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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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

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Lead Production (Litharge, Refined Lead, Red Lead & Grey Lead)
Lead Production (Litharge, Refined Lead, Red Lead & Grey Lead)

Lead is a relatively soft metal with bluish-white lusture but on exposure to air, it becomes covered by a dull, gray layer of basic carbonate that adh...

Capacity :

Litharge: 960 MT/Annum Refined Lead: 1800 MT/Annum Red Lead: 440 MT/Annum Grey Lead: 525 MT/Annum

Plant and Machinery cost:

82 lakhs

Working Capital :

-

Rate of Return (ROR):

31.00

Break Even Point (BEP):

54.00

TCI :

Cost of Project: Rs 361 lakhs

Cost of Project :

36100000

Recovery of Lead from Scrap Batteries
Recovery of Lead from Scrap Batteries

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 ore...

Capacity :

Lead Ingot: 8 MT/day

Plant and Machinery cost:

Rs 96 lakhs

Working Capital :

-

Rate of Return (ROR):

29.00

Break Even Point (BEP):

54.00

TCI :

Cost of Project: Rs 370 lakhs

Cost of Project :

37000000

Biomedical Waste Recycling Industry
Biomedical Waste Recycling Industry

Biomedical Waste Recycling Industry. Start a Medical or Hospital Waste Management Business Biomedical waste (BMW) is any waste produced during the di...

Capacity :

-

Plant and Machinery cost:

-

Working Capital :

-

Rate of Return (ROR):

1.00

Break Even Point (BEP):

0.00

TCI :

-

Cost of Project :

0

Polyester Yarn from Waste
Polyester Yarn from Waste

Polyester Yarn is the fundamental items in the polyester classification. Right around 40% of the world creation of polyester is specifically used to m...

Capacity :

-

Plant and Machinery cost:

-

Working Capital :

-

Rate of Return (ROR):

1.00

Break Even Point (BEP):

0.00

TCI :

-

Cost of Project :

0

Recovery of Nylon from Nylon Waste
Recovery of Nylon from Nylon Waste

Nylon is one of the most common plastics in the world and has been used to create everything from clothes and parachutes to food packaging and guitar...

Capacity :

-

Plant and Machinery cost:

-

Working Capital :

-

Rate of Return (ROR):

1.00

Break Even Point (BEP):

0.00

TCI :

-

Cost of Project :

0

Cotton Fibers from Waste Cloth
Cotton Fibers from Waste Cloth

Cotton is a soft, fluffy staple fiber that grows in a boll, or protective case, around the seeds of the cotton plants of the genus Gossypium in the ma...

Capacity :

-

Plant and Machinery cost:

-

Working Capital :

-

Rate of Return (ROR):

1.00

Break Even Point (BEP):

0.00

TCI :

-

Cost of Project :

0

Caffeine from Tea Waste
Caffeine from Tea Waste

Caffeine belongs to a family of naturally occurring compounds known as xanthines. The xanthines, which come from plants, are possibly the oldest known...

Capacity :

Caffeine: 20 MT/day

Plant and Machinery cost:

Rs. 350 lakhs

Working Capital :

-

Rate of Return (ROR):

30.00

Break Even Point (BEP):

61.00

TCI :

Cost of Project: Rs. 2268 lakhs

Cost of Project :

226800000

Lithium Battery & E-Waste (Electronic Waste) Recycling Industry
Lithium Battery & E-Waste (Electronic Waste) Recycling Industry

Lithium Battery & E-Waste (Electronic Waste) Recycling Industry. Battery Recycling as a Business. Electronic Waste Management, Disposal and Recycling...

Capacity :

-

Plant and Machinery cost:

-

Working Capital :

-

Rate of Return (ROR):

1.00

Break Even Point (BEP):

0.00

TCI :

-

Cost of Project :

0

PET Bottle Recycling
PET Bottle Recycling

Polyethylene terephthalate or PET (also known as PETE) is one of the most common types of plastic. Most single-serve plastic bottles, including those...

Capacity :

Recycled PET Flakes: 8 MT/Day

Plant and Machinery cost:

Rs. 50 lakhs

Working Capital :

-

Rate of Return (ROR):

25.00

Break Even Point (BEP):

66.00

TCI :

Cost of Project: Rs. 233 lakhs

Cost of Project :

23300000

Investment Opportunities in Production of Caffeine
Investment Opportunities in Production of Caffeine

Investment Opportunities in Production of Caffeine. Extraction of Caffeine from used Tea Leaves. Tea Waste Management Caffeine in pharmaceuticals i...

Capacity :

-

Plant and Machinery cost:

-

Working Capital :

-

Rate of Return (ROR):

1.00

Break Even Point (BEP):

0.00

TCI :

-

Cost of Project :

0

Lead Battery Recycling
Lead Battery Recycling

Lead Battery Recycling Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing...

Capacity :

-

Plant and Machinery cost:

-

Working Capital :

-

Rate of Return (ROR):

1.00

Break Even Point (BEP):

0.00

TCI :

-

Cost of Project :

0

Waste to Wealth-Value Recovery from Agricultural and Industrial Biomass Residues
Waste to Wealth-Value Recovery from Agricultural and Industrial Biomass Residues

Waste to Wealth-Value Recovery from Agricultural and Industrial Biomass Residues. Furfural from Lignocellulosic Biomass. Production of Furfural from S...

Capacity :

-

Plant and Machinery cost:

-

Working Capital :

-

Rate of Return (ROR):

1.00

Break Even Point (BEP):

0.00

TCI :

-

Cost of Project :

0

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