沸石
再结晶(地质)
材料科学
结晶
介孔材料
化学工程
ZSM-5型
扩散
模板
催化作用
纳米技术
有机化学
化学
热力学
古生物学
工程类
物理
生物
作者
Wen Liu,Junjie Li,Qiang Yu,Huihui Chen,Wenjuan Liu,Zhiqiang Yang,Xuebin Liu,Zhaochao Xu,Shutao Xu,Xiangxue Zhu,Xiujie Li
标识
DOI:10.1021/acsami.2c16346
摘要
Diffusion limitation and acid deficiency are two main challenges that the ZSM-48 zeolite faces in practical application. To date, there have been few effective strategies to solve both problems, simultaneously. Also, it is also a challenge to construct a hollow structure in a one-dimensional (1D) zeolite. Herein, an Al-rich ZSM-48 zeolite with a hollow structure is constructed through an alumination–recrystallization strategy, thereby solving the problems related to diffusion and acidity simultaneously. The hollowness and enrichment of aluminum can be controlled by judiciously matching the desilication and recrystallization. The silica to alumina ratio (SAR) of the ZSM-48 zeolite can be tuned from 130 to 45, which breaks the SAR limitation of conventional synthesis. On the basis of the different characterization results, the whole crystallization can be divided into two stages: rapid desilication–alumination and time-consuming recrystallization. In the selective desilication–recrystallization process, the preferential special distribution of the organic template leads to the formation of a hollow structure and the healing of mesopores at the outer shell, as evidenced by structured illumination microscopy images. Due to the enhancement in diffusion ability and acid density, the obtained hollow Al-rich ZSM-48 zeolite exhibits excellent catalytic stability and high p-xylene yield (∼26%) in the m-xylene isomerization reaction (WHSV = 18 h–1), indicating its strong industrial application potential.
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