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Hydrogeochemical and mixing processes controlling groundwater chemistry in a wastewater irrigated agricultural system of India

机译:印度污水灌溉农业系统中控制地下水化学的水文地球化学和混合过程

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摘要

In many parts of the world, wastewater irrigation has become a common practice because of freshwater scarcity and to increase resource reuse efficiency. Wastewater irrigation has positive impacts on livelihoods and at the same time, it has adverse impacts related to environmental pollution. Hydrochemical processes and groundwater behaviour need to be analyzed for a thorough understanding of the geochemical evolution in the wastewater irrigated systems. The current study focuses on a micro-watershed in the peri-urban Hyderabad of India, where farmers practice intensive wastewater irrigation. To evaluate the major factors that control groundwater geochemical processes, we analyzed the chemical composition of the wastewater used for irrigation and groundwater samples on a monthly basis for one hydrological year. The groundwater samples were collected in three settings of the watershed: wastewater irrigated area, groundwater irrigated area and upstream peri-urban area. The collected groundwater and wastewater samples were analyzed for major anions, cations and nutrients. We systematically investigated the anthropogenic influences and hydrogeochemical processes such as cation exchange, precipitation and dissolution of minerals using saturated indices, and freshwater-wastewater mixtures at the aquifer interface. Saturation indices of halite, gypsum and fluorite are exhibiting mineral dissolution and calcite and dolomite display mineral precipitation. Overall, the results suggest that the groundwater geochemistry of the watershed is largely controlled by long-term wastewater irrigation, local rainfall patterns and water-rock interactions. The study results can provide the basis for local decision-makers to develop sustainable groundwater management strategies and to control the aquifer pollution influenced by wastewater irrigation. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在世界许多地方,由于淡水稀缺并提高了资源再利用效率,废水灌溉已成为一种普遍的做法。废水灌溉对生计有积极影响,同时也对环境污染有不利影响。为了彻底了解废水灌溉系统中的地球化学演化,需要分析水化学过程和地下水行为。当前的研究集中在印度海得拉巴郊区的一个小流域,那里的农民进行密集的废水灌溉。为了评估控制地下水地球化学过程的主要因素,我们在一个水文年中每月分析了用于灌溉和地下水样本的废水的化学组成。在分水岭的三个环境中收集了地下水样品:废水灌溉区,地下水灌溉区和上游城市周边地区。分析收集的地下水和废水样品中的主要阴离子,阳离子和养分。我们系统地研究了人为影响和水地球化学过程,例如阳离子交换,使用饱和指数的矿物质沉淀和溶解以及含水层界面的淡水与废水混合物。盐酸盐,石膏和萤石的饱和指数表现出矿物溶解,方解石和白云岩表现出矿物沉淀。总体而言,结果表明,该流域的地下水地球化学在很大程度上受长期废水灌溉,局部降雨模式和水-岩相互作用的控制。研究结果可为地方决策者制定可持续的地下水管理策略和控制废水灌溉影响的含水层污染提供依据。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2020年第1期|124741.1-124741.11|共11页
  • 作者

  • 作者单位

    UNU Inst Integrated Management Mat Fluxes & Resources FLORES Ammonstr 74 D-01067 Dresden Germany|Tech Univ Dresden Inst Groundwater Management D-01069 Dresden Germany;

    Tech Univ Dresden Inst Groundwater Management D-01069 Dresden Germany;

    UNU Inst Integrated Management Mat Fluxes & Resources FLORES Ammonstr 74 D-01067 Dresden Germany;

    CSIR Natl Geophys Res Inst Uppal Rd Hyderabad 500007 Telangana India;

    IWMI 127 Sunil Mawatha Battammulla Colombo Sri Lanka;

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

    Aquifer geochemistry; Saturation indices; PHREEQC; Wastewater and freshwater interactions; Peri-urban Hyderabad;

    机译:含水层地球化学;饱和指数;PHREEQC;废水和淡水的相互作用;海得拉巴城郊;

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