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

Agro and Food Processing: Project Opportunities in Uttarakhand

PROFILE:

Food processing involves any type of value addition to agricultural or horticultural produce and also includes processes such as grading, sorting and packaging which enhance shelf life of food products. The food processing industry provides vital linkages and synergies between industry and agriculture. The Food Processing Industry sector in India is one of the largest in terms of production, consumption, export and growth prospects. The government has accorded it a high priority, with a number of fiscal reliefs and incentives, to encourage commercialization and value addition to agricultural produce, for minimizing pre/post harvest wastage, generating employment and export growth. India's food processing sector covers a wide range of products fruit and vegetables; meat and poultry; milk and milk products, alcoholic beverages, fisheries, plantation, grain processing and other consumer product groups like confectionery, chocolates and cocoa products, Soya-based products, mineral water, high protein foods etc.

RESOURCES:

Uttarakhand comprises of total are 5672568 Hectares, of which forest area is 3485847 hectares. Fruits such as apples, oranges, pear, grapes peach, plum apricot, litchi, mangoes and guava are widely grown in the state and therefore have immense potential for development of horticultural crops and processing units. The State Government will assist in establishing small & medium size Agro Parks, Food Parks etc., which will provide common infrastructure facilities for storage, processing, grading and marketing, thus ensuring that surplus fruits and vegetables do not go waste as at present. Four Agri Export Zones have already been declared under the AEZ scheme of the Government of India for Litchi, Horticulture, Herbs, Medicinal Plants and Basmati Rice. Further, efforts will continue to promote production for export and provide access to domestic and export markets for products from the State.

GOVERNMENT POLICIES:

The Ministry of Food Processing Industries (MOFPI) is a ministry of the Government of India is responsible for formulation and administration of the rules and regulations and laws relating to food processing in India. The ministry was set up in the year 1988, with a view to develop a strong and vibrant food processing industry, to create increased employment in rural sector and enable farmers to reap the benefits of modern technology and to create a of surplus for exports and stimulating demand for processed food.

•        Custom duty rates have been substantially reduced on food processing plant and equipments, as well as on raw materials and intermediates, especially for export production.

•        Wide-ranging fiscal policy changes have been introduced progressively in food processing sector. Excise and Import duty rates have been reduced substantially. Many processed food items are totally exempt from excise duty.

•        Corporate taxes have been reduced and there is a shift towards market related interest rates. There are tax incentives for new manufacturing units for certain years, except for industries like beer, wine, aerated water using flavouring concentrates, confectionery, chocolates etc.

•        Indian currency, rupee, is now fully convertible on current account and convertibility on capital account with unified exchange rate mechanism is foreseen in coming years.

•        Repatriation of profits is freely permitted in many industries except for some, where there is an additional requirement of balancing the dividend payments through export earnings.

 

Biotechnology: Project Opportunities in Uttarakhand

PROFILE

The Biotechnology sector in India is one of the fastest growing sectors of the Indian Economy. As the sector is mainly based on knowledge, it is expected that it will play an important part in shaping the Indian Economy, which is developing at a rapid pace. The Indian Biotechnology sector holds immense potential in terms of research and development, skill and cost effectiveness. As per the eight annual survey by the Association of Biotechnology-led enterprise (ABLE) and a monthly journal, Bio-Spectrum, the sector grew threefold in five years and reported a revenue of US$ 3 billion during 2009-2011 with a 17 per cent rise as compared to the previous year.

RESOURCES

Uttarakhand is an ideal destination to invest in biotechnology-based industries because of several inherent advantages and being host to vast diversity of flora and fauna and rare species of plants and animals. A high-level biotechnology board is being setup to pursue initiatives in the field of research. The state will accord the units coming under this sector with the industry status and aims to establish an internationally competitive business infrastructure and environment for the industry in the state. Further, a biotechnology park is to be developed that will integrate resources and provide a focused institutional set up for accelerated commercial growth of bio-technology and bio-informatics. The Government is also in the process of creating an Exchange for Medicinal and Aromatic Plants to serve as a common platform for research institutions, technology developers and producers.

GOVERNMENT POLICIES:

The Uttarakhand Board of Biotechnology (UBB) will help the R&D Institutions of the State to seek funds from the national and international funding agencies / donors to upgrade the infrastructure facilities. Depending upon the need, UBB and the State Government will also try to fund R&D facilities through its own resources. The State Government undertakes to provide the following facilities/terms to the companies desirous of establishing BT units in the State:

•        BT Units including related R&D Units will enjoy the status of industry and will be eligible for incentives and concessions as provided for the relevant category/class of industry in the Industrial Policy of the State. For this purpose they shall be treated as Priority Sector Industry. Department of Biotechnology will provide The State Government undertakes to provide the following facilities/terms to the companies “single-window clearance” and shall issue only one application form to set up BT Units in the State.

•        The Government proposes to establish in association with private sector a BT Park initially at Halide, Pantnagar where land/plots would be made available to prospective entrepreneurs on favourable terms. The latter, however, are also free to choose their own sites or locate the same in the other established Industrial Areas in the State.

Hydropower: Project Opportunities in Uttarakhand

PROFILES:

Hydroelectricity is the term referring to electricity generated by hydropower; the production of electrical power through the use of the gravitational force of falling or flowing water. India was the 7th largest producer of hydroelectric power in 2008 after Norway: 114 TWh and 3.5 % the world total in 2008. The potential for hydroelectric power in India is one of the greatest in the world. Small hydropower offers a wide range of benefits-especially for rural areas and developing countries. The resource is environmentally responsible and has substantial economic advantages. Efforts also being made to improve the exchange of ideas and technology related to small hydropower. In India, small hydropower up to capacity of 25 MW also includes the mini-and-micro hydropower projects which are usually confined strictly to local use. A potential of over 15,000 MW has been identified from small hydropower and Government of India has been according top priority to SHP development as thrust area.

