1. 1. Hydrogen gas turbines. The path towards a zero-carbon gas turbine, ETN Global Report 2020. Available: https://etn.global/wp-content/uploads/2020/02/ETN-Hydrogen-Gas-Turbines-report.pdf, 2020.
2. 2. M. Nose, T. Kawakami, H. Araki, N. Senba, and S. Tanimura, “Hydrogen-fired Gas Turbine Targeting Realization of CO2-free Society. Mitsubishi Heavy Industries Technical Review,” Available: https://www.mhi.co.jp/technology/review/pdf/e554/e554180.pdf, 2018.
3. 3. J. Beital, M. Talibi, S. Sadasivuni, and R. Balachandran, “Thermoacoustic Instability Considerations for High Hydrogen Combustion in Lean Premixed Gas Turbine Combustors: A Review,” Hydrogen, vol. 2, pp. 33–57, 2021. DOI: https://doi.org/10.3390/hydrogen2010003.
4. 4. N. Tekin, M. Ashikaga, A. Horikawa, and H. Funke, “Enhancement of fuel flexibility of industrial gas turbines by development of innovative hydrogen combustion systems,” Gas for energy, vol. 2, Available: https://www.researchgate.net/publication/332290711_Enhancement_of_fuel_flexibility_of_industrial_gas_turbines_by_development_of_innovative_hydrogen_combustion_systems, 2018.
5. 5. B.S. Soroka, K.E. Pyanykh, V.O. Zgursky, V.V. Gorupa, and V.S. Kudryavtsev, “Energy and environmental characteristics of household gas appliances using methane-hydrogen mixture as a fuel gas,” Oil and gas industry of Ukraine, vol. 6, pp. 3-13, 2020 (In Ukrainian).