石油化工设备技术 ›› 2026, Vol. 47 ›› Issue (4): 26-29.doi: 10.3969/j.issn.1006-8805.2026.04.005

• 静设备 • 上一篇    下一篇

催化裂化装置旋风分离器的瓶颈问题分析与对策

付春辉   

  1. 中国石化上海高桥石油化工有限公司,上海 200137
  • 收稿日期:2026-05-07 修回日期:2026-06-30 接受日期:2026-06-28 出版日期:2026-07-17 发布日期:2026-07-17
  • 作者简介:付春辉,男,2001年毕业于大连理工大学化工设备与机械专业,工程硕士,现任中国石化上海高桥石化有限公司设备动力部经理,从事设备管理工作,高级工程师。

Analysis and Countermeasures of Bottleneck Issues for Cyclone Separators in FCC Units

Fu Chunhui   

  1. SINOPEC Shanghai Gaoqiao Petrochemical Co., Ltd., Shanghai, 200137
  • Received:2026-05-07 Revised:2026-06-30 Accepted:2026-06-28 Online:2026-07-17 Published:2026-07-17

摘要: 催化裂化装置是石油化工生产中的核心装置,其反应-再生系统(简称反再系统)的运行稳定性直接决定着装置的整体效率和经济效益。在生产过程中,反再系统通过旋风分离器实现催化剂与介质气的有效分离,以保证催化剂活性并维持两器系统的压力平衡。旋风分离器作为该环节的关键设备,其长周期运行能力对催化裂化装置的稳定性与高效性具有重要影响。实际运行过程中,旋风分离器常因磨损、堵塞、变形失效等问题导致分离效率下降,进而制约装置的长周期安全运转。针对上述问题,文章系统分析了旋风分离器长周期运行所面临的主要瓶颈,并提出了相应的优化改进措施,以期能够为提升催化裂化装置反再系统的运行性能提供理论参考与实践指导。

关键词: 旋风分离器, 分离效率, 磨损, 结构优化

Abstract: The fluid catalytic cracking (FCC) unit is a core unit in petrochemical production. The stable operation of its reactor-regenerator (R-R) system directly determines the overall production efficiency and economic benefits of the entire unit. During operation, the reactor-regenerator system utilizes cyclone separators to achieve efficient separation of the catalyst from the process gas, thereby preserving catalyst activity and maintaining the pressure balance across the R-R system. As the key equipment in this process, the long-term operation capability of cyclone separators significantly affects the stability and efficiency of the FCC unit. In actual operation, cyclone separators often experience a reduction in separation efficiency due to issues such as equipment wear, blockage, deformation and failure, which lead to a decline in separation efficiency and consequently constrain the long-term safe operation of the unit. To address these issues, this paper systematically analyzes the major bottlenecks encountered during the long-term operation of cyclone separators, and proposes targeted optimization and improvement measures. The aim is to provide theoretical reference and practical guidance for enhancing the operational performance of the reactor-regenerator system in fluid catalytic cracking units.

Key words: cyclone separator, separation efficiency, wear, structural optimization