In addition to climate change, plastic pollution is widely recognized as one of the most severe environmental concerns. Waste plastic-derived advanced materials for carbon capture provide promising solutions to these environmental issues. However, the environmental sustainability and economic feasibility of such a novel approach are still unclear for it to be implemented on an industrial scale globally. As synthesis routes differ in terms of their environmental impact and economic feasibility, we synthesized three waste polyethylene terephthalate (PET) plastic-derived porous carbons (PET6-CO2-9, PET6-K7, and PET6-KU7) using physical and chemical activation routes. The resulting porous carbons exhibited high CO2-capture capacities. Based on ...
The plastic crisis requires drastic measures, especially for the plastics’ end-of-life. Mixed plasti...
The plastic crisis requires drastic measures, especially for the plastics’ end-of-life. Mixed plasti...
Recycling aromatic plastics, such as polystyrene (PS) and polyethylene terephthalate (PET), is compl...
The treatment of plastic waste is a global issue, and the demand for technologies to reuse or upgrad...
Carbon capture and utilization are crucial parts of minimizing the negative impacts of climate chang...
Plastic waste generation has increased dramatically every day. Indiscriminate disposal of plastic wa...
Plastic waste generation has increased dramatically every day. Indiscriminate disposal of plastic wa...
According to the Sustainable Development Goals, a green treatment and management of plastic waste mu...
Carbon dioxide offers an accessible, cheap and renewable carbon feedstock for synthesis. Current int...
[EN] In this work, the CO2 capture capacity of a series of activated carbons derived from recycled p...
Plastic materials have become indispensable in everyday life because of their versatility, high dura...
Plastic – the lightweight, flexible material created by humans – has been an amazing invention that ...
In this study, a novel idea was proposed to convert the polyethylene terephthalate (PET) waste drink...
Valorizing waste CO2 as a cheap, inexhaustible and renewable C1 feedstock is an early stage technolo...
In this study, a novel idea was proposed to convert the polyethylene terephthalate (PET) waste drink...
The plastic crisis requires drastic measures, especially for the plastics’ end-of-life. Mixed plasti...
The plastic crisis requires drastic measures, especially for the plastics’ end-of-life. Mixed plasti...
Recycling aromatic plastics, such as polystyrene (PS) and polyethylene terephthalate (PET), is compl...
The treatment of plastic waste is a global issue, and the demand for technologies to reuse or upgrad...
Carbon capture and utilization are crucial parts of minimizing the negative impacts of climate chang...
Plastic waste generation has increased dramatically every day. Indiscriminate disposal of plastic wa...
Plastic waste generation has increased dramatically every day. Indiscriminate disposal of plastic wa...
According to the Sustainable Development Goals, a green treatment and management of plastic waste mu...
Carbon dioxide offers an accessible, cheap and renewable carbon feedstock for synthesis. Current int...
[EN] In this work, the CO2 capture capacity of a series of activated carbons derived from recycled p...
Plastic materials have become indispensable in everyday life because of their versatility, high dura...
Plastic – the lightweight, flexible material created by humans – has been an amazing invention that ...
In this study, a novel idea was proposed to convert the polyethylene terephthalate (PET) waste drink...
Valorizing waste CO2 as a cheap, inexhaustible and renewable C1 feedstock is an early stage technolo...
In this study, a novel idea was proposed to convert the polyethylene terephthalate (PET) waste drink...
The plastic crisis requires drastic measures, especially for the plastics’ end-of-life. Mixed plasti...
The plastic crisis requires drastic measures, especially for the plastics’ end-of-life. Mixed plasti...
Recycling aromatic plastics, such as polystyrene (PS) and polyethylene terephthalate (PET), is compl...