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Transport of GenX in Saturated and Unsaturated Porous Media

机译:饱和和不饱和多孔介质中Genx的运输

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摘要

The objective of this research was to investigate the retention and transport behavior of GenX in five natural porous media with similar median grain diameters but different geochemical properties. Surface tensions were measured to characterize surface activity. Miscible-displacement experiments were conducted under saturated conditions to characterize the magnitude of solid-phase adsorption, while unsaturated-flow experiments were conducted to examine the impact of air-water interfacial adsorption on retention and transport. The results from surface-tension measurements showed that the impact of solution composition is greater for the ammonium form of GenX than for the acid form, due to the presence of the NH_4 counterion. The breakthrough curves for the experiments conducted under saturated conditions were asymmetrical, and a solute-transport model employing a two-domain representation of nonlinear, rate-limited sorption provided reasonable simulations of the measured data. The magnitudes of solid-phase adsorption were relatively small, with the highest adsorption associated with the medium containing the greatest amount of metal oxides. The breakthrough curves for the experiments conducted under unsaturated conditions exhibited greater retardation due to the impact of adsorption at the air-water interface. The contributions of air-water interfacial adsorption to GenX retention ranged from ~24% to ~100%. The overall magnitudes of retardation were relatively low, with retardation factors < ~3, indicating that GenX has significant migration potential in soil and the vadose zone. To our knowledge, the results presented herein represent the first reported data for solid-water and air-water interfacial adsorption of GenX by soil. These data should prove useful for assessing the transport and fate behavior of GenX in soil and groundwater.
机译:本研究的目的是研究五种天然多孔介质中Genx的保留和运输行为,中间晶粒直径和地球化学性质不同。测量表面张力以表征表面活性。在饱和条件下进行混溶性偏移实验,以表征固相吸附的大小,而进行不饱和流实验以检查空气 - 水界面吸附对保留和运输的影响。表面张力测量结果表明,由于NH_4抗衡离子的存在,溶液组合物的影响比酸形式更大。在饱和条件下进行的实验的突破性曲线是不对称的,并且采用非线性速率限制吸附的两畴表示的溶质转运模型提供了合理的测量数据模拟。固相吸附的幅度相对较小,具有与含有最多金属氧化物的培养基相关的最高吸附。由于吸附在空气界面在不饱和条件下,在不饱和条件下进行的实验的突破曲线表现出更大的延迟。气水界面吸附对Genx保留的贡献范围为约​​24%至〜100%。延迟的整体幅度相对较低,延迟因子<〜3,表明Genx在土壤和钒瘤区具有显着的迁移电位。据我们所知,本文提出的结果代表了土壤中的第一个报告的固水和空气 - 水界面吸附的数据。这些数据应该证明有助于评估土壤和地下水中Genx的运输和命运行为。

著录项

  • 来源
    《Environmental Science & Technology》 |2020年第19期|11876-11885|共10页
  • 作者单位

    Key Lab of Marine Environmental Science and Ecology Ministry of Education College of Environmental Science and Engineering Ocean University of China Qingdao 266100 P.R. China MOE Key Laboratory of Groundwater Circulation and Environmental Evolution China University of Geosciences (Beijing) Beijing 100083 P.R. China Environmental Science Department University of Arizona Tucson Arizona 85721 United States;

    Key Lab of Marine Environmental Science and Ecology Ministry of Education College of Environmental Science and Engineering Ocean University of China Qingdao 266100 P.R. China;

    Key Lab of Marine Environmental Science and Ecology Ministry of Education College of Environmental Science and Engineering Ocean University of China Qingdao 266100 P.R. China;

    Key Lab of Marine Environmental Science and Ecology Ministry of Education College of Environmental Science and Engineering Ocean University of China Qingdao 266100 P.R. China;

    Environmental Science Department University of Arizona Tucson Arizona 85721 United States;

  • 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
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  • 入库时间 2022-08-18 22:37:02

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