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首页> 外文期刊>International Journal of Environmental Science and Technology >Comparison of Mo/MgO and Mo/gamma-Al2O3 catalysts: impact of support on the structure and dibenzothiophene hydrodesulfurization reaction pathways
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Comparison of Mo/MgO and Mo/gamma-Al2O3 catalysts: impact of support on the structure and dibenzothiophene hydrodesulfurization reaction pathways

机译:Mo / MgO和Mo /γ-Al2O3催化剂的比较:载体对结构和二苯并噻吩加氢脱硫反应路径的影响

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摘要

The MgO and P2O5-promoted gamma-Al2O3 supports with alkaline and acidic natures, respectively, were prepared, impregnated with Mo atoms, and compared for dibenzothiophene (DBT) hydrodesulfurization (HDS) reaction. Ultraviolet spectroscopy and the principal component analysis were used to identify the impact of the supports on the reaction pathways. The catalysts were characterized by BET surface analysis, X-ray diffraction, temperature-programmed reduction, Fourier transform infrared, and X-ray photoelectron spectroscopy. The gamma-Al2O3-supported catalyst favors the hydrogenation pathway relative to the MgO-supported catalyst, which facilitates the direct desulfurization route. The different performance was attributed to the dissimilar Mo phases that emerged during the activation procedure. The activation under sulfo-reductive condition changed the Mo atoms on gamma-Al2O3 support into the sulfide phase while extra oxidation took place for the MgO-supported catalyst. The migration and consumption of loosely bonded bulk oxygen atoms with under-coordinated Mo atoms on the MgO support were introduced as a possible reason for such extra oxidation. DFT calculations predicted an interaction between the Mo/MgO catalyst and DBT via the electron donation from the catalyst oxygen atoms to the aromatic rings, resulting in weakening and breaking of the C-S bonds. In spite of the higher resistance of the MgO-supported catalyst toward coking and its superior activity, its lower hydrogenation capability suggested using a dualfunction catalyst. Accordingly, two catalysts were mixed and the synergism was observed in the HDS reaction of thiophene.
机译:分别制备了具有碱性和酸性的MgO和P2O5促进的γ-Al2O3载体,并用Mo原子浸渍,并与二苯并噻吩(DBT)加氢脱硫(HDS)反应进行了比较。使用紫外光谱和主成分分析来确定载体对反应路径的影响。通过BET表面分析,X射线衍射,程序升温还原,傅里叶变换红外和X射线光电子能谱对催化剂进行了表征。相对于MgO负载的催化剂,γ-Al2O3负载的催化剂有利于氢化途径,这有利于直接脱硫途径。不同的性能归因于活化过程中出现的相异的Mo相。在磺还原条件下的活化将γ-Al2O3载体上的Mo原子转变为硫化物相,而MgO负载的催化剂发生了额外的氧化。引入了在MgO载体上具有未配位的Mo原子的键合松散的整体氧原子的迁移和消耗,这是这种额外氧化的可能原因。 DFT计算预测了Mo / MgO催化剂与DBT之间的相互作用,是通过将电子从催化剂氧原子传递给芳环,导致C-S键减弱和断裂。尽管MgO负载的催化剂对焦化的抵抗力较高,并且具有出色的活性,但建议使用双功能催化剂的氢化能力较低。因此,将两种催化剂混合并且在噻吩的HDS反应中观察到协同作用。

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