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Waste Management and Recycling, Industrial Waste Management, Agro Waste, Municipal Garbage, Plastic, Paper, Metal, Iron, Glass, Rubber, Electronic, Medical Waste Recycling, Solid Waste Treatment, Agricultural, Wood Waste, Residue Processing Projects

Waste management is the collection, transport, processing, recycling or disposal, and monitoring of waste materials. Concern over environment is being seen a massive increase in recycling globally which has grown to be an important part of modern civilization. The consumption habits of modern consumerist lifestyles are causing a huge global waste problem.  Industrialization and economic growth has produced more amounts of waste, including hazardous and toxic wastes. There is a growing realization of the negative impacts that wastes have had on the local environment (air, water, land, human health etc.)

Waste management is the collection of all thrown away materials in order to recycle them and as a result decrease their effects on our health, our surroundings and the environment and enhance the quality of life. Waste management practices differ for developed and developing nations, for urban and rural areas, and for residential and industrial producers. Waste Management flows in a cycle: monitoring, collection, transportation, processing, disposal or recycle. Through these steps a company can effectively and responsibly manage waste output and their positive effect they have on the environment.

Waste generation per capita has increased and is expected to continue to climb with growing population, wealth, and consumerism throughout the world. Approaches to solving this waste problem in a scalable and sustainable manner would lead us to a model that uses waste as an input in the production of commodities and value monetized, making waste management a true profit center. The conversion of waste as a potential source of energy has a value as a supplemental feedstock for the rapidly developing bio-fuels sector. A variety of new technologies are being used and developed for the production of biofuels which are capable of converting wastes into heat, power, fuels or chemical feedstock.

Thermal Technologies like gasification, pyrolysis, thermal Depolymerization, plasma arc gasification, and non–thermal technologies like anaerobic digestion, fermentation etc. are a number of new and emerging technologies that are able to produce energy from waste and other fuels without direct combustion. Biodegradable wastes are processed by composting, vermi-composting, anaerobic digestion or any other appropriate biological processing for the stabilization of wastes. Recycling of materials like plastics, paper and metals should be done for future use.

There is a clear need for the current approach of waste disposal in India that is focused on municipalities and uses high energy/high technology, to move more towards waste processing and waste recycling (that involves public-private partnerships, aiming for eventual waste minimization - driven at the community level, and using low energy/low technology resources.

 

 

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PET RECYCLING - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue, Plant Economics

