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通过预处理提高(生物)塑料的生物降解性:一项批判性综述。

Enhancing the biodegradation of (bio)plastic through pretreatments: A critical review.

作者信息

Mat Yasin Najwa, Akkermans Simen, Van Impe Jan F M

机构信息

BioTeC+ - Chemical and Biochemical Process Technology and Control, Department of Chemical Engineering, KU Leuven, Gebroeders De Smetstraat 1, 9000 Gent, Belgium; Faculty of Ocean Engineering and Informatics, Universiti Malaysia Terengganu (UMT), 21030 Terengganu, Malaysia.

BioTeC+ - Chemical and Biochemical Process Technology and Control, Department of Chemical Engineering, KU Leuven, Gebroeders De Smetstraat 1, 9000 Gent, Belgium.

出版信息

Waste Manag. 2022 Aug 1;150:1-12. doi: 10.1016/j.wasman.2022.06.004. Epub 2022 Jun 30.

Abstract

As plastic packaging becomes nearly indispensable in the plastic economy, rigorous efforts have been made to recapture the material value form this waste stream, which is mostly composed of highly resistant plastics. Biodegradation offers an attractive alternative for conventional plastic waste treatment as this approach is environmentally friendly, has low cost and facilitates valorisation. Moreover, there is also an increasing interest in plastic pretreatments waste to enhance biodegradation. This review investigates the pretreatment methods that optimise plastic biodegradation by examining the process's mechanisms and key influencing factors, which can be categorised into: biotic factors, abiotic factors and polymer characteristics. Various types of chemical and physical pretreatments have demonstrated to effectively enhance biodegradation through oxidation and surface changes on the plastics, leading to increased bioconversion rates and biogas production. A critical evaluation of the various categories of pretreatment methods is presented. This evaluation leads to the conclusion that the category of non-thermal physical treatments is most promising, due to the relatively low energy requirements and the absence of a need for chemical additions. Moreover, non-thermal physical treatments have demonstrated application potential at large scale. Based on these conclusions, pretreatments are expected to be an integral part of the biodegradation of plastics within a circular economy approach.

摘要

随着塑料包装在塑料经济中几乎不可或缺,人们已做出严格努力,从这一主要由高抗性塑料组成的废物流中重新获取材料价值。生物降解为传统塑料废物处理提供了一种有吸引力的替代方法,因为这种方法环保、成本低且有利于价值提升。此外,人们对塑料预处理废物以增强生物降解的兴趣也在增加。本综述通过研究该过程的机制和关键影响因素,探讨了优化塑料生物降解的预处理方法,这些因素可分为:生物因素、非生物因素和聚合物特性。各种化学和物理预处理已证明可通过塑料的氧化和表面变化有效增强生物降解,从而提高生物转化率和沼气产量。本文对各类预处理方法进行了批判性评估。该评估得出的结论是,非热物理处理类别最具前景,因为其能量需求相对较低且无需添加化学物质。此外,非热物理处理已展现出大规模应用潜力。基于这些结论,预处理有望成为循环经济模式下塑料生物降解的一个组成部分。

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