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Effect of wet-and-dry ageing in seawater on the swelling properties and hydraulic conductivity of two amended bentonites

机译:海水干湿老化对两种膨润土的溶胀性能和水导率的影响

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摘要

Amended bentonites have been proposed with the primary purpose of improving their chemical compatibility relative to conventional bentonite. As these materials are relatively new, their durability and long-term performance need to be evaluated. Wet-dry conditions may occur in many applications where bentonite liners are in use. In this study, two amended materials, the MultiSwellable bentonite and a DPH (Dense Prehydrated) GCL were subjected to simulated wet-dry ageing. Distilled water (DW) and natural seawater (NSW) were used as permeant liquids. After five wet-dry cycles, the hydraulic conductivity of both materials increased by two to three orders of magnitude. Unhealed desiccation cracks were identified as responsible for the increase in permeability. Conversely, wet-dry ageing in DW did not impact significantly the permeability of the DPH GCL. For both materials, post-test swell index and XRD diffraction indicated a loss of the chemical amendment, likely solubilised and/or eluted during the wet phases. The results point out that further investigation is necessary to fully address the permanence of swelling and permeability performances of these amended clays after long-term field service. Adequate measures are recommended to prevent or limit desiccation damage for use in applications where aggressive inorganic permeant liquids (e.g., NSW) are present. (C) 2016 Elsevier B.V. All rights reserved.
机译:已经提出了改性的膨润土,其主要目的是相对于常规的膨润土改善其化学相容性。由于这些材料相对较新,因此需要评估其耐用性和长期性能。在使用膨润土衬板的许多应用中,可能会发生干湿状况。在这项研究中,对两种改良材料(MultiSwellable膨润土和DPH(密实预水合)GCL)进行了模拟的干湿老化。蒸馏水(DW)和天然海水(NSW)用作渗透液。经过五次干湿循环后,两种材料的水力传导率均增加了两个到三个数量级。确定未愈合的干燥裂纹是导致渗透率增加的原因。相反,DW中的干法老化不会显着影响DPH GCL的渗透性。对于这两种材料,测试后的溶胀指数和XRD衍射均表明失去了化学修饰剂,很可能在湿相中被溶解和/或洗脱。结果指出,在长期现场使用后,有必要进行进一步研究以充分解决这些改性粘土的膨胀和渗透性能的持久性。建议采取足够的措施来防止或限制干燥破坏,以用于存在腐蚀性无机渗透性液体(例如NSW)的应用中。 (C)2016 Elsevier B.V.保留所有权利。

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