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

Automotive Sector: Project Opportunities in Maharashtra

 

PROFILE:

The automotive industry in India is one of the largest in the world and one of the fastest growing globally. A sound transportation system plays a pivotal role in a country’s rapid economic and industrial development. The well-developed Indian automotive industry ably fulfils this catalytic role by producing a wide variety of vehicles. The automobile industry comprises automobile and auto component sectors. It includes passenger cars; light, medium and heavy commercial vehicles; multi-utility vehicles such as jeeps, scooters, motorcycles, three-wheelers and tractors; and auto components like engine parts, drive and transmission parts, suspension and braking parts, and electrical, body and chassis part. The automotive industry designs, develops, manufactures, markets, and sells motor vehicles, and is one of the world's most important economic sectors by revenue. Indian automotive sector is a key contributor to the economic growth. India is World’s second largest two wheeler market, Asia’s third largest passenger vehicle market and World’s fourth largest commercial vehicle and tractor market. Maharashtra has strongly emerged as the top destination in India for automobile sector with a strong presence across the value chain.

 

RESOURCES:

Maharashtra accounts for approximately 33% of the country’s output of automobiles by value. Major automobile clusters in the state are Pune, Nasik, Aurangabad and Nagpur. Maharashtra is the leading producer of heavy and commercial vehicles in the country. Auto and auto ancillaries contribute to 9% of Maharashtra’s manufacturing strength. Maharashtra has a strong skilled labour base supporting the automotive industry. The state offers a strong educational infrastructure with technical institutions providing automobile engineering courses across the state. India's premier automotive R&D, testing and certification organisation, Automotive Research Association of India (ARAI) is present in Pune. India’s first Auto Cluster Development and Research Institute are in the state.

 

GOVERNMENT POLICIES:

Policy aims to promote integrated, phased, enduring and self-sustained growth of the Indian automotive industry. Special policies for Auto industry make it a lucrative investment sector.

·        Exalt the sector as a lever of industrial growth and employment and to achieve a high degree of value addition in the country; Promote a globally competitive automotive industry and emerge as a global source for auto components

·        Establish an international hub for manufacturing small, affordable passenger cars and a key centre for manufacturing Tractors and Two-wheelers in the world. Ensure a balanced transition to open trade at a minimal risk to the Indian economy and local industry

·        Conduce incessant modernization of the industry and facilitate indigenous design, research and development

·        Assist development of vehicles propelled by alternate energy sources;

·        Automatic approval for foreign equity investment of up to 100 per cent for manufacturing of auto components.

·        Setting up of a technology modernization fund, with special emphasis on SMEs and encouragement to establish development centres for SMEs.

·        Increasing exports and related infrastructure and streamlining training/research institutions around auto hubs.

·        Setting up of automotive training institutes and auto design centres, special auto parks and auto component virtual SEZs

·        To enhance and upgrade the testing and validation infrastructure and establish centres of excellence for automotive R&D.

·        Lowering of excise duty on small cars, increasing budgetary allocation for R&D activities and lowering duty regime in general.

·        Weighted increase in the in-house R&D expenditure from 150% to 200% and from 120% to 175% on outsourced R&D expenditure.

Chemical Sector: Project Opportunities in Maharashtra

 

PROFILE:

Chemical industry is one of the oldest industries in India. It not only plays a crucial role in meeting the daily needs of the common man, but also contributes significantly towards industrial and economic growth of the nation. The industry, including petro-chemicals, and alcohol-based chemicals, has grown at a pace outperforming the overall growth of the industry. India’s chemical industry contributes close to 3% to country’s GDP (2009). India is expected to grow at more than 11% till 2011 at almost double growth rate of the global industry. The chemical industry accounts for about 17.6% of the output of the manufacturing sector and around 11% in total exports of the country. The industry registered a growth of 16% from FY 2005 to 2010 In terms of volume, India is 12th largest in the world and 2nd largest in the developing world after China, Maharashtra has strong presence in chemical, petrochemicals, oil and gas sector. Maharashtra contributes 27.4% of total chemicals, petrochemicals and oil and gas output and around 15% of the total production of basic petrochemical products in India. Mumbai, Nagothane, Rabale & Patalganga are major petrochemical hubs while Thane, Mumbai, Pune and Wardha are chemical hubs.

 

RESOURCES:

Maharashtra has a well developed chemical and petrochemicals sector that has been doing extremely well on the economic front. The chemical industry in Maharashtra is among the main industries which has an important contribution to the economy of the state. There are many categories of the chemical industries in Maharashtra such as agrochemicals, dye & pigments, inorganic chemicals, petrochemicals, polymers, textile chemicals, pharmaceuticals etc. Chemical sector has been traditionally strong in Maharashtra with specific strength in Raw materials, Building Block production and Value Addition & Processing with clusters located in the Mumbai, Thane, Pune belt. Maharashtra has a strong skilled labour base supporting the chemical industry. The state offers a strong educational infrastructure with technical institutions providing Chemical engineering courses across the state. There is a strong resource pool and backward linkages with the well-developed chemicals and petrochemicals sector serves as an added advantage. All major domestic and number of global chemicals & petrochemicals players have a presence in the state. It contributes 27.4 per cent of the country's chemicals, petrochemicals and oil & gas output. The state also accounts for 18.2 per cent of the country's employment in the sector. The chemical sector in the country is expected to grow at 15 per cent per annum till 2010 and thus, presents ample opportunities for the state. Opportunities would primarily exist in the areas of polymers & plastics, fertilisers and synthetic yarns. Some of the names are Hindustan Petroleum, Bharat Petroleum, Reliance Industries, and Indo-Rama Synthetics. Maharashtra has a strong presence in the chemicals, petrochemicals, and oil and gas sector.

 

GOVERNMENT POLICIES:

·        Licensing requirements have been removed, except for hazardous chemicals and a few special drugs.

·        Entrepreneurs are allowed to set up chemicals industries following the Industrial Entrepreneurs Memorandum (IEM) route.

·        Under the automatic route, 100% FDI is allowed for all chemicals except hazardous chemicals.

·        In the Union Budget 2009-10, the Department of Chemicals and Petrochemicals was granted an outlay of USD 5.12 Billion

·        To mitigate the impact of anti dumping, Government has imposed 20% safeguard on soda ash

·        The peak rate of customs duty on most chemicals is 7.5%.

·        Plans are underway to set up port-based chemicals parks in SEZs to encourage clustering, provide infrastructure and enable tax concessions.

·        16% excise duty on almost all chemicals

·        Downstream SEZs have been planned to use the output of chemicals parks

 

 

Food and Agro Sector: Project Opportunities in Maharashtra

 

PROFILE:

India is one of the world’s largest producers as well as consumers of food and food products Maharashtra is a bio-diverse state with 9 agro climatic zones and varying soil types, suitable for agricultural development. The export from Maharashtra for fresh vegetables and fruits accounts for 30% and for processed food products is almost 50%. Mumbai port (MPT) and Jawaharlal Nehru Port (JNPT) are major ports used for exporting processed food products. The state has a strong skill base with a total of 73 institutions with an intake capacity of 5,895 students including 4 Agriculture Universities and 5 national level research organizations. Maharashtra has 8 Agricultural Export Zones (AEZ).

RESOURCES:

Reaching top most position in the country Maharashtra is India’s leading agriculture state.  The state has achieved many innovative agro-industrial ventures, the sugar co-operative and cooperatives for cultivating and marketing, including exports of grapes, mangoes, strawberries etc. Wide availability of varied horticultural produce due to varied range of climate & soil conditions offers tremendous scope to flourish state’s processing industry to increase the processing & value addition from present 1.5% to reach up to 35% of total produce.  Bio-diverse state with 9 agro climatic zones and varying soil types is suitable for agricultural development. Maharashtra is the major horticulture state with more than 22.04 lakh hectares area under horticulture and 4.48 lakh hectare area under vegetables. Alphonso Mangoes accounts for 90% of India’s export in mangoes. It leads sugar industry with 201 sugar factories. The export from Maharashtra for fresh vegetables and fruits accounts for 30% and for processed food products is almost 50%. Maharashtra has the highest gross value addition to food products in the country 16.18%. Maharashtra has eight Agri Export Zones spread across the state for Grapes and Grape Wine, Mangoes, Kesar Mango, Flowers, Onion, Pomegranate, Banana and Oranges. It also has additional five crop cluster for Cashew, Sapota, Sweet Orange, Fig and Custard Apple.

GOVERNMENT POLICIES:

Maharashtra Government initiatives are very unique to make agriculture, horticulture, Agri business, Food Processing industry highly competitive and successful in the country.

·         Reimbursement of 50% of the net VAT paid, instead of 25%;

·         5% interest subsidy on term loans for fixed capital investment for 5 years;

·         In the case of products attracting zero VAT, incentives against the amount of VAT retained and not refunded on input purchases.

·         Eligibility criteria (additional investment of 25% subject to a minimum of INR 1 crore) for providing incentives in the case of expansions under PSI 2007

·         The National Horticulture Mission (NHM) provides 50% of the capital cost with a cap of Rs. 3 lakh per unit for basic infrastructure.

