Processing Capacity

10 TPD

Monthly Waste Recovery

200+ Tons

Recovered Products

RDF • Pyrolysis Oil • Carbon

Sustainable Circular Economy

Industrial Recycling Model

About

Engineering Sustainable Industrial Recycling Infrastructure

Dewwind India Pvt Ltd together with Dhanalakshmi Engineering Works is developing an advanced industrial recycling ecosystem focused on composite waste management, RDF processing, advanced pyrolysis technology, and sustainable resource recovery.

Our mission is to solve the growing environmental challenge caused by difficult-to-recycle composite materials generated from renewable energy, aerospace, automotive, infrastructure, and industrial manufacturing sectors.

By integrating engineering innovation, automated process systems, and circular economy principles, we aim to reduce landfill dependency while creating scalable sustainable industrial infrastructure for the future.

Dewwind India Pvt Ltd together with Dhanalakshmi Engineering Works is developing an advanced industrial recycling ecosystem focused on composite waste management, RDF processing, advanced pyrolysis technology, and sustainable resource recovery.
Our mission is to solve the growing environmental challenge caused by difficult-to-recycle composite materials generated from renewable energy, aerospace, automotive, infrastructure, and industrial manufacturing sectors.
By integrating engineering innovation, automated process systems, and circular economy principles, we aim to reduce landfill dependency while creating scalable sustainable industrial infrastructure for the future.

Dewwind India Pvt Ltd together with Dhanalakshmi Engineering Works is developing an advanced industrial recycling ecosystem focused on composite waste management, RDF processing, advanced pyrolysis technology, and sustainable resource recovery.

Our mission is to solve the growing environmental challenge caused by difficult-to-recycle composite materials generated from renewable energy, aerospace, automotive, infrastructure, and industrial manufacturing sectors.

By integrating engineering innovation, automated process systems, and circular economy principles, we aim to reduce landfill dependency while creating scalable sustainable industrial infrastructure for the future.

Woman Side Pose

Our Solutions

Integrated Recycling & Sustainable Energy Solutions

Composite Waste Recycling

01

Advanced recycling solutions for FRP, GFRP, CFRP, wind turbine waste, industrial composite waste, and reinforced polymer materials.

Composite Waste Recycling

01

Advanced recycling solutions for FRP, GFRP, CFRP, wind turbine waste, industrial composite waste, and reinforced polymer materials.

RDF Production

02

Conversion of non-recyclable combustible waste into Refuse Derived Fuel for cement industries and industrial energy substitution applications.

RDF Production

02

Conversion of non-recyclable combustible waste into Refuse Derived Fuel for cement industries and industrial energy substitution applications.

Advanced Pyrolysis

03

Thermochemical conversion technology for producing pyrolysis oil, carbon materials, reusable industrial resources, and future renewable fuel feedstock.

Advanced Pyrolysis

03

Thermochemical conversion technology for producing pyrolysis oil, carbon materials, reusable industrial resources, and future renewable fuel feedstock.

Advanced Pyrolysis

03

Thermochemical conversion technology for producing pyrolysis oil, carbon materials, reusable industrial resources, and future renewable fuel feedstock.

Industrial Waste Management

04

Collection, segregation, preprocessing, shredding, and sustainable industrial waste handling solutions for manufacturing sectors.

Industrial Waste Management

04

Collection, segregation, preprocessing, shredding, and sustainable industrial waste handling solutions for manufacturing sectors.

HOW IT WORKS

Integrated Closed-Loop Recycling Process

Step 01

Waste Collection & Segregation

Waste Collection & Segregation

Composite and industrial waste materials are collected from renewable energy, industrial manufacturing, aerospace, automotive, and infrastructure sectors.

Step 02

Feedstock Preparation & RDF Processing

Feedstock Preparation & RDF Processing

Waste materials undergo screening, shredding, metal removal, and preprocessing to prepare controlled feedstock for RDF and pyrolysis operations.

Step 03

Advanced Pyrolysis Conversion

Advanced Pyrolysis Conversion

Prepared feedstock is processed inside low-speed rotary pyrolysis reactors under oxygen-limited conditions for controlled thermal decomposition.

white electic windmill

Step 04

Resource Recovery & Energy Reuse

Resource Recovery & Energy Reuse

The integrated system recovers pyrolysis oil, carbon materials, reusable industrial resources, and recirculates non-condensable gases for internal energy reuse.

