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Effects of Solid-to-Solution Ratio on Uranium(VI)Adsorption and Its Implications

机译:固溶比对铀(VI)吸附的影响及其意义

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摘要

U(VI)adsorption onto goethite-coated sand was studied in batch experiments at a solid-to-solution ratio (SSR)ranging from 33.3 to 333 g/L Batch kinetic experiments revealed that the presence of 10~4 M phosphate increased both the initial rate and ultimate extent of U(VI)adsorption compared with phosphate-free systems.Our experimental U(VI)adsorption isotherms were independent of SSR in phosphate-free systems.However,the LJ(VI)adsorption isotherm became dependent on SSR in phosphate-containing systems (with a lower SSR resulting in stronger U(VI)adsorption).A surface complexation model (SCM)was used to conceptualize the interactions in systems containing U(VI),phosphate,and goethite contributing to this SSR effect.The SCM accounted for the effects of SSR on U(VI)adsorption reasonably well.This study implies that the extrapolation of batch-measured adsorption parameters of U(VI)(and potentially other radionuclides and metal-(loid)s as well)to field conditions should be done with caution,especially in the presence of strongly interacting ligands.
机译:在分批实验中研究了U(VI)吸附在针铁矿覆盖的砂子上的固溶比(SSR)为33.3至333 g / L。分批动力学实验表明,存在10〜4 M磷酸盐会增加与无磷酸盐体系相比,U(VI)吸附的初始速率和最终程度。我们的实验U(VI)吸附等温线与无磷酸盐体系中的SSR无关,但是LJ(VI)吸附等温线变得依赖于SSR。含磷酸盐的系统(具有较低的SSR导致更强的U(VI)吸附)。表面络合模型(SCM)用于概念化包含U(VI),磷酸盐和针铁矿的系统中有助于此SSR效应的相互作用。 SCM合理地解释了SSR对U(VI)吸附的影响。本研究表明,将批量测量的U(VI)(以及潜在的其他放射性核素和金属(金属))吸附参数外推到现场条件应谨慎行事,特别是在强烈相互作用的配体存在下。

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  • 来源
    《Environmental Science & Technology》 |2006年第10期|p.3243-3247|共5页
  • 作者单位

    Department of Civil Engineering,238 Harbert Engineering Center,Auburn University,Auburn,Alabama 36849,and Department of Geology and Geophysics,University of Wisconsin-Madison,1215 West Dayton Street,Madison,Wisconsin 53706;

    Department of Civil Engineering,238 Harbert Engineering Center,Auburn University,Auburn,Alabama 36849,and Department of Geology and Geophysics,University of Wisconsin-Madison,1215 West Dayton Street,Madison,Wisconsin 53706;

    Department of Civil Engineering,238 Harbert Engineering Center,Auburn University,Auburn,Alabama 36849,and Department of Geology and Geophysics,University of Wisconsin-Madison,1215 West Dayton Street,Madison,Wisconsin 53706;

    Department of Civil Engineering,238 Harbert Engineering Center,Auburn University,Auburn,Alabama 36849,and Department of Geology and Geophysics,University of Wisconsin-Madison,1215 West Dayton Street,Madison,Wisconsin 53706;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

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