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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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Curcumin Extraction Unit

Curcumin is the main biologically active phytochemical compound of Turmeric. It is extracted, concentrated, standardized and researched. Curcumin, which gives the yellow color to turmeric, was first isolated almost two centuries ago, and its structure as diferuloylmethane was determined in 1910. Extensive research within the last half a century has proven that its renowned range of medicinal properties, once associated with Turmeric, is due to Curcumin. Curcumin is widely used to colour many foods. The Draft Codex General Standard for Food Additives provides an extensive list of such foods. Curcumin is listed for use in dairy products, fats, oils and fat emulsions, edible ices, fruit and vegetable products, confectionery, cereal products, bakery wares, meat and meat products, fish and fish products, eggs and eggs products, spices, soups, sauces and protein products, foodstuffs intended for particular nutritional uses, beverages, ready-to-eat savouries and composite foods. Use levels of curcumin are in the range from 5 to 500 mg/kg depending on the food category. Global curcumin market share is highly fragmented in nature due to the presence of several small and large scale manufacturers mainly concentrated in India. Cosmetic application expects the highest growth increasing at over 13% CAGR. Certain skin advantages owing to the presence of natural anti-oxidants in the products will drive curcumin based cosmetic products demand. India & China are the major supplier of Curcumin, The turnover of Curcumin could reach USD 94.32 million in 2022. Indian Curcumin market size accounted for over 81% of the overall Asia Paciffic revenue most of these as a food coloring agent.India contributes 80% of world production and roughly 60% of export. As a whole there is a good scope for new entrepreneur to invest in this business. Few Indian major players are as under: • Arjuna Natural Extracts Ltd. • Concert Spices & Exports Ltd. • Enjayes Spices & Chemical Oils Ltd. • Naturite Agro Products Ltd. • Sanat Products Ltd. • Sunrise Foods Pvt. Ltd. • Synthite Industries Pvt. Ltd.
Plant capacity: Curcumin Powder:15,000 Kgs per annum Turmeric Oil:6,000 Kgs per annum Deoiled Turmeric: 276,000 Kgs per annumPlant & machinery: 177 Lakhs
Working capital: -T.C.I: Cost of Project:369 Lakhs
Return: 28.00%Break even: 63.00%
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Absorbent Surgical Cotton (Cotton Rolls)

Surgical cotton is also known as absorbent cotton” or “cotton wool”. Surgical/ Absorbent cotton is cleared de-oiled and bleached cotton packed in different sizes. Since Surgical/Absorbent cotton is a material which comes in direct contact with the human body, its quality is very important and should satisfy the required pharmaceutical parameters. Either virgin cotton or waste cotton can be used as raw material. Comber waste cotton is desirable in case of waste cotton. Surgical/Absorbent cotton is widely used in hospitals, clinics, health centers and pharmacies for medical purposes. It is also used in beauty salons, business organizations and households for various purposes. Surgical/Absorbent cotton is mainly used for sanitary purposes and surgical operations as well as for ordinary daily use. It is also usually needed by women during their menstruation period that reoccurs at least once a month. The demand of Surgical Absorbent Cotton is directly related with the increase in population and expansion of public health services. The demand for Surgical Absorbent Cotton increases with the increase in population and number of hospitals, dispensaries, nursing homes, health care centers etc. The demand for absorbent cotton is directly related with the development and expansion of health facilities in the country. The Federal and Regional Governments have given high attention for expansion of health facilities to increase the coverage. Hence, considering the population growth and the high attention given by the Federal and Regional Governments, the demand for absorbent cotton is assumed to grow by 10%, annually. The demand for absorbent cotton in India is estimated to be about 2 million bales (of 170 kg each) per year. On the other hand, the small scale industries that manufacture absorbent cotton find it difficult to source short staple cotton. For example, the industries in Maharashtra and Madhya Pradesh are sourcing short staple cotton at high price from Rajasthan or the Northeastern part of India. So there is an imminent need to create an interface and a common platform between Indian cotton farmers as well as absorbent cotton industry. Thus, due to demand it is best to invest in this project.? Few Indian major players are as under: • Brisk Surgicals Cotton Ltd. • Jindal Medicot Ltd. • Lavino Kapur Cottons Pvt. Ltd. • Mohini Health & Hygiene Ltd. • Phoenix Surgicare Pvt. Ltd. • Precot Meridian Ltd. • Vandana Surgi Pharma Pvt. Ltd.
