For the PYROLY-EKOPYR 200, the gross returns per month are sufficient to cover the complete cost of the Plant, based upon the constant and un-interrupted supply of a minimum waste of 200 m3 ( 125 tonnes ) shredded waste.
Complex “PYROLY-EKOPYR” allow you to obtain the maximum output electric power, heat, petroleum product and other combustible materials from the processing of rubber and plastic.In addition to the received oil products, the complex provides the entire project with electricity and heat.The Complex “PYROLY-EKOPYR” is 100% eco-friendly, the complex has no release into the atmosphere of fumes, vapors and emissions of any harmful substances into the environment.
Output performance
Electricity
1,4 MWt/h 400 Volt
Diesel EURO5
810 tonnes/month
Petrol Аi92
504 tonnes/month
Fuel М100
211 tonnes/month
Syngas
540 tonnes/month
Tech.carbon
360 tonnes/month
Heavy Tar
90 tonnes/month
Price
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Our technology is very unique and the only one of its kind in the world (2018). Unlike the existing waste to fuel plants which use outdated materials and conversions processes, this technology is based on a design which improves efficiency and reduces carbon footprint. This eco-friendly design is built around the following design principles:
The PYROLY-EKOPYR Project
Main Ingener Team
It has no tube, and therefore no smoke emissions.
Highly efficient production output and artifacts.
Minimal sorting of waste is required.
No external energy consumption, everything is self-sufficient.
Minimal waste after the Waste to Fuel process is complete
Constant heat generation
The Plant works – 340 days / year.
Plant’s main areas:
Waste sorting area: selection of glass, metal, stone, reinforced concrete, checking materials for radioactivity.
The area of grinding raw materials to a certain fraction.
Plot of mechanisms for moving raw materials.
A site for pyrolysis processing of raw materials.
Park of transitional tanks for pyrolysis oil.
Pumping section.
Carbon black warehouse.
Site for non-pyrolysis materials.
Power station.
Plot of pyrolysis liquid separation into fractions.