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晶粒大小对六价铀表面配位动力学和吸附加和性的影响。

Effect of grain size on uranium(VI) surface complexation kinetics and adsorption additivity.

机构信息

Pacific Northwest National Laboratory, Richland, Washington 99354, USA.

出版信息

Environ Sci Technol. 2011 Jul 15;45(14):6025-31. doi: 10.1021/es200920k. Epub 2011 Jun 28.

Abstract

The contribution of variable grain sizes to uranium adsorption/desorption was studied using a sediment from the US DOE Hanford site. The sediment was wet sieved into four size fractions: coarse sand (1-2 mm), medium sand (0.2-1 mm), fine sand (0.053-0.2 mm), and clay/silt fraction (<0.053 mm). For each size fraction and their composite (sediment), batch and flow-cell experiments were performed to determine uranium adsorption isotherms and kinetic uranium adsorption and subsequent desorption. The results showed that uranium adsorption isotherms and adsorption/desorption kinetics were size specific, reflecting the effects of size-specific adsorption site concentration and kinetic rate constants. The larger-size fraction had a larger mass percentage in the sediment but with a smaller adsorption site concentration and generally a slower uranium adsorption/desorption rate. The same equilibrium surface complexation reaction and reaction constant could describe uranium adsorption isotherms for all size fractions and the composite after accounting for the effect of adsorption site concentration. Mass-weighted, linear additivity was observed for both uranium adsorption isotherms and adsorption/desorption kinetics in the composite. One important implication of this study is that grain-size distribution may be used to estimate uranium adsorption site and adsorption/desorption kinetic rates in heterogeneous sediments from a common location.

摘要

使用来自美国能源部汉福德厂址的沉积物研究了不同粒径对铀吸附/解吸的贡献。将沉积物用湿筛分成四个粒级:粗砂(1-2 毫米)、中砂(0.2-1 毫米)、细砂(0.053-0.2 毫米)和粘土/粉砂级(<0.053 毫米)。对于每个粒级及其组合(沉积物),进行了批量和流动池实验,以确定铀吸附等温线和动力学铀吸附以及随后的解吸。结果表明,铀吸附等温线和吸附/解吸动力学是粒径特异的,反映了粒径特异的吸附点位浓度和动力学速率常数的影响。较大粒径的沉积物在沉积物中的质量百分比较大,但吸附点位浓度较小,铀的吸附/解吸速率通常较慢。相同的平衡表面络合反应和反应常数可以描述所有粒级和组合的铀吸附等温线,同时考虑到吸附点位浓度的影响。在复合材料中,铀吸附等温线和吸附/解吸动力学都表现出质量加权线性加和性。这项研究的一个重要意义是,粒径分布可用于从同一地点估算非均相沉积物中的铀吸附点位和吸附/解吸动力学速率。

相似文献

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U(VI) adsorption on aquifer sediments at the Hanford Site.铀(VI)在汉福德场地含水层沉积物上的吸附
J Contam Hydrol. 2007 Aug 15;93(1-4):255-69. doi: 10.1016/j.jconhyd.2007.03.002. Epub 2007 Apr 19.

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