自然杂志 ›› 2023, Vol. 45 ›› Issue (1): 57-67.doi: 10.3969/j.issn.0253-9608.2022.03.007

• 科技进展 • 上一篇    下一篇

氢燃烧特性对氢内燃机性能的影响

李星国   

  1. 北京大学 化学与分子工程学院,稀土材料化学及其应用国家重点实验室/北京分子科学国家研究中心,北京 100871
  • 收稿日期:2022-03-03 出版日期:2023-02-25 发布日期:2022-08-15
  • 通讯作者: 李星国,研究方向:微米/纳米材料、能源材料及氢能利用。
  • 基金资助:
    国家自然科学基金项目(51971004)

Effect of hydrogen combustion characteristics on the performance of hydrogen internal combustion engine#br#

LI Xingguo   

  1. Beijing National Laboratory for Molecular Sciences (BNLMS)/The State Key Laboratory of Rare Earth Materials Chemistry and Applications, College of Chemistry and Molecular Engineering, Peking University, Beijing 100871, China
  • Received:2022-03-03 Online:2023-02-25 Published:2022-08-15

摘要: 氢能开发是“双碳”战略中的重要一环,目前氢能主要是通过氢燃料电池把化学能转变成电能的形式得以应用。与此不同,氢内燃机则是将氢能直接转变成机械能,应用在交通、机器运转、发电等众多领域,对氢能发展具有重要的推动作用。氢内燃机与传统内燃机的最大区别是用氢气取代传统的化石燃料,因此,氢气的燃烧特性对内燃机的性能具有很大影响,对内燃机的结构也提出新的要求。至今从氢燃烧特性的角度去理解氢内燃机的研究不多,为此,文章尝试从氢气燃烧特性的角度出发理解氢内燃机的性能,并重点对氢内燃机的热效率、输出功率、NO排放、异常燃烧等性能进行分析和讨论。结果显示,氢内燃机比传统内燃机和氢燃料电池在节能减排、输出功率、成本等方面具有更加优异的综合性能,是氢能-电能转换的另一种有效的方法。氢内燃机的发展也能促进氢能的大规模应用,其性能受到氢气燃烧特性的影响,氢燃烧特性的控制对氢内燃机性能的提高非常重要。

关键词: 氢内燃机, 氢气燃烧特性, 热效率, NOx 排放, 异常燃烧

Abstract: Hydrogen energy development is an important part of CO2 emission reduction strategy. At present, hydrogen energy is mainly applied in the form of converting chemical energy into electrical energy through fuel cells. In contrast, hydrogen internal combustion engine (HICE) directly converts hydrogen energy into mechanical energy, which is then used in many fields such as transportation, machine operation and power generation, providing a different way of utilizing hydrogen energy, which plays an important role in promoting the development of hydrogen energy. The biggest difference between HICE and traditional internal combustion engine is that hydrogen replaces the traditional fossil fuel. The combustion characteristics of hydrogen have a great impact on the performance of internal combustion engine, and put forward new requirements for the structure of internal combustion engine. So far, there is little work to understand HICE from the hydrogen combustion characteristics. Therefore, the author attempts to understand the performance of HICE from the perspective of hydrogen combustion characteristics, and especially analyzes and discusses the thermal efficiency, output power, NOx emission, abnormal combustion and other performance of HICE. These results show that compared with traditional internal combustion engines and fuel cells, HICE has excellent comprehensive performance in energy conservation and emission reduction, power output and cost. It is another effective conversion method from hydrogen energy to electric energy. The development of hydrogen internal combustion engines can also promote the large-scale application of hydrogen energy. The performance of conversion is affected by hydrogen combustion characteristics. The control of hydrogen combustion characteristics is important to improve the performance of HICE.

Key words: hydrogen internal combustion engine, hydrogen combustion characteristics, thermal efficiency, NOx emission, , abnormal combustion