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Long-Term Stability of MFM-300(Al) toward Toxic Air Pollutants

机译:MFM-300(AL)的长期稳定性朝向有毒空气污染物

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Temperature- or pressure-swing sorption in porous metal-organic framework (MOF) materials has been proposed for new gas separation technologies. The high tunability of MOFs toward particular adsorbates and the relatively low energy penalty for system regeneration indicate that reversible physisorption in MOFs has the potential to create economic and environmental benefits compared with state-of-the-art chemisorption systems. However, for MOF-based sorbents to be commercialized, they have to show long-term stability under the conditions imposed by the application. Here, we demonstrate the structural stability of MFM-300(Al) in the presence of a series of industrially relevant toxic and corrosive gases, including SO2, NO2, and NH3, over 4 years using long-duration synchrotron X-ray powder diffraction. Full structural analysis of gas-loaded MFM-300(Al) confirms the retention of these toxic gas molecules within the porous framework for up to 200 weeks, and cycling adsorption experiments verified the reusability of MFM-300(Al) for the capture of these toxic air pollutants.
机译:已经提出了用于新的气体分离技术的多孔金属 - 有机骨架(MOF)材料中的温度或压力 - 摆吸收。 MOF对特定吸附和对系统再生的相对低的能量惩罚的高可调谐性表明,与最先进的化学吸取系统相比,MOF的可逆性有可能创造经济和环境效益。然而,对于要商业化的基于MOF的吸附剂,它们必须在应用的条件下表现出长期稳定性。在此,我们在使用长持续时间同步同步X射线粉末衍射超过4年的一系列工业上相关的毒性和腐蚀性气体存在下,在存在一系列工业相关的毒性和腐蚀性气体中,展示MFM-300(A1)的结构稳定性。气体负载MFM-300(AL)的全结构分析证实了这些有毒气体分子在多孔框架内的保留长达200周,循环吸附实验验证了MFM-300(AL)的可重用性,以捕获这些有毒的空气污染物。

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