This article summarizes the energy savings and environmental impacts of using traditional and bio-based fiber-reinforced polymer composites in place of conventional metal-based structures in a range of applications. In addition to reviewing technical achievements in improving material properties, we quantify the environmental impacts of the materials over the complete product life cycle, from material production through use and end of life, using life-cycle assessment (LCA).status: publishe
The view towards a sustainable bioeconomy is increasing the interest of using renewable natural reso...
<p>The results of a life cycle analysis (LCA) are presented for a novel biocomposite material that i...
A cradle-to-grave environmental life cycle assessment (LCA) of a few poly(3-hydroxybutyrate) (PHB) b...
This study is related to evaluate work based on literature study of life cycle analysis of natural f...
International audienceThis paper assesses the aspects related to sustainability of polymer composite...
International audienceThe use of natural materials in the creation of new composites has increased t...
Growing awareness worldwide toward sustainability has spurred many initiatives to search and apply m...
Composite materials, such as carbon fibre reinforced epoxies, provide more efficient structures than...
In many applications the use of composite materials can offer significant weight reduction opportuni...
AbstractNatural fiber reinforced polymer composites have recently received substantial attention due...
Bio-composites are materials made up of a bio-fibre and a polymer, the latter being either bio-based...
This paper presents the results obtained from the life cycle assessment of a type of bio-composites ...
International audienceExtensive studies on biocomposites are already available in the literature. Ho...
The construction industry is continuously searching for sustainable materials to combat the rapid de...
International audienceThis paper aims to present a hemp-based natural fibres composite value chain t...
The view towards a sustainable bioeconomy is increasing the interest of using renewable natural reso...
<p>The results of a life cycle analysis (LCA) are presented for a novel biocomposite material that i...
A cradle-to-grave environmental life cycle assessment (LCA) of a few poly(3-hydroxybutyrate) (PHB) b...
This study is related to evaluate work based on literature study of life cycle analysis of natural f...
International audienceThis paper assesses the aspects related to sustainability of polymer composite...
International audienceThe use of natural materials in the creation of new composites has increased t...
Growing awareness worldwide toward sustainability has spurred many initiatives to search and apply m...
Composite materials, such as carbon fibre reinforced epoxies, provide more efficient structures than...
In many applications the use of composite materials can offer significant weight reduction opportuni...
AbstractNatural fiber reinforced polymer composites have recently received substantial attention due...
Bio-composites are materials made up of a bio-fibre and a polymer, the latter being either bio-based...
This paper presents the results obtained from the life cycle assessment of a type of bio-composites ...
International audienceExtensive studies on biocomposites are already available in the literature. Ho...
The construction industry is continuously searching for sustainable materials to combat the rapid de...
International audienceThis paper aims to present a hemp-based natural fibres composite value chain t...
The view towards a sustainable bioeconomy is increasing the interest of using renewable natural reso...
<p>The results of a life cycle analysis (LCA) are presented for a novel biocomposite material that i...
A cradle-to-grave environmental life cycle assessment (LCA) of a few poly(3-hydroxybutyrate) (PHB) b...