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Structured Monolithic Catalysts vs. Fixed Bed for the Oxidative Dehydrogenation of Propane

机译:结构化整体催化剂与固定床对丙烷氧化脱氢的关系

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摘要

The deposition of V-based catalysts for the oxidative dehydrogenation of propane to propene on cordierite honeycomb monoliths was optimised as a strategy to decrease the contact time in a structured reactor with respect to a conventional fixed bed one. 10 wt% VOx supported over SiO2 or Al2O3 were used as catalysts, deposed over the monolith using silica or alumina as primer, respectively. Both the alumina supported catalyst and the bohemite primer precursor were effectively deposed by dip-coating from stable powder suspensions, whereas insufficient adhesion was obtained when loading pre-synthesised SiO2 over the cordierite. A new method based on sol-gel production of SiO2 from tetraethylortosilicate (TEOS) over the monolith surface was set up. A correlation was derived for the prevision of the amount of silica deposed depending on the amount of TEOS. Both primer and catalyst loading were optimised as for uniformity and stability of the coating and resulted 0.5–1 wt % primer and 0.15 wt % of catalyst. Activity testing confirmed the strong improvement of propene productivity by increasing the time factor (i.e. Ncm3 of flowing reactant/min gcat), which ended in a one order of magnitude increase of productivity for the honeycomb-supported samples with respect to the fixed bed configuration.
机译:优化了在堇青石蜂窝状整体料上将丙烷氧化成丙烯的V基催化剂的沉积方法,以减少相对于常规固定床的结构化反应器中的接触时间。将负载在SiO 2或Al 2 O 3上的10重量%VO x用作催化剂,分别使用二氧化硅或氧化铝作为底漆沉积在整料上。通过从稳定的粉末悬浮液中浸涂有效地沉积了氧化铝负载的催化剂和波希米特底漆前体,而当在堇青石上负载预合成的SiO 2时,获得的粘合力不足。建立了一种基于溶胶-凝胶法在整料表面上由四乙基原硅酸酯(TEOS)生产SiO2的新方法。根据TEOS的量,可以得出预先确定的二氧化硅沉积量的相关性。优化了底漆和催化剂的用量,以确保涂层的均匀性和稳定性,并得到0.5–1 wt%的底漆和0.15 wt%的催化剂。活性测试证实,通过增加时间因素(即流动反应物的Ncm 3 / min gcat),丙烯生产率得到了极大的提高,最终使蜂窝状样品的生产率提高了一个数量级。关于固定床配置。

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