Qin Zi-Hao, Mou Jin-Hua, Chao Christopher Yu Huang, Chopra Shauhrat Singh, Daoud Walid, Leu Shao-Yuan, Ning Zhi, Tso Chi Yan, Chan Chak Keung, Tang Shixing, Hathi Zubeen Jyotiwadan, Haque Md Ariful, Wang Xiang, Lin Carol Sze Ki
School of Energy and Environment, City University of Hong Kong, Hong Kong.
Department of Mechanical Engineering, University of Hong Kong, Hong Kong.
ChemSusChem. 2021 Oct 5;14(19):4103-4114. doi: 10.1002/cssc.202100752. Epub 2021 Jul 9.
Although fossil-based plastic products have many attractive characteristics, their production has led to severe environmental burdens that require immediate solutions. Despite these plastics being non-natural chemical compounds, they can be degraded and metabolized by some microorganisms, which suggests the potential application of biotechnologies based on the mechanism of plastic biodegradation. In this context, microbe-based strategies for the degradation, recycling, and valorization of plastic waste offer a feasible approach for alleviating environmental challenges created by the accumulation of plastic waste. This Minireview highlights recent advances in the biotechnology-based biodegradation of both traditional polymers and bio-based plastics, focusing on the mechanisms of biodegradation. From an application perspective, this Minireview also summarizes recent progress in the recycling and valorization of plastic waste, which are feasible solutions for tackling the plastic waste dilemma.
尽管基于化石的塑料制品具有许多吸引人的特性,但其生产已导致严重的环境负担,需要立即加以解决。尽管这些塑料是人工合成的化合物,但它们可以被一些微生物降解和代谢,这表明基于塑料生物降解机制的生物技术具有潜在应用价值。在此背景下,基于微生物的塑料废物降解、回收和增值策略为缓解塑料废物积累所带来的环境挑战提供了一种可行的方法。本综述重点介绍了传统聚合物和生物基塑料基于生物技术的生物降解方面的最新进展,着重探讨了生物降解机制。从应用角度来看,本综述还总结了塑料废物回收和增值方面的最新进展,这些都是应对塑料废物困境的可行解决方案。