首页> 外文期刊>Journal of Contaminant Hydrology >Co-transport of chromium(Ⅵ) and bentonite colloidal particles in water-saturated porous media: Effect of colloid concentration, sand gradation, and flow velocity
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Co-transport of chromium(Ⅵ) and bentonite colloidal particles in water-saturated porous media: Effect of colloid concentration, sand gradation, and flow velocity

机译:水饱和多孔介质中铬(Ⅵ)和膨润土胶体颗粒的共传送:胶体浓度,砂灰度和流速的影响

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摘要

The transport of pollutants inside the groundwater system is profoundly affected by absorption and transmission via colloid or soil particles. Therefore, it is essential to investigate the significant pollutants (Such as hexavalent chromium (Cr(VI))) transfer in the presence of colloid particles that can facilitate or retain this transfer. For this purpose, an experiment is carried out in a saturated porous media column to study the bentonite concentration, flow velocity and sand grain size effects on co-transport of Cr(VI) with bentonite. The results of this study demonstrated that the colloid particles facilitate the transfer of Cr(VI) by 30% in 200 mg/l bentonite colloids concentration. The amount of transmitted Cr(VI) is decreased by increasing the bentonite colloids concentration from 200 mg/l to 300 mg/l. As the flow velocity increased from 2 cm/min to 3.3 cm/min, the amount of transferred Cr(VI) increased by 7%. The results show that with reducing the sand grain size, the amount of transmitted bentonite and Cr(VI) is reduced that this effect is more sensible in bentonite transport. As a result, it can be noted that the bentonite colloidal particles according to its concentration and experimental conditions, may facilitate or retain the Cr(VI) transport and sand gradation has a significant impact on colloid and pollutant transmission.
机译:通过胶体或土壤颗粒,地下水系统内的污染物的运输深受吸收和透射的深刻影响。因此,必须研究在可以促进或保留该转移的胶体颗粒存在下转移的显着污染物(例如六价铬(Cr(vi)))。为此目的,在饱和多孔介质柱中进行实验,以研究膨润土浓度,流速和砂粒尺寸对膨润土的Cr(VI)的共传输。该研究的结果表明,胶体颗粒促进Cr(VI)的转移30%在200mg / L膨润土胶体浓度中。通过将膨润土胶体浓度从200mg / L至300mg / L增加,通过增加透射的Cr(VI)的量。随着流速从2cm / min增加至3.3cm / min,转移的Cr(VI)的量增加了7%。结果表明,随着砂粒尺寸的降低,传播的膨润土和Cr(VI)的量减少了这种效果在膨润土转运中更明智。结果,可以注意到,膨润土胶体颗粒根据其浓度和实验条件,可以促进或保留Cr(VI)的运输,砂灰度对胶体和污染物传递产生显着影响。

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