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INVESTIGATION OF ACTIVATED CARBON ADSORBENT ELECTRODE FOR ELECTROSORPTION-BASED URANIUM EXTRACTION FROM SEAWATER

机译:吸附法从海水中萃取铀的活性炭吸附电极的研究

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To support the use of nuclear power as a sustainable electric energy generating technology, long-term supply of uranium is very important. The objective of this research is to investigate the use of new adsorbent material for cost effective uranium extraction from seawater. An activated carbon-based adsorbent material is developed and tested through an electrosorption technique in this research. Adsorption of uranium from seawater by activated carbon electrodes was investigated through electrosorption experiments up to 300 minutes by changing positive potentials from +0.2V to +0.8V (vs. Ag/AgCl). Uranium adsorption by the activated carbon electrode developed in this research reached up to 3.4 gU/kg-adsorbent material, which is comparable with the performance of amidoxime-based adsorbent materials. Electrosorption of uranium ions from seawater was found to be most favorable at +0.4V (vs. Ag/AgCl). The cost of chemicals and materials in the present research was compared with that of the amidoxime-based approach as part of the engineering feasibility examination. Copyright (C) 2015, Published by Elsevier Korea LLC on behalf of Korean Nuclear Society.
机译:为了支持将核能用作可持续的发电技术,铀的长期供应非常重要。这项研究的目的是研究使用新型吸附剂材料从海水中经济高效地提取铀。本研究通过电吸附技术开发并测试了活性炭基吸附材料。通过将正电势从+ 0.2V变为+ 0.8V(相对于Ag / AgCl)进行长达300分钟的电吸附实验,研究了活性炭电极对海水中铀的吸附。在这项研究中开发的活性炭电极对铀的吸附量高达3.4 gU / kg吸附材料,这与基于ox虫肟的吸附材料的性能相当。发现在+ 0.4V(vs. Ag / AgCl)下,海水中铀离子的电吸附是最有利的。作为工程可行性研究的一部分,将本研究中的化学和材料成本与基于a胺肟的方法进行了比较。版权所有(C)2015,由Elsevier Korea LLC代表韩国核协会出版。

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