Polyethylene terephthalate or PET (also known as PETE) is one of the most common types of plastic. Most single-serve plastic bottles, including those for water, soft drinks and juices, are made with PET. Designated by the recycling code “1”. PET-bottles have a negative impact on the environments because they are polluting soil, rivers, coastal areas, air when burned and consume a lot of landfill site space. So, it is very necessary to recycle of PET-bottles to saves 65% of the energy for primary PET-production. PET recycling is the process of reprocessing plastic that already has been used before and giving it some new reusable form. Recycled PET is converted into numerous products such as packaging applications (such as new bottles),sheet and film application, strapping, fiber applications. India produces around 500,000 tonnes of PET annually. The overall capacity of the industry is rated at about 650,000 tonnes per year. In the past, PET was subjected to high rates of duty and tax. Now the duty and taxes have been brought to the same levels as other competing materials like PVC, PP (polypropylene) and PE (polyethylene), ensuring a level playing field for PET. A market research study by GBI Research, sees Asia, including India driving the global demand for PET by 2020. India's main producer of PET containers, Pearl Polymers recorded over 6% growth in production and nearly 8.5% growth in sales of PET bottles and jars. Thus, due to demand it is a good project for entrepreneurs to invest.
Plant capacity: Recycled PET Granules : 12MT/dayPlant & machinery: Rs 189 Lakh
Working capital: -T.C.I: Cost of project: Rs 513 Lakh
Return: 26.00%Break even: 63.00%
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Precipitated Silica from Rice Husk Ash - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Rice milling generates a byproduct known as husk. This surrounds the paddy grain. During milling of paddy about 78 % of weight is received as rice, broken rice and bran.Rest 22 % of the weight of paddy is received as husk. This husk is used as fuel in the rice mills to generate steam for the arboiling process. This husk contains about 75 % organic volatile matter and the balance 25 % of the weight of this husk is converted into ash during the firing process, is known as rice husk ash (RHA). This RHA in turn contains around 85 % - 90 % amorphous silica.Precipitated silica is used as filler for paper & rubber as a carrier & diluents for agricultural chemicals, as an anti-caking agent, to control viscosity & thickness and as a cleansing agent in toothpastes & in cosmetics.Precipitated silica, along with fumed silica, silica sol, and silica gel, is a part of the global specialty silica market. This market is expected to exhibit positive single-digit growth through 2018 and reach a valuation of US$ 7 Bn by 2018. Precipitated silica market, which accounts for around 70% of the global speciality silica market, is also expected to witness steady growth in the next three years. The rising demand for energy efficient products in the automotive industry has resulted in the rapid growth of the global precipitated silica market.The growing toothpaste industry is also a major driver of the global precipitated silica market as precipitated silica is used as a thickening agent it the formulation of toothpaste.As a result of these factors, the global precipitated silica market is expected to expand at a 5.5% CAGR between 2015 and 2023.Thus, as an entrepreneur this project offers an exciting opportunity to you. Few Indian Major Players are as under • 20 Microns Ltd. • Bharucha Stone & Sand Works Pvt. Ltd. • Insilco Ltd. • Integrated Glass Materials Ltd. • Kiran Global Chems Ltd. • Mines & Rock Products (India) Pvt. Ltd. • Passary Minerals Ltd. • SonalSil-Chem Ltd.
Plant capacity: Precipitated Silica: 3,000 MT/Annum Activated Carbon (by product): 810MT/Annum Sodium Carbonate (by product): 1,200MT/AnnumPlant & machinery: Rs. 526 lakhs
Working capital: -T.C.I: Cost of Project: Rs. 786 lakhs
Return: 27.00%Break even: 55.00%
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E-Waste Recycling Plant

Electronic wastes, e-waste, e-scrap, or Waste Electrical and Electronic Equipment (WEEE) is a description of surplus, obsolete, broken or discarded electrical or electronic devices.The perception of e-waste is often restricted to a narrower sense, comprising mainly of end-of-life information- & telecommunication equipment and consumer electronics. However, technically, electronic waste is only a subset of WEEE (Waste Electrical and Electronic Equipment). The rising levels of e-waste generation in India have been a matter of concern in recent years. With more than 100 crore mobile phones in circulation, nearly 25 per cent end up in e-waste annually.India has surely emerged as the second largest mobile market with 1.03 billion subscribers, but also the fifth largest producer of e-waste in the world, discarding roughly 18.5 lakh metric tonnes of electronic waste each year, with telecom equipment alone accounting for 12 per cent of the e-waste A range of techniques is currently applied for retrieving components and materials from WEEE. The essential features of these systems generally conform to a scheme of: sorting/disassembly; size reduction; separation.In addition, the new product launches with updated features and additional services are attracting the customers to upgrade their old products with new products. This has reduced the life span of these devices to about 3-4 years. Thus, this is adding more and more e-waste at a tremendous rate.This is ultimately leading to increased activities for managing e-waste, which would create conducive environment for e-waste management in the coming years.Thus, due to demand it is a good project for entrepreneurs to invest. Few Indian Major Players are as under • M/s Ramky E- Waste Recycling • ECS Environment Ltd • Pruthavi E-Recycle Pvt. Ltd. • M/s. A2Z E-Waste Management ltd., • M/s. R. K. Enterprises (P) Ltd., • M/s. TES-AMM Indian Pvt. Ltd., • M/s Greenscape Eco Management Pvt • TES AMM Private Limited
Plant capacity: Copper Wire: 500mt/annum Plastic Granules: 2230mt/annum Glass: 970mt/annum Ferrous Metal: 800mt/annum Monitors (Repair): 3000mt/annumPlant & machinery: Rs 132 lakhs
Working capital: -T.C.I: Cost of Project: Rs 518 lakhs
Return: 27.00%Break even: 54.00%
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Precipitated Silica from Rice Husk Ash

