Integrated System of Solid Oxide Fuel Cell and Ethanol Partial Oxidation: Process Simulation and Heat Exchanger Network
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-97-5775-6_9
Reference10 articles.
1. Wang, Y., Li, S., Yanga, Y.: Data-driven fault diagnosis-tolerant control integrated technique for solid oxide fuel cell. Int. J. Smart Grid Clean Energy 9(2), 357–365 (2020)
2. Vourliotakis, G., Skevis, G., Founti, M.A.: Detailed kinetic modelling of non-catalytic ethanol reforming for SOFC applications. Int. J. Hydrogen Energy 34(18), 7626–7637 (2009)
3. Cimenti, M., Hill, J.M.: Thermodynamic analysis of solid oxide fuel cells operated with methanol and ethanol under direct utilization, steam reforming, dry reforming or partial oxidation conditions. J. Power Sources 186(2), 377–384 (2009)
4. Wiranarongkorn, K., Patcharavorachot, Y., Panpranot, J., Assabumrungrat, S., Arpornwichanop, A.: Hydrogen and power generation via integrated bio-oil sorption-enhanced steam reforming and solid oxide fuel cell systems: economic feasibility analysis. Int. J. Hydrogen Energy 46(20), 11482–11493 (2021)
5. de Souza, T.A.Z., Coronado, C.J.R., Silveira, J.L., Pinto, G.M.: Economic assessment of hydrogen and electricity cogeneration through steam reforming-SOFC system in the Brazilian biodiesel industry. J. Clean. Prod. 279, 123814 (2021)
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