Production of bioplastic through food waste valorization

Производство биопластика посредством валоризации пищевых отходов
Yiu Fai Tsang, Vanish Kumar, Pallabi Samadar, Yi Yang, Jechan Lee, Yong Sik Ok, Hocheol Song, Ki‐Hyun Kim, Eilhann E. Kwon, Young Jae Jeon
2019-04-13

bioplastic productionbiorefinery platformfermentation technologiesfood waste valorizationpolyhydroxyalkanoates (PHA)
The tremendous amount of food waste from diverse sources is an environmental burden if disposed of inappropriately. Thus, implementation of a biorefinery platform for food waste is an ideal option to pursue (e.g., production of value-added products while reducing the volume of waste). The adoption of such a process is expected to reduce the production cost of biodegradable plastics (e.g., compared to conventional routes of production using overpriced pure substrates (e.g., glucose)). This review focuses on current technologies for the production of polyhydroxyalkanoates (PHA) from food waste. Technical details were also described to offer clear insights into diverse pretreatments for preparation of raw materials for the actual production of bioplastic (from food wastes). In this respect, particular attention was paid to fermentation technologies based on pure and mixed cultures. A clear description on the chemical modification of starch, cellulose, chitin, and caprolactone is also provided with a number of case studies (covering PHA-based products) along with a discussion on the prospects of food waste valorization approaches and their economic/technical viability.
1
Both pure- and mixed-culture fermentation technologies are considered for producing PHA from food-waste-derived materials.
2
Food waste may lower PHA production costs compared with conventional processes relying on expensive pure substrates such as glucose.
3
Food-waste biorefineries can reduce waste volumes while producing value-added biodegradable plastics.
4
The review evaluates chemical modification of starch, cellulose, chitin, and caprolactone, including technical and economic viability of food-waste valorization.
5
The review examines pretreatment technologies that convert diverse food wastes into suitable feedstocks for PHA production.

Food waste as a feedstock for polyhydroxyalkanoate (PHA) bioplastic production

Technologies, pretreatments, fermentation strategies, chemical modifications, and economic and technical viability of valorizing food waste for PHA production

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2019-04-13
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Yiu Fai Tsang
Vanish Kumar
Pallabi Samadar
Yi Yang
Jechan Lee
Yong Sik Ok
Hocheol Song
Ki‐Hyun Kim
Eilhann E. Kwon
Young Jae Jeon
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