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首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >A comparative study of the adsorption of uranium on commercial and natural (Cypriot) sea sand samples
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A comparative study of the adsorption of uranium on commercial and natural (Cypriot) sea sand samples

机译:商业和天然(塞浦路斯)海沙样品上铀吸附的比较研究

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摘要

The adsorption of hexavalent uranium on two different types of sea sand [e.g. a local, Cypriot (N-SS) and a commercially available marine sediment (C-SS)] has been investigated as a function of pH, initial metal concentration, ionic strength and contact time under normal atmospheric conditions. Before carrying out the adsorption experiments, the sea sand samples have been characterized by XRD, XRF, N_2-adsorption, acid/base titrations and FTIR spectroscopy. Sample characterization showed clearly that the two sea sand types differ significantly in their composition, particularly in their calcite and FeOOH content. According to experimental data obtained from acid/base titrations and adsorption batch experiments sea sand composition affects the acid/base and the adsorption properties of the adsorbents. The extraordinary high affinity of N-SS for hexavalent uranium in the alkaline pH region can be attributed to the formation of mixed U(VI)-carbonato surface species on the FeOOH crystall phases present in N-SS, which effectively compete the formation of U(VI)-carbonato complexes in solution. On the other hand, data obtained by adsorption experiments carried out in solution of different ionic strengths don't differ significantly from one another indicating the formation of inner-sphere complexes. Finally, the adsorption on sea sands is a relatively fast two-step process.
机译:六价铀在两种不同类型的海沙上的吸附在正常的大气条件下,已经研究了当地的塞浦路斯(N-SS)和可商购的海洋沉积物(C-SS)作为pH,初始金属浓度,离子强度和接触时间的函数。在进行吸附实验之前,已通过XRD,XRF,N_2吸附,酸/碱滴定和FTIR光谱对海砂样品进行了表征。样品表征清楚地表明,这两种海沙类型在成分上,特别是在方解石和FeOOH含量上,存在显着差异。根据从酸/碱滴定法和吸附分批实验获得的实验数据,海沙成分会影响酸/碱和吸附剂的吸附性能。 N-SS对碱性pH范围内六价铀的非凡高亲和力可归因于N-SS中存在的FeOOH结晶相上形成的混合U(VI)-碳酸盐表面物种,可有效竞争U的形成(VI)-碳酸盐络合物的溶液。另一方面,通过在不同离子强度的溶液中进行吸附实验获得的数据彼此之间没有显着差异,表明形成了内球络合物。最后,在海沙上的吸附是一个相对较快的两步过程。

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