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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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Benzyl acetate

Benzyl acetate is found in alcoholic beverages. Benzyl acetate occurs in jasmine, apple, cherry, guava fruit and peel, wine grape, white wine, tea, plum, cooked rice, Bourbon vanilla, naranjila fruit (Solanum quitoense), Chinese cabbage and quince. Benzyl acetate is a flavouring agent Benzyl acetate is an organic compound with the molecular formula C9H10O2. It is the ester formed by condensation of benzyl alcohol and acetic acid. It is one of many compounds that is attractive to males of various species of orchid bees, who apparently gather the chemical to synthesize pheromones. Benzyl alcohol is an aromatic alcohol with the formula C6H5CH2OH. The benzyl group is often abbreviated "Bn" (not to be confused with "Bz" which is used for benzoyl), thus benzyl alcohol is denoted as BnOH. Benzyl alcohol is a colorless liquid with a mild pleasant aromatic odor. It is a useful solvent due to its polarity, low toxicity, and low vapor pressure. Benzyl alcohol is an aromatic alcohol with the formula C6H5CH2OH. The benzyl group is often abbreviated "Bn" (not to be confused with "Bz" which is used for benzoyl), thus benzyl alcohol is denoted as BnOH. Benzyl alcohol is a colorless liquid with a mild pleasant aromatic odor. It is a useful solvent due to its polarity, low toxicity, and low vapor pressure. Benzyl alcohol has moderate solubility in water (4 g/100 mL) and is miscible in alcohols and diethyl ether. The anion produced by deprotonation of the alcohol group is known as benzylate or benzyloxide. As a medication it is used to treat scabies and lice. For scabies either permethrin or malathion is typically preferred. It is applied to the skin as a lotion. Typically two to three applications are needed. Benzyl benzoate is a benzyl compound that can be synthesized by reacting benzyl chloride with sodium benzoate in the presence of tetrabutylaramonium iodide. It is reported to be the key constituent in the essential oils isolated from leaves and stem bark of Cinnamomum zeylanicum. Its toxicity has been assessed. The mechanism of thermal decomposition of benzyl benzoate has been investigated. The growing demand for benzyl acetate in the personal care industry across different regions of the world is anticipated to drive the global benzyl acetate market in the next few years. The major players operating in the benzyl acetate market are primarily focusing on the emergent countries for tapping their immense market potential. The key companies operating in the benzyl acetate market are installing gigantic production facilities in these developing countries to fulfill the swiftly rising local demand for benzyl acetate. Therefore, the global benzyl acetate market is expected to witness a noteworthy growth in the next years. Benzyl alcohol demand is projected to gain impulse with increasing demand from end use industries. Growing demand for paints and coating with rapid infrastructural developments in emerging economies such as India, China and Brazil is projected to drive the demand for benzyls alcohol over the forecast period. Further, growth in disposable income of middle class impelling the demand for automobiles which is subsequently fueling the demand for paints and coatings which in turn is driving the demand for benzyl alcohol. Paints and coating application accounts for major share of the global benzyl benzoate market. Thus, growing paint and coating industry is anticipated to drive the demand for benzyl alcohol over the forecast period. Besides this, increasing use of benzyl alcohol as an anti-parasite medication used to treat head lice. It is also used as a common preservative in many injectable drugs. Benzyl Benzoate covers the existing situation and the progress predictions of the Benzyl Benzoate Industry for 2018-2023. Benzyl benzoate is a kind of ester compound by condensation of benzoate and benzyl alcohol, there are a lot of important applications. It can mainly be used in textile auxiliaries, flavors and Fragrance, pharmaceuticals and plasticizer.
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Acid Washed Granulated Activated Carbon

The activated carbon is produced for use in ultra-pure water treatment systems requiring low conductivity and exceptionally high purity. This activated carbon is also specifically designed for the removal of heavy hydrocarbons from recovered condensate. The acid washing process removes soluble silica from the matrix of the activated carbon to prevent leaching into the condensate. Some of the benefits of Acid Wash carbon include Dechlorination of water, better taste, removal of bad odors, removal of color from water, removal of organic substances, etc. Acid wash carbon has extensive internal structure, neutral surface, maximum hardness, extended operational life, high volume activity, and rapid pH stabilization. Acid wash carbon is used in various applications such as Condensate de-oiling, semiconductor process water, dialysis treatment, point of entry treatment units, and protection of reverse osmosis membranes from chlorine and organic fouling. Activated carbon is used in various industries for air purification, groundwater remediation, spill clean up and drinking water filtration. Governments across the globe are offering subsidies for water as well as air purification. These grants coupled with rapid industrialization particularly in regions such as Asia Pacific is forecasted to benefit the overall global market growth. Activated carbon used in liquid phase accounted for 52% of the overall market. The product aids in the removal of VOCs and chlorine from drinking water. They also assist in the removal of dissolved radon, lead, and odor-causing compounds. Activated carbon, due to its effectiveness in removing impurities, is widely used in water and wastewater treatment. Governments across the globe are investing heavily in water treatment plants to provide their citizens, proper access to clean water. China has invested over USD 4.5 billion in improving the clean water supply.
