Qian Jiao-Jiao, Chen Guang-Hui, Xiao Song-Tao, Li Hui-Bo, Ouyang Ying-Gen, Wang Qiang
Department of Chemistry, Key Laboratory for Preparation and Application of Ordered Structural Materials of Guangdong Province, Shantou University Guangdong 515063 China
Institute of Radiochemistry, China Institute of Atomic Energy (CIAE) Beijing 102413 People's Republic of China
RSC Adv. 2020 May 1;10(29):17195-17204. doi: 10.1039/d0ra02212h. eCollection 2020 Apr 29.
The separation of Xe/Kr mixtures in used nuclear fuel (UNF) has attracted lots of attention, but no report on the adsorption and separation of Kr from mixed Kr/Xe at room temperature can be found. From grand canonical Monte Carlo (GCMC) simulation, it is found that by replacing the metal center Ca of SBMOF-1 with Mg, due to the appropriate pore size, the adsorption selectivity ( ) was extremely high (250 000) and the adsorption capacity for Kr on Mg-SBMOF-1 modified with -NH was increased by 300% to 1.020 from 0.248 mmol g. Based on the calculations of density functional theory (DFT), we found that the stronger electron-donating ability of a functional group will increase the polarizability of the ligand, and thus increase the adsorption capacity to Kr. In addition, the analysis of electronic structures with independent gradient model (IGM) and energy decomposition analysis (EDA) indicates that van der Waals forces will be responsible for the interaction of Mg-SBMOF-1 and Kr gas. Among them, the interaction of Mg-SBMOF-1 and Kr gas is mainly an induction force, while that of modifications with -CH and -NH is mainly a dispersion force. The present theoretical study represents the first report of the separation of Kr from Xe with MOF adsorption at room temperature. We hope this work may promote the experimental synthesis of Mg-SBMOF-1 for efficient separation of Kr and Xe.
乏核燃料(UNF)中Xe/Kr混合物的分离备受关注,但尚未发现有关室温下从混合Kr/Xe中吸附和分离Kr的报道。通过巨正则蒙特卡罗(GCMC)模拟发现,用Mg取代SBMOF-1的金属中心Ca后,由于孔径合适,吸附选择性( )极高(250 000),并且用-NH修饰的Mg-SBMOF-1对Kr的吸附容量从0.248 mmol g增加了300%,达到1.020。基于密度泛函理论(DFT)计算,我们发现官能团更强的给电子能力会增加配体的极化率,从而提高对Kr的吸附容量。此外,用独立梯度模型(IGM)和能量分解分析(EDA)对电子结构的分析表明,范德华力将负责Mg-SBMOF-1与Kr气体之间的相互作用。其中,Mg-SBMOF-1与Kr气体之间的相互作用主要是诱导力,而用-CH和-NH修饰后的相互作用主要是色散力。本理论研究是室温下用MOF吸附从Xe中分离Kr的首次报道。我们希望这项工作能够促进用于高效分离Kr和Xe的Mg-SBMOF-1的实验合成。