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Spectroscopic analyses combined with Gaussian and Coats-Redfern models to investigate the characteristics and pyrolysis kinetics of sugarcane residue-derived biochars

机译:光谱分析结合高斯模型和Coats-Redfern模型研究甘蔗渣衍生生物炭的特性和热解动力学

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摘要

Biomass and biochars are considered good potential materials for environmental applications and their positive or negative effects on an ecosystem are mainly derived from the diverse physicochemical and pyrolytic kinetic properties. However, the characteristics of biomass resulted biochars have not been fully recognized. In this study, three biochars derived from dried sugarcane residue were prepared under 300, 500 and 700 degrees C. Spectroscopic techniques coupled with a Gaussian model were applied to innovatively de-convolute the existences and contributions of distinct overlapping peaks in the spectra, and then quantitatively evaluated the functional groups, sizes of aromatic clusters, and the degree of aromatic condensation of the sugarcane residue and biochars. Aromatic carbon/carbon-carbon double bond, single bonded oxygen, and pyrrolic nitrogen were dominant surface elements of the sugarcane residue and biochars. Decomposition and formation of different functional groups were quantitatively distinguished for pyrolysis temperature dependent biochars by Gaussian model. The changes of different carbon types and structures were attributed to the progressive dehydration, decarboxylation, aromatization reactions and structural formations of condensed carbon during the conversion of sugarcane residue into biochars. The biochars produced at higher pyrolysis temperatures exhibited higher fractions of bridgehead carbons, aromatic ring cluster sizes, and macromolecular aromatics. The sugarcane residue and biochars had fewer substituent groups at each aromatic ring and the biochars produced under 500 degrees C and 700 degrees C had an average of 14 more carbons in average aromatic cluster. The pyrolysis reactions of sugarcane residue and biochars were mainly associated with the degradation of hemicellulose, cellulose, and lignin components. The novel application of using spectroscopy coupled with a Gaussian model presented in this study has shown great potential as a valuable and effective characterization technique for studying the characteristics and pyrolysis kinetics of biochars. Results from this study benefit the greater understanding of the properties and reactivity of biomass and biochars, and their effects on pyrolysis optimization, carbon/pollutant sequestration, potential energy generation, and many other applications in the future. (C) 2019 Elsevier Ltd. All rights reserved.
机译:生物质和生物炭被认为是用于环境应用的良好潜在材料,它们对生态系统的正面或负面影响主要来自各种物理化学和热解动力学特性。但是,生物质产生的生物炭的特性尚未得到充分认识。在这项研究中,分别在300、500和700摄氏度下制备了三种来自干甘蔗渣的生物炭。将光谱技术与高斯模型结合使用,对卷积光谱中不同重叠峰的存在和贡献进行创新的去卷积,然后定量评估了官能团,芳香簇的大小以及甘蔗残渣和生物炭的芳香缩合程度。芳族碳/碳-碳双键,单键氧和吡咯氮是甘蔗残渣和生物炭的主要表面元素。通过高斯模型定量区分了热解温度依赖性生物炭的不同官能团的分解和形成。不同碳类型和结构的变化归因于甘蔗渣转化为生物炭过程中的逐步脱水,脱羧,芳构化反应和缩合碳的结构形成。在较高的热解温度下产生的生物炭表现出较高的桥头碳分数,芳族环簇尺寸和大分子芳族化合物。甘蔗残渣和生物炭在每个芳香环上具有较少的取代基,并且在500摄氏度和700摄氏度下生产的生物炭在平均芳香族簇中平均多含14个碳。甘蔗渣和生物炭的热解反应主要与半纤维素,纤维素和木质素成分的降解有关。这项研究中提出的结合高斯模型使用光谱学的新应用显示出巨大的潜力,可作为研究生物炭的特性和热解动力学的有价值而有效的表征技术。这项研究的结果有益于对生物质和生物炭的性质和反应性,以及它们对热解优化,碳/污染物螯合,势能产生以及将来的许多其他应用的影响有更深入的了解。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Journal of Cleaner Production》 |2019年第10期|117855.1-117855.11|共11页
  • 作者单位

    Chinese Res Inst Environm Sci State Key Lab Environm Criteria & Risk Assessment Beijing 10012 Peoples R China|Beijing Normal Univ Coll Water Sci Beijing 100875 Peoples R China;

    Sun Yat Sen Univ Sch Environm Sci & Engn Guangdong Prov Key Lab Environm Pollut Control & Guangzhou 510006 Guangdong Peoples R China;

    Chinese Res Inst Environm Sci State Key Lab Environm Criteria & Risk Assessment Beijing 10012 Peoples R China;

    Univ Massachusetts Stockbridge Sch Agr Amherst MA 01003 USA;

    Chinese Res Inst Environm Sci State Key Lab Environm Criteria & Risk Assessment Beijing 10012 Peoples R China|Univ Saskatchewan Dept Biomed & Vet Biosci Saskatoon SK S7N 5B3 Canada|Univ Saskatchewan Toxicol Ctr Saskatoon SK S7N 5B3 Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biomass; Functional groups; Carbon condensation; Aromatic cluster size; Thermal degradation;

    机译:生物质功能组;碳冷凝;芳香族簇的大小;热降解;

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