Rice milling generates a byproduct known as husk. This surrounds the paddy grain. During milling of paddy about 78 % of weight is received as rice, broken rice and bran.Rest 22 % of the weight of paddy is received as husk. This husk is used as fuel in the rice mills to generate steam for the parboiling process. This husk contains about 75 % organic volatile matter and the balance 25 % of the weight of this husk is converted into ash during the firing process, is known as rice husk ash (RHA). This RHA in turn contains around 85 % - 90 % amorphous silica. Precipitated silica is used as filler for paper & rubber as a carrier & diluents for agricultural chemicals, as an anti-caking agent, to control viscosity & thickness and as a cleansing agent in toothpastes & in cosmetics. Precipitated silica, along with fumed silica, silica sol, and silica gel, is a part of the global specialty silica market. This market is expected to exhibit positive single-digit growth through 2018 and reach a valuation of US$ 7 Bn by 2018. Precipitated silica market, which accounts for around 70% of the global specialty silica market, is also expected to witness steady growth in the next three years. The rising demand for energy efficient products in the automotive industry has resulted in the rapid growth of the global precipitated silica market.As a result of these factors, the global precipitated silica market is expected to expand at a 5.5% CAGR between 2015 and 2023.Thus, as an entrepreneur this project offers an exciting opportunity to you. Few Indian Major Players are as under • 20 Microns Ltd • Bharucha Stone & Sand Works Pvt. Ltd. • Insilco Ltd. • Integrated Glass Materials Ltd. • Mines & Rock Products (India) Pvt. Ltd. • SonalSil-Chem Ltd.
Plant capacity: Precipitated Silica: 1500mt/annum Activated Carbon (by product): 420mt/annum Sodium Carbonate (by product): 630mt/annumPlant & machinery: Rs 519 lakhs
Working capital: -T.C.I: Cost of Project: Rs 787 lakhs
Return: 17.24%Break even: 52.00%
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Recovery of Lead

Lead is a material very easy to recycle and, provided that adequate procedures are implemented; the ?nal product (secondary lead) is indistinguishable from the primary lead produced from ores. About 50% of the lead consumed worldwide is derived from recycled and reused materials.There are many different uses of Lead. It may be used as a pure metal, alloyed with other metals, or as chemical compounds. The recovery of metals from metal scrap has the advantage that it is easier and far less energy dependent than the production of primary lead from ores. The production of recycled lead requires 35–40% of the energy necessary to produce lead from ores.In addition, the recovery of lead decreases the lead dispersion in the environment and preserves the mineral reserves for the future. Recycling lead is relatively simple and in most of the applications where lead is used, such as lead-acid batteries, it is possible to recover it for use over and over again. Lead batteries industry in India is currently estimated at Rs 40,000 crore with 60% automotive and 40% industrial. Over thousands of player continued recycling activity in India through recovery of lead from telecom, uninterrupted power supply (UPS), inverters, renewable energy and other related industries.Thus, due to demand it is a good project for entrepreneurs to invest. Few Indian Major Players are as under • Hindustan Zinc • SesaSterlite • Hindalco
Plant capacity: Lead Ingot: 1944 MT/annumPlant & machinery: Rs 66 lakhs
Working capital: -T.C.I: Cost of Project: Rs 257 lakhs
Return: 28.00%Break even: 57.00%
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Bricks from Fly Ash

