C6 + 正构烷烃芳构化的研究进展

Research progress on aromatization of C6 + n-alkanes

  • 摘要: 通过烷烃芳构化可将催化裂化汽油深度脱硫工艺和煤制油工艺中产生的大量低辛烷值饱和直链烷烃转化成芳烃,从而提升油品质量和芳烃产能,是制备芳烃的重要非石油路线,具有显著的社会经济价值。其中,C2−C5轻烃芳构化技术相对成熟,已进入到工业应用阶段;而针对\rmC_6^+ 直链烷烃芳构化,由于反应过程复杂、多种基元反应相互竞争,导致芳烃收率偏低、催化剂易结焦失活。为此,本工作综述了近年来有关\rmC_6^+ 正构烷烃芳构化的研究进展,重点讨论了\rmC_6^+ 直链烷烃芳构化的反应机理以及单功能及双功能催化体系中金属位点分散度、电子状态及载体的酸性、形貌和孔道结构等对反应性能的影响。

     

    Abstract: Conversion of saturated straight-chain alkanes generated in the deep desulfurization process of fluid catalytic cracking (FCC) gasoline and the coal-to-oil processes into aromatics via alkane aromatization is an important non-petroleum route for the preparation of aromatics that effectively improves the quality of oil. The aromatization technology of C2−C5 light hydrocarbons is relatively mature and has been used in industry. However, for the aromatization of \rmC_6^+ n-alkanes, the aromatics yield is still very low due to the complex reaction process and the competition of various elemental reactions. In addition, the catalysts usually suffer from rapid deactivation. In this work, we summarize the recent advances in the aromatization of \rmC_6^+ n-alkanes. The reaction mechanism of aromatization of \rmC_6^+ alkanes and the effects of the dispersion of metal sites, electronic state, and acidity, morphology and pore structure of the support on the catalytic performance are discussed in detail.

     

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