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Liquid fuels from Fischer-Tropsch wax hydrocracking: Isomer distribution

机译:费托蜡加氢裂化的液体燃料:异构体分布

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Considering the current need of low emission fuels for the automotive market and the need of renewable fuels that will emerge in the very next future, Fischer-Tropsch (FT) based technologies should be considered a valid option to accomplish both low emission and renewable fuel production targets. A hydrocracking step is necessary for obtaining high quality fuels from FT wax. Isomerisation is an important reaction that takes place during the hydroconversion process. The amount and the type of the isomers in the produced fuels heavily influence both cold flow properties and cetane number. In this paper the results of a detailed method of analysis which allows the distinction between mono-branched and multi-branched isomers in fuels obtained from an FT wax hydrocracking process, are presented and discussed. In particular the influence of the operating conditions and the wax conversion on the isomer distribution is pointed out.
机译:考虑到当前汽车市场对低排放燃料的需求以及在不久的将来将会出现的可再生燃料的需求,基于费托(FT)的技术应被视为实现低排放和可再生燃料生产的有效选择目标。加氢裂化步骤对于从FT蜡获得高质量燃料是必需的。异构化是加氢转化过程中发生的重要反应。产生的燃料中异构体的数量和类型严重影响冷流性能和十六烷值。本文介绍并讨论了详细分析方法的结果,该方法可以区分FT蜡加氢裂化工艺获得的燃料中的单支链和多支链异构体。特别指出了操作条件和蜡转化率对异构体分布的影响。

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