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首页> 外文期刊>The Science of the Total Environment >The role of anthropogenic and natural factors in shaping the geochemical evolution of groundwater in the Subei Lake basin, Ordos energy base, Northwestern China
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The role of anthropogenic and natural factors in shaping the geochemical evolution of groundwater in the Subei Lake basin, Ordos energy base, Northwestern China

机译:人为和自然因素在塑造鄂尔多斯能源基地苏北湖盆地地下水地球化学演化中的作用

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摘要

Groundwater resources are increasingly exploited for industrial and agricultural purposes in many arid regions globally, it is urgent to gain the impact of the enhanced anthropogenic pressure on the groundwater chemistry. The aim of this study was to acquire a comprehensive understanding of the evolution of groundwater chemistry and to identify the impact of natural and anthropogenic factors on the groundwater chemistry in the Subei Lake basin, Northwestern China. A total of 153 groundwater samples were collected and major ions were measured during the three campaigns (August and December 2013, May 2014). At present, the major hydrochemical fades in unconfined groundwater are Ca-Mg-HCO_3, Ca-Na-HCO_3, Na-Ca-HCO_3, Na-HCO_3, Ca-Mg-SO_4 and Na-SO_4-Cl types, while the main hydrochemical fades in confined groundwater are Ca-Mg-HCO_3, Ca-Na-HCO_3, Na-Ca-HCO_3, Ca-HCO_3 and Na-HCO_3 types. Relatively greater seasonal variation can be observed in the chemical constituents of confined groundwater than that of unconfined groundwater. Rock weathering predominates the evolution of groundwater chemistry in conjunction with the cation exchange, and the dissolution/preripitation of gypsum, halite, feldspar, calcite and dolomite are responsible for the chemical constituents of groundwater. Anthropogenic activities can be classified as: (1) groundwater overexploitation; (2) excessive application of fertilizers in agricultural areas. Due to intensive groundwater pumping, the accelerated groundwater mineralization resulted in the local changes in hydrochemical facies of unconfined groundwater, while the strong mixture, especially a large influx of downward leakage from the unconfined aquifer into the confined aquifer, played a vital role in the fundamental variation of hydrochemical facies in confined aquifer. The nitrate contamination is mainly controlled by the local hydrogeological settings coupled with the traditional flood irrigation. The deeper insight into geochemical evolution of groundwater obtained from this study can be beneficial to improving groundwater management for sustainable development in the rapidly industrialized areas.
机译:全球许多干旱地区越来越多地将地下水用于工业和农业目的,迫切需要获得人为压力增加对地下水化学的影响。这项研究的目的是获得对地下水化学演变的全面了解,并确定自然和人为因素对苏北湖盆地地下水化学的影响。在这三个活动中(八月和2013年12月,2014年5月),总共收集了153个地下水样品并测量了主要离子。目前,无限制地下水中主要的水化学衰减是Ca-Mg-HCO_3,Ca-Na-HCO_3,Na-Ca-HCO_3,Na-HCO_3,Ca-Mg-SO_4和Na-SO_4-Cl类型,而主要的水化学类型是受限地下水中的褪色为Ca-Mg-HCO_3,Ca-Na-HCO_3,Na-Ca-HCO_3,Ca-HCO_3和Na-HCO_3类型。在密闭地下水的化学成分中,与未密闭地下水的化学成分相比,季节变化相对较大。岩石风化与阳离子交换一起主导着地下水化学的发展,而石膏,石盐,长石,方解石和白云石的溶解/预激化是地下水的化学成分。人为活动可分为:(1)地下水过度开发; (2)在农业地区过量施用肥料。由于大量的地下水抽运,加速的地下水矿化作用导致了非承压地下水的水化学相的局部变化,而强大的混合物,特别是大量的从无承压含水层向下泄漏到承压含水层中的向下渗入,在基本面中起着至关重要的作用。承压含水层中水化学相的变化。硝酸盐污染主要受当地水文地质环境和传统洪水灌溉的控制。从这项研究中获得的对地下水地球化学演化的更深入的了解可能有助于改善地下水管理,以促进快速工业化地区的可持续发展。

著录项

  • 来源
    《The Science of the Total Environment 》 |2015年第15期| 327-340| 共14页
  • 作者单位

    Key Laboratory of Water Cycle and Related Land Surface Processes, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, 11 A, Datun Road, Chaoyang District, Beijing 100101, China,University of Chinese Academy of Sciences, Beijing 100049, China;

    Key Laboratory of Water Cycle and Related Land Surface Processes, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, 11 A, Datun Road, Chaoyang District, Beijing 100101, China;

    Key Laboratory of Water Cycle and Related Land Surface Processes, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, 11 A, Datun Road, Chaoyang District, Beijing 100101, China;

    Key Laboratory of Water Cycle and Related Land Surface Processes, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, 11 A, Datun Road, Chaoyang District, Beijing 100101, China;

    Key Laboratory of Water Cycle and Related Land Surface Processes, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, 11 A, Datun Road, Chaoyang District, Beijing 100101, China;

    Key Laboratory of Water Cycle and Related Land Surface Processes, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, 11 A, Datun Road, Chaoyang District, Beijing 100101, China;

    Key Laboratory of Water Cycle and Related Land Surface Processes, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, 11 A, Datun Road, Chaoyang District, Beijing 100101, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Groundwater chemistry; Anthropogenic activities; Natural processes; Groundwater pumping; Ordos energy base;

    机译:地下水化学;人为活动;自然过程;地下水抽水;鄂尔多斯市能源基地;

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