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Catalytic upgrading of acetone, butanol and ethanol (ABE): A step ahead for the production of added value chemicals in bio-refineries

机译:丙酮,丁醇和乙醇(ABE)的催化升级:提前提前生产生物炼油厂中附加值化学品

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With the aim of moving towards sustainability and renewable energy sources, we have studied the production of long chain hydrocarbons from a renewable source of biomass to reduce negative impacts of greenhouse gas emissions while providing a suitable alternative for fossil fuel-based processes. Herein we report a catalytic strategy for Acetone, Butanol and Ethanol (ABE) upgrading using economically viable catalysts with potential impact in modern bio-refineries. Our catalysts based on transition metals such as Ni, Fe and Cu supported on MgO-Al2O3 have been proven to perform exceptionally with outstanding conversions towards the production of a broad range of added value chemicals from C-2 to C-15. Although all catalysts displayed meritorious performance, the Fe catalyst has shown the best results in terms conversion (89%). Interestingly, the Cu catalyst displays the highest selectivity towards long chain hydrocarbons (14%). Very importantly, our approach suppresses the utilization of solvents and additives resulting directly in upgraded hydrocarbons that are of use in the chemical and/or the transportation industry. Overall, this seminal work opens the possibility to consider ABE upgrading as a viable route in bio-refineries to produce renewably sourced added value products in an economically favorable way. In addition, the described process can be envisaged as a cross-link stream among bio and traditional refineries aiming to reduce fossil fuel sources involved and incorporate "greener" solutions. (C) 2020 Elsevier Ltd. All rights reserved.
机译:随着朝着可持续发展和可再生能源的旨视,我们研究了从可再生生物质来源生产的长链碳氢化合物,以减少温室气体排放的负面影响,同时为化石燃料的过程提供合适的替代方案。在此,我们报告了使用经济上可行的催化剂在现代生物炼油厂中产生潜在影响的经济上活催化剂来升级丙酮,丁醇和乙醇(ABE)的催化策略。我们的催化剂基于诸如MgO-Al2O3的Ni,Fe和Cu的过渡金属,已被证明是以优异的转化为基础,以产生从C-2至C-15的广泛附加值化学物质的出色转换。虽然所有催化剂表现出可靠的性能,但Fe催化剂表明了术语转化率的最佳结果(89%)。有趣的是,Cu催化剂展示对长链烃的最高选择性(14%)。非常重要的是,我们的方法抑制了直接在化学和/或运输工业中使用的升级的烃的溶剂和添加剂的利用。总体而言,这种精美作品开辟了将ABE升级作为生物炼油厂的可行途径,以经济上有利的方式生产可再生性的额外价值产品。此外,可以设想所述过程作为生物和传统炼油厂之间的交联流,其旨在减少涉及的化石燃料来源并纳入“绿色”解决方案。 (c)2020 elestvier有限公司保留所有权利。

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