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微塑料降解及物质流分析迈向循环经济的批判性回顾。

A critical review of microplastic degradation and material flow analysis towards a circular economy.

机构信息

Department of Chemical Engineering, Waterloo Institute for Nanotechnology, Institute for Polymer Research, Centre for Bioengineering and Biotechnology, University of Waterloo, Waterloo, Ontario, Canada.

Department of Biology, University of Waterloo, Waterloo, Ontario, Canada.

出版信息

Environ Pollut. 2022 Dec 15;315:120334. doi: 10.1016/j.envpol.2022.120334. Epub 2022 Oct 7.

Abstract

The resilience and low cost of plastics has made their usage ubiquitous, but is also the cause of their prevalence and longevity as waste. Plastic pollution has become a great concern to the health and wellbeing of ecosystems around the world; microplastics are a particular threat, due to their high mobility, ease of ingestion by wildlife, and ability to adsorb and carry toxic contaminants. Material flow analysis has been widely applied to examine stocks and flows of materials in other industries, and has more recently been applied to plastics to examine areas where waste can reach the environment. However, while much research has gone into the environmental fate of microplastics, degradation strategies have been a lesser focus, and material flow analysis of microplastics has suffered from lack of data. Furthermore, the variety of plastics, their additives, and any contaminants pose a significant challenge in degrading (and not merely fragmenting) microplastic particles. This review discusses the current degradation strategies and solutions for dealing with existing and newly-generated microplastic waste along with examining the status of microplastics-based material flow analysis, which are critical for evaluating the possibility of incorporating microplastic waste into a circular economy. The degradation strategies are critically examined, identifying challenges and current trends, as well as important considerations that are frequently under-reported. An emphasis is placed on identifying missing data or information in both material flow analysis and degradation methods that could prove crucial in improving understanding of microplastic flows, as well as optimizing degradation strategies and minimizing any negative environmental impact.

摘要

塑料的韧性和低成本使其应用无处不在,但这也是造成其广泛存在和长期存在的原因。塑料污染已经成为全世界生态系统健康和福祉的一个主要关注点;由于其高度的流动性、易于被野生动物摄入,以及吸附和携带有毒污染物的能力,微塑料是一个特别的威胁。物质流分析已广泛应用于检查其他行业的材料存量和流量,最近也已应用于塑料领域,以研究废物可能进入环境的领域。然而,尽管人们对微塑料的环境归宿进行了大量研究,但降解策略的关注较少,微塑料的物质流分析也因缺乏数据而受到影响。此外,各种塑料、其添加剂和任何污染物在降解(而不仅仅是碎片化)微塑料颗粒方面都构成了重大挑战。这篇综述讨论了处理现有和新产生的微塑料废物的当前降解策略和解决方案,同时还检查了基于微塑料的物质流分析的现状,这对于评估将微塑料废物纳入循环经济的可能性至关重要。对降解策略进行了批判性的审查,确定了挑战和当前的趋势,以及经常被报道不足的重要考虑因素。重点是确定物质流分析和降解方法中缺失的数据或信息,这对于提高对微塑料流动的理解以及优化降解策略和最小化任何负面环境影响可能是至关重要的。

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