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具有突破硅铝比限制和改善传质的单晶空心ZSM-5经济设计的快速结晶机制

Racing Crystallization Mechanism for Economical Design of Single-Crystal Hollow ZSM-5 with the Broken Limit of Si/Al Ratio and Improved Mass Transfer.

作者信息

Zhai Yi, Zhang Xubin, Wang Fumin, Lv Guojun, Jiang Tao, Wu Yuzhou, Li Mengyue, Li Mengyao, Zhang Qing, Liu Yongkui

机构信息

School of Chemical Engineering and Technology, Tianjin University, Tianjin 300350, P.R. China.

School of Environmental and Chemical Engineering, Jiangsu University of Science and Technology, Zhenjiang 212003, Jiangsu, P.R. China.

出版信息

ACS Appl Mater Interfaces. 2021 Apr 7;13(13):15246-15260. doi: 10.1021/acsami.1c00768. Epub 2021 Mar 29.

DOI:10.1021/acsami.1c00768
PMID:33780227
Abstract

Development of economic strategy to synthesize hollow zeolite with widely tunable Si/Al ratios providing variable acidity is of great significance in industry. Here, a one-step and low-cost strategy without mesoporogen was successfully developed to synthesize single-crystal hollow ZSM-5 containing mesopores/macropores, with variable Si/Al ratios of about 14-∞ and 114-∞ at critical TPA/SiO ratios of 0.05-0.1 and 0.05, respectively. This is the first time the usage of a large amount of TPAOH was avoided while breaking the traditional limitation of Si/Al ratio (25-50). The component of synthesis system and crystallization temperature acting as the vital roles in hollow structure has been confirmed by a series of characterization. Moreover, according to the investigation of the evolution process, a novel racing crystallization mechanism based on the competition relationship between surface crystallization and the internal dissolution rate was proposed for the first time. The racing crystallization mechanism and internal nonprotective aluminum become the crucial factors for synthesis. The prepared hollow ZSM-5 zeolites exhibit superior catalytic performance in the different acidity-catalyzed condensation involving large molecules between benzaldehyde and -butyl alcohol as well as 2-hydroxyacetophenone, which is mainly attributed to the property acidity, more accessible active Al sites on the surface, and shorter diffusion path. By calculating, the effectiveness factor (η) of hollow zeolite is close to 1, further confirming its better mass transfer ability. The strategy has also been successfully extended to the synthesis of high-amount Fe-doped, Ga-doped, and B-doped hollow silicate-1.

摘要

开发一种经济策略来合成具有广泛可调硅铝比并提供可变酸度的中空沸石在工业上具有重要意义。在此,成功开发了一种无需介孔模板剂的一步法低成本策略,以合成含有介孔/大孔的单晶中空ZSM-5,在关键的TPA/SiO比分别为0.05-0.1和0.05时,硅铝比约为14-∞和114-∞可变。这是首次在打破传统硅铝比限制(25-50)的同时避免使用大量TPAOH。通过一系列表征证实了合成体系的组成和结晶温度在中空结构形成中起着至关重要的作用。此外,根据对演变过程的研究,首次提出了一种基于表面结晶与内部溶解速率竞争关系的新型竞争结晶机制。竞争结晶机制和内部非保护性铝成为合成的关键因素。制备的中空ZSM-5沸石在涉及苯甲醛与正丁醇以及2-羟基苯乙酮之间大分子的不同酸度催化缩合反应中表现出优异的催化性能,这主要归因于其酸性、表面更易接近的活性铝位点以及更短的扩散路径。通过计算,中空沸石的有效因子(η)接近1,进一步证实了其更好的传质能力。该策略还成功扩展到了高含量铁掺杂、镓掺杂和硼掺杂的中空Silicate-1的合成。

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