RESOURCES:

Uttarakhand has a large network of rivers and canals which provides an immense scope for hydro-power energy. In India, the development of Micro, Mini, and Small Hydro Power Projects started in the year 1897. One of the first hydro-power stations in India was commissioned at Galogi in 1907. More power stations were subsequently developed over a period of time. In Uttarakhand, the estimated capacity of Small hydro power projects is about 1500 MW out of total estimated capacity of 20,363 MW Uttaranchal has a hydropower potential of the order of 20236 MW against which only about 1407 MW has been harnessed so far.

GOVERNMENT POLICIES:

The Government of Uttaranchal (GoU) has decided to encourage generation of power through small hydropower sources of energy, and has framed a policy so that the development of this sector serves as an engine to achieve the objective of promoting the all-round development of the region. To encourage generation of hydropower the government of Uttarakhand has formulated and implemented policies with following objectives:

•        Creation of conducive conditions for encouraging private sector participation

•        Harnessing water resources in an environment friendly manner

•        Meeting the energy demand of the state/country

•        Promotion of the overall development of the region

•        Generation of revenue from hydro resources

 

Mineral: Project Opportunities in Uttarakhand

PROFILES:

A mineral is a naturally occurring solid chemical substance formed through biogeochemical processes, having characteristic chemical composition, highly ordered atomic structure, and specific physical properties. India is endowed with significant mineral resources. India produces 89 minerals out of which 4 are fuel minerals, 11 metallic, 52 non-metallic and 22 minor minerals.

RESOURCES:

Mineral resources of Uttarakhand play a significant role in the economy of Uttarakhand. The Chamoli district of Uttarakhand is especially famous for housing a number of mineral resources in Uttarakhand. The northern division of the district consist entirely of medium to high grade metamorphic rocks, which also contains bands of volcanic rocks in some areas; the southern division contains sedimentary and low-grade metamorphic rocks, with bands of volcanic rocks in some regions. Although much is not known about the geology of the first division of Chamoli, yet the mineral resources contain rocks such as quartzite, marble, and various types of schist and gneiss. The southern division contains rocks such as gneiss, limestone, phyllites, quartzite, sericite-biotite schist and slate.

Some of the important minerals that form a major part of the mineral resources of Uttarakhand are: Asbestos, Magnestic, Soapstone or Steatite, Copper, Iron, Graphite, Gold, Gypsum, Lead, Slate, Limestone, Building Stone, Sulfur, and Bitumen. Beside these major mineral resources, some of the other mineral resources of Uttarakhand also play a major role in enhancing the economy of Uttarakhand. Some of those mineral resources are: Antimony, Arsenic, Lignite or Brown Marble, Mica, Silver, etc.

GOVERNMENT POLICIES:

NATIONAL MINERAL POLICY, 2008

Keeping in view the long term national goals and perspective for exploitation of minerals, Government of India has revised its earlier National Mineral Policy, 1993 and came up with a new National Mineral Policy 2008. Basic goals of NMP 2008 are-

1.       Regional and detailed exploration using state of the art techniques in time bound manner.

2.       Zero waste mining

For achieving the above goals, important changes envisaged are:

•        Creation of improved regulatory environment to make it more conducive to investment and technology flows

•        Transparency in allocation of concessions

•        Preference for value addition

•        Development of proper inventory of resources and reserves

•        Enforcement of mining plans for adoption of proper mining methods and   optimum utilization of minerals 

•        Data filing requirements will be rigorously monitored

•        Old disused mining sites will be used for plantation or for other useful purposes.

•        Mining infrastructure will be upgraded through PPP initiatives

•        State PSU involved in mining sector will be modernized

•        State Directorate will be strengthened to enable it to regulate   mining in a proper way and to check illegal mining

•        There will be arms length distance between State agencies that mine  and those that regulate

•        Productivity and economics of mining operation, safety and health of workers and others will be encouraged.

Tourism: Project Opportunities in Uttarakhand

PROFILE:

Tourism in India is the largest service industry, with a contribution of 6.23% to the national GDP and 8.78% of the total employment in India. The tourism industry in India is substantial and vibrant, and the country is fast becoming a major global destination. India’s travel and tourism industry is one of them most profitable industries in the country, and also credited with contributing a substantial amount of foreign exchange. Indian Tourism offers a potpourri of different cultures, traditions, festivals, and places of interest.

RESOURCES:

Uttarakhand - the land of gods, the home of Himalayas and truly a paradise on earth, allures everyone from everywhere. Uttarakhand is paradise for different types of adventure activities. Like River Rafting, Trekking, Skiing, Camping, Rock Climbing, Rappelling, River Crossing. Mountaineering, Paragliding and Hot Ballooning make Uttarakhand one of the most attractive destinations for adventure sports not only in the India but the world. Gangotri and Yamunotri, the sources of both the Ganges and Yamuna fall in the upper reaches of the state and together with Badrinath (dedicated to Vishnu) and Kedarnath (dedicated to Shiva) form the Char Dham, one of Hinduism's most spiritual and auspicious pilgrimage circuits. Haridwar, meaning "Gateway to God" is a prime Hindu destination. Haridwar hosts the Kumbha Mela every twelve years, in which millions of pilgrims take part from all parts of the India and the world. Rishikesh near Haridwar is known as the preeminent yoga centre of India. The state has an abundance of temples and shrines, many dedicated to local deities or manifestations of Shiva and Durga, references to many of which can be found in Hindu scriptures and legends.

