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从连通性角度看河网结构对城市水生生境微塑料足迹的干预。

Interventions of river network structures on urban aquatic microplastic footprint from a connectivity perspective.

机构信息

Key Laboratory of Integrated Regulation and Resource Development on Shallow Lake of Ministry of Education, College of Environment, Hohai University, Nanjing 210098, PR China.

Key Laboratory of Integrated Regulation and Resource Development on Shallow Lake of Ministry of Education, College of Environment, Hohai University, Nanjing 210098, PR China; Yangtze Institute for Conservation and Development, Hohai University, Nanjing 210098, PR China.

出版信息

Water Res. 2023 Sep 1;243:120418. doi: 10.1016/j.watres.2023.120418. Epub 2023 Jul 26.

Abstract

Microplastic footprint in urban river networks can be disturbed by multiple urbanization features, and regional river structures are generally overlooked. In this research, we analyzed the distribution of microplastics and potential impact pattern of river structures on it in a typical urban river network in Nanjing, China. Surface waters of the river network were jointly detected by multiple methods, and the Renkonen similarity index was used to study spatial variabilities of microplastics characteristics. Microplastics were ubiquitous and abundant, showing five (>50 μm) and six (20∼50 μm) hotspots, and heterogeneities in the shape and type of microplastics larger than 100 μm were prominent, presumably influenced by river network scale and connectivity. River structure parameters associated with network connectivity were obtained by combining graph theory and an entropy-based set-pair analysis model. Aiming at the action pathway of river structures, by using correlation and partial least squares regression analysis, we found that river node (confluences and sluices) ratio, river frequency, river network density, and water system circularity were significantly positively correlated with microplastic abundance, and confluences with poor connectivity had a greater indirect intervention intensity on the microplastic distribution. The land use characteristics dominated the fitting of microplastic abundance, which was about 1.2 times better than river structures, and the comprehensive land use intensity and river network connectivity were the critical factors, respectively. Potential ecological risks of microplastics were evaluated, resulting in relatively severe levels. This study proposed targeted measures to control urban microplastic pollution by combining the perspective of river network characteristics. To summarize, our exploration of microplastic footprint based on urban river network structures from the perspective of river network connectivity provides new insights into microplastic management.

摘要

城市河网中的微塑料足迹可能会受到多种城市化特征的干扰,而区域河网结构通常被忽视。在这项研究中,我们分析了中国南京典型城市河网中微塑料的分布及其对河网结构的潜在影响模式。采用多种方法联合检测河网地表水,并采用 Renkonen 相似性指数研究微塑料特征的空间变异性。微塑料普遍存在且丰富,显示出五个(>50μm)和六个(20∼50μm)热点,并且大于 100μm 的微塑料的形状和类型存在明显的异质性,可能受到河网规模和连通性的影响。通过将图论和基于熵的集对分析模型相结合,获得了与网络连通性相关的河网结构参数。针对河网结构的作用途径,通过相关性和偏最小二乘回归分析,我们发现河流节点(交汇点和水闸)比例、河流频率、河网密度和水系循环性与微塑料丰度呈显著正相关,连通性差的交汇点对微塑料分布的间接干预强度更大。土地利用特征主导了微塑料丰度的拟合,其拟合效果约比河网结构好 1.2 倍,综合土地利用强度和河网连通性是关键因素。评估了微塑料的潜在生态风险,结果表明风险较为严重。本研究通过结合河网特征的视角,提出了有针对性的控制城市微塑料污染的措施。总之,我们从河网连通性的角度对城市河网结构进行的微塑料足迹探索为微塑料管理提供了新的思路。

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