Hydrogen–Natural-Gas Blends in a Continuous Annealing Line Under a Process-Equivalent Strip-Temperature Criterion

Hydrogen-enriched natural gas can reduce direct carbon emissions from industrial heat-treatment furnaces, but its effect should be evaluated at the required process temperature rather than only at constant burner input. This study investigates 0–100 vol.% H2 firing in the radiant-tube preheating chamber of a 108-burner industrial continuous annealing line using a zone-based mathematical model coupling combustion stoichiometry, heat transfer, and furnace energy balances. Archived natural-gas production data were additionally used as a plant-scale consistency check; a separate 2022 campaign was reproduced with a fuel-demand MAPE of 7.41% and NRMSE of 7.92%. At constant burner input, increasing H2 from 0 to 100 vol.% increased the predicted combustion-gas inlet temperature from 1986 to 2239 °C and the strip outlet temperature from 615.1 to 636.5 °C, while the effective heat-transfer coefficients decreased overall. Under the process-equivalent condition, burner input was adjusted to maintain the 615.13 °C reference strip outlet temperature. At 100 vol.% H2, the required burner input decreased from 44.84 to 42.44 kW per burner, corresponding to 5.35% and 2.05 GWh y−1 for the full chamber. Sensitivity analysis gave a 4.97–5.79% reduction range, supporting an approximately 5–6% furnace-specific burner-load reduction.

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Publication Details

Journal
Energies
Published
2026-09-20
DOI
https://doi.org/10.3390/en19184456
Primary Topic
Combustion and flame dynamics
Type
article
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article

Hydrogen–Natural-Gas Blends in a Continuous Annealing Line Under a Process-Equivalent Strip-Temperature Criterion

Mária Hagarova, Gabriela Baranová, Peter Demeter, Róbert Dzurňák et al.
Energies
Combustion and flame dynamics
article

Hydrogen–Natural-Gas Blends in a Continuous Annealing Line Under a Process-Equivalent Strip-Temperature Criterion

Mária Hagarova, Gabriela Baranová, Peter Demeter, Róbert Dzurňák, Katarína Pauerová
article en

Abstract

Hydrogen-enriched natural gas can reduce direct carbon emissions from industrial heat-treatment furnaces, but its effect should be evaluated at the required process temperature rather than only at constant burner input. This study investigates 0–100 vol.% H2 firing in the radiant-tube preheating chamber of a 108-burner industrial continuous annealing line using a zone-based mathematical model coupling combustion stoichiometry, heat transfer, and furnace energy balances. Archived natural-gas production data were additionally used as a plant-scale consistency check; a separate 2022 campaign was reproduced with a fuel-demand MAPE of 7.41% and NRMSE of 7.92%. At constant burner input, increasing H2 from 0 to 100 vol.% increased the predicted combustion-gas inlet temperature from 1986 to 2239 °C and the strip outlet temperature from 615.1 to 636.5 °C, while the effective heat-transfer coefficients decreased overall. Under the process-equivalent condition, burner input was adjusted to maintain the 615.13 °C reference strip outlet temperature. At 100 vol.% H2, the required burner input decreased from 44.84 to 42.44 kW per burner, corresponding to 5.35% and 2.05 GWh y−1 for the full chamber. Sensitivity analysis gave a 4.97–5.79% reduction range, supporting an approximately 5–6% furnace-specific burner-load reduction.

EnergiesVol. 19(18)
Technical University of Košice (SK)
Openalex Percentile: Top 13%
Combustion and flame dynamics
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Hydrogen–Natural-Gas Blends in a Continuous Annealing Line Under a Process-Equivalent Strip-Temperature Criterion — Mária Hagarova, Gabriela Baranová, et al. · Energies (2026) | TGRS Research Map | TGRS