Step 01

Waste Collection & Segregation

Waste Collection & Segregation

Composite and industrial waste materials are collected from renewable energy, industrial manufacturing, aerospace, automotive, and infrastructure sectors.

Step 02

Feedstock Preparation & RDF Processing

Feedstock Preparation & RDF Processing

Waste materials undergo screening, shredding, metal removal, and preprocessing to prepare controlled feedstock for RDF and pyrolysis operations.

Step 03

Advanced Pyrolysis Conversion

Advanced Pyrolysis Conversion

Prepared feedstock is processed inside low-speed rotary pyrolysis reactors under oxygen-limited conditions for controlled thermal decomposition.

white electic windmill

Step 04

Resource Recovery & Energy Reuse

Resource Recovery & Energy Reuse

The integrated system recovers pyrolysis oil, carbon materials, reusable industrial resources, and recirculates non-condensable gases for internal energy reuse.

Step 01

Waste Collection & Segregation

Waste Collection & Segregation

Composite and industrial waste materials are collected from renewable energy, industrial manufacturing, aerospace, automotive, and infrastructure sectors.

Step 02

Feedstock Preparation & RDF Processing

Feedstock Preparation & RDF Processing

Waste materials undergo screening, shredding, metal removal, and preprocessing to prepare controlled feedstock for RDF and pyrolysis operations.

Step 03

Advanced Pyrolysis Conversion

Advanced Pyrolysis Conversion

Prepared feedstock is processed inside low-speed rotary pyrolysis reactors under oxygen-limited conditions for controlled thermal decomposition.

white electic windmill

Step 04

Resource Recovery & Energy Reuse

Resource Recovery & Energy Reuse

The integrated system recovers pyrolysis oil, carbon materials, reusable industrial resources, and recirculates non-condensable gases for internal energy reuse.

three wind turbines in a green field with a blue sky in the background
windmills on grass field at daytime
people standing near wind turbines during daytime
a wind turbine in the middle of a field
white windmill during day
wind turbines under gray sky
wind turbines on snowy mountain under clear blue sky during daytime
white and red windmill during daytime

Partner With Us for Sustainable Industrial Transformation

Partner With Us for Sustainable Industrial Transformation

Processing Capacity

10 TPD

Monthly Waste Recovery

200+ Tons

Recovered Products

RDF • Pyrolysis Oil • Carbon

Sustainable Circular Economy

Industrial Recycling Model

About

Engineering Sustainable Industrial Recycling Infrastructure

Dewwind India Pvt Ltd together with Dhanalakshmi Engineering Works is developing an advanced industrial recycling ecosystem focused on composite waste management, RDF processing, advanced pyrolysis technology, and sustainable resource recovery.

Our mission is to solve the growing environmental challenge caused by difficult-to-recycle composite materials generated from renewable energy, aerospace, automotive, infrastructure, and industrial manufacturing sectors.

By integrating engineering innovation, automated process systems, and circular economy principles, we aim to reduce landfill dependency while creating scalable sustainable industrial infrastructure for the future.

Dewwind India Pvt Ltd together with Dhanalakshmi Engineering Works is developing an advanced industrial recycling ecosystem focused on composite waste management, RDF processing, advanced pyrolysis technology, and sustainable resource recovery.
Our mission is to solve the growing environmental challenge caused by difficult-to-recycle composite materials generated from renewable energy, aerospace, automotive, infrastructure, and industrial manufacturing sectors.
By integrating engineering innovation, automated process systems, and circular economy principles, we aim to reduce landfill dependency while creating scalable sustainable industrial infrastructure for the future.

Dewwind India Pvt Ltd together with Dhanalakshmi Engineering Works is developing an advanced industrial recycling ecosystem focused on composite waste management, RDF processing, advanced pyrolysis technology, and sustainable resource recovery.

Our mission is to solve the growing environmental challenge caused by difficult-to-recycle composite materials generated from renewable energy, aerospace, automotive, infrastructure, and industrial manufacturing sectors.

By integrating engineering innovation, automated process systems, and circular economy principles, we aim to reduce landfill dependency while creating scalable sustainable industrial infrastructure for the future.

Woman Side Pose

Our Solutions

Integrated Recycling & Sustainable Energy Solutions

Composite Waste Recycling

01

Advanced recycling solutions for FRP, GFRP, CFRP, wind turbine waste, industrial composite waste, and reinforced polymer materials.

