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Metal-organic frameworks with high capacity and selectivity for harmful gases

机译:具有高容量和对有害气体的选择性的金属有机框架

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摘要

Benchmarks have been established for the performance of six metal-organic frameworks (MOFs) and isoreticular MOFs (IRMOFs, which have the same underlying topology as MOF-5), MOF-5, IRMOF-3, MOF-74, MOF-177, MOF-199, and IRMOF-62, as selective adsorbents for eight harmful gases: sulfur dioxide, ammonia, chlorine, tetrahydrothiophene, benzene, dichloromethane, ethylene oxide, and carbon monoxide. Kinetic breakthrough measurements are used to determine the calculated dynamic adsorption capacity of each “benchmark” MOF for each gas. The capacity of each MOF is compared to that of a sample of Calgon BPL activated carbon. We find that pore functionality plays a dominant role in determining the dynamic adsorption performance of MOFs. MOFs featuring reactive functionality outperform BPL carbon in all but one case and exhibit high dynamic adsorption capacities up to 35% by weight.
机译:已经建立了用于以下六个性能的基准:六个金属有机框架(MOF)和等网状MOF(IRMOF,其基本拓扑与MOF-5相同),MOF-5,IRMOF-3,MOF-74,MOF-177, MOF-199和IRMOF-62作为八种有害气体的选择性吸附剂:二氧化硫,氨气,氯气,四氢噻吩,苯,二氯甲烷,环氧乙烷和一氧化碳。动力学突破测量用于确定每种“基准” MOF对每种气体的计算出的动态吸附容量。将每个MOF的容量与Calgon BPL活性炭样品的容量进行比较。我们发现,孔功能在确定MOF的动态吸附性能中起主要作用。除一种情况外,具有反应性功能的MOF在所有性能上均优于BPL碳,并具有高达35%(重量)的高动态吸附能力。

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