 1991. The opening up of economy gave the much-needed thrust to the Indian textile industry, which has now successfully become one of the largest in the world.

RESOURCES:

Tamil Nadu has traditional strengths in the textile sector. In the post-quota abolition regime, the Textile Industry has tremendous opportunities for growth as well as challenges to be met. Availability of cotton at fair prices and at right quality, the backlog in modernization, supply of inputs particularly credit and power at reasonable rates etc. are all essential for the textile industry to be competitive in an increasingly uncertain trading environment. The Handlooms, Power looms, Hi-Tech Weaving Parks, Garments & Hosiery, Processing Apparel Park are important components of the textile industry.

GOVERNMENT POLICIES:

 

The Ministry of Textiles in India has formulated numerous policies and schemes for the development of the textile industry in India. The government of India has been following a policy of promoting and encouraging the handloom sector through a number of programmes. Most of the schematic interventions of the government of India in the ninth and tenth plan period have been through the state agencies and co-operative societies in the handloom industries. Some of the major acts relating to textile industry include: Central Silk Board Act, 1948, The Textiles Committee Act, 1963, The Handlooms Act, 1985, Cotton Control Order, 1986, The Textile Undertakings Act, 1995Government of India is earnestly trying to provide all the relevant facilities for the textile industry to utilize its full potential and achieve the target. The textile industry is presently experiencing an average annual growth rate of 9-10% and is expected to grow at a rate of 16% in value, which will eventually reach the target of US $ 115 billion by 2012. The clothing and apparel sector are expected to grow at a rate of 21 %t in value terms.

 

Leather: Project Opportunities in Tamil Nadu

 

PROFILE:

Leather Industry occupies a place of prominence in the Indian economy in view of its massive potential for employment, growth and exports. There has been increasing emphasis on its planned development, aimed at optimum utilisation of available raw materials for maximising the returns, particularly from exports.  The leather and leather products industry is one of India’s oldest manufacturing industries that catered to the international market right from the middle of the nineteenth century. The leather industry employs about 2.5 million people and has annual turnover of Rs. 25,000 crores. India is the third largest leather producer in the world after China and Italy

RESOURCES:

Leather industry in Tamil Nadu is considered to be very ancient and some say it is of more than two centuries old. The state accounts for 70 per cent of leather tanning capacity in India and 38 per cent of leather footwear and components. The exports from Tamil Nadu are valued at about US $ 762 million, which accounts for 42 per cent of Indian leather exports. Hundreds of leather and tannery industries are located around Vellore, Dindigul and Erode its nearby towns such as Ranipet, Ambur, Perundurai, Nilakottai and Vaniyambadi. The Vellore district is the top exporter of finished leather goods in the country. That leather accounts for more than 37% of the country's Export of Leather and Leather related products such as finished leathers, shoes, garments, gloves and so on. The tanning industry in India has a total installed capacity of 225 million pieces of hide and skins of which Tamil Nadu alone contributes to an inspiring 70%. Leather industry occupies a pride of place in the industrial map of Tamil Nadu. Tamil Nadu enjoys a leading position with 40% share in India's export.

GOVERNMENT POLICIES:

Government policies in support of the industry:

• The entire leather sector is now de-licensed and de-reserved, paving way for expansion on modern lines with state-of-the art machinery and equipment

• 100% Foreign Direct Investment and Joint Ventures permitted through the automatic route

• 100% repatriation of profit and dividends, if investments made in convertible foreign currency. Only declaration to this effect to the Reserve Bank is required.

• Promotion of industrial parks (one leather park in Andhra Pradesh, one leather goods park in West Bengal, one footwear park in Tamil Nadu and one footwear components park in Chennai).

• Funding support for modernizing manufacturing facilities 

• Funding support for establishing design studios

• Duty free import of raw materials (namely raw skins, hides, semi finished leather and finished leather) and of embellishments and components under specific scheme

• Concessional duty on import of specified machinery for use in leather sector

• Duty neutralization / remission scheme

Food Processing: Project Opportunities in Tamil Nadu

 

PROFILE:

India is the world's second largest producer of food next to China, and has the potential of being the biggest with the food and agricultural sector. The Indian food processing industry stands at $135 billion and is estimated to grow with a CAGR of 10 per cent to reach $200 billion by 2015. The food processing industry in India is witnessing rapid growth. In addition to the demand side, there are changes happening on the supply side with the growth in organised retail, increasing FDI in food processing and introduction of new products. India's food processing sector covers fruit and vegetables; meat and poultry; milk and milk products, alcoholic beverages, fisheries, plantation, grain processing and other consumer product groups like confectionery, chocolates and cocoa products, Soya-based products, mineral water, high protein foods etc.