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Dehydration of Lime Fruit, Dried Lemon, Dry Lemon and Dehydrated Fruit

Drying or dehydration is a process through which moisture or water content is removed from the food. Removing of water content from food makes them lighter and smaller. It helps in preservation of food for longer period of time. Dehydrated food do not require any refrigeration while preserving at home or at the time of consumption. Moreover, dehydrated food is ideal for preserving seasonal fruits and vegetables. Dehydrated food offer high nutritional value, easy storage properties and availability at low price, which is driving the demand of dehydrate food across the globe. Dehydrated food market can be segmented on the basis of technology which includes spray dried, freeze dried, vacuum dried, sun dried, hot air dried and others. Traditionally among all these segments sun dried process of dehydration was the major segment in terms of usage by food manufacturers followed by hot air dried process. However due to the introduction of new technology spray dried is expected to account for largest share in terms of market revenue contribution, followed by freeze dried during the forecast period. Vacuum dried segment is expected to show a consistent growth as compared to others. Limited usage in food products is expected to be the restraining factor for the growth of vacuum dried technology in dehydrated food market in the near future. The Dried Fruit and Vegetable Production industry has recovered steadily over the past years. Producers benefited from improving economic conditions, as well as shifting consumer preferences. As the economy continued to strengthen, renewed consumer spending helped boost demand for fruit bars, vegetable chips and other mixed snack foods that include dried fruit and vegetable inputs.
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Ferric Chloride Solution

The ferric chloride test is a traditional colorimetric test for phenols, which uses a 1% iron(III) chloride solution that has been neutralised with sodium hydroxide until a slight precipitate of FeO(OH) is formed. The mixture is filtered before use. Ferric chloride solution is a colorless to light brown aqueous solution that has a faint hydrochloric acid odor. Highly corrosive to most metals and probably corrosive to tissue. Noncombustible. Used in sewage treatment and water purification. Ferric chloride is a brownish liquid which has a pungent odor which is similar to that of hydrochloric acid. It also exists in solid lump form or in anhydrous powder form. Ferric Chloride or Iron (III) Chloride is used as a flocking agent in drinking water and waste water treatment in various industries. When small amount of ferric chloride is added in water, ferric hydroxide precipitates and absorbs the suspended impurities. Ferric chloride is generally used as a concentrated solution with minimum concentration of 40% w/w. Moreover in few industrial applications, ferric chloride is also used in crystalline solid form. Aqueous ferric chloride solution is acidic in nature and corrosive to most metals. Ferric chloride is most commonly produced from chlorine gas and pickling liquors. Moreover, ferric chloride produced as a byproduct of manufacturing titanium dioxide is also used in many industries. Consumption in the United States is forecast to grow at 1.3% annually during 2016-21. Ferric chloride producers tend to have a regional, rather than a national outlook, because transportation costs are significant. More than 80% of all ferric chloride is sold in municipal bids, with 53% sold for municipal wastewater applications, and 37% for potable water treatment applications. Industrial water treatment applications account for 6% of consumption, with the remaining 5% sold in nonwater treatment applications, such as electronic and photographic etchants, metal surface treatment, and as a catalyst. Much of the etchant activity has moved to Asia.
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Sindur Roli Bindi & Gulal

Sindoor is an orange/red colored powder used by the Hindu community for religious and cultural purposes. Married women may wear sindoor in the part of their hair to indicate marriage status. Women may also w ear sindoor as a dot or “bindi” on their foreheadsfor cosmetic purposes, or, along with men, may wear it for religious purposes. The red colour is connected with rajas, one of the three constituents of prakriti (nature) that is sattva, rajas and tamas. These three constituents of prakriti represent goodness, passion and darkness. Each of these is represented by a colour. White colour is for goodness, red is for passion and black is for darkness and ignorance. These three constituents of prakriti are described in Sankhya philosophy of Hindu religion. The red colour of bindi or sindoor represents the passionate aspect of prakriti. The red implies also love, fertility and strength. Sindoor (vermilion) is sublimed mercuric sulfide and is a brilliant red pigment. Bindi originally is a round mark on the foreheads of Hindu females. Bindi is derived from the Sanskrit word bindu meaning dot or drop. Making a mark on the forehead is a very old tradition among Hindu men and women. The old name for this mark is tilaka. Tilaka is made with coloured earth, ashes of yajna (the fire offering), sandalwood paste or unguent. The term tika or tikka is a distorted form of the term tilaka. The positioning of the bindi in between the eyes is significant. According to the Indian sages, the area between the eyebrows is the seat of latent wisdom. This point between the eyes, known by various names such as Ajna Chakra, Spiritual Eye, and Third Eye, is said to be the major nerve center in the uman body. In the Kundalini yoga and Tantric tradition during meditation, the "kundalini" - the latent energy that lies at the base of the spine is awakened and rises to the point of sahasrara (7th chakra) situated in the head or brain. The central point, the bindu, becomes therefore a possible outlet for this potent energy. Gulal also known as Abeer is the traditional name given to the coloured powders used for the typical Hindu rituals, in particular for the Holi festival. During this festival, which celebrates love and equality, people throw these powder solutions at each other while singing and dancing. Abeer' is made of small crystals or paper like chips of mica. This is usually mixed with the gulal to give it a rich shine. These colors can be used dry, or mixed with water. Colored powder (Gulal) is bought and prepared, long syringes called 'pichkaris' are made ready and water balloons are bought and filled. Gulal powder has always had an important role in Hindu culture and has always been used for religious purposes.
