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通过真空辅助碱处理提高沸石对一氧化碳吸附能力的简便方法。

Facile method for enhancing the CO adsorption capacity of zeolites through vacuum-assisted alkaline treatment.

作者信息

Shui Lihong, Zhou Junjie, Wang Yunan, Lin Yichao

机构信息

Zhejiang Key Laboratory of Advanced Fuel Cells and Electrolyzers Technology, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences Ningbo Zhejiang 315201 P.R. China

School of Chemistry and Chemical Engineering, Harbin Institute of Technology Harbin 150001 P.R. China.

出版信息

RSC Adv. 2025 Jun 11;15(25):19802-19809. doi: 10.1039/d5ra01559f. eCollection 2025 Jun 10.

Abstract

Zeolites are considered as promising CO adsorbents due to their affordability, exceptional stability, and porous characteristics, yet they are still facing the challenges of low adsorption capacity and selectivity. In this study, we present a straightforward method to significantly improve the CO adsorption performance of zeolites through vacuum-assisted alkaline treatment. Under alkaline conditions, the pore structure and surface functionality can be modulated through desilication, dealumination, and ion exchange. Additionally, vacuum conditions aid in releasing gas molecules trapped in the pores, facilitating the solution entry. Three typical zeolites, including SSZ-13 (CHA), T (ERI/OFF) and NaA (LTA) zeolites, are utilized through the vacuum-assisted alkaline treatment. At an optimized pH of 12, their CO adsorption capacities increase by 7.67% to 16.99%. The significant enhancement in the CO adsorption capacity is attributed to the modified pore size and pore volume. Thus, we suggest that the vacuum-assisted alkaline treatment is an effective approach for improving gas adsorption performance.

摘要

由于沸石价格低廉、稳定性优异且具有多孔特性,它们被视为很有前景的一氧化碳吸附剂,然而,它们仍面临着吸附容量低和选择性差的挑战。在本研究中,我们提出了一种简单的方法,通过真空辅助碱处理显著提高沸石对一氧化碳的吸附性能。在碱性条件下,可以通过脱硅、脱铝和离子交换来调节孔结构和表面官能团。此外,真空条件有助于释放困在孔中的气体分子,便于溶液进入。通过真空辅助碱处理使用了三种典型的沸石,包括SSZ-13(CHA)、T(ERI/OFF)和NaA(LTA)沸石。在优化的pH值为12时,它们对一氧化碳的吸附容量提高了7.67%至16.99%。一氧化碳吸附容量的显著提高归因于孔径和孔体积的改变。因此,我们认为真空辅助碱处理是提高气体吸附性能的有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aae7/12152726/508cfb08ff9f/d5ra01559f-f1.jpg

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