RESOURCES:

Tamil Nadu has historically been an agricultural state and is a leading producer of agricultural products in India. In 2008, Tamil Nadu was India's fifth biggest producer of Rice. The total cultivated area in the State was 5.60 million hectares in 2009-10. The state is the largest producer of bananas, flowers, tapioca, the second largest producer of mango, natural rubber, coconut, groundnut and the third largest producer of coffee, sapota, Tea and Sugarcane. Tamil Nadu's sugarcane yield per hectare is the highest in India. Among states in India, Tamil Nadu is one of the leaders in livestock, poultry and fisheries production. Tamil Nadu had the second largest number of poultry amongst all the states and accounted for 17.7% of the total poultry population in India. With the third longest coastline in India, Tamil Nadu represented 27.54% of the total value of fish and fishery products exported by India in 2006.

GOVERNMENT POLICIES:

Tamil Nadu government has come out with following policies :

·         Raise in processed foods in the market from 1% to 10%.

·         Raise value addition levels from 7% to 30 %

·         Food processing industry is one of the growing areas identified for exports. Free Trade Zones (FTZ) and Export Processing Zones (EPZ) have been set up with all infrastructures. Also, setting up of 100% Export oriented units (EOU) is encouraged in other areas. They may import free of duty all types of goods, including capital foods.

·         Capital goods, including spares up to 20% of the CIF value of the Capital goods may be imported at a concessional rate of Customs duty subject to certain export obligations under the EPCG scheme, Export Promotion Capital Goods. Export linked duty free imports are also allowed.

·         Units in EPZ/FTZ and 100% Export oriented units can retain 50% of foreign exchange receipts in foreign currency accounts.

·         50% of the production of EPZ/FTZ and 100% EOU units is saleable in domestic tariff area.

Paper industry: Project Opportunities in Tamil Nadu

 

PROFILE:

Paper Industry in India is riding on a strong demand and on an expanding mood to meet the projected demand of 8 million tons by 2010 & 13 million tons by 2020. The Indian Paper Industry is a booming industry and is expected to grow in the years to come. The usage of paper cannot be ignored and this awareness is bound to bring about changes in the paper industry for the better. It is a well known fact that the use of plastic is being objected to these days. The reason being, there are few plastics which do not possess the property of being degradable, as such, use of plastic is being discouraged. Excessive use of non degradable plastics upsets the ecological equilibrium. The Paper industry is a priority sector for foreign collaboration and foreign equity participation upto 100% receives automatic approval by Reserve Bank of India. Several fiscal incentives have also been provided to the paper industry, particularly to those mills which are based on non-conventional raw material.

RESOURCES:

Tamil Nadu continues to be one of the forerunners in the production of paper and paper products. There are 74 paper mills in operation in Tamil Nadu. The total paper production was 3.7 lakh tonnes in 2005 06 which accounts for 17.30% share of the national production, next only to Andhra Pradesh.  As the country’s forest cover is much below the desired level, the Government of Tamil Nadu established TNPL in 1979 to manufacture newsprint and paper using bagasse (sugarcane waste) as the primary raw material. This is the largest paper mill in India with an installed capacity of 230,000 TPA. Tamil Nadu Newsprint and Papers Limited (TNPL) was established by the Government of Tamil Nadu to produce newsprint and writing paper using bagasse, a sugarcane residue.

GOVERNMENT POLICIES:

Several policy measures have been initiated in recent years to remove the bottlenecks of availability of raw materials and infrastructure development. To bridge the gap of short supply of raw materials, duty on pulp and waste paper and wood logs/chips have been reduced. In the year 1979, Government of Tamil Nadu established Tamil Nadu Newsprint and Papers Limited as a public limited company under the Companies Act, 1956. Commencing production in 1984, with the support of Government of Tamil Nadu, the company has made rapid strides and has emerged as the largest paper mill in India at a single location. With the on-going expansion plan to increase paper production capacity from the present 2.45 lakh tons to 4 lakh tons per annum, TNPL is poised to become a Rs.2000 crores company by 2011-12.

Cement Industry: Project Opportunities in Tamil Nadu

 

PROFILE:

India is the second largest producer of quality cement in the world. The cement industry in India comprises 139 large cement plants and over 365 mini cement plants. Industry's capacity at beginning of the year 2008-09 was 198.30 million tonne (MT) which increased to 219 MT at the close of the year. The initiatives provided by the Government of India to various infrastructure projects, road network and housing activities will provide required stimulus towards the growth of cement industry in India. Domestic demand for cement has been increasing at a fast pace in India & it has surpassed the economic growth of the country.

