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首页> 外文期刊>Clays and clay minerals >DIFFUSION OF CALCIUM CHLORIDE IN A MODIFIED BENTONITE: IMPACT ON OSMOTIC EFFICIENCY AND HYDRAULIC CONDUCTIVITY
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DIFFUSION OF CALCIUM CHLORIDE IN A MODIFIED BENTONITE: IMPACT ON OSMOTIC EFFICIENCY AND HYDRAULIC CONDUCTIVITY

机译:氯化钙在改性膨润土中的扩散:对渗透效率和液压电导率的影响

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Chemically modified bentonites are being developed with the aim of preserving low hydraulic conductivity in the presence of potentially aggressive permeants in pollutant-containment applications. 'Multiswellable' bentonite (MSB) has been obtained by treating standard sodium bentonite with propylene carbonate. Research on the engineering properties of MSB has focused mainly on permeability and chemical compatibility. Solute diffusion and membrane behavior in MSB have not yet been investigated. A combined chemico-osmotic/diffusion test was performed on a MSB specimen using a 5 mM CaCl_2 solution. Permeability with distilled water and with the 5 mM CaCl_2 solution was measured prior to and after the chemico-osmotic/diffusion tests. The material exhibited time-dependent membrane behavior with a peak osmotic efficiency value (ω) of 0.172 that gradually shifted to zero upon breakthrough of calcium ions. Effective diffusion coefficients of calcium and chloride ions were in the range commonly described for untreated bentonite at similar porosities. After the chemico-osmotic/diffusion stage and permeation with 5 mM CaCl_2, the hydraulic conductivity of MSB increased from 1.1 × 10~(-11) m/s to 7.0 × 10~(-11) m/s. The MSB was apparently converted into a calcium-exchanged bentonite at the end of the test. Prehydration and subsequent permeation might have contributed to elution of the organic additive from the clay. Further investigation is recommended to clarify the effect of prehydration on the hydraulic performance of MSB in the presence of potentially aggressive permeants.
机译:正在开发化学改性的膨润土,其目的是在污染物封闭应用中在存在潜在侵蚀性渗透物的情况下保持较低的水力传导率。 “多溶胀”膨润土(MSB)是通过用碳酸亚丙酯处理标准钠膨润土获得的。对MSB的工程性能的研究主要集中在渗透性和化学相容性上。尚未研究MSB中的溶质扩散和膜行为。使用5 mM CaCl_2溶液对MSB标本进行了化学渗透/扩散联合测试。在化学渗透/扩散测试之前和之后,测量蒸馏水和5 mM CaCl_2溶液的渗透性。该材料表现出随时间变化的膜行为,其渗透效率峰值(ω)为0.172,在渗透钙离子后逐渐转变为零。钙和氯离子的有效扩散系数在通常描述的相似孔隙率下未经处理的膨润土的范围内。经过化学渗透/扩散阶段并用5 mM CaCl_2渗透后,MSB的水力传导率从1.1×10〜(-11)m / s增加到7.0×10〜(-11)m / s。在测试结束时,MSB显然转化为钙交换的膨润土。预水合和随后的渗透可能有助于从粘土中洗脱有机添加剂。建议进一步研究以阐明在潜在的腐蚀性渗透剂存在下,预水合对MSB液压性能的影响。

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