 

 

 

 

 

Textile Sector: Project Opportunities in Maharashtra

 

PROFILE:

The textile industry occupies a leading position in the hierarchy of the Indian manufacturing industry. It has witnessed several new directions in the era of liberalization. While textile exports are increasing and India has become the largest exporter in world trade in cotton yarn and is an important player of readymade garments, country’s international textile trade constitutes a mere 3% of the total world textile trade The textile industry is one of the most important pillars of the Indian economy. It contributes about 4% to the GDP, and 17% to the country’s export earnings. It provides direct employment to over 35 million people. Indian textile industry is estimated to be at USD 51.4 billion. The industry accounts for 4% of the country’s GDP and 14% of its industrial production. Maharashtra contributes to about 10.4% to India’s textiles and apparels output. Maharashtra has the largest area under cultivation for cotton (33.4%). The State has witnessed 122 major textile projects with an investment of USD 224 Million.  There exists largest number of the sectors 100% export oriented units, with a count of 560 are based in Maharashtra.

 

RESOURCES:

Maharashtra contributes to about 10.4% to India’s textiles and apparels output. Cotton is available in bulk in Maharashtra which is one of the key factors that have enabled the state to establish a competitive edge. Vidarbha region has a predominant cotton production, while western region is famous for spinning mills. The major clusters of Maharashtra for the industry are Kolhapur, Mumbai, Nagpur, Nashik, Pune, Sangli, Satara, Sholapur and Thane. The State has witnessed 122 major textile projects with an investment of USD 224 Million.  There are largest numbers of the sectors 100% export oriented units, with a count of 560 are based in Maharashtra. Maharashtra has abundant raw material availability, cost effective labour pool, growing domestic market & presence across value chain.

 

 

 

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 recently announced the new National Textile Policy (NTP), with the objective of facilitating the industry to attain and sustain a pre-eminent global standing in the manufacture and export of clothing.

·         Suitable incentive either in capital or in the form of Interest subsidy shall be provided to the Textile units including spinning and ginning pressing units to promote employment.

·         Credit based capital subsidy or suitable interest subsidy on capital investment and working capital shall be provided to the upcoming Textile units including spinning and ginning units to make them self reliance.

·         Providing Technological Upgradation support to the Textile sector under Technological upgradation Fund (TUF) scheme.

·         Setting up of Textile Parks preferably in Vidarbha, Marathwada and Khandesh Region.

·         Rationalize debt equity ratio with special consideration in Marathwada, Vidarbha and Khandesh region.

·         Development of Infrastructure facilities with integration from fibre to garment manufacturing.

·         Pilot projects for power looms in Malegaon and Bhiwandi, Nanded and Nagpur.

 

Small-Scale Industries: Project Opportunities in Maharashtra

 

PROFILE:

Small Scale Industries may sound small but actually plays a very important part in the overall growth of an economy. Small Scale Industries can be characterized by the unique feature of labour intensiveness. The small scale industries sector plays a vital role in the growth of the country. It contributes almost 40% of the gross industrial value added in the Indian economy. It has been estimated that a million Rs. of investment in fixed assets in the small scale sector produces 4.62 million worth of goods or services with an approximate value addition of ten percentage points. The small-scale sector has grown rapidly over the years. The growth rates during the various plan periods have been very impressive.

 

 

 

RESOURCES:

The Maharashtra Small Scale Industries Development Corporation Ltd., popularly known as MSSIDC, was established with a view to giving a new orientation and strength to the development of Small Scale Industries in the State of Maharashtra. The main objective of MSSIDC is to aid, counsel, assist, finance, protect and promote the interests of Small Industries. The Corporation renders assistance to approximately 30000 SSI units in the State. MSSIDC plays a vital role in revival, development and growth of traditional handicrafts of Maharashtra by responding to the diversified need s of rural artisans and marketing their products in India as well as abroad. Over the years, MSSIDC has grown to become India's leading Small Scale Industries Development Corporation, continuously responding to the expanding and diversified needs of Small Scale Industries, Village and Cottage Industries, providing support services like Training and Entrepreneurship Development Programme.

GOVERNMENT POLICIES:

The Policy for Small Enterprises aims to create a congenial atmosphere conducive to the healthy growth of the Small Scale Sector in the State. The broad policy objectives are enumerated below:

·         To achieve an annual growth rate of 15%.

·         To assist the small scale industries in the State to become competitive, domestically as well as internationally.

·         To increase employment generation - particularly by promoting the labour intensive segments.

·         To improve the export performance of the SSI sector by providing adequate support services.

·         To create a more congenial and hassle-free environment for the functioning of the SSI sector

·         To help the SSI sector acquire new technologies and skills so as to compete effectively in the market place.

·         To promote appropriate linkages between the large and small scale sectors in the interest of harmonious industrial development.

·         To strive to promote an appropriate institutional mechanism to revive sick industries

·         To encourage SSI units to grow vertically and graduate, in the course of time, from small scale to medium and large scale unit.

 

 

 

Information Technology Industry: Project Opportunities in Maharashtra

PROFILE:

Information Technology (IT) industry in India is one of the fastest growing industries. Indian IT industry has built up valuable brand equity for itself in the global markets. The Information technology industry in India has gained a brand identity as a knowledge economy due to its IT and ITES sector. The IT–ITES industry has two major components: IT Services and business process outsourcing (BPO). The growth in the service sector in India has been led by the IT–ITES sector, contributing substantially to increase in GDP, employment, and exports. The sector has increased its contribution to India's GDP from 6.1% in 2009-10 to 6.4% in 2010-11. India is a preferred destination for companies looking to offshore their IT and back-office functions. It also retains its low-cost advantage and is a financially attractive location when viewed in combination with the business environment it offers and the availability of skilled people.

RESOURCES:

Considering Maharashtra’s strengths in terms of human resources, connectivity and infrastructure, and the special significance of Information Technology (IT) for generating employment, increasing efficiency and improving the quality of life, the State Government announced its first IT Policy in 1998. It was followed by the IT and IT Enabled Services (ITES) Policy in 2003 which provided comprehensive support for the further development of this sector in Maharashtra. Information technology (IT) sector in tier two cities like Nagpur, Aurangabad and Nashik are any indication, Maharashtra is all set to emerge as the next IT hub, after Bangalore and Hyderabad. So far, the growth of IT industry in the state has been concentrated in the Pune-Mumbai stretch. However, with the new focus in place, tier two cities are expected to mushroom as key IT centres.

 

GOVERNMENT POLICIES:

Government of Maharashtra has been supporting development of industry and business through a series of far-reaching policy initiatives. The Information Technology industry has been an important thrust area and has been receiving government support. During the last five years, the Government focussed on HRD, IT related infrastructure, fiscal incentives to IT units, IT in Governance and Institutional Framework for the IT sector.  These initiatives have enabled the IT industry in the State to establish an initial lead and a firm foundation for a quantum leap has been laid. Exports of software and ITES from the State presently account for about 20% share of the country’s exports.  These exports have registered an annual growth of more than 30% during the last four years. The whole State has been connected through an Optical Fibre Cable Network and a state wide network of competent training institutions has been established for building a pool of world-class IT professionals for providing strength and support to the IT industry in the State.

 

Biotechnology industry: Project Opportunities in Maharashtra

 

PROFILE:

Biotechnology deals with living systems, including plants, animals and microbes. Biotechnology derives its strength by harnessing biological processes that sustain life. It incorporates any technique, which uses living organisms, parts of organisms and enzymes, proteins, etc., which are either naturally occurring or are derived from such living systems. Such techniques can be used to make or modify the products, improve plant or animal productivity or develop microorganisms for special use. Emerging Biotechnology uses recombinant DNA, cell fusion, embryo manipulation, etc. Biotechnology has the potential to transform the lives of the people in the State by impacting hugely on agriculture, animal husbandry, health, environmental protection, material transformation, etc. Further, Maharashtra has the potential to become a leader in Biotechnology, not only in the country but also in the entire world.

RESOURCES:

The State has an excellent intellectual infrastructure. Through nearly 1000 institutions, it produces around 163,000 trained technical personnel each year. The State has already set up specialised parks for different sections including IT. The bio-industrial enterprises cannot sustain themselves unless they are backed up by a highly trained and skilled human resource. Some of the best Centres of excellence in India that are present in Maharashtra do precisely that. These include the Bhabha Atomic Research Centre, Indian Institute of Technology, Tata Institute of Fundamental Research, University Department of Chemical Technology, and the Cancer Research Institute, all at Mumbai. The Animal Diseases Investigations Laboratory, Pune involved in diagnosis and research of animal diseases, especially in four States of the Western region of the country, has been recognised as reference laboratory by Government of India. New forward looking initiatives in providing specialized education in Biotechnology have already begun to emerge. A number of defence research establishments in the State have been engaged in conducting cutting edge research in Biomedicals, Bioinformatics and Biotechnology.

