Roles of Emerging FCC-based Technologies in Shifting to Petrochemicals Production  被引量:2

Roles of Emerging FCC-based Technologies in Shifting to Petrochemicals Production

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作  者:Xie Chaogang Gao Yongcan Zhu Genquan Zhang Jiushun 

机构地区:[1]SINOPEC Research Institute of Petroleum Processing, Beijing 100083

出  处:《China Petroleum Processing & Petrochemical Technology》2017年第4期1-5,共5页中国炼油与石油化工(英文版)

基  金:Financial supports from the SINOPEC Research program (S111088, S105086, and S193046)

摘  要:The emerging FCC-based technologies are applied in an attempt to shift to the production of designated light olefins(including mainly ethylene and propylene) as well as light aromatics(including benzene, toluene, and xylene)developed by the Research Institute of Petroleum Processing(RIPP), SINOPEC. The RIPP's proprietary technologies covering the Deep Catalytic Cracking(DCC), the Enhanced Deep Catalytic Cracking(DCC-PLUS), and the Maximizing Catalytic Propylene(MCP) have been playing decisive roles in the processing of crude aimed at closer integration of petroleum refining and petrochemical production both inside and outside of China since 1990. Three cases of commercial applications in five refineries, including Case Ⅰ— the closer integration between the steam cracker and the DCC/DCC-PLUS unit, Case Ⅱ— the petrochemical refinery provided with a DCC-PLUS unit, and Case Ⅲ— the integrated petrochemical/fuels refinery provided with a MCP unit, have highlighted their far-reaching effects on global petrochemicals production.The emerging FCC-based technologies are applied in an attempt to shift to the production of designated light olefins(including mainly ethylene and propylene) as well as light aromatics(including benzene, toluene, and xylene)developed by the Research Institute of Petroleum Processing(RIPP), SINOPEC. The RIPP's proprietary technologies covering the Deep Catalytic Cracking(DCC), the Enhanced Deep Catalytic Cracking(DCC-PLUS), and the Maximizing Catalytic Propylene(MCP) have been playing decisive roles in the processing of crude aimed at closer integration of petroleum refining and petrochemical production both inside and outside of China since 1990. Three cases of commercial applications in five refineries, including Case Ⅰ — the closer integration between the steam cracker and the DCC/DCC-PLUS unit, Case Ⅱ — the petrochemical refinery provided with a DCC-PLUS unit, and Case Ⅲ— the integrated petrochemical/fuels refinery provided with a MCP unit, have highlighted their far-reaching effects on global petrochemicals production.

关 键 词:deep catalytic cracking PROPYLENE BENZENE TOLUENE XYLENE 

分 类 号:TE624[石油与天然气工程—油气加工工程]

 

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