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首页> 外文期刊>Journal of Colloid and Interface Science >Preparation, characterization, and catalytic activity of CoMo/gamma-Al2O3 catalysts prepared by equilibrium deposition filtration and conventional impregnation techniques
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Preparation, characterization, and catalytic activity of CoMo/gamma-Al2O3 catalysts prepared by equilibrium deposition filtration and conventional impregnation techniques

机译:通过平衡沉积过滤和常规浸渍技术制备的CoMo /γ-Al2O3催化剂的制备,表征和催化活性

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A CoMo/gamma-Al2O3 catalyst, prepared by depositing on the Al2O3 carrier first the Mo species via equilibrium deposition filtration (EDF) and then the Co species by dry impregnation, was compared to three CoMo/gamma-Al2O3 samples prepared using various conventional impregnation methods. All samples had the same composition, cot-responding to an atomic ratio Co/(Co + Mo) equal to 0.3. The above samples were characterized using various physicochemical techniques (AAS, BET, DRS, LRS, XPS, TPR, and NO chemisorption), and their catalytic activity was determined using the hydrodesulfurization (HDS) of thiophene as a probe reaction. The EDF-prepared catalyst was about 30-43% more active in HDS than those prepared with the conventional impregnation techniques at all reaction temperatures studied. In contrast, the EDF catalyst exhibited the lowest hydrogenation activity. The higher HDS activity of the EDF sample is attributed to the higher number of active HDS sites formed on its surface. It is concluded that the increased number of active sites is due to the fact that the deposition of the Mo species by EDF results to a higher coverage of the support surface by supported molybdenum phase, which in turn, inhibits the formation of the catalytically inactive CoAl2O4 and favors the dispersion of octahedral cobalt on its surface. (C) 2003 Elsevier Inc. All rights reserved.
机译:将CoMo /γ-Al2O3催化剂与通过各种常规浸渍制备的三个CoMo /γ-Al2O3样品进行比较,该催化剂是先通过平衡沉积过滤(EDF)将Mo物种沉积在Al2O3载体上,然后通过干法浸渍将Co物种沉积方法。所有样品具有相同的组成,cot对应于原子比Co /(Co + Mo)等于0.3。使用各种物理化学技术(AAS,BET,DRS,LRS,XPS,TPR和NO化学吸附)对上述样品进行表征,并使用噻吩的加氢脱硫(HDS)作为探针反应确定其催化活性。在研究的所有反应温度下,用EDF制备的催化剂在HDS中的活性均比用常规浸渍技术制备的催化剂高约30-43%。相反,EDF催化剂表现出最低的氢化活性。 EDF样品的HDS活性较高是由于在其表面上形成的活性HDS部位数量较高。结论是,活性位点数量的增加归因于以下事实:EDF沉积的Mo物种导致负载的钼相对载体表面的覆盖率更高,进而抑制了催化惰性的CoAl2O4的形成。并有利于八面体钴在其表面上的分散。 (C)2003 Elsevier Inc.保留所有权利。

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