GOVERNMENT POLICIES:

In order to develop tourism in India in a systematic manner, position it as a major engine of economic growth and to harness its direct and multiplier effects for employment and poverty eradication in an environmentally sustainable manner, the National Tourism Policy was formulated in the year 2002. Broadly, the Policy attempts to:-

•        Position tourism as a major engine of economic growth;

•        Harness the direct and multiplier effects of tourism for employment generation, economic development and providing impetus to rural tourism;

•        Focus on domestic tourism as a major driver of tourism growth.

•        Position India as a global brand to take advantage of the burgeoning global travel trade and the vast untapped potential of India as a destination;

•        Acknowledges the critical role of private sector with government working as a pro-active facilitator and catalyst;

•        Create and develop integrated tourism circuits based on India’s unique civilization, heritage, and culture in partnership with States, private sector and other agencies; and ensure that the tourist to India gets physically invigorated, mentally rejuvenated, culturally enriched, spiritually elevated and feel India from within.

 

Waste management and recycling: Project Opportunities in Uttarakhand

PROFILE:

Rapid industrialization last few decades have led to the depletion of pollution of precious natural resources in India depletes and pollutes resources continuously. Further the rapid industrial developments have, also, led to the generation of huge quantities of hazardous wastes, which have further aggravated the environmental problems in the country by depleting and polluting natural resources. Therefore, rational and sustainable utilization of natural resources and its protection from toxic releases is vital for sustainable socio-economic development.

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:

Investments are aimed at improving public health and the environmental quality in the Program towns and the adjacent open land and water bodies by increasing solid waste collection coverage from 50% to 72% and supporting sound solid waste disposal methods. Improvements will be directed at (i) segregation of solid waste at household level and handling and management improvements at wards and town levels with an emphasis on waste minimization, (ii) provision of solid waste collection and transportation equipment, and (iii) construction of sanitary landfills in accordance with GoI’s Municipal Solid Waste Management and Handling Rules 2000. These will develop into a State wide SWM strategy, action plan, and town wise SWM master plan reports supported by capacity building of ULBs in SWM.

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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Setting a Profitable Business of Edible Oil Refinery (Soya & Palm)

Fruits, plants, and animals are all sources of edible oil. It is used in the preparation of a variety of dishes. Soybean, palm, rapeseed, and sunflower oils are popular with purchasers among the many varieties of edible oils available commercially. Because of the growing popularity of crude, natural, healthy, and organic vegetable oils, the edible oil industry is expected to increase significantly in the future years. Low-fat, low-cholesterol, and low-calorie vegetable oils are expected to increase rapidly as people throughout the world become more health conscious. Edible oils are primarily used in cooking, however oils such as coconut oil, almond oil, and peanut oil are occasionally used in personal care products such as hair oils and soaps. Almond oil is also ideal for producing hard candies. It's perfect for candy centres, fondants, frostings, and fudges. Chocolate and chocolate coatings can be made using this flavour. Vegetable oils are also mixed into animal feed to boost their nutritional intake and fatten them up. Edible oil can be used to make bio-diesel, lubricants, solvents, and emulsions on a modest scale. The oil palm, Elaeisguineensis, is an African native. The oil derived from the mesocarp of the fruit - palm oil - and the kernel of the nut - palm kernel oil - are the major economic assets of this crop. In fact, the oil palm is the only fruit capable of producing both types of oil. Both are edible oils, but their chemical composition, physical qualities, and applications are vastly different. Palm oil is primarily used in the kitchen in the form of cooking oil, margarine, and shortening, but it also has non-food uses in the form of soap, detergent, and cosmetics. Soybean Oil: Soybean oil is high in linoleic and linolenic acid, two important fatty acids. These polyunsaturated fatty acids lower serum cholesterol through reducing lipoprotein (LDL) synthesis and promoting lipoprotein breakdown, as well as by the impact of linolenic acid. Linolenic acid lowers plaque development and thrombosis via boosting prostaglandin E3 production and lowering platelet aggregation. Edible oil is a type of cooking oil made from the fat of plants, animals, or microbes. At room temperature, edible oils are liquid and safe to consume. Triacylglycerides make up 96 percent of edible oils. Edible oils include ghee, mustard oil, sunflower oil, olive oil, rice brown oil, groundnut oil, soya oil, and palm oil, to name a few. Edible oils include trace levels of antioxidants that keep them from oxidising. Antioxidants are also added to edible oils to extend their shelf life. Antioxidants must, however, be provided in adequate amounts. The global demand for edible oils is expected to reach its peak due to increased awareness and appeal of unprocessed, non-refined, nutritious organic oils. The need for edible oils is being driven by the increased demand for omega 3 acid in foods. Due to a solid supply chain of edible oil products, the retail segment will further broaden the scope of growth for the edible oils market. More attractive growth prospects for the edible oils business will be created as personal disposable income rises. The global edible oil market is expected to increase at a CAGR of 3.57 percent from USD96.878 billion in 2019 to USD119.571 billion by the end of 2025, from a market size of USD96.878 billion in 2019. Because of the growing popularity of unrefined, unprocessed, nutritious, and organic oil, the worldwide edible oil industry is expected to develop significantly. Due to increased health consciousness among people all over the world, vegetable oils with minimal cholesterol, fat, and calories are anticipated to acquire a lot of traction in the future years. Furthermore, considerable improvements in the retail network, rising agricultural yields, oil output, and expanding economies are some of the primary factors driving the global edible oil industry forward. Few Indian Major Players 1. Adani Wilmar Ltd. 2. Betul Oil Ltd. 3. Divya Jyoti Inds. Ltd. 4. Edible Products (India) Ltd. 5. G-One Agro Products Ltd. 6. Hindustan Vegetable Oils Corpn. Ltd. 7. Itarsi Oils & Flours Pvt. Ltd.
Plant capacity: Refined Palm Oil: 50 MT Per Day | Refined Soya Oil: 50 MT Per Day Plant & machinery: 7 Cr
Working capital: -T.C.I: Cost of Project: Rs. 36.14 Cr
Return: 27.00%Break even: 45.00%
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Start Manufacturing of Aluminium Ingots from Aluminium Scrap