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Hybrid Seed Production, Biotech & Export (Floriculture with Green House)

The development of hybrid varieties is most important achievement of application of genetics in crop improvement. In the coming years biotechnological tools have to play very crucial role in various ways including development of specific parental lines or hybrids in vegetables. Role of biotechnological tools like micropropagation, molecular markers, anther culture, cybridization, induced male sterility and transgenics in the production of specific parental lines or hybrids in vegetables. Micropropagation can be used for maintenance of male sterile lines either controlled by recessive genes (tomato, muskmelon, chilli) or dominant genes (cabbage); maintenance of self-incompatible lines in cole crops and maintenance of hybrids as such through tissue culture. Molecular markers can be used for assessment of genetic diversity, construction of linkage maps, varietal identiHcaton and marker assisted selection for traits of interest. Anther culture techniques can be utilized for development of self-incompatible lines in cole vegetables and also to develop inbred lines in cross-pollinated vegetables. Cybridization is used for single step transfer of cytoplasmic male sterility from potato to tomato by protoplast fusion and generation of noval cybrids in tomato. Induction of male sterility by the use of 'BarnaseBarstar' systerm of hybrids seed production, is universally applicable for economic hybrid seed production especially in those vegetable crops where male sterility is not available (e.g. okw).Genetic transformation techniques can be used for trait specific transgenic parental lines for hybrids. Hybrid seeds market is growing at an incremental pace globally. Hybrid seeds are developed after cross pollination among different varieties of same plants. Cross pollination involves transferring the pollen from male to female. The hybrid seeds will produce similar plants, however the next generation seeds from the hybrids could differ in their characteristics. Hybrid seeds have specific characteristics such as pest and disease resistant, can adopt to environmental changes, and helps in enhancing crop productivity. Clonal propagation and open pollination are alternatives to hybridization. Increase in usage of hybrid seeds with several advanced traits, such as pelleting & seed coatings, biological & mechanical innovations related to farms, an introduction of enhanced hybrid seed varieties, and decline in arable land, and diversification of diets are major factors that drive the market growth globally. Global population is estimated to reach 9 billion by 2050, and is expected to require twice the food, which could be produced from constant land area. More production is anticipated to be accomplished from less land only by using the combination of quality seeds, quality inputs, and enhancing farm practices. Increasing demand for foods owing to rapidly rising global population is one of the major factor fuelling the demand for the product. The land resource is limited and is shrinking over the years, thereby necessitating adoption of methods to enhance crop productivity. Usage of hybrid seeds is considered to be one of the effective method for augmenting crop production.
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Profitable Grape Wine Production Business

Profitable Grape Wine Production Business. Fruit Wine Industry in India. How to Start Your Own Winery Business Grape wines are more popular than the fruit wines. But, customers are shifting towards fruit wines as they have a wide variety of products along with having the ability to please people with different tastes. The customers with habits of trying new varieties of wines are motivating the producers to constantly produce new flavors of fruit wines. The health benefits of fruit wines, style and brand appeal, royal fragrance, ability to fit any cuisine, and refreshing taste attract customers to consume various types of fruit wines. And the popularity is increasing rapidly in India. Grape wine is actually a fermented grape juice. Broadly, there are three different types of wines. These are fortified, sparkling and table. Generally, fortified wines have the higher alcohol content (around 14 to 30%). However, these are less perishable and you can get it stable without pasteurization. India is a large market for grape wine. In addition, the market is growing very fast. Nowadays, consumers can buy good quality wines from the supermarkets and shopping malls. In addition, online selling allows customers to get the products at their doorsteps. Earlier the choice was limited. Now there are over 200 wine labels available in Mumbai alone. Also, there is a growing demand for Indian wines outside the country. Availability of good quality Indian wine at half the price has resulted in a continuous increase in demand. Gradual awareness about the basic difference between wines and hard drinks is also helping the wine industry. Thus, India provides a large virgin market for wine. The grape wine industry in Maharashtra, particularly in Nashik and Sangli districts, has registered tremendous growth in the last few years. Currently, total grape wine production in India is 1.04 crore litres, of which 94.79 lakh litres is produced in Maharashtra. The total investment in wineries in the state stands at Rs 160.31 crore. Wine consumption is primarily based on consumers’ preference for taste. The wide variety of grapes, different soil and climate conditions, and various winemaking and viticulture practices affect the quality, taste and appearance of wine. Hence, the consumers naturally demand for information regarding the properties of wine such as from which