燃烧
化石燃料
化学
温室气体
碳中和
工艺工程
一套
生化工程
碳纤维
过程(计算)
计算机科学
有机化学
工程类
复合数
考古
操作系统
算法
历史
生物
生态学
作者
Katharina Kohse‐Höinghaus
出处
期刊:Chemical Reviews
[American Chemical Society]
日期:2023-04-09
卷期号:123 (8): 5139-5219
被引量:203
标识
DOI:10.1021/acs.chemrev.2c00828
摘要
Combustion is a reactive oxidation process that releases energy bound in chemical compounds used as fuels─energy that is needed for power generation, transportation, heating, and industrial purposes. Because of greenhouse gas and local pollutant emissions associated with fossil fuels, combustion science and applications are challenged to abandon conventional pathways and to adapt toward the demand of future carbon neutrality. For the design of efficient, low-emission processes, understanding the details of the relevant chemical transformations is essential. Comprehensive knowledge gained from decades of fossil-fuel combustion research includes general principles for establishing and validating reaction mechanisms and process models, relying on both theory and experiments with a suite of analytic monitoring and sensing techniques. Such knowledge can be advantageously applied and extended to configure, analyze, and control new systems using different, nonfossil, potentially zero-carbon fuels. Understanding the impact of combustion and its links with chemistry needs some background. The introduction therefore combines information on exemplary cultural and technological achievements using combustion and on nature and effects of combustion emissions. Subsequently, the methodology of combustion chemistry research is described. A major part is devoted to fuels, followed by a discussion of selected combustion applications, illustrating the chemical information needed for the future.
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