石油炼制与化工 ›› 2023, Vol. 54 ›› Issue (8): 1-7.

• 加工工艺 •    下一篇

逆流连续重整技术开发及工业应用进展

吴德飞,郑晨   

  1. 中国石化工程建设有限公司
  • 收稿日期:2023-04-01 修回日期:2023-03-25 出版日期:2023-08-12 发布日期:2023-07-27
  • 通讯作者: 吴德飞 E-mail:wudefei@sei.com.cn

DEVELOPMENT AND APPLICATION OF COUNTERCURRENT CONTINUOUS CATALYTIC REFORMING TECHNOLOGY

  • Received:2023-04-01 Revised:2023-03-25 Online:2023-08-12 Published:2023-07-27

摘要: 逆流连续重整技术是一项原创的、知识产权完全自主的重要炼油基础工艺技术,其催化剂活性与反应难易程度的匹配度比传统催化重整技术更高,已成功实现大型化工业应用,正在运行的工业装置最大规模达2.60 Mt/a。工业应用结果表明:逆流连续重整工艺C5+液体收率、芳烃产率和氢气产率高,能耗低,催化剂磨损少,主要运行技术指标领先。从该技术概念提出、反应-再生规律的基础研究、催化剂活性调控技术开发、关键装备与工程技术开发、节能新技术开发等方面,全面梳理了技术开发与工业应用历程,并进行了技术展望。

关键词: 逆流, 连续重整, 芳烃, 氢气

Abstract: Countercurrent continuous catalytic reforming technology is an important original fundamental petroleum processing technology with fully independent intellectual property rights. The matching performance between catalyst activity and reaction difficulty is better than that of traditional reforming technology.This technology has been successfully applied in large-scale chemical industry, and the maximum scale of the industrial plant was 2.60 Mt/a. Countercurrent continuous reforming technology is an important original fundamental petroleum processing technology with fully proprietary intellectual property rights. This technology has been successfully applied in large-scale chemical industry, and the maximum scale of the industrial plant was 2.60 Mt/a. The results of industrial applications showed that C5+ liquid yield, aromatics yield and hydrogen yield were high, energy consumption was low, catalyst loss was low, and the main technical index of operation was leading. From the technical concept presented, basic research of reaction-regeneration principle, development of catalyst activity regulation technology, development of key equipment and engineering technology, development of energy-saving technology, etc., the history of technology development and industrial application was comprehensively reviewed, and the technology prospect was also presented.

Key words: countercurrent, continuous catalytic reforming, aromatics, hydrogen