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Influence of chromate adsorption and reduction on transport and retention of biochar colloids in saturated porous media

机译:铬酸盐吸附和降低对饱和多孔介质中Biochar胶体运输和保留的影响

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Biochar (BC) has been proposed as an effective and promising adsorbent for the remediation of contaminated soils. While growing numbers of studies have reported the adsorption and immobilization of Cr(VI) on BC materials, very little is known about the mobility and retention of Cr-sorbed BC (Cr-BC) colloids, which may act as a carrier of the adsorbed Cr species, migrate along the soil profile and pose risk to deep subsurface environments. In this study, wheat straw BC samples prepared through pyrolysis at 450 degrees C and 600 degrees C (BC450 and BC600) were applied in Cr (VI) adsorption, and the resultant Cr-BC450 and Cr-BC600 colloids were further used to examine the effects of Cr (VI) adsorption amount, ionic strength and pyrolysis temperature on Cr-BC transport and retention in saturated porous media. Our results indicated that the reductive adsorption of Cr(VI) resulted in less negative zeta potential and enlarged hydrodynamic diameter of the BC colloids. For BC produced at a specific temperature, the mobility of Cr-BC colloids decreased with increasing Cr(VI) adsorption amount. For BC450 incubated with Cr(VI) (pH 2.0, 20 h), increasing ionic strength (1-5mM NaCl) decreased the colloid mobility, and a transition from blocking to ripening occurred. In comparison to BC600, BC450 not only possessed higher Cr(VI) adsorption capacity, but also demonstrated higher mobility after Cr(VI) adsorption and reduction. The Derjaguin-Landau-Verwey-Overbeek theory and the two-site kinetic retention model were utilized to interpret the transport behaviors. Our findings suggested that the mobility of BC colloid was retarded after Cr(VI) adsorption and reduction, which could provide lasting benefits for Cr(VI) stabilization. However, the transport of Cr-BC cannot be neglected and should be considered during the application of BC in remediation of contaminated soil. This study for the first time revealed the importance of reductive adsorption in affecting the mobility of BC colloids. The transport of Cr species that associated with BC carriers should be considered during remediation of Cr(VI)-contaminated sites.
机译:BioChar(BC)已被提出为治疗污染土壤的有效和有前途的吸附剂。虽然越来越多的研究已经报道了BC材料对Cr(VI)的吸附和固定,但对于Cr-Surbed BC(Cr-BC)胶体的迁移率和保留,甚少很少,这可能用作吸附的载体CR物种,沿土壤轮廓迁移并对深度地下环境构成风险。在该研究中,将通过在450℃和600℃(BC450和BC600)的热解制备的小麦秸秆BC样品在Cr(VI)吸附中,并进一步使用得到的Cr-BC450和Cr-BC600胶体来检查Cr(vI)吸附量,离子强度和热解温对饱和多孔介质Cr-BC传输和保留的影响。我们的结果表明,Cr(VI)的还原吸附导致BC胶体的Zeta电位较少和扩大的流体动力直径。对于在特定温度下产生的BC,Cr-BC胶体的迁移率随着Cr(VI)吸附量的增加而降低。对于用Cr(VI)(pH 2.0,20h)孵育的BC450,增加离子强度(1-5mm NaCl)降低胶体迁移率,并且发生从封闭到成熟的转变。与BC600相比,BC450不仅具有较高的Cr(VI)吸附容量,而且在Cr(VI)吸附和还原后也表现出更高的迁移率。 Derjaguin-Landau-Verwey-verwey-ovebeek理论和双地动力学保留模型被利用来解释运输行为。我们的研究结果表明,在Cr(VI)吸附和还原后,BC胶体的迁移率延迟,这可以为Cr(VI)稳定提供持久的益处。然而,CR-BC的运输不能被忽略,并且应该在BC在修复受污染的土壤中进行考虑。本研究首次揭示了减少吸附在影响BC胶体的流动性时的重要性。应在Cr(VI)含税点的修复期间考虑与BC载体相关的CR种类的运输。

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