GOVERNMENT POLICIES:

Maharashtra government is trying to develop biotech industry in the state in order to help to develop affordable and more cost effective drugs and devices to counter diseases common to India and to tropical and sub-tropical areas to reduce the disease burden. To lead the biotechnology industry in the State to a growth path from where it can become globally competitive, the following steps would be taken:

• Providing the appropriate policy framework which will smoothen its path;

• Providing adequate infrastructure, especially in the form of Biotechnology Parks

• Providing an appropriate package of incentives

• Developing a world-class higher education and research base to serve the needs of a growing Biotechnology industry and for creating high quality employment in the State

• Creating supporting institutions for the Biotechnology industry for  the development of human resource as well as for the applications of Biotechnology

• Simplifying the application of labour and other laws and procedures to accelerate the development and growth of the biotechnology industry

• Facilitating new ventures and innovations

 

Waste management: Project Opportunities in Maharashtra

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:

There are 250 urban local bodies (ULBs) in Maharashtra which comprises 23 Municipal Corporations, 220 Municipal Councils, 3 Cantonment Boards and 4 Nagar Pachayats. Per capita MSW generation in various towns of the state ranges 100 to 600 gram per day.  For class I cities in Maharashtra, the waste generation rates are in the range of 14 to 63 kg per capita per day, which includes Mumbai having the highest range of 0.63 kg per capita per day (pcpd). The average waste generation rate for the state is estimated as 35 kg pcpd.  As per the projection, the waste quantities are estimated to increase from 6.18 million tons per year in the year 2004 to 8.05 million tons per year in 2011 and 11.77 million tons per year in 2021. In total over 21632.3 tons per day (TPD) of MSW is generated of which around 50% is generated in Mumbai (8500 TPD), Thane (680 TPD), Pune (1740 TPD) and Kalyan (1050 TPD). Compare to other Metropolitan cities in India, MSW generation is highest in Mumbai.  Available data indicates that Waste generated in Maharashtra contains about 55% of Non-biodegradable and 45% biodegradable components. 

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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Global Inorganic Chemicals Market to Grow 4.5% by 2022.

Global Inorganic Chemicals Market to Grow 4.5% by 2022. Manufacturing of Sodium and Ammonium Molybdate. Project Opportunities in Production of Inorganic Compound Sodium Molybdate Sodium Molybdate also known as disodium dioxide (dioxo) molybdenum is a chemical compound extensively consumed in fertilizer application. Other uses of sodium molybdate include nutritional supplement in food industry and as corrosion inhibitor in industrial applications. Sodium molybdate is often found as dehydrate and was first synthesized by the method of hydration. Sodium molybdate is an organic salt which is found in dietary supplements and other nutritional supplement. Sodium molybdate is a good source of molybdenum, it is used to for nitrogen fixation to support healthy growth of leguminous plants such as peas & leans, clover & Lucerne. Sodium molybdate is used as corrosion inhibition in industry. In addition, sodium molybdate is also used for reducing nitrite requirement of fluids inhibited with nitrite-amine in chemical plants and improves corrosion protection. Sodium molybdate is a chemically altered form of the mineral element, sodium. Sodium is a natural salt, and sodium molybdate is used in the food industry as a fertilizer and nutritional supplement for health. The agricultural industry uses large quantities of sodium molybdate as fertilizer, particularly on vegetables such as broccoli and cauliflower. It is also fed to some cattle to help treat copper deficiencies. As a result of its use on food products you consume, trace amounts of sodium molybdate may end up in the food supply. Sodium molybdate in your food can have a variety of effects on your body, although its complete effects are not fully understood. Sodium Molybdate is useful as a source of molybdenum. It is often found as the dihydrate, Na2MoO4•2H2O. The molybdate (VI) anion is tetrahedral. Sodium molybdate can help correct a sodium deficiency by adding extra sodium to your body; however, sodium molybdate is ingested in such small amounts its contribution to your overall sodium stores is probably negligible. Once in your body, the molybdenum molecule is cleaved off of the sodium molecule and can have positive effects on your health. Rapid industrialization across the globe is leading to increasing discharge of waste water and associated chemicals in to ecosystem, stringent government regulations on water disposal and environmental safety is leading towards increasing capacities of chemical and water treatment. Sodium molybdate is used for corrosion inhibition and water treatment in these facilities. Such investments in these facilities are expected to drive sodium molybdate consumption across the globe. Sodium molybdate is emerging as possible alternative additive for sodium dichromate in the electrolytic production of sodium chlorate to reduce environmental impact without hampering performance in maintaining high current efficiency. Increasing use of sodium molybdate for aforementioned applications is a growth factor for sodium molybdate consumption in near future. Global Sodium molybdate market can be segmented on the basis application, product type, and region. Applications of sodium molybdate has a wide span, due to low toxicity it is used in wide array of applications such as in inks, dyes and pigments, fertilizers, ingredients in food and water treatment agents. It is also used in pharmaceutical industry as an analytical reagent. On the basis of prominent applications, global sodium molybdate market can be segmented as: • Water treatment • Fertilizer • Pigments & dye • Corrosion inhibition • Others Ammonium Molybdate Ammonium Molybdate is an odorless crystalline compound ranging in color from white to yellow-green. Ammonium Molybdate also called molybdic acid hex ammonium, salt tetrahydrate, ammonium molybdate tetrahydrate, and ammonium heptamolybdate tetrahydrate. Molybdate is an odorless compound containing molybdenum and oxygen ions. Ammonium molybdate is an organic compound, which is manufactured by reacting molybdenum trioxide in the presence of excess ammonia. The compound is available in different physical forms: solid powder, liquid, crystals, and chunks. Uses: • As an analytical reagent • Presence of phosphates, silicates, • Arsenates and lead in pigments • In the production of molybdenum metal • In the preparation of dehydrogenation • In the fixing of metals • In electroplating • In fertilizers for crops. The compound is also used as a catalyst in production of polymers and other commercial chemical processes. Ammonium molybdate is also applied as an intermediate in some industries. Due to bright color of molybdate, the compound is employed in paints, inks, and as an indicator & reagent in different colorimetric chemical experiments. Ammonium molybdate is employed as an analgesic in the medical industry. It is employed as a source of molybdate ion for the production of molybdenum metals and ceramics. Ammonium molybdate is manufactured in different grades such as reagent & technical grade, laboratory grade, food & pharmaceutical grade, and industrial grade. These grades are utilized in different industries. Based on region, the ammonium molybdate market can be divided into Asia Pacific, Europe, Middle East & Africa, North America, and Latin America. The global Ammonium Molybdate Market industry has experienced an astonishing change structure-wise such as enhancements in technology, increasing raw material costs, manufacturing base been channeled to Asian countries, novel promising growth markets, etc. The global ammonium molybdate market can be segmented based on product type, application, end- use industry, and region. In terms of product type, the ammonium molybdate market can be segmented into ammonium orthomolybdate, ammonium molybdate tetrahydrate, ammonium octamolybdate, and others. Ammonium molybdate tetrahydrate is also known as ammonium heptamolybdate. It is manufactured by liberating ammonium upon heating ammonium orthomolybdate. In terms of application, the market can be divided into analytical reagent, fertilizers & micronutrient, catalyst, metals & ceramic, electroplating, corrosion inhibitor, pigment, and others. Ammonium molybdate is used in end-use industries such as chemical manufacturing, molybdate products, life science, research & laboratories, and others. Demand for ammonium molybdate is expected to be higher in the chemical manufacturing segment in the next few years. Increasing cost of raw materials and toxicity of ammonium molybdate are estimated to restrain the ammonium molybdate market. The compound is harmful for eyes, skin, kidneys, blood, and respiratory tract if swallowed or inhaled. Asia Pacific is estimated dominate the market in the near future. Industrial and economic growth in the region, and increase manufacturing capacities are boosting the ammonium molybdate market in Asia Pacific, particularly in China, Japan, and India. The ammonium molybdate market is anticipated to expand at a rapid pace in North America. 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Production of DL Tartaric Acid and Its Salts for Textile Industry