RESOURCES:

Tamil Nadu is a leading producer of cement in India. It has 13 major cement factories.  It is a home for leading brands in the country such as Chettinad Cements (Karur), Dalmia Cements (Ariyalur), Ramco Cements (Madras Cement Ltd.), India Cements (Sankakari, Ariyalur), Grasim etc. The production of cement in the State increased from 126 lakh tonnes in 2004-05 to 142.89 lakh tonnes in 2005-06 with a growth rate of 13.4% accounting for 10.08 % of cement production at the national level, occupying the 5th place.  However, it may be noted that, the cement production in the private sector has been showing an increasing trend whereas production in the public sector has decreased to 7.85 lakh tonnes from 8.06 lakh tonnes in the public sector for the corresponding period.

GOVERNMENT POLICIES:

Government policies have affected the growth of cement plants in India in various stages. The control on cement for a long time and then partial decontrol and then total decontrol has contributed to the gradual opening up of the market for cement producers. The prices that primarily control the price of cement are coal, power tariffs, railway, freight, royalty and cess on limestone. Interestingly, all of these prices are controlled by government. Cement industry consumes about 5.5bn units of electricity annually while one ton of cement approximately requires 120-130 units of electricity. Power tariffs vary according to the location of the plant and on the production process. The state governments supply this input and hence plants in different states shall have different power tariffs. Another major hindrance to the industry is severe power cuts.

 

Waste management: Project Opportunities in Andhra Pradesh

PROFILE:

Waste utilization, recycling and reuse plays a major role in limiting resource consumption and the environmental impact of waste. Recycling is an integral part of any waste management system as it represents a key utilization alternative to reuse and energy recovery (Waste-to-Energy). Which option is ultimately chosen depends on the quality, purity and the market situation. Hazardous waste management is a new concept for most of the Asian countries including India. The lack of technical and financial resources and the regulatory control for the management of hazardous wastes in the past had led to the unscientific disposal of hazardous wastes in India, which posed serious risks to human, animal and plant life.

 

RESOURCES:

Municipal Solid Waste (MSW) generation in Chennai, the fourth largest metropolitan city in India, has increased from 600 to 3500 tons per day (tpd) within 20 years. The highest per capita solid waste generation rate in India is in Chennai (0.6 kg/d). Chennai is divided into 10 zones of 155 wards and collection of garbage is carried out using door-to-door collection and street bin systems. The collected wastes are disposed at open dump sites located at a distance of 15 km from the city.  Recent investigations on reclamation and hazard potential of the sites indicate the need for the rehabilitation of the sites.  Chennai is the first city in India to contract out MSWM services to a foreign private agency- ONYX, a Singapore based company. The scope of privatization includes activities such as sweeping, collection, storing, transporting of MSW and creating public awareness in three municipal zones.  ONYX collects about 1100 Metric tons of waste from three zones per day and transports it to open dumps.

 

GOVERNMENT POLICIES:

National policy on waste management is set out in the October 1998 policy statement on waste management - Changing our Ways. It outlines the Government's policy objectives in relation to waste management, and suggests some key issues and considerations that must be addressed to achieve these objectives. The policy is firmly grounded in an internationally recognised hierarchy of options, namely prevention, minimisation, reuse/recycling, and the environmentally sustainable disposal of waste which cannot be prevented or recovered.

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Flush Door, Chip Board, Hard Board, Insulating Board

