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Preparation and Application of Biochar-Based Catalysts for Biofuel Production

机译:生物炭基催化剂的制备与应用生物燃料生产

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摘要

Firstly, this paper reviews two main methods for biochar synthesis, namely conventional pyrolysis and hydrothermal carbonization (HTC). The related processes are described, and the influences of biomass nature and reaction conditions, especially temperature, are discussed. Compared to pyrolysis, HTC has advantages for processing high-moisture biomass and producing spherical biochar particles. Secondly, typical features of biochar in comparison with other carbonaceous materials are summarized. They refer to the presence of inorganics, surface functional groups, and local crystalline structures made up of highly conjugated aromatic sheets. Thirdly, various strategies for biochar modification are illustrated. They include activation, surface functionalization, in situ heteroatom doping, and the formation of composites with other materials. An appropriate modification is necessary for biochar used as a catalyst. Fourthly, the applications of biochar-based catalysts in three important processes of biofuel production are reviewed. Sulfonated biochar shows good catalytic performance for biomass hydrolysis and biodiesel production. Biodiesel production can also be catalyzed by biochar-derived or -supported solid-alkali catalysts. Biochar alone and biochar-supported metals are potential catalysts for tar reduction during or after biomass gasification. Lastly, the merits of biochar-based catalysts are summarized. Biochar-based catalysts have great developmental prospects. Future work needs to focus on the study of mechanism and process design.
机译:首先,本文评论了两种主要方法的生物炭合成,即常规热解和水热碳化(HTC)。描述了相关过程,讨论了生物质性质和反应条件,尤其是温度的影响。与热解相比,HTC具有加工高水分生物质和生产球形生物炭颗粒的优点。其次,总结了与其他碳质材料相比Biochar的典型特征。它们是指由高度共轭芳族片材组成的无机,表面官能团和局部结晶结构的存在。第三,说明了生物炭修饰的各种策略。它们包括活化,表面官能化,原位杂原子掺杂,以及与其他材料的复合材料的形成。使用作为催化剂的Biochar是必需的改性。第四,综述了生物炭基催化剂在生物燃料生产三个重要过程中的应用。磺化生物炭表明生物质水解和生物柴油生产的良好催化性能。生物柴油产生也可以通过生物炭衍生的或支持的固体碱催化剂催化。单独的生物炭和生物炭负载的金属是生物质气化期间或之后的焦油还原的潜在催化剂。最后,总结了生物炭的催化剂的优点。基于生物炭的催化剂具有很大的发展前景。未来的工作需要专注于机制和过程设计的研究。

著录项

  • 作者

    Feng Cheng; Xiuwei Li;

  • 作者单位
  • 年度 2018
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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