Fly Ash brick is a product of basic cement clinker materials i.e. fly ash, stone dust/sand, lime, gypsum and bonding agent. The mix is so ideally worked out to produce bricks of higher strength with consistency as well as uniformity. The manufacturing process is fully automatic with state of art technology. Though a new age product introduced in the market, Fly Ash bricks are very well accepted by the organized sectors in heavy industries, high rise buildings, large townships, colonies, etc. because of unique features and merits.The Fly Ash Bricks are promoted as an alternative to burnt clay bricks within the construction sector in India. Fly Ash Bricks are durable, have Low water absorption, less consumption of mortar, Economical & eco-friendly, Low energy consumption and No emission of green house gases. These bricks are not affected by environmental conditions and remain static thus ensuring longer life of the building. Fly-ash bricks have a bright future in the country in the form of increasing number of takers and brick making plant providers who are offering machines equipped with technology and quality.Thus, due to demand it is a good project for entrepreneurs to invest. Few Indian Major Players are as under • Hind Infradevelopers India Pvt. Ltd. • Rana Infra Projects (P) Ltd. • Saisha Infra Projects Limited • Khanak Blocks & Bricks
Plant capacity: Fly Ash Bricks: 24,000,000 Pcs/annumPlant & machinery: Rs 152 lakhs
Working capital: -T.C.I: Cost of Project: Rs 336lakhs
Return: 28.00%Break even: 46.00%
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Diaper (Baby and Adult) and Sanitary Napkins Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