DL Tartaric Acid is a colorless and semi-transparent or white powder, with a sour taste. It is widely used in many fields such as foodstuff, medicine, the chemical and light industries etc., and is mainly used to make tartrates (tartaric acid salts), like antimony potassium tartrate, and potassium sodium tartrate. It can be used as a beer vesicant, foodstuff sourness agent, and flavoring etc. Its sourness is 1.3 times of that of citric acid, and it is especially suitable to be a sourness agent of grape juice. It is also very important for the tannage, photograph, glass, enamel and telecommunication equipment industries. Tartaric Acid is a white crystalline dicarboxylic acid found in many plants, particularly tamarinds and grapes. Tartaric acid is used to generate carbon dioxide through interaction with sodium bicarbonate following oral administration. Carbon dioxide extends the stomach and provides a negative contrast medium during double contrast radiography. Tartaric acid is an organic acid naturally found in fruits including grapes and tamarind. It is a principal ingredient in wine and provides it with the characteristic tart taste. Tartaric acid is primarily manufactured from natural raw materials; however, it can also be manufactured synthetically from maleic anhydride. Tartaric acid finds applications in the wine, food & beverages, construction, pharmaceutical, chemical, leather tanning, and metal finishing industries. It is used as an acidulant, pH control, and flavorant in wine. Tartaric acid is also used as an anti-microbial agent, anti-caking agent in bakery items and flavorant for fruit juices in the food & beverages industry. In the pharmaceutical industry, it is used as an excipient for drugs with poor solubility at higher pH levels. Tartaric acid is used as an anti-set agent in cement formulations in the construction industry. DL tartaric acid is very useful in many applications, • Tartaric Acid is widely used as antioxidant and acidity regulator in food production. As antioxidant: in canned food to maintain flavor and appearance. As acidity regulator: in canned food and confectionery to improve flavor. • Beverage Dl Tartaric Acid is widely used as antioxidant and acidity regulator in beverage. As acidity regulator: in soft drink to improve flavor. • Pharmaceutical Dl Tartaric Acid is widely used as intermediate in Pharmaceutical. As intermediate: in medicine manufacturing. • Cosmetics • Agriculture/Animal Feed • Other Industries Dl Tartaric Acid is widely used as antioxidant in various other industries. As antioxidant: in leather processing to soften leather. Tartaric acid is used in silvering mirrors, tanning leather, and in the making of Rochelle salt, which is sometimes used as a laxative. Salts of Tartaric Salts of tartaric acid are known as tartrates. It is a dihydroxyl derivative of succinic acid. 1. (R*, R*)-(+-)-2,3-dihydroxybutanedioic acid, Monoammonium Monosodium Salt 2. Aluminium Tartrate 3. Ammonium Tartrate 4. Calcium Tartrate 5. Calcium Tartrate Tetrahydrate 6. Mn (III) Tartrate 7. Potassium Tartrate 8. Seignette Salt 9. Sodium Ammonium Tartrate 10. Sodium Potassium Tartrate 11. Sodium Tartrate 12. Stannous Tartrate 13. Tartaric Acid 14. Tartaric Acid, ((R*, R*)-(+-))-isomer 15. Tartaric Acid, (R*, S*)-isomer 16. Tartaric Acid, (R-(R*, R*))-isomer 17. Tartaric Acid, (S-(R*, R*))-isomer 18. Tartaric Acid, Ammonium Sodium Salt, (1:1:1) Salt, (R*, R*)-(+-)-isomer 19. Tartaric Acid, Calcium Salt, (R-R*, R*)-isomer 20. Tartaric Acid, Monoammonium Salt, (R-(R*, R*))-isomer India Tartaric Acid Market is projected to grow at a robust CAGR due to increasing use of tartaric acid as a preservative in packaged foods coupled with growing use across various end-user industries, such as food & beverages, pharmaceuticals as it acts as an emulsifier and chelating agent. Moreover, the rising adoption of tartaric acid in antacids will drive the growth of the market further. Based on the type of tartaric acid, synthetic segment is expected to hold the largest market share in the forecast period as tartaric acid produced in the country is chemically synthesised. Based on the application, food & beverage is expected to lead the market in the next five years owing to the widespread applications of tartaric acid as emulsifier and preservative in packaged foods, bakery items, soft-drinks etc. The tartaric acid market is expected to record a moderate CAGR between 2018 and 2023. Increasing demand from the wine industry in the Asia-Pacific and Latin American regions, coupled with the growing demand for packaged food, is expected to drive the market during the forecast period. The market is primarily driven by the diverse uses of tartaric acid in the food & beverage industry. Owing to the changing lifestyles, the growing demand for packaged food in developing economies around the world is expected to boost market growth during the forecast period. Tartaric acid is widely used in the pharmaceutical segment. This is owing to its characteristic property of enhancing the taste of medicine, making it the material of choice for use in the pharmaceutical industry. Tartaric acid and its derivatives are widely used in making effervescent salts, which are formed when combined with citrates. The pharmaceutical industry is expected to be the one of the fastest growing segments by end-user industry in the global tartaric acid market due to the rise in medicine demand globally. The natural tartaric acid segment is projected to be the fastest-growing during the forecast period, due to its high usage in applications such food & beverages, especially in the wine industry, resulting in an exponential increase in the consumption and production. Tartaric acid is mostly used in the wine industry due to the major role it plays in maintaining the chemical stability of the wine, controlling the acidity of wine and its color, and finally in influencing the taste of the finished wine. Tartaric acid is widely used in the pharmaceutical segment. This is owing to its characteristic property of enhancing the taste of medicine, making it the material of choice for use in the pharmaceutical industry. Tartaric acid and its derivatives are widely used in making effervescent salts, which are formed when combined with citrates. The pharmaceutical industry is expected to be the one of the fastest growing segments by end-user industry in the global tartaric acid market due to the rise in medicine demand globally. The natural tartaric acid segment is projected to be the fastest-growing during the forecast period, due to its high usage in applications such food & beverages, especially in the wine industry, resulting in an exponential increase in the consumption and production. Tartaric acid is mostly used in the wine industry due to the major role it plays in maintaining the chemical stability of the wine, controlling the acidity of wine and its color, and finally in influencing the taste of the finished wine. Tartaric acid is widely used in the pharmaceutical segment. This is owing to its characteristic property of enhancing the taste of medicine, making it the material of choice for use in the pharmaceutical industry. Tartaric acid and its derivatives are widely used in making effervescent salts, which are formed when combined with citrates. The pharmaceutical industry is expected to be the one of the fastest growing segments by end-user industry in the global tartaric acid market due to the rise in medicine demand globally. The natural tartaric acid segment is projected to be the fastest-growing during the forecast period, due to its high usage in applications such food & beverages, especially in the wine industry, resulting in an exponential increase in the consumption and production. Tartaric acid is mostly used in the wine industry due to the major role it plays in maintaining the chemical stability of the wine, controlling the acidity of wine and its color, and finally in influencing the taste of the finished wine. Tags Process for Producing DL-Tartaric Acid, DL-Tartaric Acid, Tartaric Acid, Process for Manufacture of Tartaric Acid, uses of Dl Tartaric Acid, Tartaric Acid Manufacture, Production of DL-Tartaric Acid, Inorganic Chemical, Chemical Company, Tartaric Acid Formula, Tartaric Acid Production Plant, Natural Tartaric Acid, Chemical Compound, Tartaric Acid Uses, Preparation of Tartaric Acid, Method of Preparing Tartaric Acid, Tartaric Acid Chemical, Tartaric Acid In Wine, Dl-Tartaric Acid Calcium Salt, Dl Tartaric Acid and its Salts, Salts of tartaric acid, tartrates, DL Tartaric Acid and Its Salts for Textile Industry, Project Report on Tartaric Acid Production Industry, Detailed Project Report on DL Tartaric Acid Production, Project Report on Tartaric Acid Production, Pre-Investment Feasibility Study on Tartaric Acid Production, Techno-Economic feasibility study on Tartaric Acid Production, Feasibility report on DL Tartaric Acid Production, Free Project Profile on Tartaric Acid Production, Project profile on DL Tartaric Acid Production, Download free project profile on DL Tartaric Acid Production
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Production of Stable Bleaching Powder

