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Influence of hydraulic gradient and temperature on the migration of E. coli in saturated porous media during bank filtration: a case study at the Second Songhua River, Songyuan, Northeastern China

机译:液压梯度与温度对河流过滤期间饱和多孔介质中大肠杆菌迁移的影响 - 以中国东北部松原河二世松树河案例研究

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摘要

River bank filtration can effectively reduce the number of pathogenic microorganisms infiltrating into groundwater from surface water. Groundwater seepage velocity and temperature are considered to be important factors affecting the process, but the magnitude and mechanism of their impacts have not been clear for a long time. Based on the actual monitoring data of the Escherichia coli concentrations and soil samples of Second Songhua riverside source area, the migration of E. coli in saturated porous media under different velocities and different temperatures was studied using saturated soil column transport experiments. Concurrently, the migration characteristics of E. coli in the riverside source area were replicated by mathematical simulation. According to the field monitoring results, the concentration of E. coli decreased in the riverbank infiltration zone, and the removal rate was greater than 96%. The column experimental results showed that the lower the flow velocity was and the higher the temperature was, the greater the removal rate of E. coli was. And the flow velocity was the main factor affecting the removal of E. Coli. The mathematical simulation results showed that under the conditions of the largest hydraulic gradient (20%) and the highest concentration of E. coli (2500 MPN/100 mL) in river water, the safe exploitation distance of groundwater that did not cause a risk of E. coli pollution was more than 7 m away from the river bank. These findings are expected to provide a scientific basis for the design of water intake schemes and the optimization of mining technology.
机译:河流过滤可以有效地减少从地表水渗透到地下水中的致病微生物的数量。地下水渗流速度和温度被认为是影响过程的重要因素,但它们的影响的幅度和机制很长一段时间就没有清楚。基于第二松花河源区的大肠杆菌浓度和土壤样本的实际监测数据,研究了在不同速度下饱和多孔介质中大肠杆菌在不同速度下的迁移和不同温度的迁移。同时,通过数学仿真复制河滨源区中大肠杆菌的迁移特征。根据现场监测结果,河岸渗透区中大肠杆菌的浓度降低,去除率大于96%。柱实验结果表明,流速越低,温度越高,大肠杆菌的去除率越大。流速是影响大肠杆菌去除的主要因素。数学模拟结果表明,在河水中最大液压梯度(20%)和最高浓度的大肠杆菌(2500mPn / 100ml)的条件下,地下水的安全开发距离并没有引起风险大肠杆菌污染距离河岸超过7米。这些调查结果预计将为水进口方案设计和采矿技术的优化提供科学依据。

著录项

  • 来源
    《Environmental Geochemistry and Health》 |2020年第7期|1977-1990|共14页
  • 作者单位

    Jilin Univ Coll Construct Engn Changchun 130021 Jilin Peoples R China|Jilin Univ Minist Educ Key Lab Groundwater Resources & Environm Changchun 130021 Jilin Peoples R China;

    Jilin Univ Coll Construct Engn Changchun 130021 Jilin Peoples R China|Jilin Univ Inst Water Resources & Environm Changchun 130021 Jilin Peoples R China;

    China Nucl Power Engn Co Ltd Beijing 100840 Peoples R China;

    Jilin Univ Coll New Energy & Environm Changchun 130021 Jilin Peoples R China|Jilin Univ Minist Educ Key Lab Groundwater Resources & Environm Changchun 130021 Jilin Peoples R China;

    Jilin Univ Coll New Energy & Environm Changchun 130021 Jilin Peoples R China|Jilin Univ Minist Educ Key Lab Groundwater Resources & Environm Changchun 130021 Jilin Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);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

    Escherichia coli migration; Temperature; Hydraulic gradient; River water infiltration;

    机译:大肠杆菌迁移;温度;液压梯度;河水渗透;

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