This paper focused on the hydrogen-methane mixtures (H2NG) implications on end-user devices such as boilers, so as to provide a useful tool for maintenance operators. In detail, according to current standards, H2NG blends characteristics parameters for boilers combustion efficiency measurement are calculated. Then, the Ostwald chart for each blend is built by the analytical procedure and is plotted. Additionally, the chemical equations as well as the blended gas characteristic values are computed in order to implement them within software library of commercial gas analysers. Indeed, they are commonly based on Ostwald combustion equation for correlating CO, CO2and O2concentrations. The results can be applied to analyze conventional and widespread domestic boilers fueled with H2NG addressing all of the technical implications for their performance certification when they are operating also in condensing mode. Air excess and relative humidity are chosen as variables to evaluate their effects on boilers performance. The oxygen concentration ranges from 0% vol. up to 15% vol. The specific heat values drop non-linearly down for each mixture, showing a maximum reduction equal to 9.825%, for H2NG@30%. A maximum Energy Fraction of Condensation (EFC) enhancement of 0.9% points is noticed for H2NG@30% vol. While, the highest EFC gain, 4.8% points, occurred at relative humidity of 90% compared to the assumed reference values for calculations.

LO BASSO, G., Nastasi, B., ASTIASO GARCIA, D., Cumo, F. (2017). How to handle the Hydrogen enriched Natural Gas blends in combustion efficiency measurement procedure of conventional and condensing boilers. ENERGY, 123, 615-636 [10.1016/j.energy.2017.02.042].

How to handle the Hydrogen enriched Natural Gas blends in combustion efficiency measurement procedure of conventional and condensing boilers

NASTASI, BENEDETTO
;
2017-01-01

Abstract

This paper focused on the hydrogen-methane mixtures (H2NG) implications on end-user devices such as boilers, so as to provide a useful tool for maintenance operators. In detail, according to current standards, H2NG blends characteristics parameters for boilers combustion efficiency measurement are calculated. Then, the Ostwald chart for each blend is built by the analytical procedure and is plotted. Additionally, the chemical equations as well as the blended gas characteristic values are computed in order to implement them within software library of commercial gas analysers. Indeed, they are commonly based on Ostwald combustion equation for correlating CO, CO2and O2concentrations. The results can be applied to analyze conventional and widespread domestic boilers fueled with H2NG addressing all of the technical implications for their performance certification when they are operating also in condensing mode. Air excess and relative humidity are chosen as variables to evaluate their effects on boilers performance. The oxygen concentration ranges from 0% vol. up to 15% vol. The specific heat values drop non-linearly down for each mixture, showing a maximum reduction equal to 9.825%, for H2NG@30%. A maximum Energy Fraction of Condensation (EFC) enhancement of 0.9% points is noticed for H2NG@30% vol. While, the highest EFC gain, 4.8% points, occurred at relative humidity of 90% compared to the assumed reference values for calculations.
2017
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore ING-IND/11
English
Con Impact Factor ISI
boiler efficiency
condensation
hydrogen enriched natural gas
mixtures combustion
ostwald charts
pollutants measurement
pollution
energy
www.elsevier.com/inca/publications/store/4/8/3/
LO BASSO, G., Nastasi, B., ASTIASO GARCIA, D., Cumo, F. (2017). How to handle the Hydrogen enriched Natural Gas blends in combustion efficiency measurement procedure of conventional and condensing boilers. ENERGY, 123, 615-636 [10.1016/j.energy.2017.02.042].
LO BASSO, G; Nastasi, B; ASTIASO GARCIA, D; Cumo, F
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/356286
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