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CMC 处理钠基激活钙膨润土的指数特性、水力传导率和污染物兼容性。

Index Properties, Hydraulic Conductivity and Contaminant-Compatibility of CMC-Treated Sodium Activated Calcium Bentonite.

机构信息

School of Materials Science and Engineering, Southeast University, Nanjing 210096, China.

Jiangsu Key Laboratory of Urban Underground Engineering & Environmental Safety, Institute of Geotechnical Engineering, Southeast University, Nanjing 210096, China.

出版信息

Int J Environ Res Public Health. 2020 Mar 13;17(6):1863. doi: 10.3390/ijerph17061863.

Abstract

A typical sodium activated calcium bentonite (SACaB) was treated with carboxymethyl cellulose (CMC) polymer, called CMC-treated SACaB (CMC-SACaB), and it was investigated for its hydraulic conductivity and enhanced chemical compatibility. Index property and hydraulic conductivity tests were conducted on CMC-SACaB and SACaB with deionized water (DIW), heavy metals-laden water, and actual landfill leachate. Lead-zinc mixed (Pb-Zn) solution and hexavalent chromium (Cr(VI)) solution were selected as target heavy metals-laden water, and calcium (Ca) solution was tested for comparison purposes. The hydraulic conductivity (kMFL) was determined via the modified fluid loss (MFL) test. Liquid limit and swell index in DIW, heavy metal-laden water, and Ca solution increased with increasing CMC content. CMC treatment effectively decreased the kMFL of SACaB when exposed to Pb-Zn solutions with a metal concentration of 1 to 20 mmol/L and landfill leachate. An insignificant change in kMFL of CMC-SACaB occurred with exposure to Pb-Zn solutions with metal concentrations of 1 to 10 mmol/L, Cr(VI) and Ca solutions with metal concentration of 1 to 20 mmol/L, and landfill leachate. A slight increase in kMFL of CMC-SACaB was observed when Pb-Zn concentration increased to 20 mmol/L, and such an increment was more noticeable when the CMC content was lower than 10%. In the DIW, the measured kMFL values of CMC-SACaB and SACaB with a given range of void ratio were consistent with those obtained from the flexible-wall permeameter test.

摘要

一种典型的钠激活钙膨润土(SACaB)用羧甲基纤维素(CMC)聚合物进行了处理,称为 CMC 处理的 SACaB(CMC-SACaB),并对其水力传导率和增强的化学相容性进行了研究。在去离子水(DIW)、重金属污染水和实际垃圾渗滤液中对 CMC-SACaB 和 SACaB 进行了指数特性和水力传导率测试。选择铅锌混合(Pb-Zn)溶液和六价铬(Cr(VI))溶液作为目标重金属污染水,并用钙(Ca)溶液进行了测试。水力传导率(kMFL)通过改良的滤失(MFL)测试来确定。在 DIW、重金属污染水和 Ca 溶液中,CMC 含量的增加导致液限和膨胀指数增加。当暴露于浓度为 1 至 20mmol/L 的 Pb-Zn 溶液和垃圾渗滤液时,CMC 处理有效地降低了 SACaB 的 kMFL。当暴露于浓度为 1 至 10mmol/L 的 Pb-Zn 溶液、Cr(VI)和 Ca 溶液(浓度为 1 至 20mmol/L)以及垃圾渗滤液时,CMC-SACaB 的 kMFL 没有明显变化。当 Pb-Zn 浓度增加到 20mmol/L 时,CMC-SACaB 的 kMFL 略有增加,而当 CMC 含量低于 10%时,这种增加更为明显。在 DIW 中,在所给孔隙比范围内,CMC-SACaB 和 SACaB 的实测 kMFL 值与柔性壁渗透计测试结果一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68f2/7143218/e6e3ef286c17/ijerph-17-01863-g001.jpg

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