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Role of microwave during microwave-assisted catalytic reforming of guaiacol, syringolbio-oil as model compounds

机译:微波在微波辅助催化重整过程中的作用,愈霉醇,Syryolbio-油作为模型化合物

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摘要

To better understand the role of microwave and the mechanisms of thermal cracking and catalytic reforming of lignocellulosic bio-oils, this study compares the difference in the reaction characteristics between microwaveassisted and conventional heating of representative bio-oil model compounds. Syringol and guaiacol were selected as bio-oil model compounds. The effects of the heating method on the conversion of the model compound and the yield and composition of products were systematically investigated in the temperature range of 600-700 degrees C. The results showed that high reaction temperature and microwave-assisted heating favoured the conversion of model compounds, and the conversions of syringol were generally higher than those of guaiacol under the same conditions (temperature, heating method). The heating method was found to greatly influence the yield and composition of products. The bio-oil obtained from conventional thermal cracking of model compounds contained phenolics, aromatic hydrocarbons, aryl alkyl ethers, and oxygen-containing heterocyclic compounds. In contrast, microwave-induced polarisation of poorly stable methoxy groups promotes the formation of phenolics, the concentration of the phenolic in the guaiacol and syringol bio-oil reached 62.5-66.17 area% and 85.18-87.65 area%, respectively, in the temperature range of 600-700 degrees C. Catalytic reforming of model compounds showed that activated carbon catalyst drastically promoted the phenol formation, particularly under microwave-assisted heating, the phenol concentration reached 93.9-97.97 area% in bio-oil during catalytic reforming of guaiacol. The formation of electron-hole pairs on the active metal sites induced by microwave radiation possibly enhanced the demethoxylation to selectively generate phenol due to the strong electrondonating ability of the methoxyl group. Microwave-assisted catalytic reforming of the model compounds was also beneficial for H2 formation because of the direct dehydrogenation of methyl radicals and the gas-phase reactions. The H2 concentrations of 81.07-82.41 vol.% and 75.2-79.16 vol.% were obtained during microwave-assisted catalytic reforming of guaiacol and syringol, respectively.
机译:为了更好地了解微波的作用和木质纤维素生物油的热裂化和催化重整机制,该研究比较了微波缺血和常规加热代表生物油模型化合物之间的反应特性的差异。选择Syringol和Guaiacol作为生物油模型化合物。在600-700℃的温度范围内系统地研究了加热方法对模型化合物转化和产物的产率和组成的影响。结果表明,结果高反应温度和微波辅助加热有利于转化的转化在相同条件下(温度,加热法),模型化合物和辛膜的转化通常高于Guaiacol的转化。发现加热方法大大影响产品的产量和组成。从模型化合物的常规热裂解中获得的生物油含有酚类,芳烃,芳基烷基醚和含氧杂环化合物。相反,微波诱导的甲氧基的偏振促进酚类的形成,愈合酚酚的酚醛酚酚的浓度分别在温度范围内分别达到62.5-66.17面积%和85.18-87.65面积%。在600-700摄氏度C.模型化合物的催化重整表明,活性炭催化剂急促促进酚醛形成,特别是在微波辅助加热下,愈合愈合重整生物油的苯酚浓度达到93.9-97.97面积%。通过微波辐射诱导的活性金属位点上形成电子空穴对可能增强了去甲氧基化以选择性地产生由于甲氧基的强的电酮能力而产生的苯酚。由于甲基自由基和气相反应的直接脱氢,模型化合物的微波辅助催化重整对于H 2形成也有益。 H2浓度为81.07-82.41体积%和75.2-79.16体积%,分别在微波辅助愈合催化重整的愈缩症和霉菌中获得。

著录项

  • 来源
    《Journal of Analytical & Applied Pyrolysis》 |2021年第9期|105290.1-105290.12|共12页
  • 作者单位

    Univ Sci & Technol Liaoning Sch Chem Engn Key Lab Adv Coal & Coking Technol Liaoning Prov Anshan 114051 Peoples R China;

    Univ Sci & Technol Liaoning Sch Chem Engn Key Lab Adv Coal & Coking Technol Liaoning Prov Anshan 114051 Peoples R China;

    Univ Sci & Technol Liaoning Sch Chem Engn Key Lab Adv Coal & Coking Technol Liaoning Prov Anshan 114051 Peoples R China;

    Univ Sci & Technol Liaoning Sch Chem Engn Key Lab Adv Coal & Coking Technol Liaoning Prov Anshan 114051 Peoples R China;

    Univ Sci & Technol Liaoning Sch Chem Engn Key Lab Adv Coal & Coking Technol Liaoning Prov Anshan 114051 Peoples R China|Southeast Univ Monash Univ Joint Grad Sch & Monas Suzhou 215123 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bio-oil model compound; Thermal cracking; Catalytic reforming; Microwave-assisted;

    机译:生物油模型化合物;热裂解;催化重整;微波辅助;

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