石油炼制与化工 ›› 2026, Vol. 57 ›› Issue (6): 36-43.

• 加工工艺 • 上一篇    下一篇

原料性质对渣油加氢反应性能影响研究

马瑢,戴立顺,邓中活,刘涛,聂鑫鹏   

  1. 中石化石油化工科学研究院有限公司
  • 收稿日期:2025-12-30 修回日期:2026-02-11 出版日期:2026-06-12 发布日期:2026-05-22
  • 通讯作者: 戴立顺 E-mail:dails.ripp@sinopec.com

IMPACT OF FEEDSTOCK PROPERTIES ON THE REACTION PERFORMANCE OF RESIDUE HYDROTREATING

  • Received:2025-12-30 Revised:2026-02-11 Online:2026-06-12 Published:2026-05-22

摘要: 为揭示原料性质对固定床渣油加氢反应性能的影响,选取5种不同来源的减压渣油与催化裂化柴油的混合原料,在相同催化剂级配及工艺条件下开展固定床加氢试验,将原料宏观性质和芳碳率与加氢反应速率常数进行关联分析和建模。结果表明:原料宏观性质可有效关联沥青质加氢转化、加氢降残炭和加氢脱钒的反应难易程度,但与其他类型加氢反应的关联度较低;引入芳碳率后,所构建的宏观-微观混合模型与加氢脱硫反应速率常数的关联度显著提升,而对其他类型加氢反应的关联性无显著改善;硫含量与残炭之比是影响渣油加氢反应性能的核心因素,硫含量越高,残炭越低,渣油原料的反应性能越优异。

关键词: 渣油加氢, 原料性质, 反应动力学, 芳碳率

Abstract: To elucidate the influence of feedstock properties on the reaction performance in fixed-bed residue hydrotreating, five blended feedstocks comprising vacuum residues from different sources and catalytic cracking diesel were selected for fixed-bed hydrotreating experiments under identical catalyst grading and process conditions. Based on the feedstocks’ macroscopic properties combined with the aromatic carbon ratio, correlation analysis and model construction were conducted with the hydrotreating reaction rate constants. The results indicate that the macroscopic properties of the feedstock can effectively correlate with the difficulty of asphaltene hydroconversion, vanadium removal, and carbon residue reduction, but show lower correlation with other reactions. After introducing the aromatic carbon ratio, the correlation of the macro-micro hybrid model with the hydrodesulfurization reaction rate constant improved significantly; however, it did not enhance correlations with other hydroprocessing reactions. The sulfur-to-carbon-residue ratio is identified as the core factor affecting residue hydroprocessing performance. A higher sulfur content coupled with a lower carbon residue corresponds to better reaction performance of the residue feedstock.

Key words: residue hydrotreating, feedstock property, reaction kinetics, aromatic carbon ratio