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首页> 外文期刊>Environmental Science and Pollution Research >Influence of nanoscale zero-valent iron on hydraulic conductivity of a residual clayey soil and modeling of the filtration parameter
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Influence of nanoscale zero-valent iron on hydraulic conductivity of a residual clayey soil and modeling of the filtration parameter

机译:纳米级零价铁对残留粘土土壤水力传导性的影响及过滤参数的建模

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摘要

Contaminated clay soils pose problems to public health and the environment in several parts of the world. Very little is known about the transport of decontaminating agents used in remediation process under natural, undisturbed conditions. Nanomaterials, especially those made of nanoscale zero-valent iron (nZVI), have been most frequently used for remediation of contaminated soils because of their higher reactivity, lower toxicity, and lower cost than other metallic nanoparticles. Even though the nanoparticle size is smaller than soil pores, clogging may occur over time due to agglomeration of nanoparticles, which could reduce the soil’s natural permeability and thereby cause filtration of the nanoparticles. The use of a stabilizer in the nanoparticles can modify the reactivity but improves their mobility in the soil system. Thus, the objective of this work was to evaluate the hydraulic conductivity of residual clay soil under the injection of different types and concentrations of nZVI with and without surfactant stabilizer (NANOFER 25, NANOFER 25S, and NANOFER STAR in powder at 1?g/L, 4?g/L, 7?g/L, and 10?g/L concentrations), and to model transport of these nZVI suspensions in this soil system. Undisturbed cylindrical soil samples collected from the field were used, and hydraulic conductivity tests were performed using a column apparatus. The results showed that the presence of the stabilizer in the nZVI influenced the nanoparticles’ mobility. The nZVI concentrations of 1 and 4?g/L did not affect the natural soil hydraulic conductivity. However, higher concentrations reduced the hydraulic conductivity value, which retarded the migration of nZVI as reflected in the value of filtration parameter.
机译:污染的粘土土壤对世界几个地区的公共卫生和环境构成问题。关于在天然未受干扰的条件下,在修复过程中使用的净化剂的运输很少。纳米材料,特别是由纳米级零价铁(NZVI)制成的材料,最常用于修复受污染的土壤,因为它们的反应性,较低的毒性和比其他金属纳米颗粒更低。即使纳米颗粒尺寸小于土孔,由于纳米颗粒的附聚,可能会随着纳米颗粒而发生堵塞,这可以降低土壤的自然渗透性,从而导致纳米颗粒过滤。在纳米颗粒中使用稳定剂可以改变反应性,但改善了土壤系统中的流动性。因此,这项工作的目的是评估在用表面活性剂稳定剂(纳米烯25,纳米烯25s和粉末中的NZVI的不同类型和浓度NZVI浓度下的残留粘土土壤的液压导电率在1Ω· ,4?g / l,7?g / l和10?g / l浓度),并在该土壤系统中模拟这些NZVI悬浮液的转运。使用从场上收集的未受干扰的圆柱形土壤样品,并且使用柱装置进行液压导电性试验。结果表明,NZVI中稳定剂的存在影响了纳米颗粒的迁移率。 NZVI浓度为1和4?G / L不影响天然土壤液压导电性。然而,较高的浓度降低了液压导电性值,其延迟了NZVI的迁移,如在过滤参数的值中反映的。

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