Production of Stable Bleaching Powder. Investment Opportunities in Chemical Industry Stable Bleaching Powder (Calcium Hypochlorite) is a widely used chemical. It decomposes on contact with water, releasing chlorine at the point of application. This makes it a strongoxidising, bleaching and disinfecting agent. Bleaching powder is basically a bleaching agent. It finds application as a bleaching agent in Textile Mills, Hand Looms and Power Looms, Hosiery, Laundry, Paper, Soap and Silicate manufacturing and as oxidizing agent in organic synthesis. It is not for Medicinal Use. Applications and Uses: • Disinfecting and deodorizing in food processing, beverage and sugar industries. • For finishing and extra sheen in the carpet industry. • Effluent control in wastes containing cyanide. • Bleaching of cotton yarn, cotton cloth and hemp in textile Industry. • Bleaching, stain removal & disinfection of cotton clothing in laundries, hospitals & homes. • Disinfection in water treatment & sewage disposal. • Controlling of mosquitoes through eradication of mosquito larvae in drains, gutters, ponds etc. • Disinfection, de-odorizing and bleaching of residential premises, swimming pools, public conveniences etc. • Disinfection for preservation of vegetables & fruits • Stable bleaching powder is used to disinfect ponds or seawater where shrimps and prawns are grown. In addition, it is used as a disinfectant and deodorizing agent to reduce the Biological Oxygen Demand (BOD) concentration in water. • Stable bleaching powder is used to sterilize linen and remove stains. • Stable bleaching powder is used to bleach pulp and straw. • Stable bleaching powder finds wide use in the textile industry as a bleaching agent for cotton yarn and cloth. • SBP is used as a disinfectant and deodorising agent to reduce the BOD concentration and control cyanides in water. It is also used in swimming pools as a disinfectant and cleaning agent, apart from controlling algae. It is used in a variety of applications, the most important being as disinfectants and cleaners. Calcium hypochlorite is extensively used as a chlorine compound, which is highly effective against several microorganisms such as algae, bacteria, fungi, slime and other harmful and objectionable microorganisms which exist in the environment. Accordingly the quantity of textile finishing agents imported and the share of bleaching powder in the past seven years. There are six units manufacturing bleaching powder in Madhya Pradesh with a combined production capacity of 14,000 metric tonnes per annum. Calcium hypochlorite is one of the most widely used bleaching, sanitation and disinfecting agent in the world. It is an integral component of bleaching powder which also includes calcium chloride and slaked lime. Calcium hypochlorite is the second most used chemical type in the hypochlorite market, sodium hypochlorite being the most used type. However calcium hypochlorite has more available chlorine and is relatively more stable than liquid bleach. The global calcium hypochlorite market was valued at around US$ 5 Bn in 2016 and is anticipated to expand at a CAGR of more than 3% from 2018 to 2026. Expansion in the global calcium hypochlorite market is driven by the rise in demand for fresh water and increase in demand for calcium hypochlorite in pulp & paper applications. The calcium hypochlorite market in Asia Pacific is anticipated to expand at a CAGR of around 4% during the forecast period. Rapid urbanization in developing economies such as China and India is estimated to propel the calcium hypochlorite market in the region. Tags Stable Bleaching Powder, Calcium Hypochlorite, Bleaching Powder, Stable Bleaching Powder Manufacture, Stable Bleaching Powder Manufacturing Process, Chemical, Calcium Hypochlorite Manufacture, Stable Grade Bleaching Powder Plant, Bleaching Powder Production, Chemical Processing Plant, Small-Scale Manufacture of Bleaching Powder, Process for Production of Bleaching Powder, How to Manufacture Bleaching Powder? Bleaching Powder Manufacturing Plant, Profile on Bleaching Powder, Bleaching Powder Manufacturing Process Pdf, Bleaching Powder Manufacturing Plant Cost, Chlorine Plant, Flow Diagram of Bleaching Powder Manufacturing, Process of Manufacture of Bleaching Powder, Bleaching Powder Making Process, Bleaching Plant, Start a Bleaching Powder Making Plant, Bleaching Powder Stable, Stable Bleaching Powder Formula, Preparation, Properties & Uses of Bleaching Powder, Formation of Bleaching Powder, Stable Bleaching Powder(Calcium hypochlorite), Stable Bleaching Powder, Textile, Dyeing & Finishing Chemical, Project Report on Bleaching Powder Production Industry, Detailed Project Report on Bleaching Powder Production, Project Report on Bleaching Powder Production, Pre-Investment Feasibility Study on Stable Bleaching Powder Manufacturing, Techno-Economic feasibility study on Bleaching Powder Production, Feasibility report on Bleaching Powder Production, Free Project Profile on Stable Bleaching Powder Manufacturing, Project profile on Stable Bleaching Powder Manufacturing, Download free project profile on Bleaching Powder Production
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Production of Titanium Dioxide (TiO2)

Production of Titanium Dioxide (TiO2). Highly Profitable Chemical Business Ideas Titanium dioxide (TiO2) is a naturally occurring mineral that is mined from the earth, processed and refined, and added to a variety of foods, as well as other consumer products. White in color, it is used to enhance the color and sheen of certain foods and is also key for food safety applications. In its natural state it exists in different bulk crystalline forms, such as anatase and rutile, but during processing it is ground into a very fine powder. It is naturally opaque and bright, which makes it useful for use in paper, ceramics, rubber, textiles, paints and cosmetics. It is also UV-resistant, and is used widely in sunscreens and pigments that are likely to be exposed to light. It is used in a wide variety of personal care products, including color cosmetics such as eye shadow and blush, loose and pressed powders and in sunscreens. Uses & Benefits: The main use of titanium dioxide (TiO2) is as a white powder pigment because of its brightness and very high refractive index. This means that relatively low levels of the pigment are required to achieve a white opaque coating. Pure titanium dioxide is a fine, white powder that provides a bright, white pigment. Titanium dioxide has been used for a century in a range of industrial and consumer products, including paints, coatings, adhesives, paper, plastics and rubber, printing inks, coated fabrics and textiles, as well as ceramics, floor coverings, roofing materials, cosmetics, toothpaste, soap, water treatment agents, pharmaceuticals, food colorants, automotive products, sunscreen and catalysts. Titanium dioxide is produced in two main forms. The primary form, comprising over 98 percent of total production, is pigment grade titanium dioxide. The pigmentary form makes use of titanium dioxide’s excellent light-scattering properties in applications that require white opacity and brightness. The other form in which titanium dioxide is produced is as an ultrafine (nanomaterial) product. This form is selected when different properties, such as transparency and maximum ultraviolet light absorption, are required, such as in cosmetic sunscreens. In the pharmaceutical industry, titanium dioxide is used in most sunscreens to block UVA and UVB rays, similar to zinc oxide. It is also commonly used as pigment for pharmaceutical products such as gelatin capsules, tablet coatings and syrups. In the cosmetics industry, it is used in toothpaste, lipsticks, creams, ointments and powders. It can be used as an opacifier to make pigments opaque. Titanium dioxide is seeing growing demand in photocatalysts due to its oxidative and hydrolysis properties. As a photocatalyst, it can improve the efficiency of electrolytically splitting water into hydrogen and oxygen, and it can produce electricity in nanoparticle form. Applications include light-emitting diodes, liquid crystal displays (LCDs) and electrodes for plasma displays. Titanium dioxide (TiO2) is derived from ilmenite a mineral found in the metamorphic, plutonic igneous rocks and beach sands in India. It can be classified into anatase, rutile and brokite, of which only anatase and rutile are commercially important. TiO2 is consumed across paints, plastics, paper and many other end use segments. The titanium Di-oxide market in India is projected to exhibit a CAGR of 3.98% during 2016-2025, owing to broad growing applications of titanium Di-oxide in paints, rubbers, plastics, textiles, cosmetics, pare & printings, etc. Titanium is the ninth most commonly found element in the earth's crust and is chemically inert in nature. Titanium Di-oxide is an oxide of titanium metal, which occurs naturally in several types of mineral sands and rocks. Minerals, metals and chemicals manufacturing industries majorly produce titanium Di-oxide in two grades namely, Rutile Grade and Anatase Grade titanium Di-oxide, owing toit's high refractive index, hiding power & opacity, low specific gravity and UV protecting properties. Thereby, boosting consumption of titanium Di-oxideacross various downstream industries such as paints, paper, rubber, textiles cosmetics etc. Furthermore, increasing awareness among consumers regarding the physical and chemical properties of titanium Di-oxide is further projected to drive India titanium Di-oxide market in the coming years. "Paints and varnishes manufacturing industry is the leading consumer of titanium dioxide in India. Paints is one of the mostly used building materials in constructions, furniture, automotive and other industries. Strong growth in construction and automotive industries in India is the major factor propeling demand for titanium dioxide pigments in paints and coatings production industry. Over the past few years, India paint market grew at a rate of around 15% and is expected to grow at the same pace in the coming years as well. The global titanium dioxide (TiO2) market size was valued at USD 13.3 billion in 2015. The market is expected to witness growth at a CAGR of over 8.9% from 2016 to 2025, owing to increasing demand from end-user industries. Usage of the product as pigments in paints & coatings formulation is expected to fuel industry growth over the next few years. The major growth drivers for this market are growing demand for titanium dioxide in end use industries like coatings, plastics and others. Technological innovations aimed at improving manufacturing processes to increase product yield with higher quality is expected to have a positive impact on the titanium dioxide pigment market. Within the global titanium dioxide market, the coatings segment is expected to remain the largest market. Increasing demand for architectural and industrial coatings in the developing countries of Asia Pacific, particularly China and India, has presented sound opportunities for titanium dioxide in the coatings industry, which would spur growth for this segment over the forecast period. Based on grade type, the global titanium dioxide market has been segmented into rutile and anatase. The anatase grade type segment is projected to grow at the highest CAGR from 2016 to 2021. Anatase grade titanium dioxide is preferred in the manufacturing of paper, as it is less abrasive to the papermaking machinery. The market for anatase segment is also expected to witness high growth owing to the increasing demand for the anatase grade of titanium dioxide in the paints & coatings application from the construction industry. Global titanium dioxide market is mainly driven by increasing demand for lightweight vehicles in the automobile industry especially in the developed countries like US, Germany and France. Rising demand for lightweight automobiles is expected to play a vital role in growth of global titanium dioxide market. Materials such as polycarbonates are used in manufacturing of lightweight automotive which have low scratch resistance value. Also, the product is used in various industries such as chemical intermediates, fiber, technical titanium, inks for printer and rubber. Paper industry is the third largest user of titanium dioxide and contributed 10.4% in terms of revenue globally. Titanium dioxide is used in manufacturing of decorative papers, these are used in manufacturing of flooring, furniture and wallpapers. Demand for high end furniture is increasing which is expected to boost the demand for titanium dioxide. The paper industry is expected to contribute about 10.4% during the forecast period. The Chloride Process: There are two main stages: a) The conversion of rutile to titanium (IV) chloride b) The oxidation of titanium (IV) chloride (a) The conversion of rutile to titanium (IV) chloride The rutile is fed into a heated bed together with a source of carbon, usually coke. Chlorine is fed into the bed and the reaction takes place to form titanium (IV) chloride in the vapour form which is removed from the bed. Iron and other metals in the ore are chlorinated and also leave the bed in the vapour state. The oxygen in the ores is combined with the carbon to form carbon monoxide and dioxide. The vapour stream is cooled and the metal chlorides other than titanium (IV) chloride are condensed and solidified. The titanium (IV) chloride vapour, which contains almost pure titanium (IV) chloride and has a lower boiling point, is then condensed and stored as liquid. It is then reboiled and distilled to give a purer product to feed to the next stage. (b) The oxidation of titanium (IV) chloride Liquid titanium (IV) chloride is vaporized and burnt in oxygen, together with a hydrocarbon fuel source (for example, methane) to a high temperature to initiate the reaction and keep the temperature high enough for the reaction to proceed: The titanium dioxide is formed (by adding seed crystals) as a fine solid in the gas stream and is filtered out of the waste gases using cyclones or filters. Once again control of crystal growth is important to give particles of the correct size for pigments. This is done by adding nucleating agents to the gas stream (e.g. water or Aluminium chloride) and by cooling the products. The chlorine in titanium (IV) chloride is released and recycled to the chlorination stage of the process above. The product contains small amounts of absorbed chlorine gas which are removed. The product is washed and dried before milling and surface treatment in an identical manner to that used in the Sulfate Process described. Tags Titanium Dioxide (Tio2) Production and Manufacturing Process, Manufacture of Titanium Dioxide, Titanium Dioxide, Tio2, Essential Chemical Industry, Manufacture of Titanium Dioxide, Production of Titanium Dioxide, Commercial Process for Producing Titanium Dioxide, Manufacturing Process of Titanium Dioxide, Process for Production of Titanium Dioxide, Titanium Dioxide Manufacturing Process Pdf, Titanium Dioxide Production Chloride Process, Titanium Dioxide Process Flow Diagram, Titanium Dioxide Properties, Process for Manufacturing Titanium Dioxide, Titanium Dioxide-Tio2, Chloride Process for Titanium Dioxide, Process for Producing Titanium Dioxide, Titanium Dioxide & Titanium, Titanium Dioxide Production, Titanium Dioxide Manufacture, Titanium Dioxide Processing, Preparation of Titanium Dioxide (Tio2), Titanium Dioxide Industry, Titanium Dioxide Manufacturing Plant, Titanium Dioxide (Tio2) Industry in India, Chemical Business, Titanium Dioxide Production Business, Titanium Dioxide Plant, Project Report on Titanium Dioxide Manufacturing Industry, Detailed Project Report on Titanium Dioxide Manufacturing, Project Report on Titanium Dioxide (Tio2) Production, Pre-Investment Feasibility Study on Titanium Dioxide (Tio2) Production, Techno-Economic feasibility study on Titanium Dioxide (Tio2) Production, Feasibility report on Titanium Dioxide (Tio2) Production, Free Project Profile on Titanium Dioxide (Tio2) Production, Project profile on Titanium Dioxide (Tio2) Production, Download free project profile on Titanium Dioxide (Tio2) Production, Titanium Dioxide (Chloride Process), Chloride Process, Chloride Process for Titanium Dioxide
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Production and Formulation of Fish and Shrimp (Prawn) Feed

