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首页> 外文期刊>Waste Management >Long term chemo-hydro-mechanical behavior of compacted soil bentonite polymer complex submitted to synthetic leachate
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Long term chemo-hydro-mechanical behavior of compacted soil bentonite polymer complex submitted to synthetic leachate

机译:压实土膨润土聚合物复合物在合成渗滤液中的长期化学-水-力学行为

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摘要

An experimental program is carried out to investigate the long term hydro-mechanical behavior correlated with chemical one of compacted soils with low concentration of Ca-bentonite and Ca-bentonite polymer mixture. The effect of prehydration on the hydraulic performance is compared to the polymer adding effect. All specimens are submitted to synthetic leachate (LS) under different permeation conditions. Several issues are studied: mechanical stability, hydraulic performance, chemical exchange of cations validated with microstructure observations. Scanning Electron Microscope (SEM) observations demonstrate two distinct behaviors: dispersive for Bentonite (B) and B with Polymer P1 (BP1) and flocculated for B with Polymer P2 (BP2). Direct shear tests show that bentonite adding increases the Soil (S) cohesion and decreases the friction angle. Polymer adding behaves similarly by maintaining the soil cohesion and increasing the friction angle. Hydraulic conductivity of prehydrated soil bentonite (SB) and direct permeation of polymer added soil bentonite are studied (SBP1 and SBP2). Hydraulic test duration are in range of 45 days to 556 days long. Prehydration allows to delay the aggressive effect of the LS in short term but seems to increase its negative effect on the hydraulic conductivity value in long term exposure. SB and SBP1 behave similarly and seem to act in the long term as a granular filler effect. SBP2 presents positive results comparing to the other mixtures: it maintains the hydraulic conductivity and the chemical resistance. Chemical analysis confirms that all specimens are subjected to Na~+ dissolution and Ca~(2+) retention which are more pronounced for prehydrated specimen. The short term effect of prehydration and the positive effect of SBP2 are also confirmed.
机译:进行了一个实验程序,以研究与低浓度的钙膨润土和钙膨润土聚合物混合物的压实土壤化学性质有关的长期水力学行为。将预水合对水力性能的影响与聚合物的添加效果进行了比较。所有样品均在不同的渗透条件下进入合成渗滤液(LS)。研究了几个问题:机械稳定性,水力性能,阳离子的化学交换,并通过微观结构观察进行了验证。扫描电子显微镜(SEM)的观察结果表明了两种不同的行为:膨润土(B)和B与聚合物P1(BP1)的分散性和B对聚合物P2(BP2)的絮凝。直接剪切试验表明,添加膨润土可增加土壤(S)的内聚力并减小摩擦角。通过保持土壤内聚力和增加摩擦角,添加聚合物的行为类似。研究了预水合土壤膨润土(SB)的水力传导率和聚合物添加的土壤膨润土的直接渗透(SBP1和SBP2)。液压测试持续时间为45天至556天。预水合可在短期内延迟LS的侵蚀作用,但在长期暴露下似乎会增加其对水力传导率值的负面影响。 SB和SBP1的行为相似,并且从长远来看似乎起到颗粒状填充剂的作用。与其他混合物相比,SBP2呈现出积极的结果:它保持了水力传导性和耐化学性。化学分析证实所有样品都经历了Na〜+溶解和Ca〜(2+)保留,这对于预水合样品而言更为明显。还证实了预水合的短期作用和SBP2的积极作用。

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