Aluminum is a light-weight silver-white metallic element that accounts for about 7% of the earth's crust. Steel (7480-8000 Kg/cubic metre) and copper (8930 Kg/cubic metre) weigh about a third as much. Aluminum is malleable, ductile, and easy to cast, with good corrosion resistance and durability. It is mined as bauxite ore and occurs predominantly as alumina when combined with oxygen. India possesses about 10% of the world's bauxite reserves and a bauxite-dependent aluminium industry. Demand is predicted to increase by 8-10% in the domestic market. India is estimated to have a capacity of 1.7 to 2 million tonnes of aluminium installed by 2020. Blooms, billets, and slabs are smaller casting results, whereas ingots are larger and more shaped. The cross section of an ingot is usually rectangular or square, but it is not required to be uniform across its length. (The cross section of the ingot may vary.) India's share of the global aluminium market is expected to be around 3%. After Australia (62 million tonnes), Guinea (17.50 million tonnes), Brazil (16.20 million tonnes), and China, India ranks fifth in bauxite output (10.75 mntonnes). With a total output of 9.25 million tonnes, India contributes around 6% of the world's total production of 159 million tonnes. India ranks sixth in reserves base, ahead of China with 2300 million tonnes. With a total output of 3 mntonnes, India ranked sixth in alumina production, accounting for approximately 5% of global production of 61 mntonnes. Aluminium is used in a wide range of applications, from aeroplane construction to packaging, with the electrical industry being a major consumer. The two sectors that account for more than half of the overall offtake are electricity and transportation. Power, transportation, consumer durables, packaging, and construction are the most important consumer industries in India. Power is the largest consumer (about 44% of total), followed by infrastructure (17%) and transportation (13%). (about 10 percent to 12 percent). Over the next five years, India's aluminium industry is expected to see a significant increase in demand. To add additional value to their downstream product portfolios, major companies are increasing large capacity and investing in new technology. This is being done to capitalise on rising demand in the building and construction sector, as well as transportation (metro and high-speed railway coaches), electrical and electronic consumer durables, and next-generation applications such as solar reflectors. Aluminum is also employed in the defence sector to make naval ships and surveillance drones. Few Indian Major Players 1. Aravali Infrapower Ltd. 2. Baheti Metal & Ferro Alloys Ltd. 3. Bothra Metals & Alloys Ltd. 4. Gravita India Ltd. 5. Indo Alusys Inds. Ltd. 6. Namo Alloys Pvt. Ltd. 7. Nealex Alloys Pvt. Ltd. 8. Perfect Alloys & Steel Ltd.
Plant capacity: Aluminium Alloy Ingots: 14 MT per day | Aluminium Scrap: 0.23 MT per dayPlant & machinery: 7 Cr
Working capital: -T.C.I: Cost of Project:Rs. 33.15 Cr
Return: 1.00%Break even: N/A
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How to Start Undergarments (EOU) Manufacturing Industry | A Complete Business Plan on Men’s Undergarments Manufacturing

Men’s underwear is a form of close-fitting underwear worn by men. Men's undergarments are usually made of cloth, and intended to be durable, protective, fashionable and absorbent. They serve many purposes, ranging from support and protection for various parts of the body to enhancing male physical attributes as desired for erotic purposes. Men have been wearing some form of undergarment since prehistoric times, and all cultures have developed their own types and styles. In Western culture, men normally wear briefs or boxer shorts (informal), or boxer briefs (more formal). More recently, tighter-fitting jockstraps (also called supporter shorts) have become popular among adolescent boys in school locker rooms. Visit this Page for More Information: Start a Business in Readymade Garments Industry Uses of Men’s Undergarments Better Absorption: By wearing Men’s Undergarment (EOU), one can assure complete freedom from wetness and discomfort due to chafing during activities like workouts or when practicing sports activities. Thus, Men’s Undergarment (EOU) help in better absorption of sweat by keeping your skin dry. Related Project Report: Production Industry of Men’s Undergarment (EOU) Convenience: Wearing Men’s Undergarment (EOU) is convenient, especially for those who prefer exercising without shorts on. Since it provides a barrier between your skin and your pants, Men’s Undergarment (EOU) makes you feel more comfortable and less restricted during activities like sports and workouts. Health Benefits: Wearing Men’s Undergarment (EOU) also helps in keeping one safe from any infections that can be caused due to sweat by absorbing it better compared to plain pants or briefs. They keep your private parts free from rashes and infection caused by bacteria, and thus, help you stay healthy and fit. Read Similar Articles: Industry: Textile Industry Cost-Effective: Buying Men’s Undergarment (EOU) is extremely cost-effective because of its low maintenance cost as well as its ability to last for a long time without wearing out easily. Men’s Undergarment (EOU) can be washed and used again and again, unlike many other clothing items that need frequent replacement due to constant wear and tear. This makes Men’s Undergarment (EOU) an inexpensive way of dressing up, compared to buying new clothes regularly. Variety: Men’s Undergarment (EOU) are available in different materials, styles and designs which help them cater to all kinds of preferences. For instance, you can find Men’s Undergarment (EOU) made from cotton lycra blends or microfiber fabrics which are lightweight while also being soft against your skin; they are also ideal for people who tend to get irritated by common fabrics like cotton or polyester. Watch Video: Cutting a pattern and generating cloth mock-ups are the first steps in the Men's Underwear manufacturing process. Patterns are composed of paper and are used to make all fitting components, such as tops, bottoms, inserts, and special things like belts and ties. Fabric mock-ups are made by folding or cutting out paper patterns on fabric to get a general concept of how an item will look once it is finished. After all of the elements from the mock-up have been cut out, they can be put together to make a working garment. Related Feasibility Study Reports: Readymade Garments, Textile & Textile Auxiliaries, Hosiery, Spinning, Jeans and Under Garments Hand or machine stitching is an option. Any openings are sewed shut with either manual sewing (with needles) or machine sewing when the stitching is finished (using specialised equipment). Garments can be put together with zippers, snaps, and buttons in addition to stitching. Assembly is completed by trimming surplus material. Before being distributed to retailers or wholesalers, finished clothing are inspected for flaws. Read our Books Here: Textile Spinning, Processing, Natural Fibers, Natural Dyes, Pigments, Textile Dyes, Pigments, Dye Intermediates, Woollen Spinning, Weaving, Knitting, Dyeing Technology Market Outlook The global men’s underwear market size is expected to register a CAGR of 5.3% from 2019 to 2025. Increasing awareness about health, best fit, and personal hygiene coupled with growing millennials population is expected to drive the growth. Increasing availability of a wide range of products and designs suitable for various purposes including sports, regular wear, and functional wear among other is anticipated to further fuel the product demand. Watch other Informative Videos: Textile Industry Improving fashion trends, increasing disposable income, and changing consumer lifestyle and preferences are expected to boost the market growth. Increasing concern regarding the fabric used for manufacturing underwear is one of the major factors driving the market. Availability of products in a variety of fabrics such as cotton, polyester, nylon, rayon, silk, and cotton blends is driving the product demand. Manufactures focus on intimate product designs and patterns such as thongs, C-string, tanga, and jockstraps among others to cater to a larger consumer base. See More Links: Start a Business in Asia Start a Business in Potential Countries for Doing Business Best Industry for Doing Business Business Ideas with Low, Medium & High Investment Looking for Most Demandable Business Ideas for Startups Start a Business in Africa Start a Business in India Start a Business in Middle East Related Videos Related Books Related Projects Related Market Research Reports
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Business Plan for Setting up Medical College with Hospital

