首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Hollow ZSM-5 zeolite grass ball catalyst in methane dehydroaromatization: One-step synthesis and the exceptional catalytic performance
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Hollow ZSM-5 zeolite grass ball catalyst in methane dehydroaromatization: One-step synthesis and the exceptional catalytic performance

机译:甲烷脱氢化中的中空ZSM-5沸石草球催化剂:一步合成和卓越的催化性能

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摘要

One-step hydrothermal preparation method of hollow ZSM-5 zeolite grass ball (HGB-ZSM-5) was developed at the near-neutral circumstance. The electrostatic assembly among EDTA(2-), n-butylamine(+) and aluminosilicate species led to the self-transformation of irregular amorphous precursor into "Organic-Inorganic hybird ball" ([(SiO)(4)Al)(-)](m)(C4H12N+)(x)(EDTA(2-))(y)(C4H12N+)(z)[(SiO)(4)Al)(-)](n)), which directly crystallized into hollow ZSM-5 zeolite grass ball. After the loading of Mo species, the catalytic performance of Mo/HGB-HZSM-5 catalyst was tested in MDA process. Compared with conventional Mo/ZSM-5 catalyst, Mo/HGB-HZSM-5 catalyst exhibited higher CH4 conversion and aromatic selectivity, as well as longer lifetime, which was attributed to the hollow assembly mode. Hollow grass ball structure not only improved the synergistic effect by promoting the formation of more Mo-acid sites and their uniformly distribution, but also increased the contact time as the unreacted CH4 and primary products diffused outward from the inside cavity through Mo/HZSM-5 shell, giving rise to the exceptional catalytic performance. Furthermore, this unique structure bestowed Mo/HGB-HZSM-5 with the smaller bulky density and the reduce of the sites concerned with the catalyst deactivation, which inhibited the side reactions and strengthened molecules diffusion, showing the higher catalytic stability.
机译:在近中立环境下开发了中空ZSM-5沸石草球(HGB-ZSM-5)的一步水热量制备方法。 EDTA(2-),正丁胺(+)和硅铝酸盐物质中的静电组件导致了不规则非晶前体的自转化为“有机无机杂铃球”([(SiO)(4)Al)( - ) ](m)(c 4 -12N +)(x)(EDTA(2 - ))(y)(y)(Z)(Z)[(SiO)(4)Al)( - )](n)),其直接结晶成中空Zsm -5沸石草球。在钼物种负载后,在MDA工艺中测试Mo / HgB-HzSM-5催化剂的催化性能。与常规MO / ZSM-5催化剂相比,MO / HGB-HZSM-5催化剂表现出较高的CH 4转化和芳族选择性,以及归因于中空组装模式的寿命更长。中空草球结构不仅通过促进更多的MO-酸部位和均匀分布而改善了协同效应,而且还增加了通过MO / HZSM-5从内腔向外扩散的接触时间壳,引起特殊的催化性能。此外,这种独特的结构赋予Mo / HgB-HzSM-5,具有较小的庞大密度和减少涉及催化剂失活的部位,其抑制副反应和加强分子扩散,显示出更高的催化稳定性。

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