Waste management - ERT technology

By integrating innovative solutions and practices, these technologies help reduce waste, recover valuable resources, and minimize environmental impacts

Waste Management by Energy Recovery Technology

We specialize in the design and manufacture of advanced plants and equipment for the efficient conversion of waste materials into valuable hydrocarbons and carbon. Our innovative solutions cater to a wide range of waste streams, including:

  • Municipal Solid Waste (MSW)
  • Biomedical Waste (BMW)
  • Legacy Waste
  • Waste Plastics
  • Food Waste
  • Agricultural Waste

Our technology focuses on extracting maximum value from waste by transforming it into useful by-products while minimizing environmental impact. Key features of our systems include:

  1. Sustainability: Contributing to a circular economy by reducing landfill dependence and promoting resource recovery.
  2. Energy Efficiency: Utilizing cutting-edge energy recovery techniques to maximize output.
  3. Environmental Compliance: Adhering to stringent environmental standards to ensure minimal emissions and pollutants.
  4. Customizable Solutions: Tailored to meet the specific needs of diverse industries and waste types.
  5. Scalability: Flexible designs to accommodate varying operational capacities, from small-scale facilities to large industrial setups.

 

Our commitment is to empower businesses and municipalities with eco-friendly solutions that turn waste challenges into opportunities for resource creation and environmental sustainability.

  • It is the only solution available to address problems OF Plastics, Unsegregated Municipal Waste and Hazardous Biomedical Waste
  • Processes all types of Waste ( including non recyclable plastics) and other wet waste together
  • Most technologies currently available for conversion of plastic to energy have proved to be commercially unviable, due to costof segregation of waste, use of gas in the process and non-biodegradable RESIDUE
  • Capital and Running costs are significantly lower than most technologies available
  • Uses continuous system of processing which is more productive and efficient than the batch system used by foreign technologies. Most significant is non-build up of waste, thereby no stench and NO land pollution
  • Plant can be built according to the requirements -ranging from a 250 Kg/day to a 10,000 TPD plant
  • Plant design Reduces formation of coke by extruder-screw self-cleaning function
  • Plant design allows Inline separation of solid wastes
  • Plant Design allows flexibility of changing feed design and thereby producing desired end products

Engineering Consultancy

Across the industries , FMCG , Food Bevereages , Breweries , Utilities

Turnkey Engineering Projects

End to End Egineering Projects Management and Execution

Industrial design and Architecture

Land ,Building, Plant, Factory Architectural Designs

Factory Audit and Quality assurences

To Deliver Results, Achieve Operational Excellence and Quality

Engineering Procurement and Sourcing

Strategies for Turnaround, Operational Efficiency, and Sustainable Growth.

Engineering Manpower Sourcing

Skilled Professionals for Your Project Needs, Ensuring Accurate and Timely Recruitment

Sick Industry Running and Revival

Reviving Industries for Operational Optimization, Process Reengineering

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Energy Recovery Technology for Waste Management Projects

Deep industry knowledge to create tailored solutions that meet the unique challenges of each project.

Waste-to-Resource Conversion

MSW, BMW, legacy waste, plastics, food, and agri waste, hydrocarbons and carbon.

Sustainable and Energy-Efficient Technology

Innovative systems focused on resource recovery and energy in a circular economy.

Customizable and Scalable Solutions

Specific needs of industries and municipalities, with scalability . 

 

 

Environmental Compliance and Responsibility

 Stringent environmental standards and sustainable waste management

 
 

F. A. Q

Common Questions

“Your questions answered—streamlining industrial success with clarity and efficiency

 

ERT is a process that converts unsegregated municipal solid waste and hazardous biomedical waste into energy and valuable materials while minimizing or eliminating residual waste.

 

ERT involves collecting waste, pre-treating it to remove non-combustibles, and then using thermal treatment methods like gasification or pyrolysis to convert the waste into syngas, biofuels, and other reusable materials.

ERT can process a variety of waste types, including unsegregated municipal solid waste, hazardous biomedical waste, and organic waste.

Yes, ERT can be integrated into current waste management systems, enhancing efficiency and sustainability in handling waste.

 

 Municipalities and organizations interested in ERT can consult with technology providers, assess their waste management needs, and develop a plan for implementation tailored to their specific requirements.

 

Yes, ERT is designed to safely manage hazardous biomedical waste by converting it into energy, reducing the risks associated with traditional disposal methods.

The process generates syngas, biofuels, and recoverable materials such as metals and char, which can be recycled or reused.

ERT converts waste into renewable energy sources, such as electricity and biofuels, which help reduce reliance on fossil fuels and contribute to energy security.

ERT reduces landfill use, lowers greenhouse gas emissions, minimizes pollution, and promotes resource recovery, contributing to a more sustainable waste management system.

ERT can create job opportunities in waste management and energy sectors, while also providing cost-effective solutions for waste disposal and energy generation.