A medical college is designed to provide students with medical education in order to qualify them as doctors in several specialised areas so that they can treat patients suffering from various illnesses. Doctors, with their determined spirit, serve the nation as a whole by giving medication and treatment for the eradication of diseases that rob people of their health and cause them to suffer. Medical College means an institution, whether known as such or by another name, that offers a programme beyond 12 years of schooling for obtaining a recognised MBBS qualification from a university and that is recognised as competent to offer such programmes of study and present students enrolled in such programmes of study for the examination for the award of a recognised MBBS/PG Degree/Diploma from such university, in accordance with the rules and regulations of such university. A hospital is a health-care agency that provides preventive, curative/ameliorative, palliative, or rehabilitative treatments, according to various definitions. Hospitals nowadays also include bio-social research, teaching and training facilities for all hospital employees, and a health team that comprises not only doctors and nurses, but also para-professionals, paramedical staff, pharmacists, and other healthcare professionals. Increased negligence by these institutions' doctors, as well as overpopulation, provided a chance for private hospitals to thrive. A growing number of private hospitals have opened, offering everything from E.C.G.S. to X-Rays to Laboratories, as well as 24-hour emergency and admission services for sick people, badly injured people, and pregnant women. Because one's life is deemed to be much more expensive and bills for treatment can be overlooked, middle and upper-class families began to prefer these private hospitals and nursing homes. The sector of colleges and universities is predicted to increase steadily. High unemployment and difficult economic situations prompted more people to pursue higher education in order to improve their job market competitiveness; the consistent rise in high school retention rates also boosted college enrolment. Industry revenue is expected to grow over the next five years, according to IBIS World, due to consistent demand for higher education. The Indian healthcare business, which is one of the fastest expanding, is predicted to increase at a CAGR of 22.87 percent from 2015 to 2021, reaching USD280 billion. In India, there is a lot of room to expand healthcare services penetration, which means the healthcare industry has a lot of room to grow. India is a land brimming with prospects for medical device companies. With massive capital investment in advanced diagnostic facilities, the country has also become one of the main destinations for high-end diagnostic services, catering to a larger part of the population. Furthermore, Indian medical service consumers have become more aware of the need of maintaining their health. The Indian healthcare industry is extremely diverse, with potential in every segment, including providers, payers, and medical technology. Businesses are looking for the latest dynamics and trends that will have a favourable impact on their business as the competition grows. The hospital business in India is expected to grow at a CAGR of 16–17 percent from Rs. 4 trillion (US$ 61.79 billion) in FY17 to Rs. 8.6 trillion (US$ 132.84 billion) in FY22. Key Players 1. A V P Research Foundation 2. Aakash Educational Services Ltd. 3. Adani Hospitals Mundra Pvt. Ltd. 4. Apple Hospitals & Research Institute Ltd. 5. Artemis Medical Institute & Hospitals Pvt. Ltd.
Plant capacity: 150 Students Admitted per Annum 100 Bedded HospitalPlant & machinery: 14.55 Cr
Working capital: -T.C.I: Cost of Project: 73.05 Cr
Return: 31.00%Break even: 49.00%
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Sodium Hydrosulphite Manufacturing Business

