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Novel Sorbent Development and Evaluation for the Capture of Krypton and Xenon from Nuclear Fuel Reprocessing Off-Gas Streams

机译:从核燃料后处理废气中捕获K和氙的新型吸附剂开发和评估

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The release of volatile radionuclides generated during Used Nuclear Fuel reprocessing in the US will most certainly need to be controlled to meet US regulatory emission limits. A US DOE sponsored Off-Gas Sigma Team has been tasked with a multi-lab collaborative research and development effort to investigate and evaluate emissions and immobilization control technologies for the volatile radioactive species generated from commercial Used Nuclear Fuel (UNF) Reprocessing. Physical Adsorption technology is a simpler and potential economical alternative to cryogenic distillation processes that can be used for the capture of krypton and xenon and has resulted in a novel composite sorbent development procedure using synthesized mordenite as the active material. Utilizing the sorbent development procedure, INL sigma team members have developed two composite sorbents that have been evaluated for krypton and xenon capacities at ambient and 191 K temperature using numerous test gas compositions. Adsorption isotherms have been generated to predict equilibration and maximum capacities enabling modeling to support process equipment scale-up.
机译:在美国,肯定会需要控制在美国废旧核燃料后处理过程中产生的挥发性放射性核素的释放,以达到美国法规的排放限制。美国能源部赞助的沼气西格玛团队的任务是进行多实验室合作研究与开发工作,以调查和评估由商业废旧核燃料(UNF)后处理产生的挥发性放射性物质的排放和固定控制技术。物理吸附技术是可用于捕获a和氙的低温蒸馏方法的一种更简单且潜在的经济替代方法,并已开发出一种以合成的丝光沸石为活性材料的新型复合吸附剂开发方法。利用吸附剂开发程序,INL sigma团队成员开发了两种复合吸附剂,已使用多种测试气体组合物评估了在室温和191 K温度下的and和氙容量。已经产生了吸附等温线以预测平衡和最大容量,从而能够进行建模以支持工艺设备的规模放大。

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