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Direct Coupled Catalytic Upgrading of Switchgrass Pyrolysis Bio-oil Vapors

机译:切换催化促进生物油蒸汽直接耦合催化升级

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Direct coupled catalytic upgrading of complete bio-oil vapor from switchgrass pyrolysis was investigated over a Ce_(0.5)Zr_(0.5)O2 mixed oxide catalyst to produce higher carbon chain molecules from short aldehydes and carboxylic acids found in the bio-oil. The experiments were carried out in a single two-stage process where the gaseous products from the pyrolysis reaction were fed directly to a fixed catalyst bed in a coupled reactor in series with the pyrolysis reactor. The final products were condensed to the liquid phase and collected for analysis. GC by GC analysis of products shows evidence of catalytic activity. Acetic acid and propanoic acid found in the bio-oil (in non-catalytic experiments) were converted to acetone and 3-pentanone, respectively, among other products, when reacted over the catalyst. This is consistent with our work on model compounds that short aldehydes and carboxylic acids are converted to higher chain aldehydes and ketones by way of aldol condensation and ketonization over mixed oxide catalysts. Reacting over the mixed oxide catalyst resulted in lower liquid yields when compared to experiments without a catalyst. The char yields remained the same while the gas yields, by difference, appear to have increased under these conditions.
机译:在CE_(0.5)Zr_(0.5)Zr_(0.5)o2混合氧化氧化物催化剂上研究了来自切换珠化热解的完全生物油蒸汽的直接偶联催化升级,从生物油中发现的短醛和羧酸产生高碳链分子。实验在单一的两级过程中进行,其中来自热解反应的气态产物直接加入与热解反应器串联串联偶联反应器中的固定催化剂床中。最终产物浓缩至液相并收集以进行分析。 GC通过GC分析产品显示催化活性的证据。当在催化剂上反应时,在生物油(非催化实验中)中发现的乙酸和丙酸丙酸在生物油(在非催化实验中)分别转化为丙酮和3-戊酮。这与我们在模型化合物上的作用一致,通过醛醇缩合和在混合氧化物催化剂上通过醛醇缩合和酮化转化为高醛和酮转化为高链醛和酮的化合物。与没有催化剂的实验相比,在混合氧化物催化剂上反应导致较低的液体产率。当差异似乎在这些条件下,炭产量仍然相同。

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