The chemical substance sodium hydrosulfite, commonly known as sodium dithionite or sodium hydrosulfide, has the formula NaHSO2. The chemical is the sodium salt of hydrosulfuric acid, consisting of sodium ions linked to two sulphur dioxide molecules. It's utilised in chemical operations as an oxygen scavenger, as well as in the filtration of drinking water and wastewater. Sodium hydrosulfite is also frequently used as a food additive in beer, salt, and egg powder, as well as in the synthesis of anhydrous sodium sulphate for leather components and as a water treatment agent. It's also utilised in the production of sulfuric acid and other compounds. Gray or white crystal irregular cube or block that is soluble in water but only marginally soluble in ethanol or methanol. Because sodium hydrosulfite is a strong reducing agent and can effectively react with the colours in the pulp, it is also particularly successful in bleaching recycled pulp. Furthermore, most recycled furniture contains mechanical pulps that can be bleached using sodium hydrosulfite. The sodium hydrosulfite bleaching conditions for recycled pulp are fairly similar to those for mechanical pulps. If the supply, such as mixed office waste, contains primarily chemical pulps, a hydrosulfite (Y) stage at a significantly higher temperature, 80–100°C and a pH of 7.0, could result in significant brightness gain. • It is widely used in the textile industry for vat dyeing, reduction cleaning, printing and stripping, and textile bleaching. • It is also used in bleaching paper pulps, particularly mechanical pulps; it is the most suitable bleaching agent in pulps. • It is used in bleaching kaolin clay, fur bleaching and reductive whitening, bleaching of bamboo products and straw products. Up to 2024, the market for sodium hydrosulfite is expected to develop at a CAGR of over 4%. Because of its widespread use as a reductive bleaching agent for pulp in the paper production process, the global sodium hydrosulfite market will rise through 2024, owing to increased paper product demand in Asia Pacific. Consumer confidence is rising, as is disposable money, and customers' desire to keep up with the latest fashion trends, to name a few main drivers fueling the textile market's expansion. Key Players 1. Demosha Chemicals Pvt. Ltd. 2. Gulshan Chemicals Pvt. Ltd. 3. Kanoria Chemicals & Inds. Ltd. 4. Orchid Pharma Ltd. 5. Shankar Lal Rampal Dye-Chem Ltd.
Plant capacity: 60.0 MT per DayPlant & machinery: 280 Lakh
Working capital: -T.C.I: Cost of Project: 934 Lakh
Return: 29.00%Break even: 58.00%
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Investment Opportunities in Production of Granulated Fertilizers

Fertilizers are crucial in agriculture because they include a variety of minerals, including nitrogen, phosphorous, and potassium. Fertilizers, like all minerals, go through a series of stages before they reach their final, usable state. As part of the value chain, granulation is a method that improves particle size, reduces loss, and assures more precision in fertiliser field applications. Granular fertiliser, often known as dry fertiliser, is a type of fertiliser that comes in the form of dry pellets rather than spikes, liquid, or powder. Most garden stores stock a variety of granular fertilisers, as well as a variety of formulations that are tailored to certain soil conditions. NPK fertilisers are made up of three parts: nitrogen, phosphorus, and potassium. The NPK rating system is a way of describing how much nitrogen, phosphorous, and potassium are in a fertiliser. NPK ratings are three digits separated by dashes that describe the chemical content of fertilisers (e.g., 10-10-10 or 16-4-8) The first number, N, represents the percentage of nitrogen in the product; the second, P2O5, represents the percentage of potassium in the product; and the third, K2O, reflects the percentage of potassium in the product. Slow-release fertilisers make up the majority of granular fertilisers. They can come in the shape of pellets or coarse powders, and each watering is supposed to break them down slowly over months. Apply granular fertilisers to the planting hole according to the guidelines before backfilling the soil and planting. It can also be used as a top treatment on already-established plants, though the results will be less effective than when administered before planting. You should consider utilising granular fertilisers with each new planting (except cacti or succulents which require low nitrogen and high minerals instead). Organic granular fertilisers with a nearly balanced analysis, such as MicroLife Multi-Purpose 6-2-4 and Fox Farm All Purpose 6-4-5, would sufficient for the majority of plants; these products are versatile and provide consistent nutrition for any plant, turf grass, or tree. If you're planting heavy-feeding plants like tomatoes, fruit trees, peppers, or most other edibles, you can use a granular product with a higher nitrogen content. Fertilizers were critical to India's green revolution achievement and subsequent self-sufficiency in food grain production. The increased use of fertiliser has made a substantial contribution to the country's ability to produce food grains in a sustainable manner. As a result, over the last few years, the demand for fertilisers has increased by double digits. In 2020, the Indian fertiliser market will be worth INR 887 billion. From 2021 to 2026, the market is expected to increase at a CAGR of 5.5 percent. The NPK Fertilizer market is predicted to increase at a CAGR of 2.8 percent between 2021 and 2026, from 41080 million USD in 2020 to 49950 million USD by the end of 2026. Because of the government's support of more sustainable usage and better management of natural resources, organic fertilisers for diverse crops have grown in popularity. The use of organic products will also help to prevent pollution. Over the last few years, the number of local makers of organic fertilisers has expanded in order to feed the vegetable and fruit agricultural areas. Organic fertilisers reinforced with chemical fertilisers have lately been introduced to the plantation crop market. Key Players 1. Basant Agro Tech (India) Ltd. 2. Coromandel International Ltd. 3. Deccan Sales Corpn. Ltd. 4. Deogiri Fertilisers Ltd. 5. Fertilisers & Chemicals, Travancore Ltd. 6. Indian Farmers Fertiliser Co-Op. Ltd.
Plant capacity: 200 MT per DayPlant & machinery: 436 Lakh
Working capital: -T.C.I: Cost of Project:1954 Lakh
Return: 29.00%Break even: 50.00%
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A Comprehensive Business Plan on Lithium Ion Battery (LiFePO4) Production

