Synthesis and Catalytic Application of ZSM-48 Zeolite

IF 3.2 3区 工程技术 Q2 CHEMISTRY, PHYSICAL Molecular Systems Design & Engineering Pub Date : 2024-07-11 DOI:10.1039/d4me00076e
Wen Liu, Yanan Wang, Xinbao Zhang, Fucun Chen, Sujuan Xie, Longya Xu, Xiujie Li, Xiangxue Zhu
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Abstract

ZSM-48 is a kind of high-silica zeolite with one dimensional (1D) 10-member ring (10-MR) channel structure. It is well known for its unique pore structure and acid properties, as well as exceptional catalytic performance in various reactions. However, the diffusion limitation and insufficient acid density pose significant challenges to its widespread application and promotion. This review aims to summarize the advancements in enhancing diffusivity and regulating acid properties of ZSM-48 zeolite, as well as its catalytic applications. To alleviate diffusion limitations, the construction of hierarchical ZSM-48 zeolites through post-treatment and in-situ strategies are extensively summarized. Ongoing endeavors focus on determining the optimal balance between maintaining structural integrity and improving mass transfer capacity through post-treatment techniques. Concerning acid regulation, various strategies such as the use of special organic structure directing agent (OSDA), seed-assisted synthesis, zeolites hybridization, and heteroatom doping strategies have been developed. The emphasis on acid regulation in ZSM-48 zeolite involves efforts to design or discover more cost-effective OSDAs. Additionally, researchers are exploring simpler and more economical seed-assisted synthesis routes to produce Al-rich candidates. In terms of catalytic application, extensive research has been conducted on various reactions including hydroisomerization of paraffin, isomerization of xylenes, cracking of hydrocarbons, and methanol to hydrocarbons have been extensively investigated. Its distinctive catalytic performance is primarily related to the shape-selective advantage conferred by its one dimensional channel structure. In particular, ZSM-48 zeolite is widely regarded as the leading candidate in paraffin hydroisomerization reactions, attributed to its high proportion of multi-branched isomers in the catalytic products. The present review aims to provide a comprehensive reference for researchers dedicated to the synthesis, modification, and application of ZSM-48 zeolite.
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ZSM-48 沸石的合成与催化应用
ZSM-48 是一种具有一维(1D)10 元环(10-MR)通道结构的高硅沸石。它以其独特的孔隙结构和酸特性以及在各种反应中的优异催化性能而著称。然而,扩散限制和酸密度不足对其广泛应用和推广构成了重大挑战。本综述旨在总结在增强 ZSM-48 沸石的扩散性和调节其酸特性方面的进展及其催化应用。为了缓解扩散限制,本文广泛总结了通过后处理和原位策略构建分层 ZSM-48 沸石的方法。目前的工作重点是通过后处理技术确定保持结构完整性和提高传质能力之间的最佳平衡。在酸调节方面,已开发出多种策略,如使用特殊的有机结构引导剂(OSDA)、种子辅助合成、沸石杂化和杂原子掺杂策略。在 ZSM-48 沸石中进行酸调节的重点是努力设计或发现更具成本效益的 OSDA。此外,研究人员还在探索更简单、更经济的种子辅助合成路线,以生产富铝候选物质。在催化应用方面,对石蜡的加氢异构化、二甲苯的异构化、碳氢化合物的裂解以及甲醇制碳氢化合物等各种反应进行了广泛的研究。其独特的催化性能主要与其一维通道结构所带来的形状选择优势有关。其中,ZSM-48 沸石因其催化产物中多支链异构体比例高而被广泛认为是石蜡加氢异构化反应的主要候选材料。本综述旨在为致力于 ZSM-48 沸石合成、改性和应用的研究人员提供全面的参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecular Systems Design & Engineering
Molecular Systems Design & Engineering Engineering-Biomedical Engineering
CiteScore
6.40
自引率
2.80%
发文量
144
期刊介绍: Molecular Systems Design & Engineering provides a hub for cutting-edge research into how understanding of molecular properties, behaviour and interactions can be used to design and assemble better materials, systems, and processes to achieve specific functions. These may have applications of technological significance and help address global challenges.
期刊最新文献
Back cover Synthesis and Theoretical Studies of the Conformational Behaviour of N-vinylcaprolactam/N-vinylimidazole Copolymers in Selective Solvent Back cover Synthesis and Catalytic Application of ZSM-48 Zeolite Designing novel inhibitor derivatives targeting SARS-CoV-2 Mpro enzyme: a deep learning and structure biology approach
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