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环境中可生物降解塑料衍生的微/纳米塑料毒性研究进展:综述

Research advances on the toxicity of biodegradable plastics derived micro/nanoplastics in the environment: A review.

作者信息

Tao Shiyu, Li Tianhao, Li Mingyu, Yang Shengxin, Shen Maocai, Liu Hui

机构信息

School of Energy and Environment, Anhui University of Technology, Maanshan, Anhui 243002, PR China.

School of Energy and Environment, Anhui University of Technology, Maanshan, Anhui 243002, PR China.

出版信息

Sci Total Environ. 2024 Mar 15;916:170299. doi: 10.1016/j.scitotenv.2024.170299. Epub 2024 Jan 23.

Abstract

The detrimental effects of plastic and microplastic accumulation on ecosystems are widely recognized and indisputable. The emergence of biodegradable plastics (BPs) offers a practical solution to plastic pollution. Problematically, however, not all BPs can be fully degraded in the environment. On the contrary, the scientific community has demonstrated that BPs are more likely than conventional plastics (CPs) to degrade into micro/nanoplastics and release additives, which can have similar or even worse effects than microplastics. However, there is very limited information available on the environmental toxicity assessment of BMPs. The absence of a toxicity evaluation system and the uncertainty regarding combined toxicity with other pollutants also impede the environmental toxicity assessment of BMPs. Currently, research is focused on thoroughly exploring the toxic effects of biodegradable microplastics (BMPs). This paper reviews the pollution status of BMPs in the environment, the degradation behavior of BPs and the influencing factors. This paper comprehensively summarizes the ecotoxicological effects of BPs on ecosystems, considering animals, plants, and microorganisms in various environments such as water bodies, soil, and sediment. The focus is on distinguishing between BMPs and conventional microplastics (CMPs). In addition, the combined toxic effects of BMPs and other pollutants are also being investigated. The findings suggest that BMPs may have different or more severe impacts on ecosystems. The rougher and more intricate surface of BMPs increases the likelihood of causing mechanical damage to organisms and breaking down into smaller plastic particles, releasing additives that lead to a series of cascading negative effects on related organisms and ecosystems. In the case of knowledge gaps, future research is also proposed and anticipated to investigate the toxic effects of BMPs and their evaluation.

摘要

塑料和微塑料积累对生态系统的有害影响已得到广泛认可且无可争议。可生物降解塑料(BPs)的出现为塑料污染提供了一个切实可行的解决方案。然而,问题在于并非所有的可生物降解塑料都能在环境中完全降解。相反,科学界已经证明,与传统塑料(CPs)相比,可生物降解塑料更有可能降解为微塑料/纳米塑料并释放添加剂,这些添加剂可能产生与微塑料相似甚至更严重的影响。然而,关于可生物降解微塑料(BMPs)的环境毒性评估的信息非常有限。缺乏毒性评估系统以及与其他污染物联合毒性的不确定性也阻碍了对可生物降解微塑料的环境毒性评估。目前,研究集中在深入探究可生物降解微塑料(BMPs)的毒性作用。本文综述了可生物降解微塑料在环境中的污染状况、可生物降解塑料的降解行为及其影响因素。本文全面总结了可生物降解塑料对生态系统的生态毒理效应,涵盖了水体、土壤和沉积物等各种环境中的动物、植物和微生物。重点在于区分可生物降解微塑料和传统微塑料(CMPs)。此外,还在研究可生物降解微塑料与其他污染物的联合毒性效应。研究结果表明,可生物降解微塑料可能对生态系统产生不同或更严重的影响。可生物降解微塑料更粗糙、更复杂的表面增加了对生物体造成机械损伤并分解成更小塑料颗粒的可能性,释放出的添加剂会对相关生物体和生态系统产生一系列连锁负面影响。针对知识空白,还提出并预期了未来的研究方向,以调查可生物降解微塑料的毒性效应及其评估。

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