A diaper (American English) or a nappy (British English) is a type of underwear that allows the wearer to defecate or urinate without the use of a toilet, by absorbing or containing waste products to prevent soiling of outer clothing or the external environment. When diapers become soiled, they require changing, generally by a second person such as a parent or caregiver. Failure to change a diaper on a sufficiently regular basis can result in skin problems around the area covered by the diaper. Diapers are made of cloth or synthetic disposable materials. Cloth diapers are composed of layers of fabric such as cotton, hemp, bamboo, microfiber, or even plastic fibers such as PLA, and can be washed and reused multiple times. Disposable diapers contain absorbent chemicals and are thrown away after use. Plastic pants can be worn over diapers to avoid leaks, but with modern cloth diapers, this is no longer necessary. An adult diaper (or adult nappy) is a diaper made to be worn by a person with a body larger than that of an infant or toddler. Diapers can be necessary for adults with various conditions, such as incontinence, mobility impairment, severe diarrhea or dementia. Adult diapers are made in various forms, including those resembling traditional child diapers, underpants, and pads resembling sanitary napkins (known as incontinence pads). A sanitary napkin, sanitary towel, sanitary pad, menstrual pad, or pad is an absorbent item worn by a woman while she is menstruating, while she is recovering from vaginal surgery, for lochia (post-birth bleeding), after an abortion, or in any other situation where it is necessary to absorb a flow of blood from the vagina. These pads are not to be confused with generally higher absorbency incontinence pads, which are worn by men or women who have urinary incontinence problems or experience stress incontinence. Menstrual pads may be used by some people for this purpose. ? Why is the Demand for Adult Diapers Predicted to Increase? • Growing aging population • Urbanization • Increased awareness of treatment methods for urinary incontinence • Economic affluence • Improvements in the healthcare sector Market Outlook Rising birth rates have ensured that the baby diapers market, growing at a healthy 18-20 per cent year on year, is estimated to reach Rs. 11,964 crore by 2017, with three nations accounting for the massive jump. The diaper market in West Asia and Africa is growing at a fast clip, with babies in these regions expected to use about 8 billion diapers a year by 2017. In India, the baby diaper market is currently pegged at Rs. 1,400 crore. Supported by favourable demographics with 26 million babies born in India every year, the potential is huge. “The diaper market is experiencing a surge in demand for sanitation products. The diaper market in India is growing with more than 20% CAGR from the last seven years. The healthy growth rate is driven by factors such as millions of babies born per year, higher disposable incomes and the increased hygiene awareness of Indian mothers. Global baby diapers market is expected to garner $59.4 billion by 2020. The global baby diaper market covers different types of diapers provided by the manufacturers within the baby diapers. The different types of diapers manufactured around the globe are Cloth diapers, Disposable diapers, Training nappy, Swim pants and Bio-degradable diapers. The global baby diaper market is anticipated to expand at a CAGR of 4.1% during the forecast period and is expected to be valued at US$ 70.4 Bn by 2024 end. Among all product type segments in the baby diaper industry, disposable diapers are projected to be the fastest-growing segment over the forecast period (2016-2024). This segment accounts for approximately 49.0% of the global volume of diapers consumed; attributed to the availability of improved raw materials and technological advancements in markets in various regions across the globe. Global disposable diapers market size of about USD 64.4 billion in 2014, global disposable diaper market size is expected to reach about USD 84.7 billion by 2019. Global adult diapers market was valued at USD 9,246.36 million in 2015 and is expected to reach USD 14,592.72 million by 2021, growing at a CAGR of 7.50% between 2016 and 2021. In terms of volume, the global adult diapers market stood at 17,689.3 million units in 2015. The global sanitary napkin market to grow at a CAGR of 4.6% during the period 2016-2020. Tags Investment Opportunities in India Sanitary Napkin Project, Sanitary Pads Market in India, Sanitary Napkin Machine, Low Cost Sanitary Napkin Making Machine, Project Profile for Sanitary Napkins, Diaper Manufacture Business Plan, Baby Diaper Manufacture, Baby Diaper Manufacturing Machine, Disposable Diaper Industry, Diaper Manufacturing Machine, Diaper Manufacturing in India, Disposable Diaper Manufacturing, Disposable Baby Diaper Manufacture, Diaper Manufacturing Business Plan in India, Baby Diaper & Sanitary Napkins Manufacturing Plant, Baby Diaper Manufacturing, Diaper Manufacturing Business, Baby Diaper Manufacturing Plant, Diaper Production Plant, Diaper Manufacturing Business Plan, Diaper Manufacturing Process, Diaper Manufacturing Project Report, Diaper Manufacturing Plant, Manufacturing Process of Disposable Diaper, Baby Diaper Production Line, Report on Diapers Manufacturing in India, Start Diaper Manufacturing Business, Adult Diapers Manufacture, Adult Diaper Production Line, Adult Diaper Making Machine, Adult Diaper Production, Adult Diaper Manufacturing Machine, Adult Diaper Manufacturing Process, Manufacturing Process Of Adult Diaper, Adult Diapers Industry, Baby & Adult Diaper & Sanitary Pads Manufacturing Plant, How to Start Diaper Manufacturing Business, Sanitary Napkin Manufacturing Business Plan, Sanitary Napkin Manufacturing, Sanitary Napkins Manufacturing Plant, Low Cost to Setup Mini Sanitary Napkin Manufacturing, Sanitary Napkin Making Machine, Sanitary Napkins Manufacturing Unit, Low Cost Sanitary Napkin Making Machine, Sanitary Napkin Manufacturing Machine, Sanitary Napkin Project, Sanitary Napkin Manufacturing Project, Sanitary Napkin Business Plan, Sanitary Napkin Business Opportunity, How to Make Sanitary Napkins, Sanitary Pad Manufacturing Business Plan, Sanitary Napkin Production, Sanitary Pads Making Machine, Manufacturing of Sanitary Napkins, Sanitary Napkin Manufacture, How to Start Sanitary Napkin Manufacturing, Sanitary Napkin Manufacturing Process, Start Sanitary Napkins Manufacturing, Methods of Making Sanitary Napkins, Method of Manufacturing Sanitary Napkin, Production of Baby Diapers & Sanitary Napkins, Manufacturing Equipment for Sanitary Napkins, Sanitary Napkin Production Project Ideas, Projects on Small Scale Industries, Small Scale Industries Projects Ideas, Adult Diaper Manufacturing Based Small Scale Industries Projects, Project Profile on Small Scale Industries, How to Start Sanitary Napkin Industry In India, Baby Diaper Manufacturing Projects, New Project Profile on Baby Diaper Manufacturing Industries, Project Report on Adult Diaper Manufacturing Industry, Detailed Project Report on Adult Diaper Manufacturing, Project Report on Sanitary Napkin Production, Pre-Investment Feasibility Study on Sanitary Napkin Production, Techno-Economic Feasibility Study on Baby Diaper Manufacturing, Feasibility Report on Baby Diaper Manufacturing, Free Project Profile on Adult Diaper Manufacturing, Project Profile on Diaper Manufacturing, Download Free Project Profile on Sanitary Napkin Production, Industrial Project Report, Project Consultant, Project Consultancy, Npcs, Niir, Process Technology Books, Business Consultancy, Business Consultant, Project Identification and Selection, Preparation of Project Profiles, Startup, Business Guidance, Business Guidance to Clients, Startup Project for Sanitary Napkin Production, Startup Project, Startup Ideas, Project for Startups, Startup Project Plan, Business Start-Up, Business Plan for Startup Business, Great Opportunity for Startup, Small Start-Up Business Project, Project Report for Bank Loan, Project Report for Bank Finance, Project Report Format for Bank Loan in Excel, Excel Format of Project Report and CMA Data, Project Report Bank Loan Excel, Detailed Project Plan Reports
Plant capacity: Baby Diapers : 3000000 Pkts/annum Adult Diapers : 1500000 Pkts/annum Sanitary Napkins : 4500000 Pkts/annumPlant & machinery: 1029 lakhs
Working capital: -T.C.I: Cost of Project : 1657 lakhs
Return: 29.00%Break even: 51.00%
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Activated Carbon from Coconut Shell

