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催化剂中Y与ZSM-5分子筛比例对裂化、齐聚和氢转移反应的协作影响
引用本文:龚剑洪,许友好,龙军,魏晓丽.催化剂中Y与ZSM-5分子筛比例对裂化、齐聚和氢转移反应的协作影响[J].中国炼油与石油化工,2014,16(3):1-9.
作者姓名:龚剑洪  许友好  龙军  魏晓丽
作者单位:中国石化石油化工科学研究院
基金项目:financial support from the National Key Technology R&;D Program (2012BAE05B01) of China
摘    要:The objective of this study is to explore the optimum composition of Y and ZSM-5 zeolites to develop novel catalysts for obtaining lower gasoline olefins content and higher propylene yield. Five composite zeolite catalysts with varying Y zeolite/ZSM-5 zeolite ratios have been prepared in this work to investigate the synergy between the Y zeolite and ZSM-5 zeolite on the selectivity to protolytic cracking, β-scission, oligomerization, and hydrogen transfer reactions using a FCC naphtha feedstock at 480 ℃ in a confined fluidized bed reactor. Experimental results showed that the composite catalyst with a Y zeolite/ZSM-5 zeolite ratio of 1:4 had the highest protolytic cracking and β-scission ability, which was even higher than that of pure ZSM-5 catalyst. On the other hand, the catalyst with a Y zeolite/ZSM-5 zeolite ratio of 3:2 exhibited the strongest hydrogen transfer functionality while the pure Y zeolite based catalyst had the highest oligomerization ability. For all the catalysts tested, increasing conversion enhanced the selectivity to protolytic cracking and hydrogen transfer reactions but reduced the selectivity to β-scission reaction. However, no clear trend was identified for the selectivity to oligomerization when an increased conversion was experienced.

关 键 词:聚合  质子化裂化  β-断裂  复合分子筛  氢转移  

Synergetic Effect of Y Zeolite and ZSM-5 Zeolite Ratios onCracking,Oligomerization and Hydrogen Transfer Reactions
Gong Jianhong,Xu Youhao,Long Jun,Wei Xiaoli.Synergetic Effect of Y Zeolite and ZSM-5 Zeolite Ratios onCracking,Oligomerization and Hydrogen Transfer Reactions[J].China Petroleum Processing and Petrochemical Technology,2014,16(3):1-9.
Authors:Gong Jianhong  Xu Youhao  Long Jun  Wei Xiaoli
Abstract:composite zeolites protolytic cracking β-scission oligomerization hydrogen transfer
Keywords:composite zeolites  protolytic cracking  β-scission  oligomerization  hydrogen transfer
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