Plant capacity: 450,000 Kgs. per annumPlant & machinery: 399 Lakhs
Working capital: -T.C.I: Cost of Project:636 Lakhs
Return: 26.00%Break even: 48.00%
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Soda Ash (Light & Dense)

Sodium carbonate (Na2CO3) also known as washing soda or soda ash, is a sodium salt of carbonic acid. Most commonly occurs as a crystalline heptahydrate, which readily effloresces to form a white powder, the monohydrate. Sodium carbonate is domestically well known as a water softener. It can be extracted from the ashes of many plants. It is synthetically produced in large quantities from salt and limestone in a process known as the Solvay process. It is an essential raw material used in the manufacturing of glass, detergents chemicals and other industrial products. As such, soda ash is one of the most widely used and important commodities in the United States, contributing substantially to the gross domestic product. Soda ash is used to make the most common type of glass, soda-lime silica glass, generally used in the flat glass (automotive and construction), glass container (food and drink) and many other glass industries. It is also used in the production of sodium bicarbonate (baking soda), which is an essential ingredient in the beverage, coatings, detergents, food, dialysis, and personal care markets. For many of applications, soda ash is interchangeable with caustic soda, while offering a cost advantage. The soda ash market is estimated to witness a CAGR of 6.1% between 2014 and 2019 in terms of value, and is anticipated to generate a global market value of $22,090 million by 2019. A key factor driving the growth of the market is the growing applications of glass market. One of the major drivers for the growth of the soda ash market in the growing use of glass in various industries. Glass is extensively used in industries such as construction, automobile, and consumer product packaging. In 2017, the glass industry is the major end-user of the global soda ash market, which accounted for a share of 51.5%. The types of glass that use soda ash are flat glass container glass and others such as fiberglass, technical glass, and specialty glass. Entrepreneurs who invest in this project will be successful.
Plant capacity: Soda Ash Light:300,000 MT per annum Soda Ash Dense:300,000 MT per annumPlant & machinery: 12804 Lakhs
Working capital: -T.C.I: Cost of Project:25704 Lakhs
Return: 28.00%Break even: 57.00%
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Surgical and Examination Latex Rubber Gloves

Medical gloves are medical safety accessories that ensure sanitary hospital conditions by limiting patients' exposure to infectious matter. They also serve to protect health professionals from disease through contact with bodily fluids. Medical gloves are disposable gloves used during medical examinations and procedures to help prevent cross-contamination between caregivers and patients. Medical gloves are made of different polymers including latex, nitrile rubber, polyvinyl chloride and neoprene; they come unpowdered, or powdered with cornstarch to lubricate the gloves, making them easier to put on the hands. An Examination gloves (patient examination) glove is a disposable device intended for medical purposes that is worn on the examiner’s hand or finger to prevent contamination between patient and examiner. They are ambidextrous Examination grade gloves, also sometimes referred to as medical gloves, were originally designed for non-surgical medical procedures, but are also used in a variety of other applications where users seek added peace of mind regarding the glove quality. Latex gloves are being used in medical industry, automobile industry and manufacturing industry including food processing. The major purpose of using these rubber gloves are to protect the hand and fingers from heat, abrasion, electric shocks, chemical attack, contamination through direct contact as in the case of medical examination gloves etc. Rubber gloves manufacturing process is not complex and the main raw material is rubber latex. Indian surgical glove market is growing at 15% while the demand for examination gloves has been rising by 20%per annum. The Global Rubber Gloves market is expected to grow at a CAGR of 8.5% between 2014 and 2022. The factors such as rising healthcare expenditure, increasing health threats and increasing hygiene awareness and healthcare regulations are driving the market growth. Foreign exchange risks, rising raw material costs and pricing competition are hampering the market growth. Demand for disposable gloves in healthcare applications in Spain is estimated to grow at a significant rate over the forecast period. The country has a comprehensive public health system that accounts for approximately 75-80% of the sector’s activity. Entrepreneurs who invest in this project will be successful. Few Indian major players are as under: • Accent Industries Ltd. • Acknit Industries Ltd. • Asian Latex Ltd. • Casil Health Products Ltd. • Casil Health Products Ltd. • J K Ansell Pvt. Ltd. • London Rubber India Ltd. • Mega Meditex Ltd. • Sri Kannapiran Mills Ltd. • T T K Biomed Ltd.
