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傅贤雷, 张润, 万勇, 杜延军, 杨玉玲, 毕钰璋. 改性土-膨润土阻隔屏障化学渗透膜效应研究[J]. 岩土工程学报, 2020, 42(S1): 172-176. DOI: 10.11779/CJGE2020S1034
引用本文: 傅贤雷, 张润, 万勇, 杜延军, 杨玉玲, 毕钰璋. 改性土-膨润土阻隔屏障化学渗透膜效应研究[J]. 岩土工程学报, 2020, 42(S1): 172-176. DOI: 10.11779/CJGE2020S1034
FU Xian-lei, ZHANG Run, WAN Yong, DU Yan-jun, YANG Yu-ling, BI Yu-zhang. Chemico-osmotic membrane behaviors of amended soil-bentonite vertical barrier[J]. Chinese Journal of Geotechnical Engineering, 2020, 42(S1): 172-176. DOI: 10.11779/CJGE2020S1034
Citation: FU Xian-lei, ZHANG Run, WAN Yong, DU Yan-jun, YANG Yu-ling, BI Yu-zhang. Chemico-osmotic membrane behaviors of amended soil-bentonite vertical barrier[J]. Chinese Journal of Geotechnical Engineering, 2020, 42(S1): 172-176. DOI: 10.11779/CJGE2020S1034

改性土-膨润土阻隔屏障化学渗透膜效应研究

Chemico-osmotic membrane behaviors of amended soil-bentonite vertical barrier

  • 摘要: 研究了锌污染地下水作用下,六偏磷酸钠(SHMP)改性膨润土/砂阻隔屏障回填料的化学渗透膜效应行为和扩散特性。通过单个试样多阶段的化学渗透试验,以去离子水和不同浓度的硝酸锌溶液作为试验溶液,对SHMP改性膨润土/砂回填料的化学渗透膜效率系数、有效扩散系数及阻滞因子进行了测定。结果表明,回填料的化学渗透膜效率系数随初始硝酸锌溶液浓度的增大而减小,随后下降趋势逐渐趋于稳定。改性膨润土/砂回填料对重金属锌的化学渗透膜效率系数约为未改性材料的2~3倍。随着初始硝酸锌溶液浓度的增加,SHMP改性膨润土/砂回填料的有效扩散系数增大,而阻滞因子则随之减小。

     

    Abstract: A systematic investigation is presented on chemico-osmotic membrane behaviors and diffusive properties of model sand/hexametaphosphate (SHMP)-amended bentonite cutoff-wall backfill (SHMP-SB) for the containment of zinc-impacted groundwater. A multi-stage chemico-osmotic test is conducted to determine the chemico-osmotic efficiency coefficients, effective diffusion coefficients and retardation factors of the backfill using the zinc nitrate (Zn(NO3)2) solution with varied concentrations. The results indicate that the measured chemico-osmotic efficiency coefficients of SHMP-SB gradually decrease and then tend to stabilize with the increasing Zn(NO3)2 concentration. A comparison with the previous studies shows that the measured chemico-osmotic efficiency coefficient of SHMP-SB is about 2-3 times that of the parent soil-bentonite backfill in the Zn(NO3)2 solutions. The effective diffusion coefficient increases with the increasing source concentration of Zn(NO3)2 solution, whereas the retardation factor of zinc decreases with the increasing Zn(NO3)2 concentration.

     

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