grape variety it was produced, where the vineyard was, or in which vintage it was produced. Wine is expected to perform well over the forecast period as increasing excise and trade restrictions on other spirits have led to many consumers shifting to wine. Additionally, a growing number of middle-income consumers in the country have been gradually developing a taste for wine. Rising youth population together with growing affluence amid middle-class, penchant for exotic tourism and other related factors are likely to push the growth of emerging wine industry in India. Fruit wine is prepared from the juice of a ripe fruit and fermented naturally with yeast. The alcohol formation in the fruit wine is through natural fermentation of the fruits and its content primarily varies in between 5% to 15%. In order to increase alcohol content, yeasts requires sugar for generation of alcohol. The process called capitalization is an alcohol enrichment process by addition of sugar in the fruit wine. The market is valued at USD 287.39 billion in 2016 and is expected to reach USD 402 billion by 2023, at a 5.8% CAGR during the forecast period 2018 - 2023. The wine market is huge, largely dominated by the European and North American countries. The USA, France, Italy, and Spain are the largest producers and consumers of wine. In the international trade, the European region has more than 50% share of the global wine trade. Currently, there are about one million small and big wine makers globally and the world’s most famous brands (around 84%) are French. The wine consumption is declining in the traditional markets. It is growing rapidly (x4 since 2000) in the Asian markets. Asia-Pacific accounts for 16% of value of global wine imports. The global wine market is driven by the consumption habits of wine, rapid urbanization, the changing lifestyles and high disposable incomes, and popularity of wine products during social celebrations and aging population preferring wine over hard drinks. Few Indian major players are as under • Charosa Wineries Ltd. • Four Seasons Wines Ltd. • Grover Zampa Vineyards Ltd. • Indage Vintners Ltd. • Millennium Spirits Pvt. Ltd. • N D Wines Pvt. Ltd. Grape Wine Manufacturing Process: Step 1 – Harvesting As the grapes ripen the concen­tration of sugars and aroma compounds rises and the concen­tration of acids falls. The aim at harvest is to pick the grapes at their optimum compos­ition. This depends on the type of wine to be produced. For example, sparkling wine requires a higher acidity than still table wine. The develo­pment of the grapes is followed by taking samples of the grapes at regular intervals from a few weeks before the expected optimum levels will be reached. The samples are analyzed for pH (using a pH meter), acid (by titration with sodium hydrox­ide), sugar (by refractive index or chemical reduction of copper salts) and flavour compounds (by tasting). When optimum levels are reached, the grapes are harvested. Step 2 - Crushing and Destemming Sulphur dioxide (5 - 10% solution of metabisulphite) is usually added to the grape bunches as they are fed into the crushe­r/destemmer. The stems are removed as the bunches pass through a perforated rotating cylinder in which the grapes fall through the perfor­ations while the stems are separated out by beathers. The berries are then passed through rollers and crushed. The SO2 inhibits the growth of wild icroorgansisms and prevents oxidative browning of the juice. Molecular SO2 is the active biocide, but in solution this is in equili­brium with inactive HSO3-. At wine pH only 2 - 8%2 of the SO2 exists in the molecular form, but this is usually sufficient to give the required protec­tion. Wherever possible during the manufa­cturing process the juice is kept under a blanket of CO2 to exclude air, and if necessary more SO2 is added to maintain the level of molecular SO2 at a minimum of 80ppm. Step 3 - Pressing The free-run juice is separated from the crushed berries, which are pressed by gentle squeezing to obtain a high quality juice. The juice is allowed to settle overnight or is centri­fuged to clarify it. If necessary pectolytic enzymes are added to remove haze. Finally, the pulp is then squeezed almost dry. This final juice is of low quality and is used for cask wine or fermented for distil­lation into alcohol for sherry or port production. Step 4 - Fermentation Fermentation is begun by inoculating the juice with the chosen wine yeast. This yeast catalysis a series of reactions that result in the conversion of glucose and fructose to ethanol: C6H12O6? 2C2H5OH + 2CO2 the drivin­g-force behind this reaction is the release of energy stored in the sugars to make it available to other biological processes. In aerobic condit­ions, the reaction can proceed further and convert the ethanol to H2O and CO2, releasing all of the energy present in the original sugars. This process is undesi­rable in wine produc­tion, so fermen­tation is usually carried out under a blanket of CO2 to exclude oxygen and hence maximize alcohol production. Step 5 - Purification In former times, after fermen­tation was complete, the wine was heavily treated to alter the pH, compos­ition etc. to give it a desirable flavour, appearance etc. Very few such measures are used today, but those that are retained are outlined briefly below. Proteins and tannins that are suspended in colloidal form in the wine are precip­itated out with substances such as gelatin or adsorbed to the surface of substances such as bentonite. This process is called fining. The wine is often also clarified in a process called racking. This is the drawing off of the wine from the lees (sediment formed). Wine is often also cold stabilized (left at 0 to -3oC for 10 - 14 days) to crystallize out any potassium bitartrate.
