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首页> 外文期刊>Catalysis science & technology >Micropore blocked core-shell ZSM-22 designed via epitaxial growth with enhanced shape selectivity and high n-dodecane hydroisomerization performance
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Micropore blocked core-shell ZSM-22 designed via epitaxial growth with enhanced shape selectivity and high n-dodecane hydroisomerization performance

机译:微孔阻塞核壳ZSM-22设计通过外延生长和增强的形状选择性和高n-dodecane hydroisomerization性能

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摘要

A core-shell ZSM-22 (Z@S) was synthesized via epitaxial growth. The characterization results of Z@S validated that the acid sites located on the external surface of core ZSM-22 were passivated by the epitaxial shell of highly siliceous ZSM-22 and the acid strength of ZSM-22 remained unchanged. For comparison, highly siliceous and boron-containing ZSM-22 were also synthesized and characterized. In n-dodecane hydroisomerization, highly siliceous ZSM-22 almost without acid sites at the external surface achieved a much higher iso-dodecane selectivity than boron-containing ZSM-22 with weak acid sites. Z@S with strong acid sites and passivated surface acidity showed high activity and favored pore mouth catalysis but exhibited a lowered iso-dodecane selectivity. The reduced external surface acid sites enhanced the diffusion of n-alkane into the micropores, leading to severe cracking reaction caused by acid sites on the internal surface. Further modifying Z@S via micropore blockage could greatly inhibit cracking reaction inside the micropores and confine isomerization at the pore mouth of ZSM-22. This new ZSM-22 catalyst achieved higher activity and a higher iso-dodecane yield than catalysts with weak acidity.
机译:合成了核壳ZSM-22 (Z@S)通过外延生长。酸站点位于Z@S验证外部表面核心ZSM-22钝化外延层的高硅质ZSM-22和酸强度ZSM-22依然存在不变。boron-containing ZSM-22也和合成为特征。高硅质ZSM-22几乎没有酸的网站在外部表面实现了高得多比boron-containing iso-dodecane选择性与弱酸ZSM-22网站。网站和钝化表面酸度高活动和青睐的毛孔口催化展出iso-dodecane选择性降低。减少外部表面酸提高了网站链烷的扩散作用,导致严重的裂化反应所致酸网站内部表面。修改Z@S通过微孔堵塞极大地抑制内裂解反应微孔隙和孔隙限制异构化ZSM-22口。实现更高的活动和更高iso-dodecane收益率比催化剂较弱酸度。

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