PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
February 21, 2026International Journal of Hydrogen Energy0 citationsOpen Access

Potential of green ammonia as a carbon-free fuel: Integrated hydrogen-ammonia-dme multi-fuel strategies for road transport IC engines

View Full Paper
DYDeepak Kumar YadavRARajesh AroraHSHardial Singh

Key Points

  • The aim is to evaluate green ammonia as a sustainable and carbon-free fuel alternative for internal combustion engines.
  • Reviewed sustainable ammonia production pathways including Haber-Bosch, electrochemical, plasma, and biological methods.
  • Analyzed ammonia's performance in dual-fuel engines and its potential to replace diesel.
  • Assessed emissions reductions and challenges such as NOx, N2O, and NH3 slip.
  • Ammonia can replace up to 95% of diesel energy in dual-fuel engines reducing CO2 emissions by 15-89%.
  • Achievable efficiency gains of 4-13% through optimized injection strategies.
  • 20% hydrogen enrichment can reduce unburned NH3 emissions by up to 28%.

Abstract

Green ammonia is emerging as a promising carbon-free energy carrier for internal combustion (IC) engines. This review summarizes recent advances in sustainable ammonia production and its application as an alternative fuel. Production pathways include renewable-powered Haber-Bosch, electrochemical synthesis, plasma-assisted processes, and biological methods. Beyond fertilizers, ammonia is gaining interest in transportation, power generation, refrigeration, and energy storage. As a fuel, it offers high hydrogen density (108 g H 2 L −1 ), carbon-free combustion, and easier storage than hydrogen. In dual-fuel engines, ammonia can replace up to 95% of diesel energy, reducing CO 2 emissions by 15-89%. However, high substitution ratios may increase NOx, N 2 O, and NH 3 slip due to ignition delay and incomplete combustion. Efficiency gains of 4-13% are achievable through optimized injection strategies, while 20% hydrogen enrichment and higher injection pressures can reduce unburned NH 3 by up to 28%. Further research is needed in advanced combustion, after-treatment, and techno-economic assessment. • Reviews sustainable green ammonia synthesis via Haber-Bosch, electrochemical, plasma, and bio. • Ammonia as carbon-free fuel with high H 2 density (108 g/L) and easy storage. • Dual-fuel engines achieve 95% diesel substitution and 15-89% CO 2 reduction. • Challenges such as ignition delay, NH 3 slip, N 2 O; mitigated by injection, H 2 , after-treatment. • Future perspectives on production, use, policy, and techno-economics for adoption.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Yadav et al. (2026) studied this question.

synapsesocial.com/papers/69994bdd873532290d01fee4https://doi.org/10.1016/j.ijhydene.2026.154085
Ask AI
Helpful
Bookmark
Share
View Full Paper