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周亚东, 翟鑫东, 杨文庆. 重金属污染淤泥一维大变形电渗固结–离子迁移耦合模型[J]. 岩土工程学报, 2022, 44(10): 1827-1836. DOI: 10.11779/CJGE202210008
引用本文: 周亚东, 翟鑫东, 杨文庆. 重金属污染淤泥一维大变形电渗固结–离子迁移耦合模型[J]. 岩土工程学报, 2022, 44(10): 1827-1836. DOI: 10.11779/CJGE202210008
ZHOU Ya-dong, ZHAI Xin-dong, YANG Wen-qing. One-dimensional coupled model for large-deformation electroosmotic consolidation and heavy metal ion migration of silt[J]. Chinese Journal of Geotechnical Engineering, 2022, 44(10): 1827-1836. DOI: 10.11779/CJGE202210008
Citation: ZHOU Ya-dong, ZHAI Xin-dong, YANG Wen-qing. One-dimensional coupled model for large-deformation electroosmotic consolidation and heavy metal ion migration of silt[J]. Chinese Journal of Geotechnical Engineering, 2022, 44(10): 1827-1836. DOI: 10.11779/CJGE202210008

重金属污染淤泥一维大变形电渗固结–离子迁移耦合模型

One-dimensional coupled model for large-deformation electroosmotic consolidation and heavy metal ion migration of silt

  • 摘要: 电动处理技术在淤泥高效脱水和重金属污染物同步去除方面潜力巨大。基于分段线性差分法,将电渗固结和溶质迁移理论相结合,建立了一维大变形电渗固结-重金属离子迁移耦合模型ECT1。该模型可以模拟电场、渗流场和化学场的耦合作用,可以考虑电动处理过程中土性参数的非线性变化,以及吸附/解吸、中和/电离、沉淀/溶解等多种化学反应。分别采用Alshawabkeh污染土电动修复试验及数值模拟、高含水率重金属污染土电动处理试验,验证分析了ECT1模型的可靠性。通过算例分析,进一步阐述了高含水率污染淤泥电动处理过程中重金属迁移与电渗固结的耦合机理。

     

    Abstract: Dewatering and metal removal of silt can be obtained by applying electrokinetics. A coupled model for one-dimensional electroosmosis consolidation and ion migration, called ECT1, is proposed. It employs the piecewise linear finite difference method to simulate the ion migration and large-strain consolidation of soils under the coupling action of electric field, seepage field and chemical field, and to account for the nonlinear variation of physical and electro-chemical properties of soils, such as adsorption/desorption, neutralization/ionization, and precipitation/dissolution. The model is verified by Alshawabkeh's electrokinetic remediation experimental results for contaminated soil, numerical solutions and treatment tests on high-moisture content heavy metal-contaminated soil electrokinetic. The proposed model is applied to example studies to elucidate the coupling mechanism of heavy metal migration and consolidation in the electrokinetic treatment of high-moisture content contaminated silt.

     

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