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淮河流域镉与溶解有机物络合行为的变化:环境驱动因素、区域差异及社会经济影响

Changes in the complexation behavior of cadmium with dissolved organic matter in the Huaihe River basin: Environmental drivers, regional differences and socio-economic impacts.

作者信息

Wang Zhangzhao, Feng Fan, Liu Dongping, Gao Hongjie, Li Qingqian, Yu Huibin

机构信息

State Key Laboratory of Environmental Criteria and Risk Assessment, Chinese Research Academy of Environmental Sciences, Beijing, 100012, PR China.

State Key Laboratory of Environmental Criteria and Risk Assessment, Chinese Research Academy of Environmental Sciences, Beijing, 100012, PR China; College of Water Sciences, Beijing Normal University, Beijing, 100875, PR China.

出版信息

Environ Res. 2025 Jul 5;285(Pt 1):122305. doi: 10.1016/j.envres.2025.122305.

Abstract

The mobility of Cd (II) in aquatic ecosystems is significantly influenced by its complexation with dissolved organic matter (DOM), but the impact of multidimensional factors on this complexation process remains poorly understood. This study examined Cd (II) binding of DOM from four distinct regions-agricultural (AgriDOM), industrial (IndDOM), wetland (WetDOM), and estuarine (EstDOM)-in a pollution-entwined, agro-saturated river. Analysis was performed using fluorescence excitation-emission matrix spectroscopy (EEM), principal component coefficients, parallel factor analysis (PARAFAC), moving-window two-dimensional correlation spectroscopy (MW2DCOS), and structural equation modeling (SEM). Five components were extracted from the titrants through EEM-PARAFAC (fluorescence excitation-emission matrix spectroscopy-parallel factor analyses), i.e., tryptophan-like substances (C1), photochemical products of terrestrial organic matter (C2), microbial humic-like component (C3), fulvic-like substance (C4), humic-like components (C5). C1 originated from wastewater and is significantly influenced by biological activity. C2 exhibited sensitivity to Cd (II) in regions with active photodegradation (AgriDOM, WetDOM). Agricultural activities mobilized C3, enhancing its complexation with Cd (II). Increased runoff from irrigation and drainage promoted a higher binding affinity of C4 for Cd (II). C5, derived from wastewater, declined in estuarine and high-salinity environments. In AgriDOM and IndDOM, Cd (II) preferentially associated with C5 and C4, reducing its mobility and facilitating its stabilization in soil. Within WetDOM and EstDOM, Cd (II) primarily bound to C1, markedly enhancing its mobility. The socio-economic condition of a region influences water environmental factors, thereby affecting the complexation behavior of Cd (II) with DOM. Agricultural activities reduce Cd (II) mobility, while industrial growth enhances its mobility through elevated GDP-P. The Huaihe River basin's industrial transformation toward greener, low-carbon practices has reduced pollution, demonstrating a negative correlation between economic growth and pollution levels, aided by improved environmental infrastructure. This study may provide a new perspective and framework for understanding and addressing Cd (II) contamination remediation.

摘要

镉(II)在水生生态系统中的迁移性受其与溶解有机物(DOM)络合的显著影响,但多维因素对这一络合过程的影响仍知之甚少。本研究考察了一条受污染缠绕、农业饱和河流中四个不同区域——农业区(AgriDOM)、工业区(IndDOM)、湿地(WetDOM)和河口区(EstDOM)——的DOM对镉(II)的结合情况。采用荧光激发-发射矩阵光谱(EEM)、主成分系数、平行因子分析(PARAFAC)、移动窗口二维相关光谱(MW2DCOS)和结构方程模型(SEM)进行分析。通过EEM-PARAFAC(荧光激发-发射矩阵光谱-平行因子分析)从滴定剂中提取出五种成分,即类色氨酸物质(C1)、陆地有机物的光化学产物(C2)、微生物腐殖质样成分(C3)、富里酸样物质(C4)、腐殖质样成分(C5)。C1源自废水,受生物活性显著影响。C2在光降解活跃的区域(AgriDOM、WetDOM)对镉(II)表现出敏感性。农业活动使C3活化,增强了其与镉(II)的络合。灌溉和排水径流增加促进了C4对镉(II)的更高结合亲和力。源自废水的C5在河口和高盐环境中减少。在AgriDOM和IndDOM中,镉(II)优先与C5和C4结合,降低其迁移性并促进其在土壤中的稳定。在WetDOM和EstDOM内,镉(II)主要与C1结合,显著增强其迁移性。一个地区的社会经济状况影响水环境因素,从而影响镉(II)与DOM的络合行为。农业活动降低镉(II)迁移性,而工业增长通过提高GDP-P增强其迁移性。淮河流域向更绿色、低碳做法的产业转型减少了污染,表明经济增长与污染水平之间呈负相关,这得益于环境基础设施的改善。本研究可能为理解和解决镉(II)污染修复提供新的视角和框架。

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