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Profitable Investment Opportunity in Xanthan Gum (Food and Oil Drilling Grade)

Profitable Investment Opportunity in Xanthan Gum (Food and Oil Drilling Grade). Industrial Production of Xanthan Gum Xanthan gum is a polysaccharide, which is manufactured from a wide range of sugars using fermentation process. It is mainly used as a thickener and stabilizer to improve the structural properties of the food products. Owing to these factors, they are used in the heavy end industries such as food & beverages, oil & gas, pharmaceuticals, and others. Xanthan gum is a natural high molecular weight anionic polysaccharide and an important industrial biopolymer manufactured by the process of fermentation. Due to its unique properties, it is used in a variety of applications such as food and beverages, oil and gas, pharmaceuticals, personal care and cosmetics, agrochemicals, pet food, textiles printing, and chemical applications such as adhesives, ceramic glazes, foundry compounds, emulsions, lubricants, paints and coatings, and pesticides. Xanthan gum consists of repeating units of five carbon ring structures (Pentasaccharides), containing glucuronic acid, mannose, and glucose (in molar ratio 2:2:1). Xanthan gum is manufactured by fermentation of sugars such as lactose, sucrose or glucose. After fermentation, the polysaccharide formed is extracted through precipitation from a nutrition/growth medium by adding isopropyl alcohol, drying and then grounding the extract into fine powder. Xanthan gum is formed by adding the powdered polysaccharide into a liquid medium. Uses: • Xanthan gum is a sugar-like compound made by mixing aged (fermented) sugars with a certain kind of bacteria. It is used to make medicine. • Xanthan gum is used for lowering blood sugar and total cholesterol in people with diabetes. It is also used as a laxative. • Xanthan gum is sometimes used as a saliva substitute in people with dry mouth. • In manufacturing, xanthan gum is used as a thickening and stabilizing agent in foods, toothpastes, and medicines. Xanthan gum is also an ingredient in some sustained-release pills. Oil & Gas firms are actively involved in setting up enhanced oil recovery (EOR) methods to improve crude oil & natural gas production from potential exhausting reserves that can propel industry expansion. Rising demand for food & beverages owing to fast growing population and improved customer lifestyle in BRICS nations is predicted to fuel industry growth. Food & beverages segment was evaluated at more than $8.51 trillion for 2004 and crossed $15.1 trillion mark for 2015. Increasing significance of cosmetic items like lotions, denture cleaners and shampoos along with growing consciousness about risks associated with synthetic personal care items are predicted to propel Xanthan gum market globally. Xanthan Gum is the bacterium which secrets polysaccharide which in is Xanthan Gum, which is commonly used as a food thickening agent (salad dressing) and a stabilizer. Xanthan Gum scientific name is Xanthomonas. Xantham Gum is produced by fermenting glucose, sucrose or lactose, followed by precipitation of polysaccharide from a growth medium with isopropyl alchohol, dried and ground into a fine powder. Later, it is added to a liquid medium to form the gum. Change and growth in the food and beverage industry – including the demand for gluten-free products and increased consumption of convenience foods – is helping to expand the use of xanthan gum worldwide. The global market for xanthan gum is expected to top $972 million by 2022. Increasing use of xanthan gum as an emulsion across a wide array of applications including salad dressings, toppings, relishes, sauces, non-fat milk, dairy products, baked and frozen foods coupled with growth of food & beverage industry is anticipated to augment market growth. rowing population, changing lifestyle of consumers and rising number of restaurants and cafes especially in India and China coupled with increasing use of xanthan gum as a low price alternative to guar gum in a wide range of food applications is expected to result in high demand for xanthan gum. Increasing demand for petroleum and petrochemicals is expected to result in increasing use of xanthan gum over the forecast period as it is an important component employed in drilling fluids. Xanthan gum is primarily used to retard drug release in tablets and is compatible with numerous stabilizers and thickeners. Growth in the pharmaceutical industry is likely to propel xanthan gum demand over the next six years. The food and beverage industry has and is likely to continue showing a heavy support for the global xanthan gum market in terms of demand. Moreover, the expansion of the food and beverage industry into a greater variety of convenience foods is expected to boost the global xanthan gum market even further. Another key driver for the global xanthan gum market is the inherent superiority of xanthan gum to other hydrocolloids. However, current restraints experienced by the global xanthan gum market include the reinforced anti-dumping policies by the U.S. and other developed economies on the import of these products from Austria and China, along with the overall mistrust of quality of xanthan gum supplied by China, which is the leading producer in the market. In terms of volume, the global xanthan gum market is expected to expand at a CAGR of 7.3% for the above forecast period. The key end users of the global xanthan gum market include the industries of food and beverage, oil and gas, pharmaceuticals, personal care, and other minor end users such as lab research prospects and