Role of Hydrogen in n-Hexane Hydroisomerisation as a Model Reaction for Gasoline Quality Valorization

Galadima, A., Muhammad, R., Almustapha, M. N., Abubakar, M.
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Abstract

Consequent to the current global environmental legislations that enforced the phase-out of dangerous fuel additives with associated pollution problems, other research alternatives for improving fuels quality are investigated. Previously, lead and oxygenates have posed emission dangers that accounted for their complete phase-out in many regions. The emergence of hydroisomerisation as an option presents an opportunity for improving gasoline octane features while eliminating the environmental dangers. We prepared and characterized a noble and cheap catalyst based on β-Mo2C/sulfated zirconia that completely upgraded n-hexane into mono- and di-branched isomers at milder reaction conditions (1 atm, 400oC). The catalyst was 100% selective to n-hexanes at high hydrogen flow rates and recyclable and stable. This way, cheap opportunity for gasoline feed valorization via the hydroisomerisation process became possible.
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氢在正己烷加氢异构化反应中作为汽油质量增值的模型反应的作用
由于目前的全球环境立法强制淘汰具有相关污染问题的危险燃料添加剂,因此对改善燃料质量的其他研究替代方案进行了研究。此前,铅和含氧化合物造成了排放危险,导致许多地区完全淘汰了它们。氢异构化的出现为改善汽油辛烷值特性提供了机会,同时消除了环境危害。我们制备了一种基于β-Mo2C/硫酸氧化锆的催化剂,并对其进行了表征,该催化剂在较温和的反应条件下(1大气压,400℃)将正己烷完全转化为单支和双支异构体。该催化剂在高氢流量下对正己烷具有100%的选择性,且可回收、稳定。这样,通过加氢异构化过程使汽油进料增值的廉价机会成为可能。
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