A lithium iron phosphate (LFP) battery is a form of lithium-ion battery that, when compared to other types of batteries, can charge and discharge at rapid speeds. It's a rechargeable battery whose cathode material is LiFePO4; hence the name. Lithium ferrophosphate (LFP) batteries are a type of lithium iron phosphate (LFP) battery. The main difference between lithium iron phosphate batteries and other lithium-ion batteries is that LFP can deliver a steady voltage and has a larger charge cycle, ranging from 2000 to 3000 cycles. LFP batteries are safe for the environment and architecturally sound. They have a low discharge rate and a low energy density. They don't get hot easily and stay cold compared to other batteries. The battery's composition protects it from thermal runaway, so it's regarded safe for residential usage. In the event of mismanagement during charge or discharge, lithium phosphate cells are incombustible; they are more stable under overcharge or short circuit situations, and they can sustain high temperatures without degrading. The phosphate-based cathode material will not burn and will not cause thermal runaway if abused. The chemistry of phosphorus also has a longer cycle life. Uses • Buses, electric automobiles, tour buses, hybrid vehicles, and other attractions are examples of large electric vehicles. • Electric cycles, golf carts, compact cars, forklifts, electric vehicle cleaning wheelchairs, and other light electric vehicles • Lawn movers, electric saws, and electric drills are all examples of power tools. • Remote-control toys, such as vehicles, boats, and planes • Solar and wind energy storage systems. • Emergency lights, warning lights, UPS, miner's lamp, etc. • Medical equipment and devices that are small and portable. The lithium ion battery market is estimated to increase at a CAGR of 12.6 percent from 2020 to 2027, reaching USD 3,203.01 million by 2027. The market is expanding due to the growing demand for lithium ion batteries in medical devices. Lithium ions flow from the negative electrode to the positive electrode through the electrolyte during charging and backwards during discharging in a lithium ion battery. These rechargeable batteries are widely utilised in consumer electronics and autos. Cathode, anode, separator, and electrolyte are the four components. Anode aids in the storage and release of lithium ions from the cathode, allowing current to flow through an external circuit. The lithium iron phosphate batteries market is expected to grow at a CAGR of 5.0 percent from an estimated USD 8.3 billion in 2019 to USD 10.6 billion by 2024. The increased focus on electric and hybrid electric vehicles, as well as rising demand for energy storage applications, are responsible for this expansion.
Plant capacity: Lithium Ion (LiFePO4) Battery Back of Power 4.8 KWH (No. of Cells 800) for Three Wheeler: 26 Nos. Per Day Lithium Ion (LiFePO4) Battery Back of Power 18 KWH (No. of Cells 3000) for Four Wheeler: 24 Nos. Per DayPlant & machinery: 3 Cr.
Working capital: -T.C.I: Cost of Project: 10.28 Cr
Return: 32.00%Break even: 57.00%
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Setting up an E-Waste Recycling Plant

Electronic wastes, often known as "e-waste," "e-scrap," or "Waste Electrical and Electronic Equipment," or "WEEE," are surplus, obsolete, defective, or abandoned electrical or electronic devices. Electronic "waste" is defined as any component that is dumped, disposed of, or discarded rather than repurposed, and includes leftovers from reuse and recycling activities. Because a variety of surplus electronics are regularly delivered (good, recyclable, and non-recyclable), some public policy activists refer to all surplus electronics as "e-waste." WEEE has been identified as one of the fastest growing sources of waste, with an estimated annual growth rate of 16-28%. A complex set of heterogeneous secondary wastes is formed within each area. Despite the fact that treatment requirements are complex, the sources from each sector have several commonalities. Electrical and electronic equipment is made up of a variety of components, some of which include dangerous compounds that, if not handled appropriately, can have a negative influence on human health and the environment. These dangers are frequently caused by inefficient recycling and disposal methods. Carcinogens such as lead, barium, phosphor, and other heavy metals are abundant in Cathode Ray Tubes (CRTs). The global e-waste management market is anticipated to reach $49.4 billion by 2020, growing at a CAGR of 23.5 percent from 2014 to 2020. It is one of the most rapidly rising waste streams in both developing and industrialised countries. Electrical, electronic, and consumer electronic gadgets have shorter life lives, resulting in a considerable amount of E-Waste, which is expanding at a rapid rate every year. The growing need to upgrade to the latest technology is fueling the expansion of the E-Waste industry. The desire to adopt new technologically advanced equipment results in the development of millions of tonnes of E-Waste in various parts of the world. According to a UN project to assess E-Waste generation, the world created around 50 million tonnes of E-Waste in 2012, averaging 15 pounds per person globally. Government agencies in many locations are taking E-Waste management activities to limit the amount of E-Waste generated around the world. Market participants are taking steps to recycle E-Waste in order to reduce pollution and environmental risks associated with it. Key Players 1. E-Parisaraa Pvt. Ltd. 2. Ecocentric Management Pvt. Ltd. 3. Greenscape Eco Mgmt. Pvt. Ltd. 4. Navrachna Recycling Pvt. Ltd. 5. Sims Recycling Solutions India Pvt. Ltd.
Plant capacity: Plastic: 1.60 MT per day | Ferrous Material: 1.00 MT per day | Aluminium: 0.70 MT per day | Glass: 1.00 MT per day | Copper: 0.70 MT per dayPlant & machinery: 86 Lakh
Working capital: -T.C.I: Cost of Project: 314 Lakh
Return: 27.00%Break even: 60.00%
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Feasibility Study of Epoxy Resin (Liquid) Production