agrochemicals. The extremely high use of xanthan gum in the food and beverage industry is spread across the areas of bakery and confectionary, dairy and ice creams, meat and fish, beverages, and sauces and dressings. The increasing population and a growing economically-active population in Asia Pacific is further increasing demand for on-the-go foods. Increasing government investment in healthcare is also boosting pharmaceutical sales across the globe, which is driving the xanthan gums market. A mounting demand for gluten-free foods is also driving the xanthan gum market. Xanthan gum is used in the gluten-free baking process for several products such as cookies, cakes and pancakes, muffins and quick breads, breads, pizza dough, and salad dressings. Among these, xanthan gum is used in large quantities in the preparation of pizza dough. The nutritional characteristic of xanthan gum further increases its acceptability, as it contains carbohydrates and fiber. 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Opportunities in Production of Monochloroacetic Acid (MCAA)

Opportunities in Production of Monochloroacetic Acid (MCAA). An essential ingredient in the Chemical Industry Monochloroacetic Acid (MCAA) is a specialty organochlorine compound, also known as chloroacetic acid. It is the building block in organic synthesis, and is hence used in the production of various chemical compounds, drugs, and agrochemicals. Significant amount of MCAA is consumed for the production of carboxymethylcellulose (CMC), thioglycolic acid, USP grade glycine, and technical grade glycine, which is a major precursor to the production of glyphosate. Monochloroacetic acid is a colorless, crystalline, water-soluble compound obtained by the reaction of acetic acid with chlorine. It is used to manufacture versatile intermediates required to synthesize chemicals such as carboxymethyl cellulose (CMC), 2, 4-D, glycine, thioglycolic acid, synthetic caffeine and barbiturates. Monochloroacetic acid is a halogenated derivative of acetic acid that is used as a building block in organic synthesis. It exists in three crystal modifications: alpha, beta and gamma. Commercial MCA is produced in the alpha form and is available as flakes or in water solution. Major end-user industries for monochloroacetic acid include oil drilling, personal care, agrochemicals, construction and dyes. Monochloroacetic acid is used on a large scale in the production of carboxymethyl cellulose. The extensive use of carboxymethyl cellulose in oil drilling is forecast to drive the global monochloroacetic acid market. The rising demand for agrochemicals such as glyphosate is also expected to augment the monochloroacetic acid market. However, the manufacturers of monochloroacetic acid are constantly challenged by the volatility of the prices of raw materials such as methanol and acetic acid. This will curtail the growth of the market. Chloroacetic acid is used widely in various activities in mining. The rising taconite and iron ore mining activities will create new opportunities for the global monochloroacetic acid market. Monochloroacetic acid (MCA) is broadly used in chemical industries in the manufacture of carboxymethyl cellulose (CMC). Hence, the demand for CMC is expected to rise exponentially due to an increase in industrial applications. Moreover, rising population and increasing demand for agricultural products is expected to trigger growth of monochloroacetic acid. Increasing demand from glyphosate is also likely to boost the demand for monochloroacetic acid during the years to come. Cellulosics, agrochemicals, thioglycolic acid, surfactants and others are the key application segments of monochloroacetic acid market. Cellulosics was the largest application market for monochloroacetic acid market. Cellulosics segment accounted for over 30.0% share of total market, in 2014. Agrochemicals application segment is expected to be the second largest segment in this market. Thioglycolic acid, surfactants and others application are also expected to dominate the global monochloroacetic acid market. Being a major intermediate constituent in the synthesis of organic components, it is mainly applied in the production of carboxymethylcellulose and starch as the thickening agent for paper, oil drilling, detergents, pharmaceutical, and food applications. Monochloroacetic acid is also used in the manufacturing of insecticides such as dimethoates, as a raw material for betaine personal care product, in agrochemical production such as MCPA herbicides, thioglycolic acid ester as additives in cosmetics, and thioglycolic acid for UV-light stabilizer and even in synthetics caffeine, glycine, and vitamin and malonates production. This vast scope of application demands large amounts of monochloroacetic acid. The global monochloroacetic acid market is mainly driven by increasing demand for the production of carboxymethylcellulose, thioglycolic acid, and glycine. Significant amount of monochloroacetic acid is consumed for the production of CMC, also called as cellulose gel. Use of monochloroacetic acid imparts viscosity boosting and emulsion stabilization properties. Apart from these properties, use of MCAA in CMC production offers alteration of flow and texture of the product. Such attributes impel the use of CMC in the food & beverages industry for applications such as powdered drinks, alcoholic and non-alcoholic beverages, and ice-cream. CMC is also widely preferred over synthetic and natural glues, which is expected to drive its demand, and in turn is expected to increase the consumption of MCAA for CMC production. These factors are likely to boost the revenue growth of the