Flush Door A flush door has a basic structure composed of solid blockboard core, vertical stiles, and horizontal rails that create a pre-fixed frame. The blockboard is composed of wooden strips that are placed edge-to-edge and sandwiched between veneers, then bonded under high pressure and temperature using a synthetic resin. So in a simpler term, it is a door that is made of a timber frame covered with ply from both the sides and then the hollow part inside is filled with rectangular blocks of soft wood. Then a decorative finish is given by fixing veneer on the top. A flush door is so called because it has an entirely smooth surface. If water were to be splashed on its surface, it would simply flow off its surface without accumulating. Chip Board Particle board – also known as particleboard, low-density fibreboard (LDF), and chipboard – is an engineered wood product manufactured from wood chips, sawmill shavings, or even sawdust, and a synthetic resin or other suitable binder, which is pressed and extruded. Oriented strand board, also known as flakeboard, waferboard, or chipboard, is similar but uses machined wood flakes offering more strength. All of these are composite materials that belong to the spectrum of fiberboard products. Chipboard can also be used as a scrapbooking embellishment. High-grade chipboard can also be used to create lightweight furniture like tables, stools, benches and bookcases. This type of chipboard is covered in a veneer or laminates to make furniture, which can be less expensive than solid wood. Chipboard, is made from wood chips, sawmill shavings, sawdust, and synthetic resin or other suitable binder, which is pressed and extruded. The factors which have contributed in influencing the market demand are its affordability, ease in installation, and high density and uniformity. In spite of its density, particle board is the lightest type of fibreboard and is less strong than even medium-density fibreboard. Hardboard Hardboard, also called high-density fiberboard, is a type of fiberboard, which is an engineered wood product. It is similar to particle board and medium-density fiberboard, but is denser and much stronger and harder because it is made out of exploded wood fibers that have been highly compressed. Hardboard is a composite wood product used in construction and woodworking. It is typically sold in 4' by 8' (1.2 to 2.4 m) sheets, and can range from 1/4" to 1" (6.35 to 25.4 mm) in thickness. While it is similar in appearance to plywood or particleboard, hardboard is actually constructed quite differently from these products. It is made from fine wood fibers that are compacted under high levels of heat and pressure to form a very dense, hard wooden sheet. Due to the extreme heat and pressure levels, there is usually no need to use adhesives or binding agents to hold the wood fibers together. Insulating Board Insulating board: a board with insulating properties especially : a structural or finish material that consists of sheets of lightly compressed vegetable pulp variously finished and is used especially for its thermal insulating effect resulting from great numbers of minute included air spaces. The global market for thermal insulation is benefitting from government-backed environmental regulations for conservation of energy in buildings. In particular, governments in cold countries are actively promoting zero energy loss buildings that can be attained by means of reliable thermal insulation materials. As per the analysis revealed by the institute for Energy Diversification and Saving (IDEA), thermal insulation improvements can account for up to 30% drop in heat and air conditioning consumption to translate into energy and money savings and reduction in CO2 emissions as well.
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Bulk Drugs

A bulk drug also called active pharmaceutical ingredient (API) is the chemical molecule in a pharmaceutical product (medicines we buy from the chemist) that lends the product the claimed therapeutic effect. In other words, it is the substance responsible for the product being a medicine, penicillin to give one example. As is evident from this, there are ingredients other than the API in products sold as medicines. After years of sluggish growth, Indian bulk drug (API, Active Pharmaceutical Ingredients) industry is expected to recover in 2018-19, driven by solid demand from the formulation industry and strong growth in direct exports on the back of low intermediate chemical prices supported by low crude oil prices. The country’s bulk drug market is 3rd largest in the world in terms of volume and 13th largest in terms of value. India’s bulk drug production has seen a stable growth in the last couple of years in the generic sector and is expected to grow at a healthy CAGR of 7.5% in the forecast period 2017-2022. The global Active Pharmaceutical Ingredient (API) market size was valued at USD 134.2 billion in the year 2015 and is estimated to reach a value of USD 239.8 billion by 2025, growing with CAGR of 6.0 %. The market growth can be linked to the rising prevalence of chronic diseases such as cancer, neurological diseases, and cardiovascular diseases. Increasing demand for rapid-acting & efficient drugs and introduction of innovative drug manufacturing facilities are other key drivers estimated to fuel growth of this market over the forecast period.
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Glass Marble

Marbles are small balls of colored or decorated glass which are either intended for playing the ancient game of marbles or as collector's items. They can be mass produced or hand-made. One ancient method of making colored marbles was to put a mixture of sand and charcoal into an iron mould shaped like a marble and place small pieces from glass canes into this mixture, then heat and rotate the mould to melt and fuse all the edges. Marbles are small, round, spherical objects made from glass or stone and most commonly used in children's games. They are usually less than an inch (2.54 cm) in diameter and often brightly colored or otherwise decorated.
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Synthetic Red Iron Oxide Manufacturing Business

