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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Synthesis of hierarchical GaZSM-5 zeolites by a post-treatment method and their catalytic conversion of methanol to olefins
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Synthesis of hierarchical GaZSM-5 zeolites by a post-treatment method and their catalytic conversion of methanol to olefins

机译:通过后处理方法合成分层Gazm-5沸石及其甲醇至烯烃的催化转化

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摘要

A number of hierarchical GaZSM-5 zeolite molecular sieves with diverse amounts of mesoporosity and acidity were prepared by post-synthetic desilication with different concentrations of alkali. The zeolite structure and acidity have an important effect on the catalyst lifetime and the product distribution of the methanol to olefins (MTO) reaction, which have been investigated. The changes in pores and acidity by post-treatment were characterized by XRD, SEM, TEM, NH3-TPD, FTIR, Py-IR, etc. An alkali treatment of an appropriate concentration can increase the mesoporosity and reduce the strong acid density, which improves catalytic stability by suppressing coke formation. However, excessive alkali concentrations cause low crystallinity and excessive acidity despite a high mesopomsity, which is conducive to the formation of aromatic products and coking. The desilication significantly changes acidity of GaZSM-5 zeolites and affects the product selectivity; the selectivities of C-2 and C-3 olefin are consistent with the change of Lewis acid amount.
机译:通过用不同浓度的碱金属后溶解,制备许多具有多种介体和酸度的分层Gazsm-5沸石分子筛。沸石结构和酸度对催化剂寿命和甲醇的产物分布对烯烃(MTO)反应的催化剂寿命和产物分布具有重要作用。通过后处理的孔隙和酸度的变化是通过XRD,SEM,TEM,NH 3-TPD,FTIR,PY-IR等表征。适当浓度的碱处理可以增加中渗透性并降低强酸密度,通过抑制焦炭形成改善催化稳定性。然而,尽管高次源性,过量的碱浓度导致低结晶度和过量的酸度,这有利于芳香产物和焦化的形成。溶解显着改变了Gazsm-5沸石的酸度,并影响了产品选择性; C-2和C-3烯烃的选择性与路易斯酸量的变化一致。

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