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Fischer-Tropsch synthesis. Conversion of alcohols over iron oxide and iron carbide catalysts

机译:费-托合成。醇在氧化铁和碳化铁催化剂上的转化

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Both iron oxide (Fe_2O_3) and iron carbide catalysts are active for the dehydration of tertiary alcohols; the oxide catalyst is not reduced nor is the bulk carbide oxidized by the steam generated during the dehydration reaction. Secondary alcohols are selectively converted to ketones plus hydrogen by both the iron oxide and carbide catalyst. Fe_2O_3 is reduced to Fe_3O_4 during the conversion of secondary alcohols. Both iron carbide and oxide catalysts dehydrogenate a primary alcohol (C_n) to an aldehyde which undergoes a secondary ketioization reaction to produce a symmetrical detone with 2n-1 carbons. These results plus those of our earlier ~14C-tracer studies suggest that dehydration of alcohols to produce olefins makes a minor, if any, contribution during Fischer-Tropsch synthesis with an iron catalyst at low and intermediate pressure conditions.
机译:氧化铁(Fe_2O_3)和碳化铁催化剂均对叔醇脱水具有活性。氧化催化剂不会被还原,在脱水反应过程中产生的蒸汽也不会氧化整体碳化物。氧化铁和碳化物催化剂均可将仲醇选择性转化为酮加氢。在仲醇转化过程中,Fe_2O_3还原为Fe_3O_4。碳化铁催化剂和氧化物催化剂都将伯醇(C_n)脱氢成醛,然后进行二次酮化反应以生成具有2n-1个碳的对称杂色的醛。这些结果以及我们较早的〜14C示踪剂研究的结果表明,在低压和中压条件下使用铁催化剂进行费托合成过程中,醇的脱水产生烯烃的作用很小(如果有的话)。

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