Plant capacity: Surgical Latex Rubber Gloves (Wt. 16 gms each): 18,000,000 Pairs per annum Examination Latex Rubber Gloves (Wt. 4 gms each): 18,000,000 Pairs per annumPlant & machinery: 407 Lakhs
Working capital: -T.C.I: Cost of Project:1116 Lakhs
Return: 35.00%Break even: 40.00%
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Biodegradable Disposable Plastic Cutlery

Biodegradable Disposable Plastic Cutlery. (Eco Friendly Compostable Spoons Cutlery) India is slowly becoming a country where people are turning health conscious. Thankfully, biodegradable cutlery has emerged as a better alternative to plastics across the globe and Indians have been early adopters of biodegradable products. These Cutlery is fully compostable and biodegradable in approximately 100 days in properly maintained compost facilities. These eco-friendly products are perfect for restaurants, cafeterias, business functions, trade shows, festivals and fairs, catering. Compostable or biodegradable bio-plastics, most commonly used for utensils, are marketed as a sustainable alternative to single-use plastic. More and more people are becoming environmentally conscious every day and are taking the necessary steps to protect the environment. Businesses that embrace the concept of being eco-friendly can realize a wide range of benefits from doing so. One of the business industries in which compostable products can be used the most is in the food industry. Both dine-in and takeout restaurants have the opportunity to incorporate eco-friendly products into their operations in the form of plates and cutlery. The Global Biodegradable Cutlery Market sales were 845 million pieces in 2016, and it will be 1274 million pieces in 2023; while the revenue of Biodegradable Cutlery Market was 30.5 million USD in 2016 and forecast to accomplish 38.9 million USD in 2023, with a CAGR of 5.5% by 2023. Increasing awareness regarding harmful effects associated with non-biodegradable plastic wastes is a key factor likely to drive the market in the forecast period. Disposable cutlery, unlike the traditional disposable cutlery made from steel, is single-use cutlery. It is also comparatively cheaper than steel cutlery. Additionally, due to its lightweight it can be carried easily and is most favourable for on-the-go food. The increasing use of plastic in our day-to-day life is creating a lot of plastic waste and regulatory authorities in various parts of the world are posing bans on the use of plastic. To overcome this challenge, foodservice packaging manufacturers use plant-based raw materials for manufacturing single-use packaging like disposable cutlery, plates, bowls, and trays. Expansion in bio-based foodservice manufacturing capabilities may benefit disposable cutlery manufacturers during the forecast period. Furthermore, in recent years several manufacturers are looking for positive opportunities in edible disposable cutlery made of wheat bran, rice, corn, and sorghum. Additionally, edible disposable cutlery reduces CO2 emissions by tons. As per product type, the global disposable cutlery market is segmented into fork, spoon, and knife. Rising demand for eco-friendly, safe, and sustainable cutlery owing to increasing number of restaurants, fast food joints, and cafeterias is fueling the demand for biodegradable plates and cups. Environment friendly cutleries are a feasible alternative that offers the convenience of disposable plates, cups, and spoon in picnics, parties, and other occasions. Moreover, they do not have any negative impact on the environment. The Biodegradable Cutlery Market is segmented based on raw materials, products, composition and end user. The biodegradable cutlery is mainly made from PLA resin, CPLA (modified PLA), and Starch Blends. In general, the plant starch biodegradable cutlery is made from 70% renewable resources and 30% fillers like polypropylene and talc. PLA is a bio-based plastic derived from renewable resources such as maize starch, tapioca roots, or sugar cane. 100% cutlery is made from recode bio-plastic, produced from a rapidly renewable starch sourced from non-GMO crops. Growth will be driven by the increased options and convenience of meals prepared or consumed away from home. Demand will also be supported by a shift toward the use of higher value products featuring durable plastic or compostable materials. The Biodegradable Cutlery Market is dominated by the key players like Biopak, Eco-Products, Inc, Trellis Earth, BioMass Packaging, World Centric, Bionatic GmbH, GreenGood, Better Earth, Nature House Green, BioGreenChoice, Green Home, Vegware, Biodegradable Food Service, Biogreenchoice, Green good, World Centric, Karat and Green Home. Tags #Biodegradable_Spoon, #Disposable_Plastic_Cutlery, Biodegradable, Compostable and Renewable Disposable Plastic, #100%_Compostable_Spoons, Biodegradable Spoons, Plastic Cutlery, Disposable Plastic Cutlery, Biodegradable Cutlery, #Biodegradable_Plastic_Cutlery, Biodegradable Disposable Plastic Cutlery, Biodegradable Disposable Cutlery Manufacture, Biodegradable Cutlery Manufacture, Disposable Biodegradable Plastic Cutlery, Eco Friendly and 100% Compostable Spoons, Eco Friendly