Synthetic Red Iron Oxide Manufacturing Business. Production of Iron Oxide Pigments. Synthetic Iron Oxide Factory Synthetic red iron oxide is the most common colorant in ceramics and has the highest amount of iron. It is available commercially as a soft and very fine powder made by grinding ore material or heat processing ferrous/ferric sulphate or ferric hydroxide. During firing all irons normally decompose and produce similar colors in glazes and clay bodies (although they have differing amounts of Fe metal per gram of powder). Red iron oxide is available in many different shades from a bright light red at a deep red maroon, these are normally designated by a scale from about 120-180 (this number designation should be on the bags from the manufacturer, darker colors are higher numbers), however in ceramics these different grades should all fire to a similar temperature since they have the same amount iron. The different raw colors are a product of the degree of grinding. Synthetic Iron Oxides have become increasingly important due to their pure hue, consistent properties, and tinting strength. Single-component forms are mainly produced with red, yellow, orange and black colours. Their composition corresponds to that of minerals hematite, goethite, lepidocrocite, and magnetite. Brown pigments usually consist of mixtures of red and/or yellow and/or black iron oxides. Uses of Synthetic Iron Oxide Pigments These pigments are used in wood and paper stains, linoleum, oilcloth, paints, mortar, plaster, bricks, rubber and for other pigment able substances. The range of applications of synthetic Iron Oxide Pigments is longer than the Natural Iron Oxide Pigments. Synthetic Iron Oxide are used in the following types of industry: • Cement industry, to Colour every kind of cement, mortar, grout, pavements, tiles, blocks, etc. • Paintings: primer, waterproof, enamels, decoration painting, coverings, etc. • Plastics: master batch, PVC, etc. • Paper industry: carton, mouthpiece for cigarettes, etc. • Glass industry, abrasives, food for animals, cosmetics, skins rubber, asphalt, etc. Market Outlook Today, there is a lot of varieties of Synthetic Iron Oxide Pigments are available in the market. These synthetic pigments are found in different colors, having superior uniformity, excellent quality and high purity. But, in reality, the Natural Iron Oxide Dyes are preferred over their counterparts. This is because of theirs ample availability and low cost of extraction. Iron oxide pigments improve the physical and mechanical properties of substrates. They offer properties such as good color strength, heat & light stability, opacity, weather & chemical resistance, and durability to substrates. Iron oxide pigments provides colors to varieties of end user applications and are employed in numerous industries around the globe to provide permanent and stable coloring effects to the substrates. Pigments are also known as colorants, which are insoluble products that can be employed to impart colors to construction materials, paints, inks, plastics, papers, cosmetics, rubbers, concrete blocks, tiles, etc. Pigment molecules contain electrons that can occupy different energy levels when exposed to light. Pigments possess the ability to reflect or absorb light of specific wavelengths. This results in the appearance of colors. Iron oxide pigments can be sub-divided into synthetic and natural iron oxide pigments. Synthetic iron oxide pigments are made from petrochemicals and waste metal ore slurry. Synthetic iron oxide pigments are cheap as compared to organic iron oxide pigments owing to low cost of raw material as well as synthetic iron oxide pigments have good dispersibility, high tinting strength, UV stability, excellent color intensity, and non-toxic properties. Natural iron oxide pigments are costly as compared with its synthetic counterpart owing to high cost of raw material. Natural iron oxide pigments are more durable and have excellent tinting strength as compared with synthetic pigments. Most of the natural iron oxide pigments are employed in paints & coatings and other automotive applications. Consumption of synthetic iron oxide pigments is much higher as compared with natural iron oxide pigments owing to low cost and high flexibility in varieties of applications in concretes, mortar, render, paving stones, tiles, laminate flooring, cosmetics, rubber, corrosion paints, industrial paints, architectural paints, and plastic materials. Growing construction activities, recovering economy in developed countries, and expanding infrastructure programs in combination with growing urbanization in developing economies, are the prime factors responsible for the growing consumption of iron oxide pigments around the globe. Iron oxide pigments can be sub-divided into synthetic and natural iron oxide pigments. Synthetic iron oxide pigments are made from petrochemicals and waste metal ore slurry. Synthetic iron oxide pigments are cheap as compared to organic iron oxide pigments owing to low cost of raw material as well as synthetic iron oxide pigments have good dispersibility, high tinting strength, UV stability, excellent color intensity, and non-toxic properties. Natural iron oxide pigments are costly as compared with its synthetic counterpart owing to high cost of raw material. Natural iron oxide pigments are more durable and have excellent tinting strength as compared with synthetic pigments. Red color iron oxide pigments are consumed in majority followed by yellow and black pigments. These are the basic color pigments and are used in combinations to produce other colors. The most commonly used methods of manufacturing iron oxide pigments includes the Laux process. Growing construction industry in Asia Pacific and the Middle East are anticipated to drive market growth over the next eight years. Favorable government regulations regarding environmentally friendly products coupled with technological advancements are expected to have a positive impact on market growth. Iron oxide pigments in Asia Pacific shows huge growth potential due to the rising expectation of consumers. Moreover, demand for blend iron ore pigments is increasing at a higher rate globally. Construction is the largest end-use Industry. The improving economic conditions are driving the construction industry, which in turn is fueling the growth of iron oxide pigments market. Asia Pacific and Europe are the key market which together contribute more than half of the iron oxide pigments market. Among end users, the coatings segment is expected to grow at the highest CAGR during the forecast period. High demand of iron oxide pigments across varied applications, such as interior and exterior coatings, industrial coatings, protective coatings, wood coatings, automotive coatings, architectural coatings, and appliances coating, is expected to drive the consumption of iron oxide pigments in this segment. Few Indian Major Players are as under: • Coltech Chemicals (India) Ltd. • Heubach Toyo Colour Pvt. Ltd. • Lona Industries Ltd. • Mallak Oilchem Pvt. Ltd. • Anirox Pigments Ltd. • Aquathane Chemicals Pvt. Ltd. • Asahi Songwon Colors Ltd. Tags Synthetic Red Iron Oxide, Iron Oxide Pigments, Synthetic Iron Oxide, Preparation of Red Iron Oxide, Production of an Iron Oxide Pigment, Making of Iron Oxide Pigment, Synthetic Iron Oxide Production Process, Synthetic Iron Oxide Uses, Iron Oxide Pigment Manufacturing Process, Synthetic Iron Oxide Pigments Manufacture, Manufacturing of Iron Oxide, Iron Oxide Pigments Manufacturing Process, Manufacturing of Synthetic Red Iron Oxide Pigments, Iron Oxide Synthetic, Synthetic Iron Oxide Production Process, Manufacturing Industry for Synthetic Iron Oxide, Synthetic Iron Oxide Manufacture, Synthetic Iron Oxide Manufacturing, Iron Oxide Factory, Iron Oxides Manufacture, Preparation of Iron Oxide, Synthetic Iron Oxide Production Process PPT, Red Iron Oxide Manufacture, Synthetic Iron Oxide Manufacture in India, Iron Oxide Pigments Manufacturing Process, Project Report on Synthetic Red Iron Oxide manufacturing Industry, Detailed Project Report on Synthetic Iron Oxide Production, Project Report on Synthetic Iron Oxide Production, Pre-Investment Feasibility Study on Synthetic Red Iron Oxide manufacturing, Techno-Economic feasibility study on Synthetic Iron Oxide Production, Feasibility report on Synthetic Red Iron Oxide manufacturing, Free Project Profile on Synthetic Iron Oxide Production, Project profile on Synthetic Red Iron Oxide manufacturing, Download free project profile on Iron Oxide Production
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Microcrystalline Wax from Sludge of Petrochemical Refinery

