Valorization of food processing wastes and by-products for bioplastic production

The global plastic production is reaching new altitudes every year. Growing production of petroleum-based plastics has incurred in disposal issues raising the concerns of plastic pollution and impact to the environment. These issues have encouraged innovation and research activities in the field of...

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Veröffentlicht in:Sustainable chemistry and pharmacy 2020-12, Vol.18, p.100326, Article 100326
Hauptverfasser: Jõgi, Katrin, Bhat, Rajeev
Format: Artikel
Sprache:eng
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Zusammenfassung:The global plastic production is reaching new altitudes every year. Growing production of petroleum-based plastics has incurred in disposal issues raising the concerns of plastic pollution and impact to the environment. These issues have encouraged innovation and research activities in the field of bioplastics, offering alternatives for conventional plastics. In recent years, global bioplastic production has also witnessed tremendous growth and expansion. Some of the main drivers of this growth are innovative biopolymers such as Polylactic acid (PLA) and Polyhydroxyalkanoates (PHAs). However, industrial expenses to produce bioplastics are much higher when compared to petroleum-derived plastics (e.g. industrial PHA production is estimated to be 5–10 times more expensive than petroleum-derived polymers). In this regard, globally many researchers have investigated for more environmentally friendly and cost-effective alternatives to produce plastics. One potential option to pursue would be to explore agri-food wastes and by-products for bioplastic production. This would not only reduce the volume of wastes and by-products, but also production costs incurred. This review paper provides an overview of bioplastics, including production methods and possibilities of industrial food waste valorization for bioplastic production. •Food wastes and by-products could be valorized for bioplastic production.•Bioplastics are a diverse group of materials with different applications and properties.•Global demand for cost-effective bioplastics is growing.•Developing sustainable recycling routes for bio-based materials is of high significance.
ISSN:2352-5541
2352-5541
DOI:10.1016/j.scp.2020.100326