Picheau Emmanuel, Amar Sara, Derré Alain, Pénicaud Alain, Hof Ferdinand
Centre de Recherche Paul Pascal CRPP, UMR5031-CNRS/ Université de Bordeaux, 115 Avenue du Dr Albert Schweitzer, 33600, Pessac, France.
Chemistry. 2022 Sep 27;28(54):e202200117. doi: 10.1002/chem.202200117. Epub 2022 Jul 25.
Combustion is arguably as old as homo sapiens ability to observe and use fire. Despite the long tradition of using carbon combustion for energy production, this reaction is still not fully understood. This can be related to several facts that are intertwined and complicate the investigation, such as the large variety of possible carbon structures, the actual surface structure, porosity, the solid-gas nature of this reaction, diffusion limitation and fundamental reaction steps. In this review, a brief history of carbon combustion science is given, followed by a detailed discussion of the most important aspects of carbon combustion. Special attention is given to limitations for example diffusion. In carbon combustion, kinetic control can rarely be observed. The literature of the fundamental reaction steps actually occurring on the carbon framework is reviewed and it becomes apparent that the reaction is occurring primarily on defects on the basal plane. Thus, the reaction between oxygen and carbon may be used as an analytical tool to provide further insights into novel materials, for example synthetic carbon materials, fibres and graphene type materials. Mastering the combustion reaction in all its complexity may prove to be very valuable in the future.
燃烧的历史几乎与人类观察和使用火的能力一样悠久。尽管利用碳燃烧进行能源生产有着悠久的传统,但这种反应仍未被完全理解。这可能与几个相互交织且使研究变得复杂的事实有关,比如碳结构的多种可能性、实际表面结构、孔隙率、该反应的固 - 气性质、扩散限制以及基本反应步骤。在这篇综述中,给出了碳燃烧科学的简要历史,随后详细讨论了碳燃烧最重要的方面。特别关注了例如扩散等限制因素。在碳燃烧中,很少能观察到动力学控制。对实际发生在碳骨架上的基本反应步骤的文献进行了综述,结果表明反应主要发生在基面的缺陷处。因此,氧与碳之间的反应可作为一种分析工具,以进一步深入了解新型材料,例如合成碳材料、纤维和石墨烯类材料。全面掌握燃烧反应的复杂性在未来可能会被证明具有极高的价值。