Litcius/Paper detail

Ammonia-Based Clean Energy Systems: A Review of Recent Progress and Key Challenges

Mengwei Sun, Zhongqian Ling, Jiani Mao, Xianyang Zeng, Dingkun Yuan, Maosheng Liu

2025Energies18 citationsDOIOpen Access PDF

Abstract

Ammonia is gaining increasing attention as a zero-carbon fuel and hydrogen carrier, offering high energy density, mature liquefaction infrastructure, and strong compatibility with existing energy systems. This review presents a comprehensive summary of the recent advances in ammonia-based clean energy systems. It covers the fuel’s physicochemical properties, green synthesis pathways, storage and transport technologies, combustion behavior, NOX formation mechanisms, emission control strategies, and safety considerations. Co-firing approaches with hydrogen, methane, coal, and DME are evaluated to address ammonia’s low reactivity and narrow flammability limits. This paper further reviews engineering applications across power generation, maritime propulsion, and long-duration energy storage, drawing insights from current demonstration projects. Key technical barriers—including ignition delay, NOX emissions, ammonia slip, and economic feasibility—are critically examined. Finally, future development trends are discussed, highlighting the importance of integrated system design, low-NOX combustor development, solid-state storage materials, and supportive policy frameworks. Ammonia is expected to serve as a strategic energy vector bridging green hydrogen production with zero-carbon end-use, facilitating the transition to a sustainable, secure, and flexible energy future.

Topics & Concepts

Key (lock)AmmoniaClean energyEnvironmental economicsEnvironmental scienceComputer scienceEngineeringChemistryEnvironmental protectionEconomicsComputer securityOrganic chemistryAmmonia Synthesis and Nitrogen ReductionCatalytic Processes in Materials ScienceHydrogen Storage and Materials
Ammonia-Based Clean Energy Systems: A Review of Recent Progress and Key Challenges | Litcius