石油炼制与化工 ›› 2023, Vol. 54 ›› Issue (4): 37-42.

• 加工工艺 • 上一篇    下一篇

加氢蜡油MIP-CGP装置运行分析

李强1,王新2,贾伟峰1,康浩1   

  1. 1. 浙江石油化工有限公司
    2. 中石化石油化工科学研究院有限公司
  • 收稿日期:2022-09-21 修回日期:2022-11-17 出版日期:2023-04-12 发布日期:2023-04-27
  • 通讯作者: 王新 E-mail:wangxin.ripp@sinopec.com

OPERATION ANALYSIS OF MIP-CGP UNIT PROCESSING HYDROGENATED GAS OIL

  • Received:2022-09-21 Revised:2022-11-17 Online:2023-04-12 Published:2023-04-27

摘要: 对浙江石油化工有限公司3 Mt/a加氢蜡油催化裂化装置的运行情况进行了总结和分析,并对比分析了该装置采用多产丙烯和低硫燃料油组分的催化裂化与加氢脱硫技术(MFP),增产丙烯、多产异构烷烃的清洁汽油生产技术(MIP-CGP)及深度催化裂解技术(DCC)生产液化气的丙烯含量。结果表明:与设计值相比,采用MIP-CGP技术加工加氢蜡油生产的稳定汽油的烯烃体积分数达到15.9%,研究法辛烷值达到设计值93.0,硫质量分数仅为108 μg/g,可作为S Zorb装置生产高辛烷值汽油的优质原料;而焦炭产率降低0.64百分点,液化气收率增加3百分点以上,达到蜡油催化裂化生产液化气的较高水平;针对MIP-CGP工艺加工加氢蜡油生产液化气烯烃含量偏低问题,建议采用MFP工艺对本装置进行适应性改造,提高液化气丙烯和丁烯含量,压减汽油产量。

关键词: 加氢蜡油, 催化裂化, 丙烯, 汽油

Abstract: The operation of 3 Mt/a hydrogenated gas oil (HVGO) MIP-CGP unit using HVGO as feed in Zhejiang Petrochemical Co., Ltd. was summarized and analyzed. The propylene content of liquefied petroleum gas produced by this unit was compared and analyzed by using MFP (FCC process for Marine Fuel and Propylene), MIP-CGP (Clean Gasoline and Propylene Production) and DCC (Deep Catalytic Cracking). The results showed that compared with the design value, the olefin mass fraction of the stabilized gasoline produced by MIP-CGP technology reached 15.9%, the research octane number reached 93.0, and the sulfur mass fraction was only 108 μg/g, which could be used as the high-quality raw material for producing high octane gasoline in S Zorb unit. The coke yield decreased by 0.64 percentage point, and the yield of liquefied petroleum gas increased by more than 3 percentage points, reaching a higher level of liquefied petroleum gas production by gas oil catalytic cracking. In view of the problem of the low olefin content of liquefied petroleum gas produced by HVGO MIP-CGP process, it was suggested that the MFP process should be used to improve the adaptability of the unit to increase the content of propylene and butylene in liquefied petroleum gas, and to reduce gasoline production.

Key words: hydrogenated gas oil, catalytic cracking, propylene, gasoline