Zhou Jia, Chen Qi, Li Tianchi, Lan Tian, Bai Pu, Liu Fang, Yuan Zhongwei, Zheng Weifang, Yan Wenfu, Yan Taihong
Department of Radiochemistry, China Institute of Atomic Energy, Beijing 102413, China.
Luoyang Jalon Micro-Nano New Materials Co., Ltd., Luoyang 471900, China.
Inorg Chem. 2022 May 23;61(20):7746-7753. doi: 10.1021/acs.inorgchem.1c03986. Epub 2022 May 11.
Capturing volatile radionuclide iodine produced in the nuclear industry is a crucial environmental issue. In previous studies, the principal efficient adsorbent for iodine capture was silver-containing zeolite. As silver-containing zeolites are expensive, alternate copper-loaded porous zeolites, including CuCl loaded NaY reduced by H (denoted as HCuY) and CO (denoted as COCuY), were studied for iodine adsorption at moderate temperatures. The current work also discusses the influence of copper valency on iodine adsorption. Due to the copper sites and nanosized pore structure, HCuY and COCuY showed high iodine adsorption capacities of 450 and 219 mg/g, respectively. The iodine adsorption capacity of HCuY was higher than that of silver-loaded zeolites. Moreover, HCuY and COCuY adsorbed volatile iodine through a chemical mechanism involving the copper sites of different valencies, and the Cu was more effective in adsorbing iodine than Cu. These copper-loaded zeolites with strong chemical interactions with iodine and high iodine adsorption capacities provided the possibility for iodine adsorption application in the nuclear industry.
捕获核工业中产生的挥发性放射性核素碘是一个关键的环境问题。在以往的研究中,碘捕获的主要高效吸附剂是含银沸石。由于含银沸石价格昂贵,因此研究了包括用氢气还原负载氯化铜的NaY(表示为HCuY)和用一氧化碳还原负载氯化铜的NaY(表示为COCuY)在内的替代负载铜的多孔沸石在中等温度下对碘的吸附性能。当前的工作还讨论了铜价态对碘吸附的影响。由于铜位点和纳米级孔结构,HCuY和COCuY分别表现出450和219 mg/g的高碘吸附容量。HCuY的碘吸附容量高于负载银的沸石。此外,HCuY和COCuY通过涉及不同价态铜位点的化学机制吸附挥发性碘,且二价铜比一价铜更有效地吸附碘。这些与碘具有强化学相互作用且碘吸附容量高的负载铜沸石为核工业中的碘吸附应用提供了可能性。