Cornstarch 100 Biodegradable Disposable Plastic Cutlery, Biodegradable Disposable Eco-Friendly Cutlery, #Compostable_Cutlery, Disposable Eco-Friendly Plastic Cutlery, Disposable Cutlery, Eco Friendly Biodegradable Cutlery, Eco Friendly Compostable Spoons Cutlery, #100%_Compostable_Spoons, Compostable Biodegradable Spoons, Cutlery Utensils, How Compostable Utensils are Made, 100% Disposable & Eco Friendly Cutlery Items, Eco-Friendly Utensils, Disposable Utensils, Eco-Friendly Cutlery, Compostable & Biodegradable Cutlery, Environmentally Friendly Cutlery, #Compostable_Cutlery_Manufacturing, Environmentally Friendly Cutlery, #Detailed_Project_Report_on_Disposable_Biodegradable_Plastic_Cutlery, Project Report on Biodegradable Spoon, Pre-Investment Feasibility Study on Disposable Biodegradable Plastic Cutlery, Techno-Economic feasibility study on Compostable Cutlery Manufacturing, #Feasibility_report_on_Compostable_Cutlery_Manufacturing, Free Project Profile on Disposable Biodegradable Plastic Cutlery, Project profile on Compostable Biodegradable Spoons, Download free project profile on Biodegradable Spoon, Compostable Food Service Ware, Compostable Products, Disposable and Compostable Spoon, #Manufacturing_of_Biodegradable_Plastics_Cutlery
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Truck Body Building

A truck or lorry is a motor vehicle designed to transport cargo. Trucks vary greatly in size, power, and configuration; smaller varieties may be mechanically similar to some automobiles. Commercial trucks can be very large and powerful, and may be configured to mount specialized equipment, such as in the case of fire trucks and concrete mixers and suction excavators. Already at 1.31 billion, by 2027 India’s population will be the largest in the world, at over 1.4 billion. Growth means urbanisation, and urbanisation requires ‘stuff’. As small villages develop into large, and as people move from rural to urban locations, so demand for ‘stuff’ will increase. Great news for truck fleets, and the OEMs who supply those stuff-hauling fleets; but the changes to trucking in India over the next decade will be seismic in proportion. Just about the only certainty is that ‘Trucking India’ in 2027 will look very different from its 2017 ancestor. Entrepreneurs who invest in this project will be successful. Few Indian major players are as under • Automobile Corpn. Of Goa Ltd. • Commercial Engineers & Body Builders Co. Ltd. • H M M Infra Ltd. • J C B L Ltd. • Tata Marcopolo Motors Ltd.
Plant capacity: Truck Body Building : 20 Nos./dayPlant & machinery: Rs 362 lakhs
Working capital: -T.C.I: Cost of Project : Rs 1709 lakhs
Return: 31.00%Break even: 56.00%
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Recovery of Fe2O3 & TiO2 from Bauxite Processing Waste

Ferric oxide (Fe? O?) is an inorganic compound also known as hematite. Ferric oxide is used in the iron industry in the manufacturing of alloys and steel. The Food and Drug Administration (FDA) has approved ferric oxide pigment for use in cosmetics. Moreover, ferric oxide granules are used in the form of filtration media for removing phosphates in saltwater aquariums. FOR Fe2O3 • In iron industries for producing steel and alloys • Ferric oxide powder, also called jeweler’s rouge, is used for polishing lenses and metallic jewelry • Its granular form is used as a filtration media for pulling out phosphates in saltwater aquariums • As FDA-approved Pigment Brown 6 and Pigment Red 101, for use in cosmetics. • In biomedical applications, because its nanoparticles are non-toxic and biocompatible Recovery of Fe2O3 Fe2O3 is another material in red mud that has attracted a number of researchers. Until now, there are three means to recover iron from red mud: smelting, solid-state reduction and magnetic separation. In smelting process, red mud is charged into blast furnace or rotary furnace with a reducing agent. Then, iron oxide in red mud is reduced to generate pig iron that can be used in steel production. However, smelting process has some demerits. High energy and capital costs are associated with blast furnace (BF) operation because scale of operation is high. Red mud must be mixed with some good-grade iron ore to maintain the minimum grade of the charge to BF. In addition, titanium reacts with other constituents of the slag to form multiple oxides that are difficult to leach. In the solid-state reduction process, the mud is mixed with a reducing agent or contacted with a reducing gas to produce metallic iron. The product can be an input either in a steel-making furnace or a conventional blast furnace. Compared to smelting process, solid-state reduction process consumes less energy. But, it also has some disadvantages. First, the metallic iron produced is quite difficult to separate from the rest of product. So, it is easily polluted by gangue materials. Second, the product is in a very fine form. The recovery rate of Fe2O3 was 45% (weight percent). Another means is to convert hematite or goethite in red mud to magnetite firstly, which is followed with magnetic separation. Obviously, this process is more complex than magnetic separation. Directly. But it also has some