Activated carbon in any form of carbon shows high absorptivity for gases, vapours and colloidal solids in either the gas ion or liquid phase. It is available in many forms such as pellets, granules and in powder form. Activated carbon is very important chemical has wide application and employed by numerous industries which require absorption of certain gases and vapours in purification, in catalytic chemical reactions, decolorisation of vegetable oil and sugar solutions. Activated carbons have a large surface area, liquid phase or decolorising carbons are generally light, fluffy powder that exhibits surface areas of about 300 m2/g. while gas or vapour phase carbons are hard granules or formed pellets that exhibit surface areas from 800 m2 /g to 1200 m2/g. Activated Carbon Market is expected to garner 2,776 kilo tons and $5,129 million in coming years. Activated carbon is processed carbon with small, low-volume pores to increase surface area for chemical reactions and adsorption. Organic material with high carbon content is processed to manufacture activated carbon. Rising awareness and government support in the recycling of waste water are expected to benefit the growth of this segment over the next eight years. This activated carbon gives the result in lesser cost and hence is preferred over other forms of the product. Thus, due to demand it is a good project for entrepreneurs to invest. Few Indian Major Players are as under • Active Char Products Pvt. Ltd. • Adsorbent Carbons Ltd. • Aquanomics Systems Ltd. • Core Carbons Pvt. Ltd. • Genuine Shell Carb Pvt. Ltd. • Indo German Carbons Ltd. • Kalpaka Chemicals Pvt. Ltd. • Kan Carbon Pvt. Ltd. • Triton Laboratories Ltd.
Plant capacity: Activated Carbon :900 MT/annum Bio-Oil by Product:1,140 MT/annumPlant & machinery: Rs 129 lakhs
Working capital: -T.C.I: Cost of Project: Rs 283 lakhs
Return: 25.00%Break even: 59.00%
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E-Waste Recycling Plant

