石油炼制与化工 ›› 2021, Vol. 52 ›› Issue (8): 42-48.

• 基础研究 • 上一篇    下一篇

加氢LCO催化裂化反应过程中芳烃转化规律分析

陈骞,毛安国,袁起民,达志坚   

  1. 中国石化石油化工科学研究院
  • 收稿日期:2020-12-16 修回日期:2021-01-19 出版日期:2021-08-12 发布日期:2021-07-29
  • 通讯作者: 毛安国 E-mail:maoanguo.ripp@sinopec.com
  • 基金资助:
    适应国六清洁汽油生产关键技术;降低柴汽比的产品结构调整技术

STUDY OF AROMATICS CONVERSION RULES IN HYDROTREATED LCO CATALYTIC CRACKING

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  • Received:2020-12-16 Revised:2021-01-19 Online:2021-08-12 Published:2021-07-29
  • Contact: An-Guo MAO E-mail:maoanguo.ripp@sinopec.com

摘要: 基于催化裂化轻循环油(LCO)选择性加氢-催化裂化集成生产轻质芳烃(LTA)技术在中国石化某分公司的工业应用结果,从烃类分子水平对加氢LCO催化裂化反应过程中芳烃转化规律进行分析。结果表明:加氢LCO发生催化裂化反应后,分子膨胀比为2.11,其中链状烃含量增加,环烷烃含量降低,单环芳烃含量降低,稠环芳烃含量增加;催化裂化产物中的单环芳烃73.91%来自加氢LCO中单环芳烃上烷基和环烃基的裂化、轻质化反应,其余来自加氢LCO中非芳烃类化合物的环化和芳构化反应;催化裂化产物中双环、三环及三环以上芳烃(包括焦炭)来自加氢LCO中双环、三环芳烃的比例分别为37.77%和18.49%,其余分别来自加氢LCO中单环、双环芳烃的稠环化反应;加氢LCO中烷基苯、茚满类+四氢萘类和茚类的催化裂化表观转化率分别为82.50%,93.80%,80.72%。研究结果对LTA工艺技术的改进和专用催化剂的性能提升具有指导作用。

关键词: 轻循环油, 加氢处理, 催化裂化, LTA, 芳烃

Abstract: Based on the commercial result of LTA technology in a refinery of SINOPEC,the conversion rules of the aromatics in hydrotreated LCO(hydro-LCO)catalytic cracking were studied in terms of molecular-based hydrocarbon. The results showed that 73.91% of monocyclic aromatics in products was from cracking reaction of the monocyclic aromatics like alkyl-benzene and naphthenic-benzene in hydro-LCO,and the rest was from the aromatization reactions of non-aromatic compounds including paraffin hydrocarbons and naphthenic hydrocarbons in hydro-LCO in the catalytic cracking process. The contents of dicyclic-aromatics and tricyclic and polycyclic aromatics in products were 37.77% and 18.49%, respectively, and the rests were made up from condensation reactions of monocyclic aromatics and dicyclic aromatics in hydro-LCO. The apparent conversions of alkyl-benzene,hydrocarbons like indane and tetraline and hydrocarbons like indene in catalytic cracking processing were 82.50%,93.80% and 80.72%, respectively. The results can be used to guide the further improvement of LTA technology and proprietary catalyst.

Key words: light cycle oil, hydrotreating, catalytic cracking, LTA, aromatics