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Activation of Hydroprocessing Catalysts: An in depth understanding of Dimethyldisulfide (DMDS) decomposition chemistry on Hydroprocessing Catalysts during their activation via Sulfiding

机译:加氢处理催化剂的活化:深入了解通过硫固定在其活化催化剂中对二甲基二硫醚(DMDS)分解化学的深入了解

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The progress in the improvement of hydroprocessing catalysts has been impressive since the discovery of Type-Ⅱ acid sites. Strict regulations on the sulphur and nitrogen levels in finished transportation fuels are being enforced globally, and this has promulgated the need to capture all the available activity of these new catalysts. The new generations of CoMo and NiMo catalysts have to be carefully activated via sulfiding to accomplish this task. Dimethyl disulfide (DMDS) has been and continues to be the agent of choice to sulphide "in-situ", and obtain optimal activity from these catalysts. The decomposition of DMDS, while verified under laboratory conditions, has not been clearly understood under actual refinery unit conditions. The DMDS decomposition chemistry under a range of commercial unit conditions has been investigated. Experimental data obtained have been used to build a kinetic model based on the fundamental decomposition mechanism. The data can be used beneficially to fine tune existing sulfiding procedures established by Catalyst Manufacturers and Refining Companies so as to make them optimal for and applicable to different types of units in the refinery. Additionally, this information can be used to ascertain essentially complete use of the 'sulfur' introduced via DMDS and prevent SO_2 excursions due to inadvertent loss of sulphur intermediates to the flare or flue gas, during the catalyst sulfiding and activation. Being the leader in DMDS manufacture, Arkema has recently introduced a new formulation, "DMDS Evolution~? E2" that has an improved user-friendly odor. Details of this formulation and of the "Carelflex~? Service" that Arkema provides to sulfide these catalysts in-situ will be described.
机译:自酸型酸型位点发现以来,加氢处理催化剂的改善的进展已经令人印象深刻。在全球范围内强制执行成品运输燃料中硫和氮水平的严格规定,这促销了捕获这些新催化剂的所有可用活动的需要。必须通过硫化物仔细激活新一代的COMO和NIMO催化剂以实现这项任务。二甲基二硫化物(DMDS)已经并继续是硫化硫化物“原位”的选择剂,并从这些催化剂中获得最佳活性。在实验室条件下验证的DMDS的分解尚未明确理解在实际炼油机组条件下。已经研究了一系列商业单位条件下的DMDS分解化学。获得的实验数据已被用于构建基于基本分解机制的动力学模型。这些数据可以有利地用于微调催化剂制造商和炼油公司建立的现有硫化手术,以使其最佳,适用于炼油厂中的不同类型的单位。另外,该信息可用于确定通过DMDS引入的“硫”基本上完全使用,并且由于在催化剂硫化和活化期间,由于无意中丧失硫或烟道气而导致的SO_2偏移。作为DMDS制造的领导者,Arkema最近推出了一种新的配方,“DMDS演进〜?E2”,具有改善的用户友好的气味。将描述该制剂的细节和“Careflex〜”的“Careflex〜”的细节,将描述硫化物的这些催化剂原位。

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