Biodegradation of Hemicellulose-Cellulose-Starch-Based Bioplastics and Microbial Polyesters
Биодеградация биопластиков на основе гемицеллюлозы, целлюлозы и крахмала, а также микробных полиэфиров
2021-03-22
SCID: 54.1/qvy43pbm
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bioplastic biodegradationdecomposition rateshemicellulose-cellulose-starch bioplasticsmicrobial polyestersplant biomass polymers
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Abstract (AI)
The volume of discarded solid wastes, especially plastic, which accumulates in large quantities in different environments, has substantially increased. Population growth and the consumption pattern of societies associated with unsustainable production routes have caused the pollution level to increase. Therefore, the development of materials that help mitigate the impacts of plastics is fundamental. However, bioplastics can result in a misunderstanding about their properties and environmental impacts, as well as incorrect management of their final disposition, from misidentifications and classifications. This chapter addresses the aspects and factors surrounding the biodegradation of bioplastics from natural (plant biomass (starch, lignin, cellulose, hemicellulose, and starch) and bacterial polyester polymers. Therefore, the biodegradation of bioplastics is a factor that must be studied, because due to the increase in the production of different bioplastics, they may present differences in the decomposition rates.
Key Findings
1
Bioplastics may be misidentified or misclassified, leading to incorrect management of their end-of-life disposal.
2
Different bioplastics can exhibit substantially different decomposition rates, making biodegradation behavior an important factor to study.
3
It also addresses biodegradation of bacterial microbial polyesters as an alternative class of bioplastic materials.
4
The chapter examines biodegradation of bioplastics based on plant biomass polymers, including starch, cellulose, hemicellulose, and lignin.
5
Understanding biodegradation is presented as essential for evaluating bioplastics’ environmental impacts and their potential to mitigate plastic pollution.
Research Object
Hemicellulose-cellulose-starch-based bioplastics and microbial polyester polymers
Research Subject
Biodegradation processes and decomposition-rate differences of bioplastics under different environmental conditions and management practices
Publication Details
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2021-03-22
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