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针铁矿包覆砂柱中铀(VI)与磷酸盐的反应性迁移:一项实验研究。

Reactive transport of uranium(VI) and phosphate in a goethite-coated sand column: an experimental study.

作者信息

Cheng Tao, Barnett Mark O, Roden Eric E, Zhuang Jinling

机构信息

Department of Civil Engineering, 238 Harbert Engineering Center, Auburn University, Auburn, AL 36849, United States.

出版信息

Chemosphere. 2007 Jul;68(7):1218-23. doi: 10.1016/j.chemosphere.2007.01.063. Epub 2007 Mar 8.

Abstract

The migration of uranium(VI) in subsurface environments is strongly influenced by its adsorption/desorption reactions at the solid/solution interface. Phosphate is often present in subsurface systems and was shown to significantly affect U(VI) adsorption in previous batch experiments. In this study, column experiments were conducted to investigate the effects of phosphate on U(VI) adsorption and transport under flow conditions. The adsorption of U(VI) and phosphate was very low on pure quartz sand with negligible effects on U(VI) and phosphate transport. However, U(VI) and phosphate transport was retarded in a column packed with goethite-coated sand. The presence of phosphate, either as a co-solute with U(VI) or pre-adsorbed, greatly increased U(VI) adsorption and retardation. U(VI) and phosphate adsorption in our column experiments were rate-limited, and the adsorption of U(VI) and phosphate was not reversible, with kinetic limitations more pronounced for desorption than for adsorption. This study demonstrated the importance of phosphate in controlling U(VI) mobility in subsurface environments and helped illustrate some phenomena potentially applicable to U(VI) adsorption and transport in natural systems, especially where U(VI) adsorption is rate-limited.

摘要

铀(VI)在地下环境中的迁移受到其在固/液界面吸附/解吸反应的强烈影响。磷酸盐在地下系统中经常存在,并且在之前的批次实验中已表明其会显著影响铀(VI)的吸附。在本研究中,进行了柱实验以研究磷酸盐在流动条件下对铀(VI)吸附和迁移的影响。在纯石英砂上,铀(VI)和磷酸盐的吸附非常低,对铀(VI)和磷酸盐的迁移影响可忽略不计。然而,在填充有针铁矿包覆砂的柱中,铀(VI)和磷酸盐的迁移受到阻滞。磷酸盐的存在,无论是作为与铀(VI)的共溶质还是预先吸附的,都极大地增加了铀(VI)的吸附和阻滞作用。在我们的柱实验中,铀(VI)和磷酸盐的吸附受速率限制,并且铀(VI)和磷酸盐的吸附是不可逆的,解吸的动力学限制比吸附更为明显。本研究证明了磷酸盐在控制地下环境中铀(VI)迁移方面的重要性,并有助于阐明一些可能适用于天然系统中铀(VI)吸附和迁移的现象,特别是在铀(VI)吸附受速率限制的情况下。

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