石油炼制与化工 ›› 2026, Vol. 57 ›› Issue (8): 9-15.

• 基础研究 • 上一篇    下一篇

含五元杂环芳香化合物催化临氢热转化反应规律研究

董明,侯焕娣,王子军,龙军,申海平   

  1. 中石化石油化工科学研究院有限公司
  • 收稿日期:2026-01-19 修回日期:2026-04-22 出版日期:2026-08-12 发布日期:2026-07-23
  • 通讯作者: 侯焕娣 E-mail:houhd.ripp@sinopec.com

INVESTIGATION ON REACTION BEHAVIORS OF CATALYTIC THERMAL CONVERSION OF FIVE-MEMBERED HETEROCYCLIC AROMATIC COMPOUNDS IN PRESENCE OF HYDROGEN

  • Received:2026-01-19 Revised:2026-04-22 Online:2026-08-12 Published:2026-07-23
  • Contact: Hou Huandi E-mail:houhd.ripp@sinopec.com

摘要: 通过选取含杂原子的沥青质特征结构模型化合物,研究含五元杂环芳香化合物的催化临氢热转化反应规律,深入认识沥青质催化临氢热转化规律,结果表明:不同的含硫、氮、氧五元杂环化合物的存在均可以促进大陆型沥青质的裂化,与相同试验条件下芴的裂化率为0相比,三环的二苯并噻吩、咔唑、二苯并呋喃裂化率分别达到16.97%,40.98%,20.44%,四环的苯萘并噻吩、苯并咔唑、苯并芴酮裂化率分别达到51.10%,52.91%,24.12%,杂环两侧环数增加也可以促进其裂化。五元杂环位于联苯型分子内侧时,通过杂原子的反应,可以将联苯大陆型分子转化为群岛型分子进而实现裂化,该类型模型化合物裂化率达到70%以上,该路径可以促进该结构大陆型沥青质分子的转化。当沥青质分子中含有五元杂环同时五元杂环与相邻芳环呈渺位缩合型式连接且位于芳环之间时,在催化临氢热转化条件下,杂原子的存在可以促进此类大陆型沥青质分子裂化。

关键词: 大陆型沥青质, 催化临氢热转化, 分散型催化剂, 五元杂环, 裂化

Abstract: By selecting characteristic structural model compounds of asphaltenes containing heteroatoms, thermal conversion of hydrocarbons aromatic containing five-membered heterocycles were investigated to gain a deeper understanding of the behavior of asphaltenes in the presence of hydrogen and dispersed catalyst. The results indicate that the presence of different sulfur-, nitrogen-, and oxygen-containing five-membered heterocycles promotes the cracking of continental-type asphaltenes. Under the experimental conditions where fluorene exhibited a light fraction yield of 0, the cracking rate of the tricyclic compounds dibenzothiophene, carbazole, and dibenzofuran reached 16.97%, 40.98%, and 20.44%, respectively, while those of the tetracyclic compounds benzonaphthothiophene, benzocarbazole, and benzofluorenone reached 51.10%, 52.91%, and 24.12%, respectively.An increase in the number of rings on both sides of the heterocycle facilitate their cracking. When the five-membered heterocycle is located within a biphenyl-type molecule, reactions involving the heteroatom can transform the biphenyl continental-type molecule into an archipelagic-type molecule, thereby enabling cracking. The cracking rate of this type of model compound reaches more than 70 %. This pathway promotes the cracking of continental-type asphaltene molecules with such structures. When asphaltene molecules contain five-membered heterocycle, and the heterocycle is peri-condensed with adjacent aromatic rings and situated between them, the presence of heteroatoms facilitates the catalytic thermal conversion of such continental-type asphaltene molecules in the presence of hydrogen.

Key words: continental asphaltene, catalytic thermal conversion in the presence of hydrogen, dispersed catalyst, five-membered heterocycles, cracking