首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >SHMP-Amended Ca-Bentonite/Sand Backfill Barrier for Containment of Lead Contamination in Groundwater
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SHMP-Amended Ca-Bentonite/Sand Backfill Barrier for Containment of Lead Contamination in Groundwater

机译:SHMP修订的钙膨润土/回填砂屏障用于控制地下水中的铅污染

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摘要

This study investigated the feasibility of using sodium hexametaphosphate (SHMP)- amended calcium (Ca) bentonite in backfills for slurry trench cutoff walls for the containment of lead (Pb) contamination in groundwater. Backfills composed of 80 wt% sand and 20 wt% either Ca-bentonite or SHMP-amended Ca-bentonite were tested for hydraulic conductivity and sorption properties by conducting laboratory flexible-wall hydraulic conductivity tests and batch isothermal sorption experiments, respectively. The results showed that the SHMP amendment causes a one order of magnitude decrease in hydraulic conductivity of the backfill using tap water (1.9 to 3.0 × 10 m/s). Testing using 1000 mg/L Pb solution resulted insignificant variation in hydraulic conductivity of the amended backfill. Moreover, SHMP-amendment induced favorable conditions for increased sorption capacity of the backfill, with 1.5 times higher retardation factor relative to the unamended backfill. The Pb transport modeling through an hypothetical 1-m-thick slurry wall composed of amended backfill revealed 12 to 24 times of longer breakthrough time for Pb migration as compared to results obtained for the same thickness slurry wall with unamended backfill, which is attributed to decrease in seepage velocity combined with increase in retardation factor of the backfill with SHMP amendment. Overall, SHMP is shown to be a promising Ca-bentontie modifier for use in backfill for slurry trench cutoff wall for effective containment of Pb-contaminated groundwater.
机译:这项研究调查了在回填土中使用六偏磷酸钠(SHMP)修正的钙(Ca)膨润土作为泥浆沟防渗墙来控制地下水中铅(Pb)污染的可行性。通过分别进行实验室柔性壁水力传导率测试和间歇等温吸附实验,分别测试了由80%(重量)的沙子和20%(重量)的钙膨润土或SHMP改性钙膨润土组成的回填土的水力传导率和吸附性能。结果表明,使用自来水(1.9至3.0×10 m / s)的SHMP修正会导致回填的水力传导率下降一个数量级。使用1000 mg / L铅溶液的测试导致修正后的回填的水力传导率无明显变化。此外,SHMP改良剂为增加回填物的吸附能力提供了有利条件,相对于未修正的回填物,阻滞系数高1.5倍。通过假想的厚度为1米的由修正回填组成的泥浆壁的Pb传输模型显示,与相同厚度的未经修正回填的泥浆壁获得的结果相比,Pb迁移的穿透时间要长12至24倍,这归因于减少SHMP修正方法结合了渗流速度和回填阻滞系数的增加。总体而言,SHMP被证明是一种有前途的Ca-矿物质改性剂,可用于泥浆沟渠防渗墙的回填中,以有效地抑制Pb污染的地下水。

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