advantages. First, goethite is easier to separate magnetically and needs less energy to reduce compared to hematite. So, the extra cost of reducing hematite to magnetite can be compensated by the energy difference between reducing hematite and magnetite to metallic iron. Titanium Dioxide, also known as titanium (IV) oxide or titania, is a white crystalline powder, made up of ilmenite and rutile, which are used as the main raw materials. It is created using either the chloride process or sulfuric acid, referred to as the sulfate process. Titanium dioxide is extensively used as a white pigment in paints and coatings application. Also, it has a wide range of applications, ranging from paints and sunscreens to food coloring. FOR TiO2 Uses for white pigment Four million tons of pigmentary TiO2 are consumed annually. Apart from producing a white colour in liquids, paste or as coating on solids, TiO2 is also an effective opacifier, making substances more opaque. Here are some examples of the extensive range of applications: (1)Paints (2)Plastics (3) Papers (4) Inks (5) Medicines (5) Most toothpastes (6) Skimmed milk; adding TiO2 to skimmed milk makes it appear brighter, more opaque and more palatable Recovery of TiO2 Generally, there have been two main methods developed by which the titanium can be recovered from red mud: pyrometallurgical recovery and hydro-metallurgical recovery. The pyro- metallurgical method generally comprises the separation of pig iron. The red mud is calcined at a range of temperatures, from 800 to 1350°C, and is smelted through a reducing agent using an electric-furnace to obtain melted iron as well as slag that includes titanium dioxide, silica and alumina. The metallic iron is removed from the slag and the slag is digested to recover the titanium and aluminium from the solution. The pyro-metallurgical process is not an energy-friendly method and, hence, the hydrometallurgical technique usually attracts more attention from the research community. A number of the acids’ extractability have been analysed to recover titanium from red mud, such as dilute and concentrated H2SO4 and hydrochloric acid. The solvent extraction technique has been applied to extract titanium from red mud using HCl, which comprised di- and mono-. Red mud can also be considered a secondary source of the most important modification of titanium compound, titanium dioxide. Market Outlook The Global Ferric Oxide Market is expected to register a CAGR of 4.99% to reach a value of USD 2,414,382.9 Million by 2030. The growing construction industry output is expected to be one of the most significant drivers for the iron oxide market on a global scale. Iron oxide finds a profound rate of application in the construction industry such as in the colouring of various construction materials, including concrete blocks and bricks, ready-mixed concrete and roofing tiles. With the steady growth of the construction industry, stemming from increasing urban and civil infrastructure projects, the demand for iron oxides is expected to increase significantly. Additionally, the use of iron oxide for applications such as paints & coatings, plastics, ceramics and chemicals would necessitate its bulk consumption. The primary driver of the global ferric oxide market is its growing adoption in steel production. The increasing application of steel in the major end-use industries such as transportation, construction, energy, packaging, and consumer appliances is also a prime factor driving market growth. Steel finds application in the manufacturing of automobile structures, panels, doors, engine blocks, gears, suspension, wheels, fuel tanks, steering, and braking systems. The use of iron oxide pigments to impart colors to construction materials, paints, inks, plastics, papers, cosmetics, rubbers, concrete blocks, and tiles is another key driver of the market. The growing construction industry output is expected to be one of the most significant drivers for the iron oxide market on a global scale. The growing adoption of iron oxide nanoparticles in wastewater treatment is an excellent opportunity for the players in the market. With the steady growth of the construction industry, stemming from increasing urban and civil infrastructure projects, the demand for iron oxides is expected to increase significantly. Additionally, the use of iron oxide for applications such as paints & coatings, plastics, ceramics and chemicals would necessitate its bulk consumption. The ferric oxide market is witnessing consolidation, driven by the pursuit for sustainability among market participants, owing to the imposition of stringent regulations on the production of ferric oxide, which are increasing the overhead costs for ferric oxide manufacturers. This has prompted ferric oxide manufacturers to consolidate production and business operations through acquisition of external enterprises having a sufficient infrastructure and resources. Some of the major players operating in the Ferric Oxide market: • Cathay Industries • Huntsman • Lanxess • Bayferrox • Toda Kogyo • Quality Magnetite • Prochem • BariteWorld • Cathay Industries • Nano-Oxides • Pirox Titanium Dioxide