Composite Waste Recycling

01

Advanced recycling solutions for FRP, GFRP, CFRP, wind turbine waste, industrial composite waste, and reinforced polymer materials.

RDF Production

02

Conversion of non-recyclable combustible waste into Refuse Derived Fuel for cement industries and industrial energy substitution applications.

RDF Production

02

Conversion of non-recyclable combustible waste into Refuse Derived Fuel for cement industries and industrial energy substitution applications.

Advanced Pyrolysis

03

Thermochemical conversion technology for producing pyrolysis oil, carbon materials, reusable industrial resources, and future renewable fuel feedstock.

Advanced Pyrolysis

03

Thermochemical conversion technology for producing pyrolysis oil, carbon materials, reusable industrial resources, and future renewable fuel feedstock.

Advanced Pyrolysis

03

Thermochemical conversion technology for producing pyrolysis oil, carbon materials, reusable industrial resources, and future renewable fuel feedstock.

Industrial Waste Management

04

Collection, segregation, preprocessing, shredding, and sustainable industrial waste handling solutions for manufacturing sectors.

Industrial Waste Management

04

Collection, segregation, preprocessing, shredding, and sustainable industrial waste handling solutions for manufacturing sectors.

HOW IT WORKS

Integrated Closed-Loop Recycling Process

Step 01

Waste Collection & Segregation

Waste Collection & Segregation

Composite and industrial waste materials are collected from renewable energy, industrial manufacturing, aerospace, automotive, and infrastructure sectors.

Step 02

Feedstock Preparation & RDF Processing

Feedstock Preparation & RDF Processing

Waste materials undergo screening, shredding, metal removal, and preprocessing to prepare controlled feedstock for RDF and pyrolysis operations.

Step 03

Advanced Pyrolysis Conversion

Advanced Pyrolysis Conversion

Prepared feedstock is processed inside low-speed rotary pyrolysis reactors under oxygen-limited conditions for controlled thermal decomposition.

white electic windmill

Step 04

Resource Recovery & Energy Reuse

Resource Recovery & Energy Reuse

The integrated system recovers pyrolysis oil, carbon materials, reusable industrial resources, and recirculates non-condensable gases for internal energy reuse.

Step 01

Waste Collection & Segregation

Waste Collection & Segregation

Composite and industrial waste materials are collected from renewable energy, industrial manufacturing, aerospace, automotive, and infrastructure sectors.

Step 02

Feedstock Preparation & RDF Processing

Feedstock Preparation & RDF Processing

Waste materials undergo screening, shredding, metal removal, and preprocessing to prepare controlled feedstock for RDF and pyrolysis operations.

Step 03

Advanced Pyrolysis Conversion

Advanced Pyrolysis Conversion

Prepared feedstock is processed inside low-speed rotary pyrolysis reactors under oxygen-limited conditions for controlled thermal decomposition.

white electic windmill

Step 04

Resource Recovery & Energy Reuse

Resource Recovery & Energy Reuse

The integrated system recovers pyrolysis oil, carbon materials, reusable industrial resources, and recirculates non-condensable gases for internal energy reuse.

Step 01

Waste Collection & Segregation

Waste Collection & Segregation

Composite and industrial waste materials are collected from renewable energy, industrial manufacturing, aerospace, automotive, and infrastructure sectors.

Step 02

Feedstock Preparation & RDF Processing

Feedstock Preparation & RDF Processing

Waste materials undergo screening, shredding, metal removal, and preprocessing to prepare controlled feedstock for RDF and pyrolysis operations.

Step 03

Advanced Pyrolysis Conversion

Advanced Pyrolysis Conversion

Prepared feedstock is processed inside low-speed rotary pyrolysis reactors under oxygen-limited conditions for controlled thermal decomposition.

white electic windmill

Step 04

Resource Recovery & Energy Reuse

Resource Recovery & Energy Reuse

The integrated system recovers pyrolysis oil, carbon materials, reusable industrial resources, and recirculates non-condensable gases for internal energy reuse.

three wind turbines in a green field with a blue sky in the background
windmills on grass field at daytime
people standing near wind turbines during daytime
a wind turbine in the middle of a field
white windmill during day
wind turbines under gray sky
wind turbines on snowy mountain under clear blue sky during daytime
white and red windmill during daytime

Partner With Us for Sustainable Industrial Transformation

Partner With Us for Sustainable Industrial Transformation

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