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烷基官能化金属有机框架材料在潮湿条件下的气体吸附与分离性能研究

Study on gas adsorption and separation performance of alkyl functionalized MOF materials under wet conditions.

作者信息

Jiao Yuqiu, Du Zishen, Xie Qingying, Wen Xinai, Zhang Wansong, Zhu Jianwei, Lu Guiwu, Zhou Guanggang, Yang Zhenqing, Xia Yuhong

机构信息

College of Science, China University of Petroleum Beijing 102249 P. R. China

Beijing Gas Group Company Limited P. R. China.

出版信息

RSC Adv. 2025 Jan 27;15(4):2608-2617. doi: 10.1039/d4ra08720h. eCollection 2025 Jan 23.

Abstract

Metal-organic framework materials exhibit significant potential for diverse applications in gas adsorption and separation. We have studied the performance changes of Cu-BTC, Cu-MBTC and Cu-EBTC under different water-containing conditions. GCMC studies shows that, compared with Cu-BTC, the water absorption properties of Cu-MBTC and Cu-EBTC have a certain degree of decline, which is consistent with the experimental results. The incorporation of alkyl groups led to a decrease in the heat of adsorption for both Cu-MBTC and Cu-EBTC when exposed to water. The gas adsorption performance of Cu-BTC, Cu-MBTC and Cu-EBTC exhibits inconsistent variations in gas adsorption performance under water-containing conditions. The addition of coordinated water molecules enhances the ability of Cu-BTC to adsorb CO. The capacity of Cu-MBTC with 4 wt% water to adsorb CO increased, but the capacity of Cu-MBTC with 8 wt% water to adsorb CO decreased. The presence of coordinated water molecules reduces the CO adsorption performance of Cu-EBTC. The study of the heat of adsorption explains this phenomenon from the mechanism. At the same time, we found an interesting phenomenon. The existence of trace water molecules can greatly improve the adsorption selectivity of Cu-EBTC to CO/N while the pressure and gas ratio have little effect. It can provide more possibilities for the widespread use of MOF in the fields of gas adsorption and separation.

摘要

金属有机骨架材料在气体吸附和分离的多种应用中展现出巨大潜力。我们研究了Cu - BTC、Cu - MBTC和Cu - EBTC在不同含水条件下的性能变化。巨正则蒙特卡罗(GCMC)研究表明,与Cu - BTC相比,Cu - MBTC和Cu - EBTC的吸水性能有一定程度的下降,这与实验结果一致。烷基的引入导致Cu - MBTC和Cu - EBTC在接触水时吸附热降低。Cu - BTC、Cu - MBTC和Cu - EBTC的气体吸附性能在含水条件下呈现出不一致的变化。配位水分子的添加增强了Cu - BTC吸附CO的能力。含4 wt%水的Cu - MBTC吸附CO的容量增加,但含8 wt%水的Cu - MBTC吸附CO的容量降低。配位水分子的存在降低了Cu - EBTC的CO吸附性能。对吸附热的研究从机理上解释了这一现象。同时,我们发现了一个有趣的现象。痕量水分子的存在能极大地提高Cu - EBTC对CO/N的吸附选择性,而压力和气体比例的影响很小。这可为金属有机骨架材料在气体吸附和分离领域的广泛应用提供更多可能性。

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