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Dibenzothiophene hydrodesulfurization using in situ generated hydrogen over Pd promoted alumina-based catalysts

机译:在Pd促进的氧化铝基催化剂上使用原位产生的氢对二苯并噻吩进行加氢脱硫

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Catalytic hydrodesulfurization (HDS) of dibenzothiophene (DBT) was carried out in a temperature range of 320- 400 °C using in situ generated hydrogen via steam reforming of ethanol and the effect of some organic additives was studied for the first time. Four kinds of alumina-based catalysts, i.e. Co -Mo/Al2O3, Ni-Mo/Al2O3 and their corresponding Pd promoted catalysts Pd- Co- Mo/Al2O3 and Pd- Ni- Mo/Al2O3, prepared through incipient impregnation method, were used for the desulfurization process. Catalytic activity was investigated in a batch autoclave reactor in the complete absence of external hydrogen gas. Experiments showed that organic additives like diethylene glycol (DEG), phenol, naphthalene, anthracene, o-xylene, tetralin, decalin and pyridine can affect the HDS activity of the catalysts in different ways, and only naphthalene is inhibitive for the catalytic activity towards HDS. The results showed that Ni-based catalysts are more active than Co-based ones while Pd shows a high promotion effect. DBT conversion of up to 97% was achieved with Pd- Ni- Mo/Al203 catalyst at 380 °C temperature and 13 h reaction time. Catalyst systems followed the HDS activity order of: Pd- Ni- Mo/Al2O3>Ni- Mo/Al2O3>Pd- Co- Mo/Al2O3>Co -Mo/Al2O3 at all conditions. Qualitative analysis of the products stream was carried out using GC -MS technique. The present HDS process using in situ generated hydrogen might be applied as an alternative approach for the catalytic HDS of DBT on industrial level due to its cost effectiveness, mild operating conditions and high activity of the catalysts.
机译:二苯并噻吩(DBT)的催化加氢脱硫(HDS)在320-400°C的温度范围内使用原位产生的氢气通过乙醇进行蒸汽重整进行,并首次研究了某些有机添加剂的作用。采用初始浸渍法制备了Co-Mo / Al2O3,Ni-Mo / Al2O3及其相应的Pd助催化剂Pd-Co-Mo / Al2O3和Pd-Ni-Mo / Al2O3四种氧化铝基催化剂。用于脱硫过程。在完全不存在外部氢气的情况下,在间歇式高压釜反应器中研究了催化活性。实验表明,有机添加剂如二甘醇(DEG),苯酚,萘,蒽,邻二甲苯,四氢萘,萘烷和吡啶可以不同方式影响催化剂的HDS活性,只有萘抑制了对HDS的催化活性。 。结果表明,Ni基催化剂比Co基催化剂更具活性,而Pd具有很高的促进作用。使用Pd-Ni-Mo / Al2O3催化剂在380°C的温度和13 h的反应时间下,DBT转化率可达到97%。在所有条件下,催化剂系统的HDS活性顺序为:Pd-Ni-Mo / Al2O3> Ni-Mo / Al2O3> Pd-Co-Mo / Al2O3> Co-Mo / Al2O3。使用GC -MS技术进行产物流的定性分析。由于其成本效益,温和的操作条件和催化剂的高活性,使用原位产生的氢的本发明的HDS方法可以用作工业水平上DBT的催化HDS的替代方法。

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