Electronic wastes, "e-waste", "e-scrap", or "Waste Electrical and Electronic Equipment" ("WEEE") is a description of surplus, obsolete, broken or discarded electrical or electronic devices. Technically, electronic "waste" is the component which is dumped or disposed or discarded rather than recycled, including residue from reuse and recycling operations. Electronic Waste – or e-waste – is the term used to describe old, end-of-life electronic appliances such as computers, laptops, TVs, DVD players, mobile phones, mp3 players etc. which have been disposed of by their original users. The perception of e-waste is often restricted to a narrower sense, comprising mainly of end-of-life information- & telecommunication equipment and consumer electronics. However, technically, electronic waste is only a subset of WEEE (Waste Electrical and Electronic Equipment). E-Waste or Electronic Waste broadly describes loosely discarded, surplus, broken, obsolete, electrical and electronic devices. E-Waste is an area of immediate and long term concern as its unregulated accumulation and recycling can lead to major environmental degradation which will pose a major threatto human health. According to E-Waste Market in India 2015-2019 research, the need to prevent biological hazards is one of the major trends upcoming in this market. Newer methods of preventing biological hazards have emerged over the years. Growing need to reduce toxins discharged from unattended e-waste has triggered more investment in the market. High obsolescence rates of technologies have triggered increased demand for efficient e-waste management in India. A mere 1.5% of India's total e-waste gets recycled due to poor infrastructure, legislation and framework which leads to a waste of diminishing natural resources, irreparable damage of environment and health of the people working in industry.As a whole there is a good scope for new entrepreneur to invest in this business. Few Indian major players are as under • Respose Waste Management, Dombivli • Eco Friend Industries, Mumbai • VentiOelde India Private Limited, Mumbai • Leevams Incorporated • Green Machine • Hunan Vary Technology Co., Ltd.
Plant capacity: 7500 MT/annumPlant & machinery: 131 lakhs
Working capital: -T.C.I: Cost of Project: 272 lakhs
Return: 26.00%Break even: 30.00%
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E-Waste Recycling Plant

Electronic wastes, "e-waste", "e-scrap", or "Waste Electrical and Electronic Equipment" ("WEEE") is a description of surplus, obsolete, broken or discarded electrical or electronic devices. Technically, electronic "waste" is the component which is dumped or disposed or discarded rather than recycled, including residue from reuse and recycling operations. Land filling e-waste, one of the most widely used methods of disposal, is prone to hazards because of leachate which often contains heavy water resources. Even state-of-the-art landfills which are sealed to the long-term. The rising levels of e-waste generation in India have been a matter of concern in recent years. With more than 100 crore mobile phones in circulation, nearly 25 per cent end up in e-waste annually. “India has surely emerged as the second largest mobile market with 1.03 billion subscribers, but also the fifth largest producer of e-waste in the world, discarding roughly 18.5 lakh metric tonnes of electronic waste each year, with telecom equipment alone accounting for 12 per cent of the e-waste’’. E-Waste Market in India 2015-2019 research, the need to prevent biological hazards is one of the major trends upcoming in this market. Newer methods of preventing biological hazards have emerged over the years. Growing need to reduce toxins discharged from unattended e-waste has triggered more investment in the market.
Plant capacity: Copper Wire:1.67 MT/day Plastic Granules:7.43 MT/day Glass :3.23 MT/day Ferrous Metal Plant & machinery: 131 lakhs
Working capital: -T.C.I: Cost of Project: Rs 1272 lakhs
Return: 26.00%Break even: 30.00%
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Information
  • One Lac / Lakh / Lakhs is equivalent to one hundred thousand (100,000)
  • One Crore is equivalent to ten million (10,000,000)
  • T.C.I is Total Capital Investment
  • We can modify the project capacity and project cost as per your requirement.
  • We can also prepare project report on any subject as per your requirement.
  • Caution: The project's cost, capacity and return are subject to change without any notice. Future projects may have different values of project cost, capacity or return.

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