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PRODUCTION OF ULSD: CATALYSTS, KINETICS AND REACTOR DESIGN

机译:ULSD的生产:催化剂,动力学和反应堆设计

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This paper presents an overview of the critical factors governing the production of ultra low sulfur diesel (ULSD) i.e. diesel fuel with less than 50 ppm sulfur. To produce ULSD it is necessary to remove the most refractive sulfur compounds, which are certain alkyl-substituted dibenzothiophenes. Alkyl-substituted dibenzothiophenes are desulfurized via one of two routes: by direct extraction of the sulfur atom, or by hydrogenation of one of the aromatic rings followed by sulfur extraction. Factors affecting the relative rates of reaction for the two routes are discussed, in particular the inhibiting effect of certain nitrogen containing components of diesel oils on the hydrogenation route. CoMo catalysts are generally more active for the direct desulfurization route, whereas NiMoP catalysts show relatively higher activity for the hydrogenation route. The consequences for ULSD are demonstrated through a number of cases studies, which serve to illustrate the effect of catalyst choice on required catalyst volume, hydrogen consumption and product properties. The case studies are used to discuss the merits of revamps versus grassroots units. Many diesel hydrotreaters suffer from poor liquid distribution resulting in poor catalyst efficiency. Examples are given from industrial operation of how the application of state-of-the-art reactor internals improves reactor performance.
机译:本文概述了用于生产超低硫柴油(ULSD)的关键因素I.E.柴油燃料,硫磺含量小于50ppm。为了产生ULSD,必须去除最屈光的硫化合物,其是某种烷基取代的二苯甲苯酚。烷基取代的二苯甲烯烯烃通过两条途径中的一种脱硫:通过直接提取硫原子,或通过氢化芳环之一的氢化,然后硫提取。讨论了影响两条途径相对反应率的因素,特别是柴油在氢化途径上的某些氮成分的抑制作用。 COMO催化剂通常对直接脱硫途径更活跃,而尼莫普催化剂显示出氢化途径的相对较高的活性。通过许多案例研究证明了对ULSD的后果,其用于说明催化剂选择对所需催化剂体积,氢消耗和产品性能的影响。案例研究用于讨论改造与基层单位的优点。许多柴油加氢溶剂患有较差的液体分布,导致催化剂效率差。实施例是从工业运作中的应用,最先进的反应器内部的应用提高了反应堆性能。

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