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首页> 外文期刊>Catalysis Today >In situ reactivation of spent NiMoP/gamma-Al2O3 catalyst for hydrodesulfurization of straight-run gas oil
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In situ reactivation of spent NiMoP/gamma-Al2O3 catalyst for hydrodesulfurization of straight-run gas oil

机译:实地反应直流汽油加氢硫化的废尼莫/γ-Al2O3催化剂的原位再活化

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Washing with xylene (X), 2,6 bis 1 hydroxy 1,1 diphenyl methyl pyridine (A) and in situ reactivation with molybdenum acetylacetonate (AceMo) on the NiMoP/Al2O3 spent surface catalyst has been investigated in the hydrodesulfurization (HDS) of straight-run gas oil. The spent catalyst was washed and dried at 120 degrees C before in situ reactivation. The sulfided catalysts were characterized by temperature programmed reduction (TPR), nuclear magnetic resonance (NMR), Raman spectroscopy and X-ray photoelectron spectroscopy (XPS). The HDS reactions were carried out at 5.5 MPa of H-2 and the reaction temperatures at 340 degrees C, 360 degrees C and 380 degrees C. The CatAXAceMo displayed the highest HDS activity. The TPR results advice that CatAX presented more "rigid" MoS2 edges than CatRef catalyst. NMR results suggest that CatAXAceMo showed lower aromatic or polyaromatic hydrocarbons surface concentration deposited after HDS reaction than CatAceMo and CatRef. Raman spectroscopy revealed the formation of coke crystallites with shorter size for CatAXAceMo than others catalysts. XPS spectroscopy results exhibited that CatAXAceMo presented smaller superficial carbon and a larger concentration of MoS2 active phase. A relation between the coke crystallites size and MoS2 superficial concentration was found. A lower aromatic concentration favors the shorter coke crystallites sizes and a major availability of Mo species for the formation of MoS2 to HDS reaction.
机译:用二甲苯(X),2,6双1羟基1,1吡啶(A)和用乙酰丙酮(ACEMO)的氨基乙酰丙酮(ACEMO)的原位再活化在加氢脱硫(HDS)直流瓦斯油。洗涤废催化剂并在原位再活化之前在120℃下干燥。硫化催化剂的特征在于温度编程减少(TPR),核磁共振(NMR),拉曼光谱和X射线光电子谱(XPS)。 HDS反应在5.5MPa的H-2 MPa和340℃下的反应温度下进行,360℃和380℃。肌瘤MEMO显示出最高的HDS活性。 TPR结果建议,即Catax呈现比CatRef催化剂更多的“刚性”MOS2边缘。 NMR结果表明,在HDS反应后,乳酪溶胶表明在HDS反应后沉积的芳族或多芳芳烃表面浓度比Catacemo和Catrof。拉曼光谱揭示了焦炭结晶的形成,其比其他催化剂更短。 XPS光谱结果表明,磷酸溶液呈现较小的浅表碳和较大浓度的MOS2活性相。发现焦晶石尺寸与MOS2浅表浓度之间的关系。较低的芳族浓度有利于较短的焦炭晶粒尺寸和Mo物种的主要可用性,以形成MOS2至HDS反应。

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