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About the process improvement of adsorptive desulphurisation by adding hydrogen donators as additives in liquid fuels

机译:关于在液体燃料中添加供氢体作为添加剂的吸附脱硫工艺改进

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摘要

For the use in fuel cell system commercial fuels, like diesel or domestic heating oil, have to be desulphurised to ultra deep sulphur levels of below 1 mgkg"1. To reach this goal the adsorptive desul phurisation using a nickel-based sorbent has been identified. The evaluation of the reaction mechanism reveals in principle the same route as that of the hydrodesulphurisation (HDS) whereas the sulphur is adsorbed by the sorbent instead of being converted to hydrogen sulphide. The required hydrogen for the process is provided out of the fuel itself and not by an external supply of hydrogen. This analysis leads to an easy applicable enhancement of the process by adding a hydrogen donator as an additive to the liquid fuel. In correlation to the mass fraction of the donator the reaction rates and sorbent capacities are improved significantly. Furthermore the influence of aromatic compounds has been investigated, which exhibit similar molec ular structures and chemical properties than comparable high refractory sulphur species. This leads to side reactions especially of di- and tri-aromatics which influence the sulphur adsorption. A shift of the aro matic fraction from mono- to di- and tri-aromatic compounds has been observed as well as the alkylation of di- and tri-aromatics.
机译:为了在燃料电池系统中使用,必须将商业燃料(例如柴油或家用取暖油)脱硫至低于1 mgkg的超深硫含量”1。为了实现这一目标,已经确定了使用镍基吸附剂的吸附脱硫。对反应机理的评估从原则上揭示了与加氢脱硫(HDS)相同的途径,而硫被吸附剂吸附而不是转化为硫化氢,该过程所需的氢气由燃料本身提供而不是外部供应氢气,这种分析可通过向液体燃料中添加氢供体作为添加剂,从而轻松地提高工艺效率,与供体的质量分数相关,反应速度和吸附能力得到改善此外,还研究了芳族化合物的影响,这些化合物的分子结构和化学性质均与对比例相似乐高难燃硫物质。这导致特别是二和三芳族化合物的副反应,这会影响硫的吸附。已经观察到芳族级分从单芳族化合物向二芳族化合物和三芳族化合物的转变以及二芳族化合物和三芳族化合物的烷基化。

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