Production and Formulation of Fish and Shrimp (Prawn) Feed. Commercial Aquaculture Feed Manufacturing Business Food is the main element for living of all animal. Like other animals fish also needs sufficient and nutritious fish feed for proper growth and survival. Maximum fish production is not possible without nutritious feed. The ingredients of well-balanced nutritious feed for fish are protein, carbohydrate, fat, vitamins, minerals and water. The feed like moss or aquatic insects which produce naturally in the pond is not sufficient for fish. Aquafeed, also known as the fish feed, is a commercially produced food item for various aquatic species such as fish, crustaceans, and mollusks. Aquafeed is extensively used in the aquaculture sector. Fish cultivated on farms and feeding on pests found on crops can also be categorized under the aquafeed market segment. Aqua feed is food formulated specifically for fishes, which is commercially manufactured via numerous industrial procedures. Aqua feed is primarily available as pellets, which contain important ingredients that provide nutrition to fish. As per the fish species and size to be fed, these pellets are available in many sizes. Further, the properties of pellets can be easily changed so that they sink to the bottom of fish tanks or float on the surface of the water. The nutrient contents of the feed can be controlled and this has benefitted the global aqua feed market in the recent past. Also, there has been a growth in the farming aquatic species such as crustaceans, mollusks, and fish. With the globally increasing demand for fish and fish-based products, the compound feed demand in the aquatic animal food industry is also expected to increase. The growth is particularly high in emerging countries, such as China, India, and Brazil, owing to the increasing income levels due to expanding the middle class and increasing demand for seafood in these countries. The Asia-Pacific market though, accounts for a significant share in the overall market, is relatively unexplored, owing to the low level of organizing in the industry. Andhra Pradesh accounts for 22% of India’s total commercial aquafeed consumption followed by West Bengal; however, the penetration of commercial aquafeed is still at 10% for finfish category and a little higher for shellfish category in Andhra Pradesh. This makes the state an attractive investment destination for aquafeed manufacturers. From a land of traditional aquafeeding comprising rice/wheat bran, groundnut cake, and other agro products, India is emerging as a significant producer of commercial aquafeed. The thriving Indian aquaculture industry is the biggest advantage for aquafeed manufacturers. However, as majority of farmers feeding the aquatic species with traditional feeds owing to easy availability and lower prices, the transition towards commercial aquafeed will definitely take time. With the growing awareness among farmers regarding benefits of feeding the aquacultured species with commercial aquafeed, the popularity of commercial aquafeed is trickling down to various parts of the country. Further, the growing demand for fish in both the national and international markets is propelling fish cultivators in India to inculcate commercial feeding practices, so that the end product is healthy and nutritional. The global aqua feed market is segmented on the basis of geography and end-users. By end-users, the global aqua feed market is classified into crustaceans, carp, catfish, salmon, mollusks, tilapia, and others such as milkfish, eels, and trout. In 2012, by end-user, the highest demand for aqua feed was from the carps segment, accounting for 25% of the global aqua feed market. Carps have the highest demand in the retail industry whereas crustaceans have the highest demand in the food and the pharmaceutical industries. The rising demand for aqua feed from end-user segments such as mollusks and salmons is expected to propel the global aqua feed market in the near future. In terms of end-user, the global aqua feed market has classified into carp, crustaceans, salmon, mollusks, catfish, tilapia, and others. Carp stood as the leading end-use segment and accounting for 25% of the global aqua feed market. The carp and crustaceans segments are expected to display the fastest growth as they can withstand harsh environmental conditions. Mollusks segment accounted for the second largest share of the overall market and is expected to display above average growth rate in the near future. This is mainly due to the increasing consumer awareness about the health benefits of mollusks. Shrimp feed is produced in order to meet the nutritional requirements of farmed shrimps. It helps in maintaining the required levels of essential amino acids, vitamins, minerals, fatty acids and other important nutrients. Some of the common ingredients used in shrimp feed include fish and squid meal, lecithin, fish oil, cereal flour and other essential and propriety additives. The use of good quality feed helps in improving the shrimp production, profits, and minimizing the environmental pollution generated from shrimp farming. Shrimp feeds have crude protein levels ranging from 32-38% and fat levels of 5-6%. Shrimp Feed production was approximately 600,000 tons, and fish feed production was 650,000 tons. If all the smaller feed mills were included in this survey, the total feed production in 2014 would have been more than 1.5 million tons. The Indian shrimp feed market reached a production volume of 872,700 Tons in 2017. One of the primary factors catalyzing the growth of the Indian shrimp feed market is the massive marine wealth in India that sustains the development of the aquaculture industry. Although shrimp farming is fully dependent on formulated feeds, freshwater finfish farming is still in the process of transitioning to use of pelleted feeds, from use of raw agricultural by-products, farm-made feeds and organic fertilizers. High value coastal carnivorous fin fish continues to be produced via a combination of trash fish and formulated feeds, both imported and produced locally. Recently, Indian, aqua feed sector is exploring the opportunity to utilize abundantly available spent residues, dried distillery grains with soluble as a potential ingredient in fish and shrimp feeds. Tags Commercial Fish Feed, Fish Feed Formulation and Production, Fish Feed Production, Fish Feed Production Plant, Fish Feeds and Feeding, Fish Feed Production Pdf, Fish Feed Production Process, Fish Feed Pellet Production, Ingredients of Fish Feed, Fish Feed Industry, Prefeasibility of Production of Fish Feed at Small Scale, Fish Feed Pellets Production Plant, Fish Feed in Aquaculture, Production of Fish and Shrimp Feed, Fish Feed Preparation, Fish Feed, Feed Formulation, Fish & Aquatics Feed Products, Aquaculture Feed, Fish Feeds Processing and Technology, Commercial Aquaculture Feed Production, Fish Feed Processing, Feed Manufacturing, Shrimp Feed Formulation and Manufacturing Process, Manufacturing Process for Shrimp Feed, Shrimp Feed Pellets Making, Shrimp Feed Production Process, Prawn Feed Manufacturing, Feed Formulation, Prawn Feed, Prawn Feed Preparation, Shrimp Feed Industry, Shrimp Feed, Project Report on Fish Feed Processing Industry, Detailed Project Report on Fish Feed Processing, Project Report on Prawn Feed Manufacturing, Pre-Investment Feasibility Study on Fish Feed Processing, Techno-Economic feasibility study on Prawn Feed Manufacturing, Feasibility report on Fish Feed Formulation and Production, Free Project Profile on Prawn Feed Manufacturing, Project profile on Fish Feed Processing, Download free project profile on Prawn Feed Manufacturing
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Cattle & Poultry Feed Manufacturing Business

