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Groundwater hydrochemistry, source identification and pollution assessment in intensive industrial areas, eastern Chinese loess plateau

机译:地下水液体,源识别和污染评估,在中国东部黄土高原

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摘要

Groundwater is essential for regional ecological-economic system and is an important resource of drinking water, especially in the Chinese Loess Plateau (CLP), where is a typical water-limited ecosystem. Groundwater quality deterioration will affect water security and exacerbate the water shortages. Groundwater hydrochemistry, pollution source apportionment, quality and health risks were evaluated based on analysis of major ions and selected trace elements in seasonal samples of the Fen River Basin (FRB) in the eastern CLP. Groundwaters in the FRB were mainly HCO3--Ca-2(+)-Na+ water type with low dissolved solutes in upstream samples, high values in midstream samples and medium values in downstream samples. Solutes in upstream samples were mainly derived from carbonate weathering, while those in midstream and downstream samples came from silicate weathering, evaporites dissolution and anthropogenic sources. Self-organizing map (SOM) showed the hydrochemistry remained unchanged from dry to wet season for most sampling points. The seasonal variations of Ag, Cd, Ni, Pb, and Tl were significant due to anthropogenic input. High NO3- in upstream and downstream samples resulted primarily from sewage discharge, and high SO42- in midstream and downstream samples was from gypsum- and coal-related industries. In addition, anthropogenic input related to coal industries significantly aggravates pollution of As, Ni, Ag, Fe, and Mn. Influenced by evaporites and anthropogenic input, midstream samples had high salinity, total hardness and water quality indices (WQIs) and were unsuitable for irrigation or drinking purposes. Seasonal variation of WQI in the FRB was unsignificant except Jiaokou River sub-basin, where groundwater quality was worse in the wet season than the dry season due to coal mining. Great attention should be paid to the high non-carcinogenic risks of exposure to F, V, Mn, and Cr via dermal absorption, particularly for children. Overall, groundwater quality in the FRB was best in upstream, medium in midstream and worst in midstream based on different index. Groundwater quality is deteriorated by anthropogenic input and the sewage discharge in the FRB should be strictly controlled. Our report provides a reference for groundwater pollution evaluation and source identification in similar areas. (c) 2021 Elsevier Ltd. All rights reserved.
机译:地下水对于区域生态学制度至关重要,是饮用水的重要资源,特别是在中国黄土高原(CLP),典型的水有限的生态系统。地下水质量恶化会影响水安全性,加剧水资源短缺。基于对东部CLP的芬河流域(FRB)季节样本中的主要离子和选择的微量元素来评估地下水液晶,污染源分摊,质量和健康风险。 FRB中的地下水主要是HCO3 - Ca-2(+) - Na +水式在上游样品中具有低溶解溶质的溶质,中游样品中的中等样品中的高值和中等值。上游样品中的溶质主要来自碳酸盐风化,而中游和下游样品中的那些来自硅酸盐风化,蒸发晶体溶解和人为源。自组织地图(SOM)表明,对于大多数采样点,水化学从干燥到湿季保持不变。由于人为输入,Ag,Cd,Ni,Pb和T1的季节性变化是显着的。高No3-在上游和下游样品中主要来自污水排放,高SO42-在中间和下游样品中来自石膏和煤炭相关的行业。此外,与煤炭行业有关的人类学投入显着加剧了AS,Ni,Ag,Fe和Mn的污染。受蒸发炉和人为进入的影响,中游样品具有高盐度,总硬度和水质指数(WQI),不适合灌溉或饮用目的。除嘉科河次盆外,FQI的季节性变化是不可顽强的,除了煤矿季节的地下水质量比旱季更差。应该通过皮肤吸收,特别是暴露于F,V,Mn和Cr的高非致癌风险,特别是对于儿童的高致癌风险。总体而言,FRB中的地下水质量在基于不同指数的中游和最差的上游和最差的地下室。地下水质量因人为输入而恶化,应严格控制FRB中的污水排放。我们的报告为类似领域的地下水污染评估和源识别提供了参考。 (c)2021 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Environmental Pollution》 |2021年第6期|116930.1-116930.12|共12页
  • 作者单位

    Chinese Acad Sci Inst Earth Environm State Key Lab Loess & Quaternary Geol Xian 710061 Peoples R China|CAS Ctr Excellence Quaternary Sci & Global Change Xian 710061 Peoples R China;

    Chinese Acad Sci Inst Geog Sci & Nat Resources Res Key Lab Land Surface Pattern & Simulat Beijing 100101 Peoples R China;

    Changan Univ Sch Water & Environm Xian 710054 Shaanxi Peoples R China;

    Xian Univ Sci & Technol Coll Geomat Xian 710054 Peoples R China;

    Chinese Acad Sci Inst Earth Environm State Key Lab Loess & Quaternary Geol Xian 710061 Peoples R China|CAS Ctr Excellence Quaternary Sci & Global Change Xian 710061 Peoples R China;

    Univ Wuppertal Sch Architecture & Civil Engn Inst Fdn Engn Water & Waste Management Soil & Gro Pauluskirchstr 7 D-42285 Wuppertal Germany|Sejong Univ Dept Environm & Energy Dept Environm Seoul 05006 South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Groundwater hydrochemistry; Trace elements; Source identification; Groundwater quality; Health risk assessment; Fen river Basin;

    机译:地下水液体;微量元素;源识别;地下水质量;健康风险评估;汾河流域;
  • 入库时间 2022-08-19 02:47:51

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