Used cooking oil (UCO) has received much attention as feedstock for the production of renewable fuels and bio-based materials. This study aims to assess the environmental impact of UCO-based polypropylene (PP) by a cradle-to-factory gate Life-Cycle Assessment (LCA). 16 impact categories were assessed. The results were interpreted with normalization and weighting steps. For several multi-output processes, different allocation procedures were scrutinized. On a normalized and weighted basis, the environmental impacts of UCO-based PP are dominated by climate change (28%), fossil resource use (23%) and water use (11%). The following environmental hotspots are identified: the polymerization process (38%), the production of hydrogen (21%), the pro...
The increasing industrial interest in renewable materials has lead to the development of new plastic...
The increasing production of bio-based plastics calls for thorough environmental assessments. Using ...
Current efforts to mitigate climate change use renewable resources and reduce waste, drive the devel...
Used cooking oil (UCO) has received much attention as feedstock for the production of renewable fuel...
The environmental impacts of the polypropylene (PP) manufacturing process are not fully understood i...
This Thesis is a state-of-art study in which an integrated, raw material-efficient, biorefinery prod...
The European Green Deal requires unlocking the full potential of all types of locally sourced bio-ba...
A potential strategy for tackling the negative environmental impact of conventional plastics is to p...
Polylactide (PLA) is both bio‐based and biodegradable and has therefore attracted increased attentio...
The goal of this study was to assess the environmental performance of low density polyethylene (LDPE...
Plastics are an important commodity of our daily life. And although their majority is still based on...
Presently, very few life cycle assessment (LCA) studies have been conducted and reported on the prod...
Current efforts to mitigate climate change, using renewable resources and reducing waste, drives the...
The increasing production of bio-based plastics calls for thorough environmental assessments. Using ...
In this thesis, a cradle-to-gate life cycle assessment (LCA) for the production of bio-based polyeth...
The increasing industrial interest in renewable materials has lead to the development of new plastic...
The increasing production of bio-based plastics calls for thorough environmental assessments. Using ...
Current efforts to mitigate climate change use renewable resources and reduce waste, drive the devel...
Used cooking oil (UCO) has received much attention as feedstock for the production of renewable fuel...
The environmental impacts of the polypropylene (PP) manufacturing process are not fully understood i...
This Thesis is a state-of-art study in which an integrated, raw material-efficient, biorefinery prod...
The European Green Deal requires unlocking the full potential of all types of locally sourced bio-ba...
A potential strategy for tackling the negative environmental impact of conventional plastics is to p...
Polylactide (PLA) is both bio‐based and biodegradable and has therefore attracted increased attentio...
The goal of this study was to assess the environmental performance of low density polyethylene (LDPE...
Plastics are an important commodity of our daily life. And although their majority is still based on...
Presently, very few life cycle assessment (LCA) studies have been conducted and reported on the prod...
Current efforts to mitigate climate change, using renewable resources and reducing waste, drives the...
The increasing production of bio-based plastics calls for thorough environmental assessments. Using ...
In this thesis, a cradle-to-gate life cycle assessment (LCA) for the production of bio-based polyeth...
The increasing industrial interest in renewable materials has lead to the development of new plastic...
The increasing production of bio-based plastics calls for thorough environmental assessments. Using ...
Current efforts to mitigate climate change use renewable resources and reduce waste, drive the devel...