首页> 外文期刊>Frontiers in Chemistry >Influence of Reaction Parameters on the Catalytic Upgrading of an Acetone, Butanol, and Ethanol (ABE) Mixture: Exploring New Routes for Modern Biorefineries
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Influence of Reaction Parameters on the Catalytic Upgrading of an Acetone, Butanol, and Ethanol (ABE) Mixture: Exploring New Routes for Modern Biorefineries

机译:反应参数对丙酮,丁醇和乙醇(ABE)混合物催化升级的影响:探索现代生物猎犬的新航线

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Here we present a comprehensive study on the effect of reaction parameters on the upgrade of an acetone, butanol and ethanol mixture – key molecules and platform products of great interest within the chemical sector. Using a selected high performing catalyst, Fe/MgO-Al2O3, the variation of temperature, reaction time, catalytic loading and reactant molar ratio have been examined in this reaction. This work is aiming to not only optimise the reaction conditions previously used, but to step towards using less energy, time and material by testing those conditions and analysing the sufficiency of the results. Herein we demonstrate that this reaction is favored at higher temperatures and longer reaction time. Also, we observe that increasing the catalyst loading had a positive effect on the product yields, while reactant ratios have shown to produce varied results due to the role of each reactant in the complex reaction network. In line with the aim of reducing energy and costs, this work showcases that the products from the upgrading route have significantly higher market value than the reactants, highlighting this process represents an appealing route to be implemented in modern biorefineries.
机译:在这里,我们对反应参数对丙酮,丁醇和乙醇混合物的升级升级的影响进行了综合研究,该关键分子和平台产品在化学扇区内极为兴趣。在该反应中,使用所选高性能催化剂,Fe / MgO-Al 2 O 3,温度,反应时间,催化负载和反应物摩尔比的变化。这项工作旨在不仅优化先前使用的反应条件,而且通过测试这些条件并分析结果的充分性来实现较少的能量,时间和材料。在此,我们证明该反应在较高的温度和更长的反应时间下有利于。此外,我们观察到增加催化剂负荷对产物产率的阳性作用,而反应物比表明,由于每个反应网络中的每个反应物的作用,产生改变的结果。符合降低能源和成本的目的,这项工作展示了升级路线的产品具有比反应物更高的市场价值,突出显示该过程代表了现代生物猎物中实施的吸引力路线。

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