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聚脲交联藻酸盐气凝胶在亚皮摩尔浓度范围内从水中去除放射性/放射性核素(U-232和Am-241)

Radioactivity/Radionuclide (U-232 and Am-241) Removal from Waters by Polyurea-Crosslinked Alginate Aerogels in the Sub-Picomolar Concentration Range.

作者信息

Ioannidis Ioannis, Pashalidis Ioannis, Raptopoulos Grigorios, Paraskevopoulou Patrina

机构信息

Laboratory of Radioanalytical and Environmental Chemistry, Department of Chemistry, University of Cyprus, P.O. Box 20537, Nicosia Cy-1678, Cyprus.

Inorganic Chemistry Laboratory, Department of Chemistry, National and Kapodistrian University of Athens, Panepistimiopolis Zografou, 15771 Athens, Greece.

出版信息

Gels. 2023 Mar 10;9(3):211. doi: 10.3390/gels9030211.

Abstract

The removal of radionuclide/radioactivity from laboratory and environmental water samples under ambient conditions was investigated via batch-type experiments using polyurea-crosslinked calcium alginate (X-alginate) aerogels. Water samples were contaminated with traces of U-232 and Am-241. The removal efficiency of the material depends strongly on the solution pH; it is above 80% for both radionuclides in acidic solutions (pH 4), while it decreases at about 40% for Am-241 and 25% for U-232 in alkaline solutions (pH 9). This is directly associated with the presence of the radionuclide species in each case; the cationic species UO and Am prevail at pH 4, and the anionic species UO(CO) and Am(CO) prevail at pH 9. Adsorption on X-alginate aerogels is realized by coordination of cationic species on carboxylate groups (replacing Ca) or other functional groups, i.e., -NH and/or -OH. In environmental water samples, i.e., ground water, wastewater and seawater, which are alkaline (pH around 8), the removal efficiency for Am-241 is significantly higher (45-60%) compared to that for U-232 (25-30%). The distribution coefficients () obtained for the sorption of Am-241 and U-232 by X-alginate aerogels are around 10 L/kg, even in environmental water samples, indicating a strong sorption affinity of the aerogel material for the radionuclides. The latter, along with their stability in aqueous environments, make X-alginate aerogels attractive candidates for the treatment of radioactive contaminated waters. To the best of our knowledge, this is the first study on the removal of americium from waters using aerogels and the first investigation of adsorption efficiency of an aerogel material at the sub-picomolar concentration range.

摘要

通过使用聚脲交联海藻酸钙(X-海藻酸盐)气凝胶进行批量实验,研究了在环境条件下从实验室和环境水样中去除放射性核素/放射性的情况。水样被痕量的U-232和Am-241污染。该材料的去除效率强烈依赖于溶液的pH值;在酸性溶液(pH 4)中,两种放射性核素的去除效率均高于80%,而在碱性溶液(pH 9)中,Am-241的去除效率降至约40%,U-232的去除效率降至25%。这与每种情况下放射性核素的存在形式直接相关;在pH 4时,阳离子形式的UO和Am占主导,而在pH 9时,阴离子形式的UO(CO)和Am(CO)占主导。在X-海藻酸盐气凝胶上的吸附是通过阳离子形式与羧酸盐基团(取代Ca)或其他官能团(即-NH和/或-OH)的配位实现的。在碱性(pH约为8)的环境水样,即地下水、废水和海水中,Am-241的去除效率(45 - 60%)明显高于U-232(25 - 30%)。即使在环境水样中,X-海藻酸盐气凝胶对Am-241和U-232吸附获得的分配系数()约为10 L/kg,表明气凝胶材料对放射性核素有很强的吸附亲和力。后者以及它们在水环境中的稳定性,使X-海藻酸盐气凝胶成为处理放射性污染水的有吸引力的候选材料。据我们所知,这是首次使用气凝胶从水中去除镅的研究,也是首次在亚皮摩尔浓度范围内研究气凝胶材料的吸附效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61d4/10048139/2d9053651789/gels-09-00211-sch001.jpg

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