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Effect of a nonwoven geotextile on solute and colloid transport in porous media under both saturated and unsaturated conditions

机译:饱和和不饱和条件下非织造土工布对多孔介质中溶质和胶体传输的影响

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摘要

Geotextiles are thin polymeric materials widely used in geotechnical, environmental and hydraulic applications. They are employed in infiltration basins designed to collect and improve the quality of storm and runoff waters before their infiltration into the surrounding soil. The introduction of geotextiles in the subsoil of infiltration basins may significantly influence the flow and transfer of pollutants present in storm and runoff waters in solute form or associated with colloidal and paniculate phases. The objective of this work was to study the influence of a nonwoven geotextile on conservative solute and colloidal transport through sandy and gravel porous media under both saturated and unsaturated conditions. Solute and colloid transport through columns containing soil amended with a geotextile were characterized by injecting a tracer solution and a suspension of colloidal particles at a constant flow rate under saturated and unsaturated conditions. The flow pattern was described using a MIM model implemented with the HYDRUS 1D code. The results showed that nonwoven geotextiles can increase flow homogeneity. Their effect on flow homogenization depended on soil heterogeneity and the degree of water saturation. Colloidal retention efficiency at column scale was also modified by the presence of geotextiles. By homogenizing flow they increased the filter capacity of the soil, thereby decreasing the pollutant transfer in colloidal form.
机译:土工织物是一种薄的聚合物材料,广泛用于岩土,环境和水力应用中。它们被用于设计成在雨水和径流水渗透到周围土壤之前可以收集并提高水质的渗透盆地。在渗透盆地的底土中引入土工织物可能会显着影响以溶质形式或与胶体和颗粒相相关的雨水和径流水中污染物的流动和转移。这项工作的目的是研究非织造土工布对饱和和不饱和条件下通过砂和砾石多孔介质的保守溶质和胶体传输的影响。通过在饱和和不饱和条件下以恒定流速注入示踪剂溶液和胶体颗粒的悬浮液,可以表征溶质和胶体通过含土工布改良土壤的柱的迁移。使用通过HYDRUS 1D代码实现的MIM模型描述了流模式。结果表明,非织造土工布可以提高流动均匀性。它们对流量均质化的影响取决于土壤异质性和水分饱和度。土工布的存在还改变了柱规模的胶体保留效率。通过使流量均匀化,它们增加了土壤的过滤能力,从而减少了胶体形式的污染物转移。

著录项

  • 来源
    《Geotextiles and Geomembranes》 |2013年第2期|55-65|共11页
  • 作者单位

    Universite de Technologie de Compiegne/Ecole superieure de chimie organique et minerale (UTC/ESCOM), EA 4297 TIMR, Rue Personne de Roberval, Compiegne F-60205, France;

    Universite de Lyon, UMR 5023 Ecologie des Hydrosystemes Naturels et Anthropises, Universite Lyon I, ENTPE,CNRS, 3, rue Maurice Audin, Vaulx-en-Velin F-69518, France;

    PRES LUNAM, French Institute of Science and Technology for Transport, Development and Networks (IFSTTAR), Department of Geotechnics, Water and Risks, Centre de Nantes, Route de Bouaye CS4, Bouguenais F-44344, France;

    PRES LUNAM, French Institute of Science and Technology for Transport, Development and Networks (IFSTTAR), Department of Geotechnics, Water and Risks, Centre de Nantes, Route de Bouaye CS4, Bouguenais F-44344, France;

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

    geotextile; colloid; solute; porous medium heterogeneity; flow homogenization;

    机译:土工布;胶体;溶质多孔介质异质性流动均质化;

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