Food waste and fashion pollution are two of the significant global environmental issues throughout the recent past. In this research, it was investigated the feasibility of making a leather-like material from bread waste using biotechnology as the bridging mechanism. The waste bread collected from the supermarkets were used as the substrate to grow filamentous fungi species Rhizopus Delemar and Fusarium Venenatum. Tanning of fungal protein fibres was successfully performed using vegetable tanning, confirmed using FTIR and SEM images. Furthermore, glycerol and a biobased binder treatment was performed for the wet-laid fungal microfibre sheets produced. Overall, three potential materials were able to produce with tensile strengths ranging fro...
Presently, the leftovers from leather product industries are discarded as waste in Ethiopia. The obj...
Resource management in current socio-economic systems is often based on a “take-produce-consume-disc...
A novel class of bio-based polymers have been developed within the LIFE BIOPOL European project aimi...
Food waste and fashion pollution are two of the significant global environmental issues throughout t...
Food waste and fashion pollution are two of the most prominent global environmental issues. To allev...
Bread waste represents a significant portion of global food waste, necessitating innovative approach...
The cell wall of a zygomycetes fungus was successfully wet spun into monofilament yarns and demonstr...
Det slängs bröd i svenska matvarubutiker i Sverige samtidigt som läderproduktion är miljöförstörande...
Unsold bread makes up a signification fraction of waste occurring in Swedish supermarkets. This thes...
Consumerism in fashion involves the excessive consumption of garments in modern capitalist societies...
A fungal biorefinery is presented to valorize food waste to fungal monofilaments with tunable proper...
Article, pickle, and wet blue leather defects used for this study were fromthe Balai Besar Karet col...
The aim of the present work is to generate by in vitro technology at laboratory scale a biomaterial ...
Leather, a popular material in a wide array of industries, is traditionally sourced from animal hide...
Filamentous fungi can be used for the valorization of food waste as a value-added product. The goal ...
Presently, the leftovers from leather product industries are discarded as waste in Ethiopia. The obj...
Resource management in current socio-economic systems is often based on a “take-produce-consume-disc...
A novel class of bio-based polymers have been developed within the LIFE BIOPOL European project aimi...
Food waste and fashion pollution are two of the significant global environmental issues throughout t...
Food waste and fashion pollution are two of the most prominent global environmental issues. To allev...
Bread waste represents a significant portion of global food waste, necessitating innovative approach...
The cell wall of a zygomycetes fungus was successfully wet spun into monofilament yarns and demonstr...
Det slängs bröd i svenska matvarubutiker i Sverige samtidigt som läderproduktion är miljöförstörande...
Unsold bread makes up a signification fraction of waste occurring in Swedish supermarkets. This thes...
Consumerism in fashion involves the excessive consumption of garments in modern capitalist societies...
A fungal biorefinery is presented to valorize food waste to fungal monofilaments with tunable proper...
Article, pickle, and wet blue leather defects used for this study were fromthe Balai Besar Karet col...
The aim of the present work is to generate by in vitro technology at laboratory scale a biomaterial ...
Leather, a popular material in a wide array of industries, is traditionally sourced from animal hide...
Filamentous fungi can be used for the valorization of food waste as a value-added product. The goal ...
Presently, the leftovers from leather product industries are discarded as waste in Ethiopia. The obj...
Resource management in current socio-economic systems is often based on a “take-produce-consume-disc...
A novel class of bio-based polymers have been developed within the LIFE BIOPOL European project aimi...