石油炼制与化工 ›› 2025, Vol. 56 ›› Issue (7): 99-106.

• 基础研究 • 上一篇    下一篇

催化裂化油浆热缩聚过程轻组分脱除对中间相沥青形成和性能的影响

周广雪1,刘东1,吴晶2,娄斌1,师楠1,杨修洁1,温福山1   

  1. 1. 中国石油大学(华东)化学化工学院,重质油全国重点实验室
    2. 中国石油辽河石化分公司
  • 收稿日期:2024-12-25 修回日期:2025-03-06 出版日期:2025-07-12 发布日期:2025-07-01
  • 通讯作者: 周广雪 E-mail:15066472573@139.com
  • 基金资助:
    中国石油科技创新基金

INFLUENCE OF REMOVING LIGHT COMPONENTS DURING FCC SLURRY THERMAL POLYCONDENSATION REACTION PROCESS ON THE FORMATION AND PROPERTIES OF MESOPHASE PITCH

  • Received:2024-12-25 Revised:2025-03-06 Online:2025-07-12 Published:2025-07-01

摘要: 以催化裂化油浆为原料,采用热缩聚和氮气吹扫工艺制备了不同晶体结构的中间相沥青,通过改变反应温度、反应时间和氮气流速调控轻组分的脱除速率和脱除率,研究了轻组分脱除对中间相结构形成和发育的影响规律。结果表明,初期加压处理使小分子组分缩聚生成中间相沥青前体,随后在氮气吹扫阶段通过有效去除残留的轻组分和低沸点各向同性组分,使中间相沥青前体快速浓缩成适当大小的中间相小球,在融并后形成光学结构优良的中间相沥青。升高反应温度、延长反应时间以及提高氮气流速均可以提高轻组分的脱除率。而轻组分脱除率的上升提高了中间相含量,促进了“广域”中间相结构的形成,增加了沥青稠环芳烃分子的尺寸、改善了微晶结构的有序排列次序。

关键词: 中间相沥青, 富芳烃重油, 微晶尺寸, 中间相结构

Abstract: Mesophase pitches with different crystal structures were prepared from FCC slurry by thermal polycondensation and nitrogen blowing process. The light component removal rate was regulated by changing the reaction temperature, reaction time, and nitrogen flow rate. The influence of removing light components on the formation and development of mesophase structure was investigated. The results showed that pressurized treatment at the early stage gives an opportunity for small molecules to react into precursor pitch, and nitrogen blowingat the subsequent stage drives the rapid concentration of the precursor pitch into mesophase spheres of the appropriate size and coalescence into mesophase pitch with excellent optical texture by efficiently removing the residual light components and low-boiling point isotropic components. The removal rate of light components can be increased by increasing the reaction temperature, reaction time and nitrogen flow rate.The increase in the removal rate of light components increased the mesophase content and promoted the formation of a ‘broad domain’ mesophase structure, which increased the size of the thickened cyclic aromatic hydrocarbon molecules of mesophase pitch and improved the orderly arrangement of the microcrystalline structure.

Key words: mesophase pitch, aromatic-rich heavy oil, microcrystalline size, mesophase structure