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用于改变含沸石复合材料碳氢化合物裂解性能的粘结剂选择

Binder Selection to Modify Hydrocarbon Cracking Properties of Zeolite-Containing Composites.

作者信息

Carrasco Saavedra Andres, Timoshev Vladislav, Hauck Mathias, Hassan Nejad Mehdi, Dang Tung Thanh, Vu Xuan Hoan, Seifert Markus, Busse Oliver, Weigand Jan J

机构信息

Faculty of Chemistry and Food Chemistry, Chair of Inorganic Molecular Chemistry, Technische Universität Dresden, Mommsenstraße 4, 01069 Dresden, Germany.

Aiotec GmbH, Am Borsigturm 27, 13507 Berlin, Germany.

出版信息

ACS Omega. 2022 May 4;7(19):16430-16441. doi: 10.1021/acsomega.2c00446. eCollection 2022 May 17.

Abstract

Activity, selectivity, and deactivation behavior of catalyst materials determine their efficiency in hydrocarbon conversion processes. For hydrocarbon cracking, the industrial catalyst is an important parameter in reaction technology to produce valuable compounds, , light olefins (C-C) and gasoline from crude oil fractions with high molecular weight (C). One strategy to enhance the catalytic activity for precracking is increasing the matrix activity, which depends on the used binder and additives. In this work, three binders (water glass, aluminum chloride, and a mixture of colloidal silica with aluminum dihydrogen phosphate) were used in combination with active zeolite Y, kaolin as filler, and ZSM-5 as additive to produce composite materials. Specific surface area and surface acidity measurements were combined with catalytic testing of the formulated samples in order to find the relation between the catalyst morphology and its activity. In addition, constraint index was used as a control parameter for the determination of the shape-selective properties and their correlation with the catalytic activity. The results show that the binders determine the porosity of the matrix and so the accessibility to zeolite pores and active sites. Matrixes with low porosity and activity enhance coke production and deactivate faster than matrixes with mesopores. Furthermore, ZSM-5 modifies the individual morphological and catalytic effects of the binders. Everything considered, the small crystals of ZSM-5 together with mesopores increase the olefins yield, reduce coking, and therefore enhance the performance of the final grain.

摘要

催化剂材料的活性、选择性和失活行为决定了它们在烃类转化过程中的效率。对于烃类裂解而言,工业催化剂是反应技术中的一个重要参数,用于从高分子量(C)的原油馏分中生产有价值的化合物,即轻质烯烃(C-C)和汽油。提高预裂解催化活性的一种策略是提高基体活性,这取决于所使用的粘结剂和添加剂。在这项工作中,三种粘结剂(水玻璃、氯化铝以及胶体二氧化硅与磷酸二氢铝的混合物)与活性Y型沸石、作为填料的高岭土以及作为添加剂的ZSM-5结合使用,以制备复合材料。将比表面积和表面酸度测量与所制备样品的催化测试相结合,以便找出催化剂形态与其活性之间的关系。此外,约束指数用作控制参数,以确定择形性能及其与催化活性的相关性。结果表明,粘结剂决定了基体的孔隙率,从而决定了沸石孔道和活性位点的可及性。孔隙率和活性较低的基体比具有中孔的基体更容易产生焦炭且失活更快。此外,ZSM-5改变了粘结剂的个体形态和催化效果。综合考虑,ZSM-5的小晶体与中孔一起提高了烯烃产率,减少了结焦,因此提高了最终颗粒的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8a4/9118377/0633b2fa91fb/ao2c00446_0001.jpg

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