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Numerical Evaluation of Vertical Cutoff Walls Comprising Zeolite-Amended Backfills for Enhanced Metals Containment

机译:垂直防渗墙包含沸石改良回填物增强金属密闭性的数值评估

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The potential for enhanced containment of two metals, potassium (K) and zinc (Zn), by soil-bentonite (SB) vertical cutoff walls comprising zeolite-amended backfills was evaluated on the basis of numerical transport simulations and previously measured adsorption data that exhibited nonlinear behavior over the range of concentrations of interest. The results indicate that the containment duration as reflected by the barrier flux breakthrough time increased for K with decreasing source concentration (C_o), increasing content of zeolite amendment, and increasing adsorption capacity of the backfill. The results for Zn are similar to those for K except at lower C_o (i.e., 100 and 1,000 mg/L), where better performance occurred with the unamended backfill relative to that for the zeolite-amended backfills. This ostensibly counterintuitive result for Zn was attributed to the geochemical conditions existing in the adsorption tests, whereby adsorption of Zn was suppressed due to unfavorable competition with elevated concentrations of redissolved metals, primarily Na~+, resulting from the zeolite amendment. Overall, the results of the study indicate that containment of metals may be enhanced from years to a century or more with zeolite-amended SB cutoff walls, but the magnitude of any enhanced containment is dependent on both the adsorption capacity and the adsorption behavior of the specific metal with the specific backfill.
机译:在数值迁移模拟和先前测得的吸附数据的基础上,评估了含有沸石改良回填物的土壤膨润土(SB)垂直隔断墙增强了对两种金属钾(K)和锌(Zn)的控制的潜力。在感兴趣的浓度范围内的非线性行为。结果表明,随着势垒通量突破时间的增加,K的持续时间随着源浓度(C_o)的降低,沸石改性剂含量的增加以及回填物的吸附能力的增加而增加。 Zn的结果与K的结果相似,只是在较低的C_o(即100和1,000 mg / L)下,未改性的回填物相对于沸石改性的回填物表现出更好的性能。 Zn的这种表面上违反直觉的结果归因于吸附测试中存在的地球化学条件,从而由于沸石改性导致与较高浓度的再溶解金属(主要是Na〜+)的不利竞争,抑制了Zn的吸附。总体而言,研究结果表明,用沸石改良的SB截留墙可以将金属的包容性提高数年至一个世纪甚至更长,但任何提高的包容性都取决于其吸附能力和吸附行为。具有特定回填的特定金属。

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