The CO2 dry reforming of various types of waste plastics (LDPE, HDPE, PS, PET, and PP) and a simulated mixture of the different waste plastics was investigated over a Ni–Co–Al catalyst using a two-stage reactor. The first stage pyrolyzed the plastics, and the second stage involved catalytic-dry reforming of the product pyrolysis gases with CO2. The introduction of CO2 without a catalyst markedly increased the dry reforming reaction and significantly improved the production of H2/CO synthesis gas (syngas). The introduction of the Ni–Co–Al catalyst further significantly improved the production of syngas. LDPE produced the highest yield of syngas at 154.7 mmolsyngas g–1plastic from the pyrolysis-catalytic-dry reforming process. The order of sy...
Energy security and environmental pollution are two major concerns worldwide. H2 from pyrolysis/gasi...
Syngas production (H2 and CO) from carbon dioxide reforming of high density polyethylene (HDPE) over...
Pyrolysis gas from polyolefinic plastic waste is a hydrocarbon-rich feedstock for sustainable syngas...
The CO2 dry reforming of various types of waste plastics (LDPE, HDPE, PS, PET, and PP) and a simulat...
Catalytic dry reforming of mixed waste plastics, from a range of different municipal, commercial and...
Catalytic dry (CO2) reforming of waste plastics was carried out in a two stage, pyrolysis-catalytic ...
Thermal processing is an effective technique for recycling waste plastics in a sustainable way. The ...
Emissions of greenhouse gases and growing amounts of waste plastic are serious environmental threats...
Two-stage pyrolysis-catalytic reforming of plastics was investigated with the aim of producing usabl...
Humanity reliance on plastic has led to the current problem of dealing with the waste that is genera...
Three Ni/Al2O3catalysts prepared by co-precipitation, impregnation and sol-gel methods were investig...
A range of process conditions, including the type of reactor, the reacting atmosphere and the presen...
Thermoset waste plastics from a cable materials company have been processed using pyrolysis/gasifica...
Polymers are large molecules, whether natural or synthetic, brought together through polymerisation ...
To understand the correlation between plastic structure and products, and the possible reaction mech...
Energy security and environmental pollution are two major concerns worldwide. H2 from pyrolysis/gasi...
Syngas production (H2 and CO) from carbon dioxide reforming of high density polyethylene (HDPE) over...
Pyrolysis gas from polyolefinic plastic waste is a hydrocarbon-rich feedstock for sustainable syngas...
The CO2 dry reforming of various types of waste plastics (LDPE, HDPE, PS, PET, and PP) and a simulat...
Catalytic dry reforming of mixed waste plastics, from a range of different municipal, commercial and...
Catalytic dry (CO2) reforming of waste plastics was carried out in a two stage, pyrolysis-catalytic ...
Thermal processing is an effective technique for recycling waste plastics in a sustainable way. The ...
Emissions of greenhouse gases and growing amounts of waste plastic are serious environmental threats...
Two-stage pyrolysis-catalytic reforming of plastics was investigated with the aim of producing usabl...
Humanity reliance on plastic has led to the current problem of dealing with the waste that is genera...
Three Ni/Al2O3catalysts prepared by co-precipitation, impregnation and sol-gel methods were investig...
A range of process conditions, including the type of reactor, the reacting atmosphere and the presen...
Thermoset waste plastics from a cable materials company have been processed using pyrolysis/gasifica...
Polymers are large molecules, whether natural or synthetic, brought together through polymerisation ...
To understand the correlation between plastic structure and products, and the possible reaction mech...
Energy security and environmental pollution are two major concerns worldwide. H2 from pyrolysis/gasi...
Syngas production (H2 and CO) from carbon dioxide reforming of high density polyethylene (HDPE) over...
Pyrolysis gas from polyolefinic plastic waste is a hydrocarbon-rich feedstock for sustainable syngas...