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SIMS/XPS study on the deactivation and reactivation of B-MFI catalysts used in the vapour-phase Beckmann rearrangement

机译:SIMS / XPS研究气相相贝克曼重排中B-MFI催化剂的失活和再活化

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A weakly acidic borosilicate of MFI-type (B-MFI) was utilized as a catalyst for the Beckmann rearrangement of cyclohexanone oxime to epsilon-caprolactam in a vapour phase process. XPS and SIMS depth profiling techniques were applied to study the fresh catalyst as well as the deactivation and the reactivation phenomena on and below the catalyst surface. The catalyst deactivation could not be attributed to excessive amounts of carbon deposited on the surface or to a pronounced and irreversible deboration of the zeolite. A pore blocking effect caused by an enrichment of nitrogen-containing species inside the pore system was observed. These species were presumably formed by ring-opening reactions of unsaturated nitriles preferentially formed inside of the zeolite, Furthermore, distinct changes of the SiO+/SiOH+ fragment ion profiles in the surface near regions of the pore system were observed but the SiO+/SiOH+ fragment ion ratios in the topmost atomic layers of the fresh and the reactivated catalyst were nearly identical. This indicates that the level of SiOH-groups at the catalyst surface, which are active sites for the given process, was retained or reestablished during the whole time of catalyst service and the regeneration, whereas the silanol group density in the pore system below the surface was tremendously affected. Indications were obtained that Na is located at lattice sites, whereas Ca is able to diffuse inside the pore system of the B-MFI catalyst. (C) 1998 Academic Press. [References: 25]
机译:使用MFI型(B-MFI)的弱酸性硼硅酸盐作为气相法将环己酮肟的贝克曼重排成ε-己内酰胺的催化剂。 XPS和SIMS深度剖析技术被用于研究新鲜催化剂以及催化剂表面上和表面下的失活和再活化现象。催化剂失活不能归因于沉积在表面上的过量碳或沸石的明显且不可逆的脱硼。观察到由孔系统内部的含氮物质富集引起的孔阻塞效应。这些物质大概是由优先在沸石内部形成的不饱和腈的开环反应形成的。此外,在孔系统附近的表面观察到了SiO + / SiOH +碎片离子分布的明显变化,但SiO + / SiOH +碎片离子新鲜催化剂和再活化催化剂的最顶层原子层中的比率几乎相同。这表明在催化剂使用和再生的整个过程中,催化剂表面的SiOH-基团的水平是给定过程的活性位点,被保留或重新建立,而表面以下的孔隙系统中的硅烷醇基团的密度却保持不变。受了极大的影响。获得的迹象表明,Na位于晶格位置,而Ca能够在B-MFI催化剂的孔系统内扩散。 (C)1998年学术出版社。 [参考:25]

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