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March 3, 2026Processes2 citationsOpen Access

Plasma-Assisted Combustion Technology in Ammonia Combustion: Research and Applications

SWShuang WangMLMa LiLGLei Gao

Key Points

  • Combustion efficiency and stability significantly improve through plasma-assisted technology, addressing key combustion challenges.
  • Key enhancements include increased flame propagation speed and reduced NOx emissions during ammonia combustion.
  • Assessment using comprehensive review of recent advancements reveals prospects for industrial applications of this technology.
  • Future developments may support global efforts toward sustainable energy solutions, highlighting the importance of zero-carbon fuel alternatives.

Abstract

Achieving a green transition in the energy structure and reducing reliance on traditional fossil fuels has become a global imperative for addressing climate change and promoting sustainable development. The search for clean energy alternatives to traditional fossil fuels has emerged as a critical challenge in the energy and power sector. Ammonia (NH3) shows great potential as a zero-carbon fuel in the energy sector, but issues such as its low flame propagation speed, high ignition energy requirements, and elevated NOx emissions limit its widespread industrial application. To address these issues and enhance ammonia combustion, plasma-assisted combustion technology has gained widespread attention in recent years as an effective solution. The plasma-assisted technology enhances combustion stability and efficiency of ammonia, and effectively suppresses NOx emissions. Additionally, the high-energy electrons and intense chemical reactions in plasma help to decompose and crack ammonia fuel, increase flame propagation speed, and thus improve ammonia combustion performance. This paper provides a comprehensive review of the latest research advancements in plasma-assisted technology in ammonia combustion. It covers the fundamental principles of plasma generation, the mechanisms of combustion enhancement, industrial application status, and development trends. The aim is to assess the potential of plasma-assisted combustion technology in achieving efficient, stable, and low-carbon ammonia combustion, and to explore its future prospects for industrial application.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69a75c2bc6e9836116a24be1https://doi.org/10.3390/pr14030458
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