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Progress in adsorption-based CO2 capture by metal-organic frameworks

机译:金属有机骨架吸附法吸附CO2的研究进展

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Metal-organic frameworks (MOFs) have recently attracted intense research interest because of their permanent porous structures, large surface areas, and potential applications as novel adsorbents. The recent progress in adsorption-based CO2 capture by MOFs is reviewed and summarized in this critical review. CO2 adsorption in MOFs has been divided into two sections, adsorption at high pressures and selective adsorption at approximate atmospheric pressures. Keys to CO2 adsorption in MOFs at high pressures and low pressures are summarized to be pore volumes of MOFs, and heats of adsorption, respectively. Many MOFs have high CO2 selectivities over N2 and CH4. Water effects on CO2 adsorption in MOFs are presented and compared with benchmark zeolites. In addition, strategies appeared in the literature to enhance CO2 adsorption capacities and/or selectivities in MOFs have been summarized into three main categories, catenation and interpenetration, chemical bonding enhancement, and electrostatic force involvement. Besides the advantages, two main challenges of using MOFs in CO2 capture, the cost of synthesis and the stability toward water vapor, have been analyzed and possible solutions and path forward have been proposed to address the two challenges as well (150 references).
机译:金属有机骨架(MOF)由于其永久的多孔结构,较大的表面积以及作为新型吸附剂的潜在应用,最近引起了广泛的研究兴趣。 MOF在基于吸附的CO2捕集方面的最新进展已在本文中进行了综述和总结。 MOF中的CO2吸附分为两个部分,即高压吸附和近似大气压的选择性吸附。 MOF在高压和低压下吸附CO2的关键分别归结为MOF的孔体积和吸附热。许多MOF在N2和CH4上具有很高的CO2选择性。介绍了水对MOF中CO2吸附的影响,并将其与基准沸石进行了比较。此外,文献中出现的增强MOF中CO2吸附能力和/或选择性的策略已归纳为三个主要类别:连接和互穿,化学键增强和静电力参与。除了这些优点外,还分析了在MO2捕集中使用MOF的两个主要挑战,合成成本和对水蒸气的稳定性,并提出了可能的解决方案和前进方向以应对这两个挑战(150篇参考文献)。

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