Cattle & Poultry Feed Manufacturing Business. Production of Livestock Feed Manufacturing. Profitable Premix and Animal Feed Industry Animal feed plays a vital role in the food chain as feed is one of the most crucial contributor in ensuring safe, abundant and affordable animal protein. Incessant population growth and rising affordability has surged demand for animal protein in India. Animal feed industry deals with food given to animals in cattle, poultry and aquaculture sector as part of animal husbandry. Indian feed industry predominantly caters to cattle and poultry feed segment. Poultry is the fastest growing livestock sector both in developed and developing countries. Poultry feed is the feedstock used for feeding the poultry for obtaining high quality, improves growth rate and lower the mortality rate. The feedstock is of different types depending on the end product such as for eggs or meat. Poultry feedstock is almost used in every poultry farm owing to its cost effective and desired results. Poultry feed market is a part of vast animal feed market and makes an important part of it as poultry is invariably consumed in most parts of the world. The concept of animal feed has been there in the market for several years especially in the developed markets. However, with the advent of globalization and rise in the standard of living of consumers, companies are expanding in the emerging markets of the world with improved products and wide range of options for each animal group. Poultry meat is the highest among others such as pork, beef and fish meat. Therefore, vast opportunity lies in the poultry feed segment. Demand for poultry feed in India has been increasing consistently over the last five years on account of rising population, growing demand for healthy poultry products such as broiler meat and surging demand for compound poultry feed. Growing demand for poultry products in India is being witnessed on account of increasing poultry population, and this is further anticipated to drive growth in India poultry feed market in the coming years. Growth of Indian animal feed market is propelled by rise in demand for animal protein, surge in dairy products consumption and growth of livestock population. However, there are various factors restraining growth of the market which includes high import duties on feed ingredients, vague regulatory regime, volatility in raw material prices and frequent disease outbreak. The market is characterized by leading trends such advent of non-traditional feed ingredients, genetically modifies animal feed and technological innovation in the industry. The poultry feed market to grow at a CAGR of around 8% till 2019-20. In the coming years, packaged poultry feed is expected to grow at a higher pace compared to the traditional poultry feed. In the coming years, packaged poultry feed is expected to grow at a higher pace compared to the traditional poultry feed. The Indian poultry feed industry, dependent on the sound growth of poultry has a great untapped potential, with southern part of India holding the maximum share of poultry production and consumption. Feed industry in India is about 50 years old. It primarily consists of cattle feed and poultry feed segments. Cattle feed industry in India is gradually evolving into an organized sector and the feed manufactures are increasingly using modern and sophisticated methods that seek to incorporate best global practices. Indian cattle feed industry has got high growth potential, given the country's top position among the world nations in respect of livestock population and also the high expected growth rate of about 4 per cent. Cattle feed encompasses of various type of forages such as grass, legumes, silage which is mainly used as dairy cattle feed along with soy, grain and other elements which upsurges energy density of diet. Cattle feed is edible and rich source of nutrients for growing, adult, milk producing and pregnant cattle. The global cattle feed market is anticipated to be driven by the increasing demand of milk products in developing nations, as cattle feed always aids to enhance the optimum level of milk production. Increasing demand of dairy product in Asia pacific region is anticipated to stimulate the global cattle feed market. Milk products are used widely in the various beverages and bakery products which in turn positively intensifies the sales of cattle feed. Due to the increasing awareness of the organic livestock farming, the sales of cattle feed will intensify in the near future. Also, the increasing demand for high protein food products, is anticipated to fuel the sales of cattle feed during the forecast period. Cattle feed market has been segmented on the basis of feed ingredients which comprises of Corn, soybean meal, wheat, oilseeds and others. Corn is accounting maximum market proportion during the forecast period. Cattle Feed market has been segmented on the basis of application which comprises of Dairy, Beef, Calf, swine and others. Among the application dairy is holding highest market proportion during the review period. Cattle Feed market has been segmented on the basis of additive which comprises of vitamins, minerals, amino acids, feed antibiotics, feed acidifiers, feed enzymes, antioxidants and others. The global Cattle Feed market is segmented into North America, Europe, Asia Pacific, and rest of the world (ROW). Among these, North America is estimated to retain its dominance throughout the forecast period of 2017-2022. This is attributed by the presence of key players in the North America region. Also, the technological advancement of the products and also the awareness of the new product development is also propelling the sales of cattle feed. Europe region is estimated to account healthy market proportion during the review period of 2017-2022. Asia Pacific is projected to grow at a higher pace as compare to the other region. Especially China and India offer a lucrative opportunity in the Asia Pacific region for the Cattle Feed manufacturers. Feed Premix Market size is projected to exceed USD 10.5 billion by 2023, at more than 2.9% CAGR. Rising consumer awareness about product health benefits may drive premix market. Rise in animal production for meat consumption in India, China and Brazil should favor market size growth. U.S. and China are key producing countries. The U.S. market is focused on innovating cost-effective production process. Global poultry feed premix market is expected to exceed over USD 2.1 billion by 2023, at more than 3.5% CAGR. Global aqua feed premix market is projected to exceed USD 400 million by 2023, at more than 4% CAGR. Increase in processed cattle meat consumption coupled with growing concern for animal safety from diseases may pave way for feed premix market growth. U.S. is the leading producer of poultry products. Increase in processed poultry consumption led to high demand of quality meat in industry. Key elements, vitamins and minerals are important for animal metabolism. Vitamin premix dominated the overall consumption and may witness significant gains up to 2023. Global feed premix market is huge and has variety of feed premix available in the market. Each animal needs different nutrients and the feed premix are segregated accordingly. There is poultry feed, cow feed, and other related feed as per the animal needs. Just in the poultry segment, you have poultry vitamin premix, vitamin B12 feed supplement, multi vitamin mineral feed supplement etc., and just in the poultry industry you have so many varieties. One can imagine how many varieties will be available for different livestock farmers. It is essential to choose the right kind of feed premix for the animal so that livestock farming industry can do well and survive for a long period. Tags Feed Premix Formulation, Premix Production, Animal Premix Feed Production, Premix Feed Production for Poultry, Premixes in Feeding, Animal Feed Premix Plant, Feed Production Plant, Premix for Livestock and Poultry, Animal Cattle Feed, Cattle Feed Premix, Formulation of Feed Premix, Poultry Premix Manufacture, Animal Feed, Feed Manufacturing, Feed Formulation for Poultry, How to Produce Poultry Feed, Poultry Feed Production, Mini-Poultry Feed Production, How to Make Poultry Feed Pdf, How to Start a Poultry Feed Business, Indian Poultry Feed, Cattle & Poultry Feed Manufacturing Business, Indian Feed and Poultry Industry, Poultry Feed Industry, How to Start Livestock Feed Production, Large Scale Poultry Feed Business, Small Poultry Feed Plant Project Report, Cattle Feed, Cattle Feed Manufacturing and Processing Unit, Cattle Feed Production in India, Cattle Feed Plant, Animal Feed Production Process Pdf, Animal Feed Manufacturing Plant, Small Cattle Feed Plant Cost, Animal Feed Production Business Plan, Poultry Feed Manufacturing Process Pdf, Cattle Feed Plant Cost in India, Cattle Feed Plant Layout, Livestock Feed Manufacturing, Animal Feed Processing, Cattle Feed Industry in India, Cattle & Poultry Feed Manufacturing Industry, Detailed Project Report on Poultry Feed Manufacturing, Project Report on Livestock Feed Manufacturing, Pre-Investment Feasibility Study on Cattle & Poultry Feed Manufacturing, Techno-Economic feasibility study on Cattle & Poultry Feed Manufacturing, Feasibility report on Livestock Feed Manufacturing, Free Project Profile on Poultry Feed Manufacturing, Project profile on Feed Manufacturing, Download free project profile on Feed Manufacturing
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Return: 1.00%Break even: N/A
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Production of Glass Fiber

