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Nanoscale Size Effects On Uranium(Ⅵ) Adsorption To Hematite

机译:纳米尺寸对铀(Ⅵ)吸附赤铁矿的影响

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U(Ⅵ) adsorption on aerosol-synthesized hematite particles ranging in size from 12to125 nm was studied to explore nanoscale size effects on uranium adsorption. Adsorption on 70 nm aqueous-synthesized particles was also investigated to examine the effect of the synthesis method on reactivity. Equilibrium adsorption was measured over pH 3-11 at two U(Ⅵ) loadings. Surface complexation modeling, combined with adjustment of adsorption equilibrium constants to be independent of site density and surface area, provided a quantitative reaction-based framework for evaluating adsorption affinity and capacity. Among the aerosol-synthesized particles, the adsorption affinity decreased as the particle size increased from 12 to 125 nm with similar intermediate affinities for 30 and 50 nm particles. X-ray absorption fine structure spectroscopy measurements suggest that the differences in adsorption affinity and capacity are not the result of substantially different coordination environments of adsorbed U(Ⅵ).
机译:研究了U(Ⅵ)在气溶胶合成赤铁矿颗粒上的吸附能力,该颗粒尺寸范围为12至125 nm,以探讨纳米尺度尺寸对铀吸附的影响。还研究了在70 nm水合成颗粒上的吸附,以检验合成方法对反应性的影响。在两个U(Ⅵ)负载下,在pH 3-11上测量了平衡吸附。表面络合建模,结合调整吸附平衡常数使其独立于位点密度和表面积,为评估吸附亲和力和容量提供了基于反应的定量框架。在气溶胶合成的颗粒中,随着粒径从12 nm增加到125 nm,对于30和50 nm颗粒具有相似的中间亲和力,吸附亲和力降低。 X射线吸收精细结构光谱测量表明,吸附亲和力和容量的差异并不是被吸附的U(Ⅵ)的配位环境基本不同的结果。

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