Chemical recycling

Thermo-W.Hy: Thermochemical processes for sustainable industrial applications in Waste valorization and Hydrogen production and safety

Thermo-W.Hy: Thermochemical processes for sustainable industrial applications in Waste valorization and Hydrogen production and safety

  • Pyrolysis of plastic waste and biomass for the production of bio-oil
  • Gasification of biomass for syngas production: synthesis of catalysts for tar reforming and gas cleaning

Thermo-W.Hy: Thermochemical processes for sustainable industrial applications in Waste valorization and Hydrogen production and safety

Thermo-W.Hy: Thermochemical processes for sustainable industrial applications in Waste valorization and Hydrogen production and safety

  • Pyrolysis of plastic waste and biomass for the production of bio-oil
  • Gasification of biomass for syngas production: synthesis of catalysts for tar reforming and gas cleaning

Thermal behavior and pyrolytic degradation kinetics of polymeric mixtures from waste packaging plastics

The thermal behavior and pyrolytic kinetic analysis of main waste polymers (polypropylene (PP), polyethylene
film (PE), poly(ethylene terephthalate) (PET), polystyrene (PS)) and three synthetic mixtures representing commingled postconsumer
plastics wastes (CPCPWs) output from material recovery facilities were studied. Thermogravimetry (TG) pyrolysis
experiments revealed that the thermal degradation of single polymers and the synthetic mixture enriched in PP occurred in

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