Microcrystalline waxes are a type of wax produced by de-oiling petrolatum, as part of the petroleum refining process. In contrast to the more familiar paraffin wax which contains mostly unbranched alkanes, microcrystalline wax contains a higher percentage of isoparaffinic (branched) hydrocarbons and naphthenic hydrocarbons. It is characterized by the fineness of its crystals in contrast to the larger crystal of paraffin wax. It consists of high molecular weight saturated aliphatic hydrocarbons. It is generally darker, more viscous, denser, tackier and more elastic than paraffin waxes, and has a higher molecular weight and melting point. The elastic and adhesive characteristics of microcrystalline waxes are related to the non-straight chain components which they contain. Typical microcrystalline wax crystal structure is small and thin, making them more flexible than paraffin wax. It is commonly used in cosmetic formulations. Increasing demand for the decorative, scented, designer candles, packaging and cosmetics use, growing percent of tires and rubber related products contributes to the growth of microcrystalline wax. Moreover, the increasing inclination towards the natural waxes, highly preferable wax properties such as elasticity, melting point, and flexibility favor the growth of microcrystalline wax. The cosmetic industry is a rapidly growing market facilitating the growth of the microcrystalline wax market as people are more conscious and concern about their looks and appearances. The macroeconomic factors such as growing trend for the scented and designer candles, per capita income and increasing spending power ratio facilitate the market to gain traction in the forecast period. The estimated value of the microcrystalline wax market in 2018 is US$ 810.4 Mn, which is expected to expand at a CAGR of 3.9% and reach US$ 1,102.3 Mn by the end of 2026. In addition, the microcrystalline wax market is projected to create an incremental $ opportunity worth US$ 291.9 Mn during the forecast period.
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Automobile Parts

