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促进可生物降解聚合物的降解

Boosting Degradation of Biodegradable Polymers.

作者信息

Bher Anibal, Cho Yujung, Auras Rafael

机构信息

School of Packaging, Michigan State University, East Lansing, MI, 48824, USA.

出版信息

Macromol Rapid Commun. 2023 Mar;44(5):e2200769. doi: 10.1002/marc.202200769. Epub 2023 Feb 3.

Abstract

Biodegradation of polymers in composting conditions is an alternative end-of-life (EoL) scenario for contaminated materials collected through the municipal solid waste management system, mainly when mechanical or chemical methods cannot be used to recycle them. Compostability certification requirements are time-consuming and expensive. Therefore, approaches to accelerate the biodegradation of these polymers in simulated composting conditions can facilitate and speed up the evaluation and selection of potential compostable polymer alternatives and inform faster methods to biodegrade these polymers in real composting. This review highlights recent trends, challenges, and future strategies to accelerate biodegradation by modifying the polymer properties/structure and the compost environment. Both abiotic and biotic methods show potential for accelerating the biodegradation of biodegradable polymers. Abiotic methods, such as the incorporation of additives, reduction of molecular weight, reduction of size and reactive blending, are potentially the most straightforward, providing a level of technology that allows for easy adoption and adaptability. Novel methods, including the concept of self-immolative and triggering the scission of polymer chains in specific conditions, are increasingly sought. In terms of biotic methods, dispersion/encapsulation of enzymes during the processing step, biostimulation of the environment, and bioaugmentation with specific microbial strains during the biodegradation process are promising to accelerate biodegradation.

摘要

在堆肥条件下对聚合物进行生物降解,是通过城市固体废物管理系统收集的受污染材料的一种替代性报废(EoL)方案,主要适用于无法采用机械或化学方法对其进行回收利用的情况。堆肥性认证要求既耗时又昂贵。因此,在模拟堆肥条件下加速这些聚合物生物降解的方法,能够促进并加快对潜在可堆肥聚合物替代品的评估与选择,并为在实际堆肥中更快地生物降解这些聚合物提供方法依据。本综述重点介绍了通过改变聚合物性质/结构和堆肥环境来加速生物降解的最新趋势、挑战及未来策略。非生物方法和生物方法在加速可生物降解聚合物的生物降解方面均显示出潜力。非生物方法,如添加添加剂、降低分子量、减小尺寸以及反应性共混等,可能是最直接的方法,其技术水平便于采用和适应。人们越来越多地探索新方法,包括自牺牲概念以及在特定条件下引发聚合物链断裂等。在生物方法方面,在加工步骤中分散/包封酶、对环境进行生物刺激以及在生物降解过程中用特定微生物菌株进行生物强化,有望加速生物降解。

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