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Hydroisomerization and hydrocracking of linear and multibranched long model alkanes on hierarchical Pt/ZSM-22 zeolite

机译:Pt / ZSM-22分子筛上线性和多支长链烷烃的加氢异构化和加氢裂化

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摘要

Hydroisomerization and hydrocracking using bifunctional zeolite catalysts with hydrogenation-dehydrogenation next to the Brensted acid functionality are at the heart of key refinery processes converting heavy petroleum fractions to high grade lubricants and fuels. Hierarchical zeolites presenting a network of auxiliary mesoporosity in addition to their native microporosity are known to improve accessibility to their active sites. In this paper we assess the impact of hierarchization by demetallation of the well-established hydroisomerization catalyst Pt/ZSM-22 on the reaction pathways of the n-decane, n-nonadecane and pristane (2,6,10,14-tetramethylpentadecane) model molecules. Detailed analysis of reaction products and assessment of acid site accessibility in conventional and hierarchical ZSM-22 samples highlight the contributions of acid sites in pore mouths and micropores to the skeletal rearrangement and cracking reactions.
机译:使用双功能沸石催化剂的加氢异构化和加氢裂化以及紧随Brensted酸官能团的加氢-脱氢是关键的炼油工艺的核心,该工艺将重油馏分转化为高级润滑油和燃料。除了其天然的微孔性外,还具有辅助中孔性网络的分层沸石可改善其活性部位的可及性。在本文中,我们评估了完善的加氢异构化催化剂Pt / ZSM-22的脱金属分层对正癸烷,正十八烷和p烷(2,6,10,14-四甲基十五烷)模型反应路径的影响分子。对常规和分层ZSM-22样品中反应产物的详细分析和对酸位的可及性评估,突显了孔口和微孔中酸位对骨架重排和裂解反应的贡献。

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