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Effect of Support Pretreatment Temperature on the Performance of an Iron Fischer–Tropsch Catalyst Supported on Silica-Stabilized Alumina

机译:载体预处理温度对二氧化硅稳定氧化铝上负载的费-托催化剂的性能的影响

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The effect of support material pretreatment temperature, prior to adding the active phase and promoters, on Fischer–Tropsch activity and selectivity was explored. Four iron catalysts were prepared on silica-stabilized alumina (AlSi) supports pretreated at 700 °C, 900 °C, 1100 °C or 1200 °C. Addition of 5% silica to alumina made the AlSi material hydrothermally stable, which enabled the unusually high support pretreatment temperatures (900 °C) to be studied. High-temperature dehydroxylation of the AlSi before impregnation greatly reduces FeO·Al 2 O 3 surface spinel formation by removing most of the support-surface hydroxyl groups leading to more effectively carbided catalyst. The activity increases more than four-fold for the support calcined at elevated temperatures (1100–1200 °C) compared with traditional support calcination temperatures of 900 °C. This unique pretreatment also facilitates the formation of ε′-Fe 2.2 C rather than χ-Fe 2.5 C on the AlSi support, which shows an excellent correlation with catalyst productivity.
机译:在添加活性相和促进剂之前,研究了载体材料预处理温度对费-托活性和选择性的影响。在经过700°C,900°C,1100°C或1200°C预处理的二氧化硅稳定的氧化铝(AlSi)载体上制备了四种铁催化剂。在氧化铝中添加5%的二氧化硅使AlSi材料具有水热稳定性,这使得能够研究异常高的载体预处理温度(> 900°C)。浸渍前,AlSi的高温脱羟基反应通过除去大部分载体表面羟基而大大减少了FeO·Al 2 O 3表面尖晶石的形成,从而使碳化催化剂更有效。与传统的煅烧温度<900°C相比,在高温(1100-1200°C)下煅烧的支撑物的活性增加了四倍以上。这种独特的预处理还有助于在AlSi载体上形成ε'-Fe2.2 C而不是χ-Fe2.5 C,这与催化剂的生产率有着极好的关联。

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