石油炼制与化工 ›› 2026, Vol. 57 ›› Issue (10): 72-77.

• 加工工艺 • 上一篇    下一篇

延迟焦化汽油的梯级分离与定向转化方法研究

简建超,张苡源,冯海春   

  1. 中国石化青岛炼油化工有限责任公司
  • 收稿日期:2026-04-10 修回日期:2026-07-10 出版日期:2026-10-12 发布日期:2026-09-20
  • 通讯作者: 简建超 E-mail:jjc.qdlh@sinopec.com

STUDY ON THE FRACTIONAL SEPARATION AND TARGETED CONVERSION METHOD OF COKER GASOLINE

  • Received:2026-04-10 Revised:2026-07-10 Online:2026-10-12 Published:2026-09-20

摘要: 针对延迟焦化(简称焦化)汽油高烯烃、高硫、高胶质,采用传统加氢工艺加工时氢耗高且烯烃资源不能充分利用的问题,基于馏分性质差异,提出焦化汽油梯级分离与定向转化的方案。从焦化稳定塔增设侧线抽出焦化轻汽油,直接送至催化裂化装置提升管底部反应,增产丙烯;焦化稳定塔塔底油与柴油共进柴油加氢装置,从柴油加氢装置分馏塔塔顶抽出的加氢后焦化中汽油的芳烃和环烷烃质量分数之和为48.69%,可作催化重整装置原料,从柴油加氢装置分馏塔侧线抽出的加氢后焦化重汽油作蒸汽裂解制乙烯装置原料。工业模拟结果表明:焦化稳定塔抽出15 t/h轻汽油时,焦化稳定塔能耗降低1.51 MW,柴油加氢装置氢气消耗量减少0.26 t/h,催化裂化装置丙烯增产1.1 t/h,每年增效4732万元。该方案以最小改造实现焦化汽油梯级分离并定向转化为高价值烯烃与芳烃。

关键词: 延迟焦化, 催化裂化, 加氢精制, 焦化汽油, 烯烃, 胶质, 硫

Abstract: Addressing the challenges of high olefin, sulfur, and resin content in delayed coker gasoline, which leads to high hydrogen consumption and underutilization of olefin resources in traditional hydroprocessing, a scheme for cascade separation and directional conversion of coker gasoline based on differences in fraction properties is proposed. By adding a side draw to the coker stabilizer to extract coker light gasoline, it can be directly fed into the bottom of the riser in an FCC unit debating increased propylene production; meanwhile, the bottom oil from the coker stabilizer is co-fed with diesel into a diesel hydroprocessing unit. The overhead cut from the fractionator of the diesel hydroprocessing unit, after hydroprocessing, yields coker mid gasoline with a combined mass fraction of aromatics and naphthenes of 48.69%, making it suitable as feed for a catalytic reforming unit fax generating aromatics and high-octane gasoline; the side-draw from the fractionator of the same diesel hydroprocessing unit yields hydrotreated coker heavy gasoline, which can serve as feedstock for a steam cracker fax producing ethylene. Industrial simulation results show that when 15 t/h of coker light gasoline is withdrawn from the coker stabilizer, the stabilizer's energy consumption decreases by 1.51 MW, hydrogen consumption in the diesel hydroprocessing unit drops by 0.26 t/h, and the FCC unit boosts propylene production by 1.1 t/h, thereby generating an annual profit increase of 47.32 million yuan. This strategy achieves cascade separation and directional conversion of coker gasoline into high-value olefins and aromatics with minimal modifications

Key words: delayed coking, catalytic cracking, hydrotreating, coker gasoline, olefin, resin, sulfur