Assembly of ZSM-5 crystals on biomass platform via nucleus induction method for robust methanol aromatization

IF 4.3 2区 工程技术 Q2 ENGINEERING, CHEMICAL Chemical Engineering Science Pub Date : 2025-03-15 Epub Date: 2025-02-08 DOI:10.1016/j.ces.2025.121329
Caiyan Li , Yating Han , Tingjun Fu , Ruwei Yao , Jian Tian , Zhong Li , Guowu Zhan
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Abstract

The design of zeolite catalysts with hierarchically porous structures is critical to promote their application in many diffusion-limited reactions. Herein, silicon-rich biomass (viz., rice husk) with considerable macropores was exploited as a platform for the assembly of ZSM-5 crystals to fabricate zeolite catalysts with hierarchically porous structures. When rice husk was utilized as a sole silicon source, only a limited number of ZSM-5 particles (size of 5.41 μm) were assembled on the platform. Unfortunately, the resultant catalyst suffered a poor catalytic lifetime of 17 h over the methanol aromatization reaction due to the strong diffusion limitation and the increased coke deposition. In contrast, the addition of an extra liquid silicon source (tetraethyl orthosilicate) promoted the assembly of smaller ZSM-5 particles (size of 3.92 μm). Thus, the catalytic lifetime increased to 48 h with a high aromatic selectivity of 26.7 %. Interestingly, the particle sizes of ZSM-5 assembled on the biomass platform were further decreased to 0.75 μm based on a nucleus induction method. Accordingly, the catalytic lifetime increased to 70 h with an aromatic selectivity of 32.8 %. The resultant catalysts with small particles and weak surface acidity could ensure the stable formation of dimethylcyclopentenyl intermediates, which is the key to exhibiting a high aromatization performance. This work provides a strategy for the assembly of small-sized ZSM-5 crystals on the biomass-derived platform (bio-SiO2) for achieving a robust methanol aromatization reaction.

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用核诱导法在生物质平台上组装ZSM-5晶体以实现甲醇芳构化
具有分层多孔结构的沸石催化剂的设计对于促进其在许多限制扩散反应中的应用至关重要。本文利用具有大量大孔的富硅生物质(即稻壳)作为组装ZSM-5晶体的平台,制备具有分层多孔结构的沸石催化剂。当稻壳作为唯一硅源时,仅在平台上组装了有限数量的ZSM-5颗粒(尺寸为5.41 μm)。不幸的是,合成的催化剂在甲醇芳化反应中由于较强的扩散限制和增加的焦炭沉积,催化寿命很差,为17 h。相比之下,添加额外的液态硅源(正硅酸四乙酯)促进了更小的ZSM-5颗粒(尺寸为3.92 μm)的组装。因此,催化寿命提高到48 h,芳烃选择性为26.7 %。有趣的是,基于核诱导法,组装在生物质平台上的ZSM-5的粒径进一步减小到0.75 μm。相应的,催化寿命提高到70 h,芳香选择性为32.8% %。合成的催化剂颗粒小,表面酸性弱,可以保证二甲基环戊烯基中间体的稳定形成,这是表现出高芳构化性能的关键。这项工作为在生物质衍生平台(bio-SiO2)上组装小尺寸ZSM-5晶体提供了一种策略,以实现稳健的甲醇芳构化反应。
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来源期刊
Chemical Engineering Science
Chemical Engineering Science 工程技术-工程:化工
CiteScore
7.50
自引率
8.50%
发文量
1025
审稿时长
50 days
期刊介绍: Chemical engineering enables the transformation of natural resources and energy into useful products for society. It draws on and applies natural sciences, mathematics and economics, and has developed fundamental engineering science that underpins the discipline. Chemical Engineering Science (CES) has been publishing papers on the fundamentals of chemical engineering since 1951. CES is the platform where the most significant advances in the discipline have ever since been published. Chemical Engineering Science has accompanied and sustained chemical engineering through its development into the vibrant and broad scientific discipline it is today.
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