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具有核壳结构的新型沸石-5A@MOF-74 复合吸附剂用于 H 提纯。

Novel Zeolite-5A@MOF-74 Composite Adsorbents with Core-Shell Structure for H Purification.

机构信息

Department of Chemical and Biochemical Engineering , Missouri University of Science and Technology , Rolla , Missouri 65409-1230 , United States.

出版信息

ACS Appl Mater Interfaces. 2018 Sep 5;10(35):29656-29666. doi: 10.1021/acsami.8b10494. Epub 2018 Aug 24.

Abstract

Hydrogen is considered as one of the most important clean and renewable energy sources for a sustainable energy future. However, its efficient and cost-effective purification still remains challenging. In this work, we report the development of novel zeolite@metal-organic framework (MOF) composites comprised of MOF-74 and zeolite-5A with core-shell structure for efficient purification of H. The composites were synthesized hydrothermally through the addition of zeolite particles with and without carboxyl functional groups to the MOF synthesis solution. The zeolite/MOF weight ratio was varied systematically to find the optimum composition based on the adsorption performance. The formation of zeolite@MOF composites was confirmed by various characterization techniques. Single-component adsorption isotherms of CO, CO, CH, N, and H over composites were measured at 25 °C to determine their equilibrium adsorption capacity. It was found that the zeolite-5A@MOF-74 with weight ratio of 5:95 exhibited a similar morphology to that of pristine MOF-74, but with higher surface area and total pore volume. Moreover, this composite showed 20-30% increase in CO, CO, CH, and N uptake than the bare MOF, which could be attributed to the formation of new mesopores at the MOF-zeolite interface. The estimated selectivity values for CO/H, CO/H, CH/H, and N/H were higher than those of the zeolite and/or MOF. Our results also indicated that surface modification of zeolite prior to composite formation does not enhance the adsorption capacities of the composites. Overall, the findings of this study suggest that the zeolite-5A@MOF-74 composites with core-shell structure are promising candidates for industrial H purification processes.

摘要

氢气被认为是未来可持续能源中最重要的清洁可再生能源之一。然而,其高效且经济实惠的净化仍然具有挑战性。在这项工作中,我们报告了新型沸石@金属有机骨架(MOF)复合材料的开发,该复合材料由 MOF-74 和具有核壳结构的沸石-5A 组成,用于高效净化氢气。通过在 MOF 合成溶液中添加带有和不带有羧基官能团的沸石颗粒,水热合成了复合材料。系统地改变沸石/ MOF 的重量比,根据吸附性能找到最佳组成。通过各种表征技术证实了沸石@ MOF 复合材料的形成。在 25°C 下测量了 CO、CO、CH、N 和 H 对复合材料的单组分吸附等温线,以确定其平衡吸附容量。结果发现,沸石-5A@ MOF-74 的重量比为 5:95 时,其形貌与原始 MOF-74 相似,但比表面积和总孔体积更大。此外,与裸 MOF 相比,该复合材料在 CO、CO、CH 和 N 吸收方面提高了 20-30%,这可归因于 MOF-沸石界面处形成了新的中孔。CO/H、CO/H、CH/H 和 N/H 的估计选择性值高于沸石和/或 MOF。我们的结果还表明,在形成复合材料之前对沸石进行表面改性不会增强复合材料的吸附能力。总体而言,这项研究的结果表明,具有核壳结构的沸石-5A@ MOF-74 复合材料是工业氢气净化过程的有前途的候选材料。

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