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Changes in Biochar Functional Groups and Its Reactivity after Volatile-Char Interactions during Biomass Pyrolysis

机译:生物量热解期间Biochar官能团的变化及其反应性挥发性 - 热解期间

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摘要

In this study, biochars prepared under 500–900 °C interacted with cellulose volatiles at 500 °C, and the effects of volatile–char interactions on the changes of biochar functional groups and its reactivity were investigated. The Fourier transform infrared (FTIR) spectrum deconvolution method was introduced to semiquantitatively evaluate the changes in the functional groups, and the reactivity of biochar was characterized with thermogravimetry as well. The results indicated that the surface functional groups varied significantly for the biochars prepared under different temperatures, and the changing trend in biochar functional groups during volatile–char interactions also differed. The active surface functional groups of the lower-temperature biochar including the carboxyl and aliphatic C–H groups were largely consumed, while the surface of the higher-temperature biochar might absorb/deposit the infrared-active coke precursors. The reactivity of biochar decreased after volatile–char interactions due to the consumption of active functional groups and the dehydrogenation condensation of biochar during the interactions. The combustion reactivity of biochar was in positive correlation to the biochar activity during volatile–char interactions. The lower-temperature biochar with higher combustion reactivity was found to be more active during the volatile–char interactions as well.
机译:在该研究中,在500-900℃下制备的Biochars在500℃下与纤维素挥发物相互作用,研究了挥发性炭相互作用对生物炭官能团的变化及其反应性的影响。引入傅里叶变换红外(FTIR)光谱卷积法以半定量评价官能团的变化,并且BioChar的反应性也具有热重试剂。结果表明,表面官能团对于在不同温度下制备的生物炸肉草变化的表面官能团,并且在挥发性炭相互作用期间生物炭官能团的变化趋势也有所不同。在很大程度上消耗了包括羧基和脂族C-H组的低温生物炭的活性表面官能团,而高温Biochar的表面可能吸收/沉积红外活性焦前体。由于活性官能团的消耗和生物炭在相互作用期间,Biochar的反应性降低了挥发性炭相互作用。 Biochar的燃烧反应性与挥发性炭相互作用期间的生物炭活性正相关。在挥发性炭相互作用中发现具有更高燃烧反应性的较高燃烧反应性的较低温度的生物炭。

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  • 来源
    《Energy & fuels》 |2020年第11期|14291-14299|共9页
  • 作者单位

    School of Energy and Power Engineering Jiangsu University;

    School of Energy and Power Engineering Jiangsu University;

    School of Energy and Power Engineering Jiangsu University;

    School of Energy and Power Engineering Jiangsu University;

    School of Energy and Power Engineering Jiangsu University;

    School of Energy and Power Engineering Jiangsu University;

    School of Energy and Power Engineering Jiangsu University;

    Joint International Research Laboratory of Biomass Energy and Materials College of Materials Science and Engineering Nanjing Forestry University;

    Joint International Research Laboratory of Biomass Energy and Materials College of Materials Science and Engineering Nanjing Forestry University;

    School of Material Science and Engineering University of Jinan;

  • 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
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