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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Synthesis,Characterization,and Catalytic Performances of Novel CoMo Hydrodesulfurization Catalysts Supported on Mesoporous Aluminas
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Synthesis,Characterization,and Catalytic Performances of Novel CoMo Hydrodesulfurization Catalysts Supported on Mesoporous Aluminas

机译:介孔氧化铝上负载的新型CoMo加氢脱硫催化剂的合成,表征及催化性能

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摘要

A series of mesoporous aluminas of different morphologies was prepared using synthesis methods recently described in the literature.These aluminas were used as supports for CoMo HDS catalysts that were fully characterized.Their performances were evaluated using an atmospheric thiophene HDS catalytic test.The properties of the mesostructured alumina-based catalysts were compared with those of a conventional alumina-based CoMo catalyst and of a previously optimized sol-gel alumina-based catalyst(reference aluminas).The highest conversion was observed when using the alumina prepared from Al-sec-butoxide with P123 as a templating agent,which exhibited the largest mesopores and a fine fibrillar morphology,with a result ca.25% larger than that observed on both reference aluminas.According to their catalytic behavior,the samples were divided into two groups,the first one comprising the low conversion catalysts,and the second one comprising the high conversion catalysts.Among all the considered parameters(physical properties of the solids,oxidic phase nature,sulfidic phase morphology),only the difference in the state of the oxo-molybdate phase gave a reliable correlation with catalytic performances.In the oxidic form,the low activity samples presented monomolybate species,whereas the high activity samples presented polymolybdate species.
机译:使用最近在文献中描述的合成方法制备了一系列不同形态的介孔氧化铝,这些氧化铝被用作CoMo HDS催化剂的载体,该催化剂已被充分表征,并通过大气噻吩HDS催化试验评估了它们的性能。将介孔结构的氧化铝基催化剂与常规的氧化铝基CoMo催化剂和先前优化的溶胶-凝胶氧化铝基催化剂(参比氧化铝)进行了比较。当使用由仲丁醇铝制备的氧化铝时,转化率最高以P123为模板剂,具有最大的中孔和细的纤维状形态,结果比两种参比氧化铝大25%。根据它们的催化性能,样品分为两组,第一组其中一种包含低转化率催化剂,第二种包含高转化率催化剂。 d个参数(固体的物理性质,氧化相性质,硫化物相形态)仅对氧钼酸盐相态的差异提供了与催化性能的可靠相关性。 ,而高活性样品呈现多钼酸盐种类。

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