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Direct Production of Vanillin from Wood Particles by Copper Oxide–Peroxide Reaction Promoted by Electric and Magnetic Fields of Microwaves

机译:通过微波的电场和磁场促进的氧化铜 - 过氧化物反应直接从木颗粒中直接生产Vanillin

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摘要

Production of biobased functional polymers from woody biomass is becoming increasingly important for biorefineries. We studied the direct production of vanillin and vanillic acid, which are key monomer components for thermostable polymers, from a softwood Japanese cedar by an alkaline copper oxide–peroxide reaction using microwave (MW) and conventional heating (CH) reactors. MW heating at 180 °C for 10 min produced vanillin and vanillic acid in yields nearly three times higher than those produced by conventional heating (10.1% vs 3.4%). The MW and CH experiments were precisely compared using the same heating conditions and the same reaction vessel. A cavity resonator (single-mode microwave) which can separate electric (E) and magnetic (H) fields were used for wood degradation. The results revealed that the reactions were accelerated by both fields with a slightly more prominent effect of electric fields (Emax). The activation energy of experiments under CH, MW-Emax, and MW-Hmax was calculated. The yield enhancement and decrease of activation energy unequivocally indicate the MW-sensitive character of this reaction. When hardwood (Eucalyptus globulus) was used as a feedstock, syringaldehyde and syringic acid were produced together with vanillin and vanillic acid, and the maximum yield of the monomers reached 11.4% based on the original wood weight under MW heating. This method was successfully scaled up by using a 1-L scale MW reactor to give vanillin and vanillic acid at a total yield of 8.5%.]]>
机译:<![cdata [ src ='http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/ascececg/2017/ socecg.2017.5.issue-12/acssusshemeng.7b02883/20171128/10171128/图像/中/ SC-2017-028832_0008.gif“>从木质生物量的生物化功能聚合物的生产对于生物料理变得越来越重要。我们研究了香草蛋白和香草酸的直接生产,这些香草酸是热稳定聚合物的关键单体组分,通过使用微波(MW)和常规加热(CH)反应器的碱性氧化铜过氧化物反应从软木日本雪松。 MW加热在180℃下加热10分钟,产生的香草素和香草酸的产率高于常规加热产生的近三倍(10.1%Vs 3.4%)。使用相同的加热条件和相同的反应容器精确地比较MW和CH实验。可以将电气(E)和磁性(H)场分离的腔谐振器(单模微波)用于木材劣化。结果表明,两个领域的反应加速了电场略微突出的效果( e max )。计算CH,MW- Max 和MW- H Max 实验的激活能量。屈服增强和活化能降低明确表明该反应的MW敏感性。当硬木(桉树球状球液)用作原料时,用香草醛和香草酸产生辛醛和注射酸,单体的最大收率基于MW下的原始木材重量达到11.4%加热。通过使用1-L刻度MW反应器成功缩放该方法,以使香草蛋白和香草酸的总产量为8.5%。]>

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  • 作者单位

    Laboratory of Biomass Conversion Research Institute for Sustainable Humanosphere Kyoto University Gokasho Kyoto 611-0011 Japan;

    Laboratory of Biomass Conversion Research Institute for Sustainable Humanosphere Kyoto University Gokasho Kyoto 611-0011 Japan;

    Information Technology Section General Education Division College of Engineering Chubu University 1200 Matsumoto-cho Kasugai Aichi 487-8501 Japan;

    Fundamental Technology Development Centre Materials Development Team Teijin Limited 2345 Nishihabumachi Matsuyama Ehime 791-8536 Japan;

    Fundamental Technology Development Centre Materials Development Team Teijin Limited 2345 Nishihabumachi Matsuyama Ehime 791-8536 Japan;

    Laboratory of Biomass Conversion Research Institute for Sustainable Humanosphere Kyoto University Gokasho Kyoto 611-0011 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    Copper oxide; Lignin; Microwave effect; Vanillin;

    机译:氧化铜;木质素;微波效果;香草蛋白;

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