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Butanol Dehydration over V2O5-TiO2/MCM-41 Catalysts Prepared via Liquid Phase Atomic Layer Deposition

机译:液相原子层沉积法制备的V2O5-TiO2 / MCM-41催化剂上丁醇脱水

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摘要

MCM-41 was used as a support and, by using atomic layer deposition (ALD) in the liquid phase, a catalyst was prepared by consecutively loading titanium oxide and vanadium oxide to the support. This research analyzes the effect of the loading amount of vanadium oxide on the acidic characteristics and catalytic performance in the dehydration of butanol. The physical and chemical characteristics of the TiO2-V2O5/MCM-41 catalysts were analyzed using XRF, BET, NH3-TPD, XRD, Py-IR, and XPS. The dehydration reaction of butanol was performed in a fixed bed reactor. For the samples with vanadium oxide loaded to TiO2/MCM-41 sample using the liquid phase ALD method, it was possible to increase the loading amount until the amount of vanadium oxide reached 12.1 wt %. It was confirmed that the structural properties of the mesoporous silica were retained well after titanium oxide and vanadium loading. The NH3-TPD and Py-IR results indicated that weak acid sites were produced over the TiO2/MCM-41 samples, which is attributed to the generation of Lewis acid sites. The highest activity of the V2O5(12.1)-TiO2/MCM-41 catalyst in 2-butanol dehydration is ascribed to it having the highest number of Lewis acid sites, as well as the highest vanadium dispersion.
机译:将MCM-41用作载体,并且通过在液相中使用原子层沉积(ALD),通过将氧化钛和氧化钒连续地负载到载体上来制备催化剂。本研究分析了氧化钒的负载量对丁醇脱水过程中酸性和催化性能的影响。使用XRF,BET,NH3-TPD,XRD,Py-IR和XPS分析了TiO2-V2O5 / MCM-41催化剂的物理和化学特性。丁醇的脱水反应在固定床反应器中进行。对于使用液相ALD方法将氧化钒负载到TiO2 / MCM-41样品的样品,可以增加负载量直到氧化钒的量达到12.1wt%。可以确认,在负载了氧化钛和钒之后,中孔二氧化硅的结构性能得以很好地保留。 NH3-TPD和Py-IR结果表明,在TiO2 / MCM-41样品上产生了弱酸位,这归因于路易斯酸位的产生。 V 2 O 5(12.1)-TiO 2 / MCM-41催化剂在2-丁醇脱水中的最高活性归因于其具有最高的路易斯酸位点数目以及最高的钒分散度。

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