The Indian auto-components industry has experienced healthy growth over the last few years. Some of the factors attributable to this include: a buoyant end-user market, improved consumer sentiment and return of adequate liquidity in the financial system. The auto-component industry of India has expanded by 14.3 per cent because of strong growth in the after-market sales to reach at a level of Rs 2.92 lakh crore (US$ 43.55 billion) in FY 2016-17. The industry is further expected to grow to US$ 47-49 billion in FY18. The auto-components industry accounts for 2.3 per cent of India’s Gross Domestic Product (GDP) and employs as many as 1.5 million people directly and indirectly each. A stable government framework, increased purchasing power, large domestic market, and an ever increasing development in infrastructure have made India a favourable destination for investment. The Indian auto-components industry can be broadly classified into the organised and unorganised sectors. The organised sector caters to the Original Equipment Manufacturers (OEMs) and consists of high-value precision instruments while the unorganised sector comprises low-valued products and caters mostly to the aftermarket category. The total value of India’s automotive exports stood at Rs 73,128 crore (US$ 10.9 billion) in 2016-17 as compared Rs 70,916 crore ($10.8 billion) in the year 2015-16. This has been driven by strong growth in the domestic market and increasing globalisation (including exports) of several Indian suppliers. Auto-component exports from India are expected to grow 7-9 per cent in FY18, backed by stronger global growth and higher exports to emerging nations. Growth is further expected to accelerate to 8-10 per cent in FY19 due to pick up in global scenario.
Plant capacity: -Plant & machinery: -
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Return: 1.00%Break even: N/A
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Rubber Plantation

Basically rubber is an elastic solid material retrieved from latex of many tropical trees. However, “Hevea brasiliensis” is the most commercially cultivated rubber plant. Rubber is used for many purposes which may include erasers to tyres, tubes & industrial products. Rubber finds application in number of products, which are used in all industries. India is the third largest producer and fourth largest consumer of natural rubber in the world and also the fifth largest consumer of natural rubber & synthetic rubber put together. The latest trend gaining momentum in the market is bio-based tires helping market growth. The tires used in automotive vehicles are going to be bio-based during the forecast period. There is a great turmoil in the rubber industry to manufacture automotive vehicle tires made from renewable raw materials. A variety of manufacturers ranging from large multinational corporations to small privately owned companies compete in this industry. Regionally, Thailand is the biggest production area of natural rubber, about 30.41% production market share of the global production in 2016, also the leader in the whole natural rubber industry. Then Indonesia, Vietnam, Malaysia, China and Indian are the main production regions in turn. The global production of natural rubber has reached 13030.2 K MT by the end of year 2016, with annual growth rate around 2-3% during the past years.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Dextrose 5%

Dextrose is the name of a simple sugar that is made from corn and is chemically identical to glucose, or blood sugar. Dextrose is often used in baking products as a sweetener, and can be commonly found in items such as processed foods and corn syrup. Dextrose also has medical purposes. It is dissolved in solutions that are given intravenously, which can be combined with other drugs, or used to increase a person’s blood sugar. Because dextrose is a “simple” sugar, the body can quickly use it for energy. Dextrose is a form of glucose derived from starches. It is one of the most commonly used ingredients in packaged foods because of its affordability and wide availability. Baking products and desserts often contain dextrose, but it may be used as an added sugar in any processed food that is sweetened by the manufacturer. Because the name varies depending on its original starch source, you may not realize a particular food contains dextrose. Dextrose 5% in water is sometimes used as a diluent (liquid) for preparing injectable medication in an IV bag. A diluent provides a large amount of fluid in which to dilute a small amount of medicine. The diluent helps carry the medicine into your bloodstream through the IV. This helps your caregivers inject the medicine slowly and more safely into your body. Global glucose (dextrose) market is expected to witness a rapid increase in demand due to the rise in consumption of glucose syrup over the forecast period. Glucose syrup accounts for a majority share in the global starch derivatives market owing to its wide range use in the manufacture of candy products and is poised to grow at a very intense rate by the end of 2020. Some other derivatives of glucose include maltodextrin, hydolysates and cyclodextrin. Glucose is primarily used along with sugar as it exhibits complimentary characteristics to natural sugar such as preventing sugar from crystallizing, reducing stickiness of sugar and retention of extra moisture. Glucose is extensively used as an additive in pharmaceuticals and nutrition foods owing to its high energy content. Over the past few years, there has been an increasing use of glucose in the form of tablets or medicine for patients having low blood sugar. Growth of the pharmaceutical industry is expected to augment demand for glucose over the forecast period.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Soft & Hard Ferrites

