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Study on Deactivation and Cracking Performance of Catalysts Containing Y and MFI Zeolites
引用本文:ChenZhenyu LiCaiying TianHuiping HuangZhiqing. Study on Deactivation and Cracking Performance of Catalysts Containing Y and MFI Zeolites[J]. 中国炼油与石油化工, 2004, 0(1): 29-35
作者姓名:ChenZhenyu LiCaiying TianHuiping HuangZhiqing
作者单位:ResearchInstituteofPetroleumProcessing,Beijing100083
摘    要:This article investigated the deactivation caused by hydrothermal treatment and metal contamination of two cracking catalysts containing the Y and ZRP-1 zeolites aimed at maximization of light olefin yield. Test results had shown that the hydrothermal stability and resistance to metal contamination of the ZRP-1 zeolite were apparently better than those of the Y zeolite. Hydrothermal treatment and metal contamination had not only changed the catalytic cracking performance of respective zeolites, but at the same time had also modified to a definite degree of the relative proportions of effective components in these two zeolites and affected the synergistic effects between them, resulting in a relative enhancement of secondary cracking ability of the catalyst and increased olefin selectivity in the FCC products. In the course of application of catalyst for maximization of light olefins yield appropriate adjustment of the relative proportion of two active components can help to alleviate the products distribution and selectivity changes caused by deactivation of FCC catalysts.

关 键 词:MFI 沸石 钝化作用 裂化性能 催化剂 炼油行业 石油

Study on Deactivation and Cracking Performance of Catalysts Containing Y and MFI Zeolites
Chen Zhenyu, Li Caiying, Tian Huiping, Huang Zhiqing. Study on Deactivation and Cracking Performance of Catalysts Containing Y and MFI Zeolites[J]. China Petroleum Processing and Petrochemical Technology, 2004, 0(1): 29-35
Authors:Chen Zhenyu   Li Caiying   Tian Huiping   Huang Zhiqing
Abstract:This article investigated the deactivation caused by hydrothermal treatment and metal contamination of two cracking catalysts containing the Y and ZRP-1 zeolites aimed at maximization of light olefm yield. Test results had shown that the hydrothermal stability and resistance to metal contamination of the ZRP-1 zeolite were apparently better than those of the Y zeolite. Hydrothermal treatment and metal contamination had not only changed the catalytic cracking performance of respective zeolites, but at the same tune had also modified to a definite degree of the relative proportions of effective components in these two zeolites and affected the synergistic effects between them, resulting in a relative enhancement of secondary cracking ability of the catalyst and increased olefin selectivity in the FCC products. In the course of application of catalyst for maximization of light olefins yield appropriate adjustment of the relative proportion of two active components can help to alleviate the products distribution and selectivity changes caused by deactivation of FCC catalysts.
Keywords:catalytic cracking  zeolite  catalyst  deactivation
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