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A self-supported SS-fiber@meso-HZSM-5 core-shell catalyst via caramel-assistant synthesis toward prolonged lifetime for the methanol-to-propylene reaction

机译:一种自支撑的SS-fiber @ meso-HZSM-5核壳催化剂,可通过焦糖辅助合成,延长甲醇-丙烯反应的寿命

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摘要

A self-supported SS-fiber@meso-HZSM-5 core-shell catalyst was essentially designed and engineered from micro- to macro-scale by caramel-assistant hydrothermal synthesis. The significant role of caramel during the crystallization process was revealed in detail. Caramel not only created the mesoporosity in the ZSM-5 crystals, but also released acid under hydrothermal synthesis conditions which lowered the zeolite crystallinity. By taking advantage of the mesopore development in a hierarchical micro-meso-macropore structure with favourably-tuned acidic properties, such a catalyst provided a dramatically prolonged lifetime of 845 h (>90% conv.) with high propylene selectivity (e.g., 48%) in the MTP reaction. The hierarchical pore structure development mainly increased the accommodation capacity of the zeolite shell for receiving formed coke thereby leading to a dramatically prolonged lifetime in the MTP reaction.
机译:自支撑的SS-fiber @ meso-HZSM-5核壳催化剂是通过焦糖辅助水热合成从微观到宏观设计和制造的。详细揭示了焦糖在结晶过程中的重要作用。焦糖不仅在ZSM-5晶体中产生介孔性,而且在水热合成条件下还释放出酸,从而降低了沸石的结晶度。通过利用具有良好调节的酸性的分级微介孔-大孔结构中的介孔形成,这种催化剂可显着延长845 h(> 90%换算)的寿命,并具有较高的丙烯选择性(例如48%)。 )在MTP反应中。分层的孔结构发展主要增加了沸石壳容纳形成的焦炭的容纳能力,从而导致MTP反应中的寿命大大延长。

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