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通过模板辅助喷雾工艺制备具有多尺度孔结构的分级多孔沸石颗粒以提高甲苯吸附速率

Preparation of Hierarchical Porous Zeolite Particles with Multiscale Pore Architectures through a Template-Assisted Spray Process for Enhanced Toluene Adsorption Rate.

作者信息

Cao Kiet Le Anh, Kautsar Duhaul Biqal, Kume Kohei, Cao Khoa Anh Le, Septiani Eka Lutfi, Hirano Tomoyuki, Tsunoji Nao, Matsukata Masahiko, Ogi Takashi

机构信息

Chemical Engineering Program, Department of Advanced Science and Engineering, Graduate School of Advanced Science and Engineering, Hiroshima University, 1-4-1 Kagamiyama, Higashi-Hiroshima, Hiroshima 739-8527, Japan.

Department of Applied Chemistry, Waseda University, 513 Wasedatsurumaki-cho, Shinjuku-ku, Tokyo 162-0041, Japan.

出版信息

ACS Appl Mater Interfaces. 2025 Apr 23;17(16):24310-24326. doi: 10.1021/acsami.4c22163. Epub 2025 Apr 2.

Abstract

Hierarchical porous zeolite particles featuring multiscale pore architectures have gained significant attention due to their enhanced mass transfer properties and superior adsorption capabilities. This study reports the first successful synthesis of hierarchical porous zeolites with integrated micropores, mesopores, and macropores using a template-assisted spray process, addressing the limitations of conventional zeolites in adsorbing large organic molecules such as toluene. By employing poly(methyl methacrylate) (PMMA) particles (about 350 nm in size) as a template, we achieved precise control over macropore formation, providing a new level of flexibility in tailoring zeolite pore architectures. The effect of the PMMA/zeolite mass ratio on the resulting macroporous structures and their toluene adsorption performance was systematically investigated. The results revealed that the hierarchical porous zeolite exhibited a significantly enhanced toluene adsorption rate compared to samples synthesized without the PMMA template. This improvement is attributed to the optimized macroporous structure, which facilitates efficient mass transfer. Importantly, this study addresses a critical gap in the literature by demonstrating the successful integration of macropores into zeolites through an environmentally friendly process, with significant implications for applications in volatile organic compound removal. This advancement in porous zeolite design could enable more efficient and practical solutions for industrial air purification and environmental remediation.

摘要

具有多尺度孔隙结构的分级多孔沸石颗粒因其增强的传质性能和卓越的吸附能力而备受关注。本研究报道了首次使用模板辅助喷雾工艺成功合成具有微孔、介孔和大孔一体化的分级多孔沸石,解决了传统沸石在吸附甲苯等大有机分子方面的局限性。通过使用尺寸约为350纳米的聚甲基丙烯酸甲酯(PMMA)颗粒作为模板,我们实现了对大孔形成的精确控制,为定制沸石孔隙结构提供了新的灵活性水平。系统研究了PMMA/沸石质量比对所得大孔结构及其甲苯吸附性能的影响。结果表明,与未使用PMMA模板合成的样品相比,分级多孔沸石的甲苯吸附速率显著提高。这种改进归因于优化的大孔结构,它有助于高效传质。重要的是,本研究通过展示通过环境友好工艺将大孔成功整合到沸石中,填补了文献中的一个关键空白,对挥发性有机化合物去除应用具有重要意义。多孔沸石设计的这一进展可为工业空气净化和环境修复提供更高效、实用的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb46/12272550/fb584410cdde/am4c22163_0001.jpg

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