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February 2, 2026Hydrogen3 citationsOpen Access

Combustion Characteristics of Hydrogen-Enriched Natural Gas with a Focus on Residential Appliances: A Review

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TSTheodor Mihnea SîrbuCICristi Emanuel IoluTPTudor Prisecaru

Key Points

  • To explore the effects of hydrogen-enriched natural gas on combustion characteristics in residential appliances.
  • Review of experimental studies and numerical simulations
  • Evaluation of safety and emissions performance
  • Analysis of hydrogen blending limits and design adaptations
  • Moderate hydrogen blending decreases CO and CO2 emissions
  • Increased combustion efficiency and burning velocity observed
  • Higher flame temperatures lead to elevated flashback and NOx risks

Abstract

This review examines the combustion characteristics of hydrogen-enriched natural gas with a specific focus on residential appliances, where safety, efficiency, and emission performance are critical. Drawing on experimental studies, numerical simulations, and regulatory considerations, the paper synthesizes current knowledge on how hydrogen addition influences flame stability, flashback phenomenon, thermal efficiency, pollutant formation, and flame geometry. Results across cooktop burners, boilers, and other domestic systems show that moderate hydrogen blending not only can reduce CO and CO2 emissions and enhance combustion efficiency but also can increase burning velocity, diffusivity, and flame temperature, thereby elevating flashback and NOx risks. The review highlights the blending limits, design adaptations, and operational strategies required to ensure safe and effective integration of hydrogen into residential gas infrastructures, supporting its role as a transitional low-carbon fuel.

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Cite This Study

Sîrbu et al. (2026) studied this question.

synapsesocial.com/papers/6980feeac1c9540dea811748https://doi.org/10.3390/hydrogen7010020
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