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磷酸盐对六价铀吸附到针铁矿包覆砂上的影响。

Effects of phosphate on uranium(VI) adsorption to goethite-coated sand.

作者信息

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

机构信息

Department of Civil Engineering, Auburn University, Auburn, Alabama 36849, USA.

出版信息

Environ Sci Technol. 2004 Nov 15;38(22):6059-65. doi: 10.1021/es040388o.

Abstract

U(VI)-phosphate interactions are important in governing the subsurface mobility of U(VI) in both natural and contaminated environments. We studied U(VI) adsorption on goethite-coated sand (to mimic natural Fe-coated subsurface materials) as a function of pH in systems closed to the atmosphere, in both the presence and the absence of phosphate. Our results indicate that phosphate strongly affects U(VI) adsorption. The effect of phosphate on U(VI) adsorption was dependent on solution pH. At low pH, the adsorption of U(VI) increased in the presence of phosphate, and higher phosphate concentration caused a larger extent of increase in U(VI) adsorption. Phosphate was strongly bound by the goethite surface in the low pH range, and the increased adsorption of U(VI) at low pH was attributed to the formation of ternary surface complexes involving both U(VI) and phosphate. In the high pH range, the adsorption of U(VI) decreased in the presence of phosphate at low total Fe concentration, and higher phosphate concentration caused a larger extent of decrease in U(VI) adsorption. This decrease in U(VI) adsorption was attributed to the formation of soluble uranium-phosphate complexes. A surface complexation model (SCM) was proposed to describe the effect of phosphate on U(VI) adsorption to goethite. This proposed model was based on previous models that predict U(VI) adsorption to iron oxides in the absence of phosphate and previous models developed to predict phosphate adsorption on goethite. A postulated ternary surface complex of the form of (>FePO4UO2) was included in our model to account for the interactions between U(VI) and phosphate. The model we established can successfully predict U(VI) adsorption in the presence of phosphate under a range of conditions (i.e., pH, total phosphate concentration, and total Fe concentration).

摘要

在自然环境和受污染环境中,铀(VI)与磷酸盐的相互作用对于控制地下水中铀(VI)的迁移至关重要。我们研究了在封闭大气系统中,在有磷酸盐和无磷酸盐存在的情况下,六价铀在针铁矿包覆砂(模拟天然铁包覆的地下材料)上的吸附随pH值的变化。我们的结果表明,磷酸盐对六价铀的吸附有强烈影响。磷酸盐对六价铀吸附的影响取决于溶液的pH值。在低pH值下,磷酸盐存在时六价铀的吸附增加,且磷酸盐浓度越高,六价铀吸附增加的程度越大。在低pH值范围内,磷酸盐与针铁矿表面强烈结合,低pH值下六价铀吸附增加归因于涉及六价铀和磷酸盐的三元表面络合物的形成。在高pH值范围内,在总铁浓度较低时,磷酸盐存在会使六价铀的吸附降低,且磷酸盐浓度越高,六价铀吸附降低的程度越大。六价铀吸附的这种降低归因于可溶性铀 - 磷酸盐络合物的形成。提出了一个表面络合模型(SCM)来描述磷酸盐对六价铀吸附到针铁矿上的影响。这个提出的模型基于先前预测无磷酸盐时六价铀吸附到铁氧化物上的模型以及先前开发的预测磷酸盐吸附到针铁矿上的模型。我们的模型中包含了一个假定的形式为(>FePO4UO2)的三元表面络合物,以解释六价铀与磷酸盐之间的相互作用。我们建立的模型能够成功预测在一系列条件(即pH值、总磷酸盐浓度和总铁浓度)下有磷酸盐存在时六价铀的吸附情况。

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