The global titanium dioxide market size was valued at USD 15.76 billion in 2018 and is expected to witness a CAGR of 8.7% from 2019 to 2025. Thus, rising number of residential and non-residential construction projects is augmenting the demand for paints & coatings, thereby boosting overall market growth. In addition, high demand for anti-corrosive architectural coatings in the pigments has increased the demand for titanium dioxide. The rising use of titanium dioxide in ceramic industry is one of the key factors expected to trigger the market growth in the forthcoming years. It is used as popular ingredient in different products including paint, plastic, paper, pharmaceuticals, and other items. It also provides variegation and crystallization to the color and texture of ceramic glazes. It further prevents pollutants including nitrogen oxide, sulfur oxide, carbon monoxide from affecting ceramic products. The tightening of regulations globally over vehicular emissions and fuel efficiency concerns have compelled manufacturers to take measures in making vehicles lightweight. High availability of substitutes the rising prices of TiO2 and its negative effects on human are pushing end-user industries to use substitute products. This will hinder the growth of the titanium dioxide market during the forecast period. Titanium dioxide particles have wide application scope due to their high stability, photocatalytic properties, and anti-corrosive nature and are manufactured from anatase. They are used in consumer products, such as sunscreens, and as components for articulating implants for the hip and knee. In the near future, its usage in plastics is set to rise at a breakneck pace thereby providing a major fillip to the global titanium dioxide market. Titanium dioxide find application in bettering numerous characteristics of plastics such as color, opacity, and strength. And with the ever-surging demand for plastic on account of the burgeoning world trade, the global titanium dioxide market growth it expected to remain supported. Top Key Players of Titanium Dioxide (TiO2) Market: • KRONOS Worldwide Inc. • Lomon Billions • The Chemours Company • Tronox Holdings plc • Venator Materials PLC. Tags #Recovery_of_Fe2O3_from_Bauxite_Processing, #Iron_Oxide_Recovery, #Recovery_of_Ferric_Oxide, #Recovery_of_Ferric_oxide_from_Bauxite_Processing_Waste, Ferric Oxide, Manufacturing Applications for Iron (III) Oxide, Manufacture of ferric oxide, Production of Iron (II) Oxide (Fe2O3), Process for the Manufacture of Iron Oxide, Process for Producing Iron Oxide, Iron Oxide Formula, Ferric Oxide Production, How to Make Iron Oxide, Preparation of iron oxide, Titanium Dioxide (TiO2) Production and Manufacturing, #Titanium_Dioxide, Manufacture of Titanium Dioxide, #Titanium_Dioxide_(TiO2) Production, Manufacturing Process of Titanium Dioxide, Titanium Dioxide Properties, Titanium Dioxide Uses, Titanium Dioxide Process Flow Diagram, Titanium Dioxide Manufacture, How to Make Titanium Dioxide, Manufacturing Process of Titanium Dioxide, Production of Titanium Dioxide, Titanium Dioxide Production, #Recovery_of_Titanium_Dioxide, Process for Recovery of Titanium Dioxide, Recovering Titanium Dioxide (Tio2), Recovery of Titanium Dioxide from Bauxite Processing Waste, #Project_Report_on_Recovery_of_Ferric_oxide_from_Bauxite_Processing_Waste, Detailed Project Report on Recovery of Ferric oxide from Bauxite Processing Waste, Project Report on Recovery of Titanium Dioxide, Pre-Investment Feasibility Study on Recovery of Ferric oxide from Bauxite Processing Waste, Techno-Economic feasibility study on Recovery of Titanium Dioxide, #Feasibility_report_on_Recovery_of_Ferric_oxide_from_Bauxite_Processing_Waste, #Free_Project_Profile_on_Recovery_of_Ferric_oxide_from_Bauxite_Processing_Waste, Project profile on Recovery of Ferric oxide from Bauxite Processing Waste, Download free project profile on Recovery of Titanium Dioxide
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Herbal Extracts (Brahmi Extract, Ashwagandha Extract, Dry Ginger Root Powdered Extract)

Herbal extracts are substances which are obtained by crushing, distilling, comminuting, and juicing various herbs. The processes are designed to maximum the potency of a particular herb. Herbal extract is referred to the crude mixtures extracted from various parts of plants, which have diverse applications in various industries. The extraction of herbal compounds is generally carried out using ethanol or water. Herbal extracts have been identified to be highly consumed in the form of dietary supplements. Other major application sectors of herbal extracts include food, beverages, pharmaceutical, cosmetic & personal care, and others. Brahmi Extract Brahmi known as Bacopa Monnieri is an herb basically used in the Ayurveda treatment for Asthma and Epilepsy. Apart from the treatment of these diseases, Brahmi is also widely accepted to have magical curing power for many other diseases. It is considered to be an excellent brain tonic, improving cognitive functions including enhancing memory power and learning ability. Bacopa Monniera Herb & Extract is a classic brain and nervine tonic included in the "Brahmi" category of herbs, which are those that benefit both the mind and spirit and improve the intellect and consciousness. Bacopa Monniera assists in heightening mental acuity and supports the physiological processes involved in relaxation. Ashwagandha Extract Ashwagandha or Withania Somnifera is a widely used herb in Ayurvedic medicines. The berries, leaves and root of this short herb have versatile medicinal values. The extract, light in color and neutral in taste is derived from select, handpicked roots. According to Ayurveda, Ashwagandha is excellent for vitality as well as rejuvenation and is a general health booster. The purification of Ashwangandha roots and the extraction processes are carried out under expert supervision using traditional methods laid down in ancient Ayurveda texts. Ginger Root Powdered Extract Ginger or Zingiber Officinal is one of world’s best known spices, used throughout history for its all-round health benefits. The dried ginger extract contains mono- and sesquiterpenes. Ginger is one the most well-researched herbs in the world. An ingredient of the traditional Indian and Chinese pharmacopoeia, Ginger and powdered Ginger monographs have been approved for inclusion in the National Formulary by the US pharmacopoeia. German and European monographs on ginger are also available. The global herbal extracts market is predicted to exhibit a 7.52% CAGR from 2018 to 2023. Rise of health consciousness among the youth and other demographics are likely to spur market demand over the forecast period. High demand for functional foods and beverages which contain the required ingredients for preventing chronic diseases. Awareness of the health benefits of herbal extracts can positively impact market growth. Furthermore, demand for skin care products with the inclusion of natural ingredients can create growth opportunities for the herbal extracts market. Global herbal extracts market has been growing at a continuous pace because of its various health benefits and increasing awareness about side effects from using chemical based products. Even at the times of recession the demand of herbal products is not much affected as people desire to maintain their health when the treatments are costlier. The extraction process requires obtaining active ingredients, using cost effective and appropriate solvents to increase the yield and its quality. There are various extraction processes each varying in cost efficiency, limitations and time consumption. India herbal extracts market has recorded phenomenal growth over the years with rising awareness among the people about the health benefits of consuming herbal products. The use of herbal extracts in the pharmaceutical and nutraceutical industry in India and abroad contributed a dominant share of ~% in the overall sales of the players operating in the space during FY’2017. The growing demand of ayurveda medicines due to limited or no side effects has boosted the use of herbal extracts by the players operating in pharmaceutical industry in India. Dietary supplements which are used to provide health benefits also involve a major component of herbal extract to be consumed by the people. Indian consumers are more inclined towards natural and herbal cosmetic products, especially those used for hair and skin care. The rising demand for natural cosmetics has resulted in augmented use of herbal extracts in preparing beauty products. The market has majorly been driven by the exports of high quality herbal extracts which are demanded by the US, Canada, Ukraine, South Korea, Czech Republic, Israel, France, Taiwan, Nepal, and other nations. The inclination of foreign customers towards Indian products due to health benefits of various herbs has led to a boost in the revenues of the market.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Ceramic Transfers (For Printing on Ceramics) Rubber Stamping, Stencilling, Screen Printing, Offset Printing and Paper Transfers

Transfer printing, method of decorating pottery by using an inked, engraved copperplate to make a print on paper that, while still wet, is pressed against a glazed pottery surface, leaving behind an impression, or transfer, of the engraving. Sometimes these monochrome transfer prints were subsequently filled in with colour by hand. Rubber stamping, also called stamping, is a craft in which some type of ink made of dye or pigment is applied to an image or pattern that has been carved, molded, laser engraved or vulcanized, onto a sheet of rubber. The rubber is often mounted onto a more stable object such as a wood, brick or an acrylic block. Increasingly the vulcanized rubber image with an adhesive foam backing is attached to a cling vinyl sheet which allows it to be used with an acrylic handle for support. These cling rubber stamps can be stored in a smaller amount of space and typically cost less than the wood mounted versions. They can also be positioned with a greater amount of accuracy due to the stamper's ability to see through the handle being used. Temporary stamps with simple designs can be carved from a potato. The ink-coated rubber stamp is pressed onto any type of medium such that the