人工湿地对微塑料/纳米塑料的去除特性及生态响应研究进展[j]。

Q2 Environmental Science
Zi-Heng Ding, Chong Cao, Lei Chen, Juan Huan
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引用次数: 0

摘要

微塑料/纳米塑料(MPs/NPs)是一种新兴的污染物,来源广泛,分布广泛,对生态环境安全和人类健康产生重大影响。人工湿地(CWs)作为一种经济、高效、应用广泛的生态处理技术,可以通过植物-基质-微生物协同作用,有效去除多种污染物,为MPs/NPs的生态修复提供了可行的途径。目前,越来越多的研究开始关注MPs/NPs在人工湿地的迁移和生态效应。因此,本文系统总结了最新的研究成果和文献,重点研究了人工湿地中MPs/NPs的存在现状和生态效应,包括去除机理、人工湿地的生态响应和运行特点。详细讨论了人工湿地中MPs/NPs的去除特性、机理和生态效应,并得出了相关结论。人工湿地能有效去除MPs/NPs,去除率达90%以上,MPs/NPs主要被植物、基质和微生物捕获和降解。然而,MPs/NPs也可能干扰人工湿地的正常功能,显著影响植物和微生物的活性,且小粒径NPs的毒性胁迫效应高于MPs。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Research Process on the Removal Characteristics and Ecological Response of Constructed Wetlands to Microplastics/Nanoplastics].

As an emerging pollutant, microplastics/nanoplastics (MPs/NPs) come from various sources, are widely distributed, and significantly affect the ecological environment safety and human health. Constructed Wetlands (CWs), as an economical, efficient and widely used ecological treatment technology, can effectively remove various pollutants through plant-substrate-microorganism synergies, providing a feasible way for ecological restoration of MPs/NPs. At present, more and more studies have begun to focus on the migration and ecological effects of MPs/NPs in constructed wetlands. Therefore, this paper systematically summarized the latest research results and literature, focusing on the occurrence status and ecological effects of MPs/NPs in constructed wetland, including removal mechanism, ecological response of constructed wetland and operation characteristics. The removal characteristics, mechanism, and ecological effects of MPs/NPs in constructed wetlands were discussed in detail, and relevant conclusions were drawn. The constructed wetland can effectively remove MPs/NPs, with removal rates of over 90%, which are mainly trapped and degraded by plants, substrate, and microorganisms. However, MPs/NPs may also interfere with the normal functioning of constructed wetland, significantly affecting the activity of plants and microorganisms, and small-size NPs has higher toxic stress effects than MPs.

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来源期刊
环境科学
环境科学 Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
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