global monochloroacetic acid market over the forecast period. Monochloroacetic acid is a basic raw material for the production of various herbicides and insecticides. Chlorpyrifos and triclopyr are widely used insecticides that are also derived from MCAA. However, the MCAA route to produce symtet generates significant amount of hazardous waste. Also, production facilities that are operated by the MCAA route face challenges such as high operation and maintenance costs that arise due to the corrosive nature of MCAA. Hence, symtet production by the MCAA route is a major challenge for producers operating in the global monochloroacetic acid market. Pharmaceutical, paper, textiles, personal care, food & beverages, oil & gas, and chemical industries are the primary drivers for the global monochloroacetic acid market. These rapidly growing industries, especially in China and India, will foresee huge industry growth in the coming years. Growing textiles industry on account of changing fashion trends, increasing population and purchasing power parity will further fuel the monochloroacetic acid market demand in future years. Rapid growth in the above-mentioned industries has made China a preferred destination for relocation of global manufacturing facilities. Furthermore, China and India are also agricultural economies and produces synthetic fibers, jute bags, cloth, and yarn. Presence of several such industries are resulting in greater monochloroacetic acid market demand in these countries. Growing population in emerging and change in fashion sense resulted in surge in demand for clothing and textile industry. This also expected to have positive impact on the overall market. Textile industry uses this acid as an intermediate for the fusion of indigo dyes. Betaine amphoteric surfactant which is a byproduct of monochloroacetic acid is used in the production of various hair products. Plastic industry uses monochloroacetic acid for processing PVC resins. Oil & gas industry includes this acid in drilling purposes, which requires carboxy methyl cellulose in bulk. Such diverse range of applications is expected to srive the overall monochloroacetic acid demand over the next seven years. However, volatile raw material prices may emerge as a major concern for the market growth. Ethanol which is one of the most important raw materials used in the production process of this acid is a petroleum product. Agrochemicals segment will witness growth with over 2% CAGR in the forecast period, the segment finds maximum usage in agriculture based economies such as India, China, and Brazil. The monochloroacetic acid market in these regions will grow at an exponential rate owing to high usage of agrochemicals for crop safety and soil fertility. Moreover, they also help to enhance the crop properties and give maximum yield to the farmers. These factors will drive the regional monochloroacetic acid market largely. Tags Manufacture of Monochloroacetic Acid, Monochloroacetic Acid Manufacturing Process, Monochloroacetic Acid Uses, Process for Preparing Monochloroacetic Acid, Monochloroacetic Acid, Chloroacetic Acid, Monochloroacetic Acid Production, Monochloroacetic Acid (Mca) Manufacturing Plant, Monochloroacetic Acid Production Process, Process for Production of Monochloroacetic Acid, Start MCA Production in India, Mono Chloro Acetic Acid, Monochloroacetic Acid Manufacture, Production of Chloroacetic Acid, Chemicals and Petrochemicals Industry Business Opportunities, Monochloroacetic Acid Market Opportunities, Production of Chloroacetic Acid, Mono Chloro Acetic Acid Plant, Process for Manufacturing Monochloroacetic Acid, Chloroacetic Acid Production, Chloroacetic Acid Manufacturing Business, Chloroacetic Acid (Monochloroacetic Acid), Monochloroacetic Acid Industry, Manufacture of MCAA (Monochloroacetic Acid), Monochloroacetic Acid Production project ideas, Projects on Small Scale Industries, Small scale industries projects ideas, Chloroacetic Acid Manufacturing Based Small Scale Industries Projects, Project profile on small scale industries, How to Start Chloroacetic Acid Manufacturing Industry in India, Monochloroacetic Acid Production Projects, New project profile on Chloroacetic Acid Manufacturing industries, Project Report on Chloroacetic Acid Manufacturing Industry, Detailed Project Report on Monochloroacetic Acid Production, Project Report on Chloroacetic Acid Manufacturing, Pre-Investment Feasibility Study on Monochloroacetic Acid Production, Techno-Economic feasibility study on Chloroacetic Acid Manufacturing, Feasibility report on Chloroacetic Acid Manufacturing, Free Project Profile on Monochloroacetic Acid Production, Project profile on Monochloroacetic Acid Production, Download free project profile on Monochloroacetic Acid Production, Startup Project for Chloroacetic Acid Manufacturing, Project report for bank loan, Project report for bank finance, Project report format for bank loan in excel, Excel Format of Project Report and CMA Data, Project Report Bank Loan Excel
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Production of Razor Blade (Double Edge)

