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Study on Application of Bi-directional Combination Technology Integrating Residue Hydrotreating with Catalytic Cracking RICP 被引量:5

Study on Application of Bi-directional Combination Technology Integrating Residue Hydrotreating with Catalytic Cracking RICP
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摘要 After analysing the disadvantages of the traditional residue hydrotreating-catalytic cracking combination process, RIPP has proposed a bi-directional combination technology integrating residue hydrotreating with catalytic cracking called RICP which does not further recycles the FCC heavy cycle oil (HCO) inside the FCC unit and delivers HCO to the residue hydrotreating unit as a diluting oil for the residue that is concurrently subjected to hydrotreating prior to being used as the FCC feed oil. The RICP technology can stimulate residue hydrotreating reactions through utilization of HCO along with an in- creased yield of FCC light distillate, resulting in enhanced petroleum utilization and economic benefits of the refinery. After analysing the disadvantages of the traditional residue hydrotreating-catalytic cracking combination process, RIPP has proposed a bi-directional combination technology integrating residue hydrotreating with catalytic cracking called RICP which does not further recycles the FCC heavy cycle oil (HCO) inside the FCC unit and delivers HCO to the residue hydrotreating unit as a diluting oil for the residue that is concurrently subjected to hydrotreating prior to being used as the FCC feed oil. The RICP technology can stimulate residue hydrotreating reactions through utilization of HCO along with an increased yield of FCC light distillate, resulting in enhanced petroleum utilization and economic benefits of the refinery.
出处 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2008年第1期27-33,共7页 中国炼油与石油化工(英文版)
关键词 加氢处理 催化技术 重油 炼油工业 residue hydrotreating catalytic cracking bi-directional combination heavy cycle oil
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  • 1[1]http://www.gov.cn/jrzg/2007-07/11/content_680926.htm
  • 2[2]Cheng Zhiguang.Heavy oil processing technologies.China Petrochemical Publishing House,Beijing,1994,208
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  • 4[4]Fisher I P,et al.ACS DIV.Pet Chem,1982,27:838

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