Biodegradation of Different Types of Bioplastics through Composting—A Recent Trend in Green Recycling

Биодеградация различных типов биопластиков при компостировании — современный тренд экологичной переработки
Wazir Aitizaz Ahsan, Adnan Hussain, Chitsan Lin, Minh‐Ky Nguyen
2023-01-28

aquatic environmentsbioplastic biodegradationbioplastic waste managementcompostingenzymatic biocatalysts
In recent years, the adoption of sustainable alternatives has become a powerful tool for replacing petroleum-based polymers. As a biodegradable alternative to petroleum-derived plastics, bioplastics are becoming more and more prevalent and have the potential to make a significant contribution to reducing plastic pollution in the environment. Meanwhile, their biodegradation is highly dependent on their environment. The leakage of bioplastics into the environment and their long degradation time frame during waste management processes are becoming major concerns that need further investigation. This review highlights the extent and rate of the biodegradation of bioplastic in composting, soil, and aquatic environments, and examines the biological and environmental factors involved in the process. Furthermore, the review highlights the need for further research on the long-term fate of bioplastics in natural and industrial environments. The roles played by enzymes as biocatalysts and metal compounds as catalysts through composting can help to achieve a sustainable approach to the biodegradation of biopolymers. The knowledge gained in this study will also contribute to the development of policies and assessments for bioplastic waste, as well as provide direction for future bioplastics research and development.
1
Bioplastic biodegradation rates and extents vary substantially across composting, soil, and aquatic environments.
2
Bioplastic degradation is strongly governed by biological and environmental factors, making environmental conditions critical to waste-management outcomes.
3
Enzymes and metal compounds can function as biocatalysts and catalysts, respectively, supporting more sustainable composting-based biodegradation of biopolymers.
4
Further research is needed to determine the long-term fate of bioplastics in natural and industrial environments and inform waste policies and assessments.
5
The leakage of bioplastics and their potentially prolonged degradation during waste management pose unresolved environmental concerns.

Bioplastics undergoing biodegradation in composting, soil, and aquatic environments

The extent and rate of biodegradation and the biological and environmental factors governing the degradation of different bioplastics, including the catalytic roles of enzymes and metal compounds

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2023-01-28
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Wazir Aitizaz Ahsan
Adnan Hussain
Chitsan Lin
Minh‐Ky Nguyen
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