Production of Razor Blade (Double Edge). Global Men's Grooming Market is estimated to be worth about 29.14 billion U.S. Dollars A razor blade is a blade used in a razor, typically a flat piece of metal with a sharp edge or edges used in a safety razor which is used to remove unwanted hair from the face or body. A razor is a bladed tool primarily used in the removal of unwanted body hair through the act of shaving. Kinds of razors include straight razors, disposable razor; the double-edged safety razor is a razor with a slant bar that can be used on both sides, with two open edges. The blade on the double-edged safety razor is slightly curved to allow for a smoother and cleaner shave. Indian men's grooming market will grow at a CAGR of 22% by 2020. This growth is mainly due to the rising need to look well groomed, increasing per capita income, and rapid urbanization. The demand for men's grooming market has seen a rise in the last few years because of increased consciousness of their looks among the male customer. Also as more than 50% of the population is under the age group of 30, the industry has huge local market. Moreover, rising urban middle class population, and improved distribution channels in tier II and tier III cities, are also expected to stimulate growth in the market through 2020. Men's grooming product can be divided into Bath & Shower products, Hair Care, Skin Care, Deodorants and Shaving products. Shaving products currently control the largest market share in terms of revenue in Indian men's grooming market. Indian shaving products market is expected to grow at a CAGR of 20% till 2020 and maintain its market share position even in 2020. India exported US$ 45.71 million worth of safety razor blades and the overall exported quantity was 4 million Kgs. in FY 2014-15. UAE, Singapore, Ghana, Nepal and Sudan were the top five nations importing Indian safety razor blades in 2014-15. India imported US$ 41.35 million worth of safety razor blades and the overall imported quantity was 1.30 million kgs. In FY 2014-15. Germany, China, Poland, Egypt and Mexico were the top five nations exporting safety razor blades to India in 2014-15. Indian men personal care market is moving beyond basic shaving products and demand for beard and skincare products is increasing among male consumers, said a few e-commerce companies today. "The men’s grooming market is going through a surge. The global Disposable Razor Blades Market valuation is expected to rise by 2025. The changing fashion trends and increasing emphasis on external appearances are expected to drive market demand from 2017 to 2025. Advances in razors and blades coupled with rising demand for female shaving products can bolster market growth from 2013 to 2025 (forecast period). Manufacturers in the industry are introducing blades with environment-friendly materials in order to provide a smooth shave. Blades are designed to be more flexible to cater to the contours of faces of men. Rise in disposable incomes of consumers and developments in blades can augur the market for disposable razor blades during the forecast period. Men’s grooming is expected to grow at a CAGR of 5% at constant 2016 prices over the forecast period, with sales set to reach INR105.5 billion in 2021. The expected continued strong performance of the Indian economy over the forecast period will help drive consumer income levels and spending. Consumers with increased disposable incomes over the forecast period are expected to shift from traditional blades to disposable razors and system razor sets. The worldwide disposable razor blades market is segmented by product, end user, and region. By products, the market is divided into single and double edge razor blades. End user segments in the market are categorized into male and female. Tags How to Start a Razor Blade Manufacturing Company, Double Edge Razor Blades, How Safety Razor is made, Shaving Razor Blade Manufacturing Project, Safety Razor Blades Industry, Razor Blade Production, Razor Blade Manufacturing Cost, Disposable Razor Manufacturing Process, Shaving Blade Manufacturing, Shaving Blade Manufacturing Plant, Shaving Blade Manufacture in India, Razor Blades Manufacture, Safety Double Edge Razor Blade Plan, Razor Blade Making, Manufacturing of Razor Blade, Razor Blade Company, Safety Razor, Disposable Razor Blades, Razor Blade Manufacturing Plant, How Double Edged Razor Blades are made? Razor Blade Manufacturing, Razor Production, Manufacture of Safety Razor Blades, How to Start a Razor Blade Manufacturing Industry, Disposable Razor, Disposable Razor Manufacture, Business Ideas to Start Manufacturing of Safety Razor, How to Start Razor Blade Manufacturing Business, How to Start a Razors & Razor Blades Business, Razor Blade Manufacturing Cost, Production of Razor Blade (Double Edge), Razor Blade (Double Edge) Production, Safety Razor Blade Industry, Razor Blade Factory, Razor Blade Manufacturing project ideas, Projects on Small Scale Industries, Small scale industries projects ideas, Razor Blade Manufacturing Based Small Scale Industries Projects, Project profile on small scale industries, How to Start Razor Blade Manufacturing Industry in India, Razor Blade Manufacturing Projects, New project profile on Razor Blade Manufacturing industries, Project Report on Razor Blade Manufacturing Industry, Detailed Project Report on Razor Blade (Double Edge) Production, Project Report on Razor Blade (Double Edge) Production, Men's Shaving Market, Pre-Investment Feasibility Study on Razor Blade (Double Edge) Production, Techno-Economic feasibility study on Razor Blade (Double Edge) Production, Feasibility report on Razor Blade (Double Edge) Production, Free Project Profile on Razor Blade (Double Edge) Production, Project profile on Razor Blade (Double Edge) Production, Download free project profile on Razor Blade (Double Edge) Production, Startup Project for Razor Blade (Double Edge) Production, Project report for bank loan, Project report for bank finance, Project report format for bank loan in excel, Excel Format of Project Report and CMA Data, Project Report Bank Loan Excel
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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