Epoxy resin is a reactive pre-polymer and polymer that contains epoxide groups. These resins react either with themselves or with a variety of co-reactants such as amines, phenols, and thiols in the presence of catalysts. Epoxy resin outperforms other types of resins in terms of shrinkage during cure and moisture and chemical resistance. It has a long shelf life and is impact resistant. It also has outstanding electrical and insulating qualities. Epichlorohydrin (ECH) and bisphenol a are used to make the most popular epoxy resins. The most extensively used resins are those based on bisphenol A. Epoxy resins with molecular weights ranging from low molecular weight liquids to high molecular weight solids can be produced depending on the quantity of Epichlorohydrin to bisphenol-A used in the manufacturing process. Epoxy resin is widely used in the following industries: 1. Metal coatings 2. Electronic and electrical components 3. Fibre-reinforced plastic materials 4. Structural adhesives 5. Paints 6. Sealants 7. Casting Industry The use of epoxy resin for adhesive purposes is one of the most popular applications. Because of the epoxy's strong characteristics, it can be used for structural and engineering adhesives. Epoxy resins are also utilised in anti-corrosion coatings and adhesive applications, which are particularly successful at replacing or supplementing heavier bonding methods such as mechanical fasteners. In industrial coatings, epoxy resins are utilised as a binder (primers). They offer the paint exceptional adherence as well as chemical (corrosion) and physical resistance, which is required on ships and chemical storage tanks, for example. Epoxy Resin has unique adhesive features such as durability, strength, and chemical resistance, making it a robust sealer. It will resist abrasions as well as oil and other liquids when the components are combined together and sprayed on materials like concrete or wood. The global Epoxy Resin market is expected to increase at a CAGR of 5.85 percent during the next five years. Epoxy resins have more than one epoxy group per molecule and are thermosetting resins with appropriate cross-linking agents for increased reactivity. Epoxy resins are regarded as the most important raw material used in many chemical formulations. Epoxy resins' favourable qualities, such as high thermal stability, mechanical strength, moisture resistance, adhesion, and heat resistance, make them the resin of choice for a variety of end-user applications, such as laminates and insulators. Transportation, marine coatings, aerospace, electrical & electronic laminates, composites, and decorative powder coatings, all of which are growing end-use industries in Asia Pacific, are likely to have a favourable impact on the global market. Increased research efforts by key players, combined with technological advancements in the field of modified resins, are projected to open up new doors for industrial applications.
Plant capacity: 20 MT Per DayPlant & machinery: 689 Lakh
Working capital: -T.C.I: Cost of Project: 1956 Lakhs
Return: 30.00%Break even: 80.00%
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Start Manufacturing Business of Highway Guard Crash Barrier, Traffic barriers, Highway Safety Guardrail (Roll Forming with Metal Beam and Galvanizing Plant)

Highway Guard Crash Barrier, Metal Beam Traffic barriers, also known as guardrails or guard rails in the United States and crash barriers in the United Kingdom, keep vehicles on the road and prevent them from colliding with dangerous obstacles like boulders, sign supports, trees, bridge abutments, buildings, walls, and large storm drains, as well as traversing steep (non-recoverable) slopes or entering deep water. Before being certified for public use, traffic barriers are subjected to comprehensive simulated and full-scale accident testing to ensure that they are safe and effective. While crash testing cannot simulate every possible type of impact, it is used to evaluate the performance limits of traffic barriers and ensure that road users are adequately protected. Roadside barriers are used to keep cars safe from hazards such as steep slopes that can cause rollover crashes, immovable structures such as bridge piers, and bodies of water. Median barriers are used to keep vehicles from crossing over the median and colliding with oncoming traffic. Bridge barriers keep automobiles from crashing off the edge of a bridge and landing on the road, river, or railroad below. In comparison to most treated steels, it has a low beginning cost. Furthermore, when galvanised steel is delivered, it is instantly ready to use. It does not necessitate further surface preparation, inspections, painting/coatings, etc., saving businesses money. Any damaged steel is shielded by the surrounding zinc coating thanks to the sacrificial anode. Whether the steel piece is entirely exposed or not, the zinc will corrode first. The coating will erode more quickly than the steel, providing a sacrificial layer of protection for the injured areas. With a total length of 5.89 million kilometres, India boasts the world's second largest road network (kms). This road network delivers 64.5 percent of all commodities in the country, and 90% of all passenger traffic in India travels by road. With improved connectivity between cities, towns, and villages around the country, road transportation has gradually increased over time. Between FY16 and FY19, India's highway development increased at a 21.44 percent compound annual growth rate (CAGR). In FY19, 10,855 kilometres of highways were built, with the government aiming to build 12,000 kilometres of national highways in FY20. The National Highways Authority of India (NHAI) completed the highest-ever highway construction of 3,979 kilometres in March 2020. The government set a goal of building roads costing Rs 15 lakh crore (US$ 212.80 billion) in the next two years in April 2020. On account of increased government measures to develop transportation infrastructure in the country, the market for roads and highways is expected to grow at a CAGR of 36.16 percent from 2016 to 2025. Key Players • Alcatel-Lucent India Ltd. • Arcelormittal Nippon Steel India Ltd. • Arcelormittal Projects India Pvt. Ltd. • Arjas Steel Pvt. Ltd. • Bekaert Industries Pvt. Ltd. • Belmaks Solutions Pvt. Ltd.
Plant capacity: Metal Beam Highway Crash Barrier: 200 MT per day | MS Sheet Scrap: 40 MT per dayPlant & machinery: 905 Lakh
Working capital: -T.C.I: Cost of Project: 2973 Lakh
Return: 30.00%Break even: 46.00%
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  • One Lac / Lakh / Lakhs is equivalent to one hundred thousand (100,000)
  • One Crore is equivalent to ten million (10,000,000)
  • T.C.I is Total Capital Investment
  • We can modify the project capacity and project cost as per your requirement.
  • We can also prepare project report on any subject as per your requirement.
  • Caution: The project's cost, capacity and return are subject to change without any notice. Future projects may have different values of project cost, capacity or return.

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