Ferrite is a ceramic material made by mixing and firing large proportions iron(III) oxide (Fe2O3, rust) blended with small proportions of one or more additional metallic elements, such as barium, manganese, nickel, and zinc. They are both electrically non-conductive, meaning that they are insulators, and ferrimagnetic, meaning they can easily be magnetized or attracted to a magnet. Ferrites can be divided into two families based on their resistance to being demagnetized (magnetic coercivity). Soft ferrite is an iron-oxide-based soft magnetic material. This material features high electrical resistance and outstanding magnetic characteristics in high-frequency range although saturation flux density is slightly lower than other soft magnetic materials. Hard ferrite magnets (or "hard ferrites"), which have a high remanence after magnetization, are composed of iron and barium or strontium oxides. In a magnetically saturated state they conduct magnetic flux well and have a high magnetic permeability. This enables these so-called ceramic magnets to store stronger magnetic fields than iron itself. They are the most commonly used magnets in radios. Growing demand for electronics has been a major factor driving growth for ferrite. Increase in disposable income of consumers in the emerging economies leading to growth in several end user segments also has been a major factor driving growth for the industry. Low cost, high efficiency, easy availability is amongst the major factors driving growth for soft ferrite. Research and development activities to increase application scope of ferrite are expected to offer huge growth opportunity for the market. Asia Pacific dominates the global ferrite market in terms of consumption and the trend is expected to continue during the forecast period. Demand for ferrite in the region is primarily driven by the emerging economies of India and China. Other major markets for ferrite include North America, Western Europe and Japan. These developed economies are expected to grow at a sluggish rate mainly owing to saturation of end user segments. Growing demand for ferrite in nuclear energy segment is expected to offer huge growth opportunity in the market. Africa and Latin America are expected to drive the market growth in the Row segment.
Plant capacity: -Plant & machinery: -
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Return: 1.00%Break even: N/A
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Melamine formaldehyde Powder

Melamine resin or melamine formaldehyde (also shortened to melamine) is a hard, thermosetting plastic material made from melamine and formaldehyde by polymerization. It is then used to cross-link with alkyd, epoxy, acrylic, and polyester resins, used in surface coatings. Melamine-formaldehyde resins in partially condensed form, herein referred to as melamine-formaldehyde precondensates, are widely used in finishing of textiles. They are commonly applied to the textiles in an aqueous medium. Such resins are commonly produced by condensing melamine and formaldehyde in the presence of methanol under reflux conditions. The reaction between the melamine and formaldehyde is exothermic and diflicult to control so as to form chiefly the desired trior tetramethylol melamine. Melamine formaldehyde is a synthetic resin manufactured by reacting melamine with highly reactive formaldehyde gas under alkaline conditions. Melamine formaldehyde resin is generally compared with urea-formaldehyde resin with respect to its processing and applications, however it is harder, stronger and offers even better resistance to chemicals, moisture, heat, electricity and scratching, compared against urea-formaldehyde. It is referred as thermosetting polymer or amino resins, exhibits excellent value added properties such as low density, thermal stability, high gloss, transparency, and light fastness. Owing to its value added properties, melamine formaldehyde has found great industrial applications in fire retardants, surface coatings, plywood, particleboard, adhesive, molding compounds and laminates among others. Global Melamine Formaldehyde Market size is expected to reach $687 million by 2022 from $430 million in 2015. It is anticipated to grow at a CAGR of 6.9%. Melamine formaldehyde is a synthetic resin obtained by chemical combination of melamine. It is a translucent solid made from urea and formaldehyde, a highly reactive strong smelling gas derived from methane. The reaction product of melamine, urea, and related compounds with formaldehyde are called amino lasts. The hardness and chemical & moisture resistance quality of melamine resin is attributed to its complex and interlinked polymer structure. Melamine resin or Melamine formaldehyde is an organic, heterocyclic compound made from polymerizing melamine and formaldehyde to form a hard, thermosetting plastic material. Melamine when in its butylated form is dissolved in xylene and n-butanol. Nitrogen being a major constituent in the melamine structure makes melamine formaldehyde extremely flame retardant by nature. Melamine formaldehyde is formed by cross-linking this product with other products such as epoxy, acrylic, alkyd, and polyester resins. MF has some beneficial physical characteristics over Urea resins. It is moisture-resistant, hard, and stronger than urea formaldehyde. Global melamine formaldehyde market is anticipated to observe vigorous development over the forecast period owing to increase in demand from a range of end-use market applications. The properties of melamine formaldehyde such as resistance to water, fire, UV and light is slated to aid the overall market considerably over the forecast period.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Information
  • One Lac / Lakh / Lakhs is equivalent to one hundred thousand (100,000)
  • One Crore is equivalent to ten million (10,000,000)
  • T.C.I is Total Capital Investment
  • We can modify the project capacity and project cost as per your requirement.
  • We can also prepare project report on any subject as per your requirement.
  • Caution: The project's cost, capacity and return are subject to change without any notice. Future projects may have different values of project cost, capacity or return.

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