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Influence of Calcite and Dissolved Calcium on Uranium(VI) Sorption to a Hanford Subsurface Sediment

机译:方解石和溶解钙对铀(VI)吸附对Hanford地下沉积物的影响

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摘要

The influence of calcite and dissolved calcium on U(VI) adsorption was investigated using a calcite-containing sandy silt/clay sediment from the U. S. Department of Energy Hanford site. U(VI) adsorption to sediment, treated sediment, and sediment size fractions was studied in solutions that both had and had not been preequilibrated with calcite, at initial [U(VI)] ) 10-7-10-5 mol/L and final pH ) 6.0- 10.0. Kinetic and reversibility studies (pH 8.4) showed rapid sorption (30 min), with reasonable reversibility in the 3-day reaction time. Sorption from solutions equilibrated with calcite showed maximum U(VI) adsorption at pH 8.4 ± 0.1. In contrast, calcium-free systems showed the greatest adsorption at pH 6.0-7.2. At pH u3e 8.4, U(VI) adsorption was identical from calcium-free and calcium-containing solutions. For calcite-presaturated systems, both speciation calculations and laser-induced fluorescence spectroscopic analyses indicated that aqueous U(VI) was increasingly dominated by Ca2UO2(CO3)3 0(aq) at pHu3c8.4 and that formation of Ca2UO2(CO3)30(aq) is what suppresses U(VI) adsorption. Above pH 8.4, aqueous U(VI) speciation was dominated by UO2(CO3)3 4- in all solutions. Finally, results also showed that U(VI) adsorption was additive in regard to size fraction but not in regard to mineral mass: Carbonate minerals may have blocked U(VI) access to surfaces of higher sorption affinity.
机译:使用来自美国汉福德部门的含铁铝淤泥砂矿沉积物研究了方解石和溶解钙对U(VI)吸附的影响。在溶液中研究了对沉积物,治疗沉积物和沉积物大小级分的吸附,并且在初始[U(vi)])10-7-10-5mol / l和最终pH)6.0-10.0。动力学和可逆性研究(pH8.4)显示出快速吸附(30分钟),在3天的反应时间内具有合理的可逆性。用方解石平衡的溶液的吸附显示在pH 8.4±0.1的最大U(VI)吸附。相比之下,无钙的系统显示在pH 6.0-7.2时最大的吸附。在pH U3E 8.4,U(VI)吸附与含钙和含钙溶液相同。对于方解石的系统,既有形状计算和激光诱导的荧光光谱分析表明,含水u(VI)越来越多地由pH U3C8.4在pH U3C8.4下以Ca 2 O 2(CO 3)3 0(AQ)支配,并且形成Ca2uO2(CO 3) 30(aq)是抑制U(vi)吸附的原因。在pH 8.4上方,u(vi)形状水溶液由UO 2(CO 3)3-在所有溶液中以UO 2(CO 3)为主。最后,结果还表明,U(VI)吸附在尺寸分数上是添加剂,但在矿物质量方面不存在:碳酸盐矿物质可能已阻塞U(VI)进入较高吸附亲和力的表面。

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