colored image is transferred to the medium. The medium is generally some type of fabric or paper. Other media used are wood, metal, glass, plastic, and rock. High-volume batik uses liquid wax instead of ink on a metal stamp. Stenciling, in the visual arts, a technique for reproducing designs by passing ink or paint over holes cut in cardboard or metal onto the surface to be decorated. Stencilling produces an image or pattern by applying pigment to a surface over an intermediate object with designed gaps in it which create the pattern or image by only allowing the pigment to reach some parts of the surface. The stencil is both the resulting image or pattern and the intermediate object; the context in which stencil is used makes clear which meaning is intended. In practice, the (object) stencil is usually a thin sheet of material, such as paper, plastic, wood or metal, with letters or a design cut from it, used to produce the letters or design on an underlying surface by applying pigment through the cut-out holes in the material. Screen printing also uses a stencil process, as does mimeography. The masters from which mimeographed pages are printed are often called "stencils". Stencils can be made with one or many colour layers using different techniques, with most stencils designed to be applied as solid colours. Screen printing, also known as serigraphy, is a method of creating an image on paper, fabric or some other object by pressing ink through a screen with areas blocked off by a stencil. The technique is used both for making fine art prints and for commercial applications, such as printing a company's logo on coffee mugs or t-shirts. Offset printing, also called offset lithography, or litho-offset, in commercial printing, widely used printing technique in which the inked image on a printing plate is printed on a rubber cylinder and then transferred (i.e., offset) to paper or other material. The rubber cylinder gives great flexibility, permitting printing on wood, cloth, metal, leather, and rough paper. In offset printing the matter to be printed is neither raised above the surface of the printing plate (as in letterpress) nor sunk below it (as in intaglio, or gravure, printing). Instead, it is flush with the surface of the plate; thus offset is classified as a planographic method of printing. Transfer paper is a thin piece of paper coated with wax and pigment. Often, an ink-jet or other printer is used to print the image on the transfer paper. A heat press can transfer the image onto clothing, canvas, or other surface. Transfer paper is used in creating iron-ons.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Recycling of Polythene and Other Plastic Products

Polythene is a type of plastic made into thin sheets or bags and used especially to keep food fresh or to keep things dry. Polyethylene or polythene (abbreviated PE) is the most common plastic. The annual global production is around 80 million tonnes. Its primary use is in packaging (plastic bags, plastic films, geo membranes, containers including bottles, etc.). Plastic recycling is the process of recovering scrap or waste plastic and reprocessing the material into useful products. Global Plastic Recycling Market is projected to cross USD 50.0 Billion by 2023, growing at a CAGR of over 5.0% during the forecast period. Rising awareness about the pollution caused by plastics and the energy saving benefits in the manufacturing of recycled plastics over virgin plastics are the major growth drivers of the global market for plastic recycling. In terms of type, the plastic recycling market is categorized into Polyethylene Terephthalate (PET), Polyethylene (PE), Polypropylene (PP), Polyvinyl Chloride (PVC), Polystyrene (PS) and others. Plastic recycling market is prognosticated to scale new heights in the upcoming years owing to the rising cost of production as a result of increasing petroleum price. The growth trajectory of the market is likely to be dictated by government regulations favoring the recycling of plastic waste. In addition, the need for a standard recycling technology for plastic in order to manage waste efficiently is also anticipated to catalyze the expansion of the market over the next couple of years. However, a lack of awareness about recycling still prevails in the market which is forecasted to check the proliferation of the plastic recycling market over the assessment period. Based on application, the market has been expanded into packaging, construction, automotive, textile, consumer goods, and industrial. Of these, the segment of packaging is expected to serve the most demand for recycled plastic owing to the thriving expansion of the packaging industry and the several mandates compelling the industry to adopt more environment-friendly processes and ways to cut-down on its carbon footprint. The construction segment is also increasingly becoming a notable consumer of recycled plastic and is likely to account for a notable share in the overall market by the end of the report’s forecast period.
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Return: 1.00%Break even: N/A
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