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首页> 外文期刊>Green chemistry >Exploiting H-transfer as a tool for the catalytic reduction of bio-based building blocks: the gas-phase production of 2-methylfurfural using a FeVO4 catalyst
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Exploiting H-transfer as a tool for the catalytic reduction of bio-based building blocks: the gas-phase production of 2-methylfurfural using a FeVO4 catalyst

机译:利用H-转移作为催化基于生物的构建块的工具:使用FEVO4催化剂的2-甲基呋喃布的气相产生

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摘要

Over the past decade, a great deal of effort has been devoted to developing reductive processes in the field of biomass valorisation for the sustainable production of bio-fuel additives and chemicals. Catalytic transfer hydrogenation, which uses alcohol as the hydrogen source, is an interesting approach that avoids the use of both high H-2 pressure and precious metal catalysts. In this work, the vapour-phase production of 2-methylfuran from biomass-derived furfural (FU), using methanol as the H-transfer agent and FeVO4 catalyst, was studied. At a temperature of 320 degrees C it was possible to achieve 80% yield of 2-methylfuran, with small amounts of 2,5-dimethylfuran and 2-vinylfuran as by-products. Catalyst characterization highlighted that FeVO4 reduction took place under the studied conditions, leading to the in situ development of a true active phase. The study of the reaction network permitted us to infer on the relative contribution of H-transfer and hydrogenation, the latter from the in situ generated formaldehyde and H2, to 2-methylfuran, formation. The reported results indicate the potential application of H-transfer with FeVO4 catalysts as an efficient process for the selective de-oxygenation of biomass-derived molecules.
机译:在过去的十年中,已经致力于在生物量储灵领域开发用于可持续生产生物燃料添加剂和化学物质的遗传算法的大量努力。使用醇作为氢气源的催化转移氢化是一种有趣的方法,避免了高H-2压力和贵金属催化剂的使用。在这项工作中,研究了使用甲醇作为H-转移剂和FEVO4催化剂的生物质衍生糠醛(FU)的2-甲基呋喃的气相产生。在320℃的温度下,可以实现80%的2-甲基呋喃,少量2,5-二甲基呋喃和2-乙烯基呋喃作为副产物。催化剂表征强调,在研究条件下发生FEVO4还原,导致真正的活跃阶段的原位发展。对反应网络的研究允许我们推断对H-转移和氢化的相对贡献,后者从原位生成的甲醛和H 2,形成2-甲基呋喃,形成。报道的结果表明H-转移与FEVO4催化剂的潜在应用作为生物质衍生分子的选择性去氧的有效方法。

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  • 来源
    《Green chemistry》 |2017年第18期|共11页
  • 作者单位

    Univ Bologna Toso Montanari Dept Ind Chem Vale Risorgimento 4 I-40136 Bologna Italy;

    Univ Bologna Toso Montanari Dept Ind Chem Vale Risorgimento 4 I-40136 Bologna Italy;

    Univ Bologna Toso Montanari Dept Ind Chem Vale Risorgimento 4 I-40136 Bologna Italy;

    Univ Bologna Toso Montanari Dept Ind Chem Vale Risorgimento 4 I-40136 Bologna Italy;

    Consorzio INSTM Via G Giusti 9 I-50121 Florence Italy;

    Univ Bologna Toso Montanari Dept Ind Chem Vale Risorgimento 4 I-40136 Bologna Italy;

    Univ Bologna Toso Montanari Dept Ind Chem Vale Risorgimento 4 I-40136 Bologna Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;数理科学和化学;化学工业废物处理与综合利用;
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