The catalytic carbonization of polyolefin materials to synthesize carbon nanotubes (CNTs) is a promising strategy for the processing and recycling of plastic wastes, but this approach is generally limited due to the selectivity of catalysts and the difficulties in separating the polyolefin mixture. In this study, the influence of nanosized carbon black (CB) and Ni<sub>2</sub>O<sub>3</sub> as a novel combined catalyst system on catalyzing carbonization of polypropylene (PP), polyethylene (PE), polystyrene (PS) and their blends was investigated. We showed that this combination was efficient to promote the carbonization of these polymers to produce CNTs with high yields and of good quality. Catalytic pyrolysis and model carbonization experimen...
The conversion of low-value plastic waste into high-value products such as carbon nanomaterial is of...
The global plastics crisis has recently focused scientists’ attention on finding technical solutions...
With continuous growth for more than 50 years, global plastics production increased to 336 million t...
The catalytic carbonization of polyolefin materials to synthesize carbon nanotubes (CNTs) is a promi...
A one-pot approach was established to prepare carbon nanotubes (CNTs) through the carbonization of p...
Catalyzing the carbonization of a polymer itself to form a protective carbonaceous layer has attract...
A one-pot approach was established to effectively convert polypropylene (PP) and linear low density ...
Catalytic conversion of waste plastics into high value-added carbon nanomaterials (CNMs) has attract...
In this work, multi-walled carbon nanotube composites (MWCNCs) were produced by catalytic pyrolysis ...
A one-pot approach was established to effectively convert polypropylene (PP) and linear low density ...
In this work, multi-walled carbon nanotube composites (MWCNCs) were produced by catalytic pyrolysis ...
A one-pot approach was demonstrated to effectively synthesize cup-stacked carbon nanotubes (CS-CNTs)...
Carbon nanotubes were produced from post-consumer mixed waste plastics using a pyrolysis-catalysis p...
A one-pot method was used to prepare magnetic Ni/carbon (Ni/C) nanomaterials by catalytic carbonizat...
Waste polypropylene (PP) is used as precursor for synthesizing multi-walled carbon nanotubes (MWCNTs...
The conversion of low-value plastic waste into high-value products such as carbon nanomaterial is of...
The global plastics crisis has recently focused scientists’ attention on finding technical solutions...
With continuous growth for more than 50 years, global plastics production increased to 336 million t...
The catalytic carbonization of polyolefin materials to synthesize carbon nanotubes (CNTs) is a promi...
A one-pot approach was established to prepare carbon nanotubes (CNTs) through the carbonization of p...
Catalyzing the carbonization of a polymer itself to form a protective carbonaceous layer has attract...
A one-pot approach was established to effectively convert polypropylene (PP) and linear low density ...
Catalytic conversion of waste plastics into high value-added carbon nanomaterials (CNMs) has attract...
In this work, multi-walled carbon nanotube composites (MWCNCs) were produced by catalytic pyrolysis ...
A one-pot approach was established to effectively convert polypropylene (PP) and linear low density ...
In this work, multi-walled carbon nanotube composites (MWCNCs) were produced by catalytic pyrolysis ...
A one-pot approach was demonstrated to effectively synthesize cup-stacked carbon nanotubes (CS-CNTs)...
Carbon nanotubes were produced from post-consumer mixed waste plastics using a pyrolysis-catalysis p...
A one-pot method was used to prepare magnetic Ni/carbon (Ni/C) nanomaterials by catalytic carbonizat...
Waste polypropylene (PP) is used as precursor for synthesizing multi-walled carbon nanotubes (MWCNTs...
The conversion of low-value plastic waste into high-value products such as carbon nanomaterial is of...
The global plastics crisis has recently focused scientists’ attention on finding technical solutions...
With continuous growth for more than 50 years, global plastics production increased to 336 million t...