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Transport of CMC-Stabilized nZVI in Saturated Sand Column: the Effect of Particle Concentration and Soil Grain Size

机译:CMC稳定的nZVI在饱和砂柱中的运输:颗粒浓度和土壤粒径的影响

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摘要

A considerable number of studies have been conducted to investigate the effect of physical and chemical variables on the transport of nanoscale zerovalent iron (nZVI) in granular media. However, the role of soil grain size as a crucial factor in nanoparticle mobility is less understood. The present research work sought to examine the simultaneous effects of soil grain size and particle concentration on the transport of nZVI coated with carboxymethyl cellulose (CMC-nZVI), using saturated sand packed column experiments. To this end, a total of 12 tests were conducted by combining four different particle concentrations (C = 10, 200, 3000, 10,000 mg/l) and three grain sizes (dc = 0.297-0.5 mm, 0.5-1 mm, 1-2 mm). The effluent nZVI concentration and water pressure drop along the column were measured. The results showed that during the injection time, decreasing the grain size and increasing the particle concentration reduces the mobility of CMC-nZVI due to ripening phenomena, while during the flushing time (introducing deionized water), such changes in grain size and particle concentration increase the mobility of CMC-nZVI due to a release from the secondary energy minimum well (in the DLVO theory).
机译:已经进行了大量研究,以研究物理和化学变量对颗粒介质中纳米级零价铁(nZVI)传输的影响。然而,人们对土壤粒径作为纳米颗粒迁移性的关键因素的作用知之甚少。本研究工作试图通过饱和砂填充柱实验研究土壤粒度和颗粒浓度对涂有羧甲基纤维素(CMC-nZVI)的nZVI的运输的同时影响。为此,通过将四种不同的颗粒浓度(C = 10、200、3000、10,000 mg / l)和三种粒度(dc = 0.297-0.5 mm,0.5-1 mm,1- 2毫米)。测量了沿塔流出的nZVI浓度和水压降。结果表明,在注入时间内,由于熟化现象,减小晶粒尺寸和增加颗粒浓度会降低CMC-nZVI的迁移率,而在冲洗时间(引入去离子水)期间,此类晶粒尺寸和颗粒浓度的变化会增加由于二次能量最小阱的释放而导致CMC-nZVI的迁移率(根据DLVO理论)。

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