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二氧化碳/水在金属-有机骨架上的吸附平衡和速率:HKUST-1 和 Ni/DOBDC。

CO2/H2O adsorption equilibrium and rates on metal-organic frameworks: HKUST-1 and Ni/DOBDC.

机构信息

Department of Chemical and Biomolecular Engineering, Vanderbilt University, VU Station B 351604, Nashville, Tennessee 37235-1604, USA.

出版信息

Langmuir. 2010 Sep 7;26(17):14301-7. doi: 10.1021/la102359q.

DOI:10.1021/la102359q
PMID:20707342
Abstract

Metal-organic frameworks (MOFs) have recently attracted intense research interest because of their permanent porous structures, huge surface areas, and potential applications as novel adsorbents and catalysts. In order to provide a basis for consideration of MOFs for removal of carbon dioxide from gases containing water vapor, such as flue gas, we have studied adsorption equilibrium of CO(2), H(2)O vapor, and their mixtures and also rates of CO(2) adsorption in two MOFs: HKUST-1 (CuBTC) and Ni/DOBDC (CPO-27-Ni or Ni/MOF-74). The MOFs were synthesized via solvothermal methods, and the as-synthesized products were solvent exchanged and regenerated before experiments. Pure component adsorption equilibria and CO(2)/H(2)O binary adsorption equilibria were studied using a volumetric system. The effects of H(2)O adsorption on CO(2) adsorption for both MOF samples were determined, and the results for 5A and NaX zeolites were included for comparison. The hydrothermal stabilities for the two MOFs over the course of repetitive measurements of H(2)O and CO(2)/H(2)O mixture equilibria were also studied. CO(2) adsorption rates from helium for the MOF samples were investigated by using a unique concentration-swing frequency response (CSFR) system. Mass transfer into the MOFs is rapid with the controlling resistance found to be macropore diffusion, and rate parameters were established for the mechanism.

摘要

金属有机骨架(MOFs)因其具有永久的多孔结构、巨大的比表面积以及作为新型吸附剂和催化剂的潜在应用而受到了广泛的关注。为了为考虑 MOFs 从含有水蒸气的气体(如烟道气)中去除二氧化碳提供依据,我们研究了 CO(2)、H(2)O 蒸汽及其混合物在两种 MOFs 中的吸附平衡,以及 CO(2)在这两种 MOFs 中的吸附速率:HKUST-1(CuBTC)和 Ni/DOBDC(CPO-27-Ni 或 Ni/MOF-74)。MOFs 通过溶剂热方法合成,在实验前对合成产物进行溶剂交换和再生。使用体积系统研究了纯组分吸附平衡和 CO(2)/H(2)O 二元吸附平衡。确定了 H(2)O 吸附对两种 MOF 样品 CO(2)吸附的影响,并包括 5A 和 NaX 沸石的结果进行比较。还研究了两种 MOFs 在重复测量 H(2)O 和 CO(2)/H(2)O 混合物平衡过程中的水热稳定性。通过使用独特的浓度摆动频率响应(CSFR)系统研究了 MOF 样品从氦气中吸附 CO(2)的速率。传质进入 MOFs 很快,控制阻力被发现是大孔扩散,并且为该机制建立了速率参数。

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