Production of Glass Fiber. Investment Opportunities in Composites Industry Glass fiber also called fiberglass. It is material made from extremely fine fibers of glass Fiberglass is a lightweight, extremely strong, and robust material. Although strength properties are somewhat lower than carbon fiber and it is less stiff, the material is typically far less brittle, and the raw materials are much less expensive. Its bulk strength and weight properties are also very favorable when compared to metals, and it can be easily formed using molding processes. Glass fiber is manufactured from various raw materials, namely, silica sand, alumina, limestone, clay, and boric acid. There are different types of glass fiber, like E-glass and S-glass, depending on the mechanical properties. E-glass has high mechanical properties and it is used in armor applications. Types of Glass Fiber As to the raw material glass used to make glass fibres, the following types of glass fiber: 1. A-glass: With regard to its composition, it is close to window glass. It is mainly used in the manufacture of process equipment. 2. C-glass: This kind of glass shows better resistance to chemical impact. 3. E-glass: This kind of glass combines the characteristics of C-glass with very good insulation to electricity. 4. AE-glass: Alkali resistant glass. Generally, glass consists of quartz sand, soda, sodium sulphate, potash, feldspar and a number of refining and dying additives. The characteristics, with them the classification of the glass fibres to be made, are defined by the combination of raw materials and their proportions. Textile glass fibres mostly show a circular. Glass fibres can be used as a reinforcing agent for different types of vegetable oil-based polymer composites because of their availability, low cost, high strength and chemical resistance. Different types of silicate glass fibres are used in the preparation of polymer composites, but lime-alumina-borosilicate (E-glass) glass fibre is the most widely used. It can be used as chopped strand mat, ribbon and woven fabrics. Although it exhibits high strength (tensile strength 3.45 kN mm?2), creep and chemical resistance, its specific gravity (2.5) is relatively high, which limits its uses in many advanced applications where light weight is important. Glass fibers are useful because of their high ratio of surface area to weight. However, the increased surface area makes them much more susceptible to chemical attack. By trapping air within them, blocks of glass fiber make good thermal insulation, with a thermal conductivity of the order of 0.05 W/ (mK). Indian glass fiber market is set to grow substantially in the next five years. The glass fiber industry in India is mainly driven by its domestic consumption by government, NGOs, and civic bodies. The Indian government use glass fiber in their defense segment and some projects may have more than 50% glass fiber materials used in them. Though the glass fiber industry slowed down during recession, it has gained momentum after 2011. According to market forecasts, India glass fiber market is expected to reach 754 million pounds ($752.7 M) by 2018. The fiberglass market was estimated at USD 13.95 Billion in 2017 and is projected to reach USD 18.75 Billion by 2022, at a CAGR of 6.1% between 2017 and 2022. The fiberglass market is growing due to the extensive use of fiberglass in the construction industry, use of fiberglass composites by the automotive industry for enhanced performance, and an increasing number of wind turbine installations. The global glass fiber market is promising with opportunities in the end use industries such as transportation, construction, pipe and tank, electrical and electronics, wind energy, and consumer goods, tanks, printed circuit boards, wind blades, and automotive parts. Emerging trends, which have a direct impact on the dynamics of the glass fiber industry, include cost optimization and performance enhancement of glass fibers. Glass fiber is primarily used as a composite in construction industry. It is highly used in building materials owing to the properties, such as lightweight, fire resistant, anti-corrosive, and exhibits excellent strength. It has been widely used in the construction industry for non-structural elements, like facade panels, piping, and channels. This material is very good in making shapes on the front of any building and it is less dense than steel. Therefore, the usage of glass fiber is increasing in construction industry, which is fueling the demand during the forecast period. Glass fiber is the most widely used reinforcing material in composites across the globe and accounts for a more than 90% share of reinforcement materials used in fiber reinforced plastics. Glass fiber offers qualities such as low weight, high strength, and impact resistance when compared its substitutes. Demand for glass fiber is high in end-use applications such as building and construction, transportation, consumer goods, industrial and wind turbine. Glass fiber comprises many extremely fine fibers of glass and is amorphous in nature. Glass fiber can also be used as a reinforcement material in plastic. Silicon dioxide, calcium dioxide, aluminum dioxide, and boron oxide are the key raw materials used in the production of glass fibers. Glass fiber is used in mats and fabrics as it offers corrosion resistance and thermal and electrical insulation. It is used in construction, aerospace tooling, automotive, electronics, and wind energy industries because of its excellent mechanical properties such as high tensile strength, stiffness, dimensional stability, thermal conductivity, and chemical resistance. Glass fiber reinforced concrete (GFRC) is a high-performance building material that is used in the construction industry. Owing to its low weight, high strength-to-weight ratio, and excellent durability, it is used in the automotive and wind energy industries. Marine and automotive industries are among the key consumers of glass fibers owing to the need for impact resistance and lightweight materials. As glass fibers are lightweight and impact resistance in nature, they are being incessantly employed in the automotive and marine industries. They are the primary reinforcement materials in the marine composited. Glass fibers such as e-glass fibers are employed in the manufacturing of glass fiber reinforced plastics (GFRPs). Glass fiber reinforced plastics have features such as durability, high strength to weight ratio, and weather resistance, which are necessary for materials being used in the manufacturing of marine and automobile components. Glass fibers account for over 90% of the reinforcements that are used in the manufacturing of composites across the globe. There is an increased demand for glass fiber composites in the aerospace, automotive, wind energy, and construction & infrastructure applications, owing to their lightweight, high inherent strength, weather-resistant finish, and variety in surface textures offered by them. As the demand for glass fiber composites is increasing across the globe, several companies are investing in setting up their glass fiber composites manufacturing plants in the emerging economies such as China, India, etc. One of the major composite manufacturing companies, Owens Corning (U.S.), signed a strategic alliance with two China-based glass fiber manufacturing companies, namely, Xingtai Jinniu and Taishan Fiberglass in 2013 to enhance its supply of customized glass fiber reinforcements in the Asia-Pacific region. In 2017, the glass fiber market reached 2.5 billion pounds in terms of volume of composites materials produced. Tags Making of Glass Fiber, Glass Fiber, Glass Fiber Manufacturing, How Fiberglass is Made, Industrial Production of Glass Fibers, Glass Fibers Composite Manufacturing Process, Fiberglass Manufacturing, Manufacture of Glass Fiber, Glass Fiber Manufacturing Process Pdf, Glass Fiber Manufacturing Process PPT, Glass Fibres Manufacturing, Properties and Applications, How is Fiberglass Made?, Glass Fibre Production, Glass-Fiber Reinforced Composites Manufacturing, Manufacture of Glass Fibre, Continuous Filament Glass Fibres (CFGF), Continuous Filament Glass Fibre Products, Types of Glass Fiber, Glass Fibers and Fiberglass, Glass Fibres Project, Glass Fiber Processing, Start a Glass Fiber Manufacturing, Fibre Glass Manufacturing Plant, Project Report on Fiberglass Manufacturing Industry, Detailed Project Report on Glass Fibre Production, Project Report on Glass Fiber Manufacturing, Pre-Investment Feasibility Study on Glass Fiber Manufacturing, Techno-Economic feasibility study on Glass Fibre Production, Feasibility report on Glass Fibre Production, Free Project Profile on Glass Fiber Manufacturing, Project profile on Glass Fibre Production, Download free project profile on Glass Fiber Manufacturing
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Return: 1.00%Break even: N/A
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Mouth Freshener (Sounf, Supari, Elaichi Flavoured & Coloured in Pouch)

Mouth fresheners are available in different forms in market. When you are in India, you will see people chewing “pan or paan” after meal. Or you might also see roasted seeds in restadurants kept in a bowl. While stepping out after heavy meal or snacks you will take a teaspoon of these roasted seeds and put in your mouth. Within an hour of eating these mouth fresheners you will start feeling better. They get rid of bad breath, heaviness in the system and helps in digestion.
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Return: 1.00%Break even: N/A
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Colour Cem (Snowcem)

CEMCOLOR is an economy colour coating for exteriors. It is formulated for easy mixing and application. CEMCOLOR for lesser initial investment and good appearance. CEMCOLOR is based on white Portland cement and other ingredients which make it easy to apply and water repellent. It requires addition of water only in one stage. It contains pigment that are resistant to heat & light. CEMCOLOR is can be applied on the surfaces. To improve its adhesive properties, especially on smooth wall surfaces or bricks with sulphates, old cement paint surface, distempers, lime blocks & smooth non absorbent cement surfaces, CEMPROVER cement primer mixed with an equal measure of clean water should be applied as priming coat.
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Return: 1.00%Break even: N/A
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ZIRCON

Zircon is ubiquitous in the crust of Earth. It occurs as a common accessory mineral in igneous rocks (as primary crystallization products), in metamorphic rocks and as detrital grains in sedimentary rocks. Large zircon crystals are rare. Their average size in granite rocks is about 0.1–0.3 mm, but they can also grow to sizes of several centimeters, especially in mafic pegmatites and carbonatites. Zircon is also very resistant to heat and corrosion. Zircon (ZrSiO4) is a common accessory mineral in nature, occurring in a wide variety of sedimentary, igneous, and metamorphic rocks. Known to incorporate an assortment of minor and trace elements, zircon has the ability to retain substantial chemical and isotopic information, leading to its use in a wide range of geochemical investigations, including studies on the evolution of Earth’s crust and mantle. Demand data for zircon are available from TZMI, Roskill and Iluka Resources. Although there are significant differences in the fi gures for historic demand, the future demand estimates are similar until 2015. Only Iluka Resources and most recently TZMI have estimated zircon demand for the time interval between 2015 and 2020. Most demand estimates were calculated before the increase in zircon prices in 2011/12 which led to strong substitution in many applications.
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Return: 1.00%Break even: N/A
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  • One Lac / Lakh / Lakhs is equivalent to one hundred thousand (100,000)
  • One Crore is equivalent to ten million (10,000,000)
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