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Attenuation of Cr/Pb in bauxite leachates by bentonite–polymer composite geosynthetic clay liners

机译:Bentonite - 聚合物复合地质粘土衬垫滤铝矿渗滤液中Cr / Pb的衰减

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摘要

Three commercially available bentonite–polymer composite geosynthetic clay liners (BPC GCLs) were selected for hydraulic conductivity testing, respectively permeated by two types of bauxite leachates with high alkalinity (pH > 12) and high ionic strength (620.3 mM). The influence of BPC GCLs on the attenuation behavior of Cr/Pb in the bauxite leachates was analyzed. The BPC GCLs with a low hydraulic conductivity ( k < 10 ~(?10) m s ~(?1) ) retard the migration of Cr and Pb and the Cr had a higher mobility than Pb in the BPC GCLs. Scanning electron microscope (SEM) microstructure analysis showed that the migration and attenuation behavior of Cr/Pb mainly depended on the chemical properties of the leachates, polymer content and the microstructure of the polymer. Higher attenuation of heavy metals was obtained with bauxite leachates having higher ionic strength. Sufficient polymer content is needed to ensure BPC GCLs have adequately low hydraulic conductivity to suppress attenuation of heavy metals. The gelatinous structure associated with hydrated linear or crosslinked polymer diminishes when the polymer in a BPC is in contact with bauxite leachates. Compromising the hydrogel structure promotes polymer elution and leaves pore space open, resulting in attenuation of heavy metals.
机译:选择三种市售的膨润土 - 聚合物复合地质合成粘土衬里(BPC GCLS)用于液压导电性试验,分别渗透到具有高碱度(pH> 12)和高离子强度(620.3mm)的两种类型的铝土矿渗透物。分析了BPC GCLS对铝土矿渗滤液中Cr / Pb衰减行为的影响。具有低液压导电性的BPC GCLS(K <10〜(α10)m s〜(α1))延迟了Cr和Pb的迁移,并且Cr在BPC GCLS中具有比Pb更高的迁移率。扫描电子显微镜(SEM)微观结构分析表明,Cr / Pb的迁移和衰减行为主要取决于渗滤液,聚合物含量和聚合物微观结构的化学性质。用具有较高离子强度的铝土矿渗滤液获得重金属的较高衰减。需要足够的聚合物含量以确保BPC GCLS具有足够低的液压导电性以抑制重金属的衰减。当BPC中的聚合物与铝土矿渗滤液接触时,与水合线性或交联聚合物相关的凝胶状结构会降低。妥协水凝胶结构促进聚合物洗脱并留下孔隙空间,导致重金属的衰减。

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