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dc.contributor.authorRahman, Md. Mosfiqur
dc.contributor.authorAbdalla, Abdalla M.
dc.contributor.authorOmeiza, Lukman Ahmed
dc.contributor.authorRaj, Veena
dc.contributor.authorAfroze, Shammya
dc.contributor.authorReza, Md. Sumon
dc.contributor.authorSomalu, Mahendra Rao
dc.contributor.authorAzad, Abul K.
dc.date.accessioned2024-09-17T06:11:52Z
dc.date.available2024-09-17T06:11:52Z
dc.date.issued2023
dc.identifier.citationRahman, M.M.; Abdalla, A.M.; Omeiza, L.A.; Raj, V.; Afroze, S.; Reza, M.S.; Somalu, M.R.; Azad, A.K. Numerical Modeling of Ammonia-Fueled Protonic-Ion Conducting Electrolyte-Supported Solid Oxide Fuel Cell (H-SOFC): A Brief Review. Processes 2023, 11, 2728. https://doi.org/10.3390/pr11092728ru
dc.identifier.issn2227-9717
dc.identifier.otherdoi.org/10.3390/pr11092728
dc.identifier.urihttp://rep.enu.kz/handle/enu/16442
dc.description.abstractSolid oxide fuel cells with protonic ion conducting electrolytes (H-SOFCs) are recognized and anticipated as eco-friendly electrochemical devices fueled with several kinds of fuels. One distinct feature of SOFCs that makes them different from others is fuel flexibility. Ammonia is a colorless gas with a compound of nitrogen and hydrogen with a distinct strong smell at room temperature. It is easily dissolved in water and is a great absorbent. Ammonia plays a vital role as a caustic for its alkaline characteristics. Nowadays, ammonia is being used as a hydrogen carrier because it has carbon-free molecules and prosperous physical properties with transportation characteristics, distribution options, and storage capacity. Using ammonia as a fuel in H-SOFCs has the advantage of its ammonia cracking attributes and quality of being easily separated from generated steam. Moreover, toxic NOx gases are not formed in the anode while using ammonia as fuel in H-SOFCs. Recently, various numerical studies have been performed to comprehend the electrochemical and physical phenomena of H-SOFCs in order to develop a feasible and optimized design under different operating conditions rather than doing costlier experimentation. The aim of this concisely reviewed article is to present the current status of ammonia-fueled H-SOFC numerical modeling and the application of numerical modeling in ammonia-fueled H-SOFC geometrical shape optimization, which is still more desirable than traditional SOFCs.ru
dc.language.isoenru
dc.publisherProcessesru
dc.relation.ispartofseriesVolume 11;Issue 9
dc.subjectnumerical modelingru
dc.subjectfuel cellsru
dc.subjectsolid oxide fuel cellru
dc.subjectammonia-fueled solid oxide fuel cellru
dc.subjectprotonic conducting fuel cellsru
dc.subjectphysical phenomenaru
dc.subjectdesign analysisru
dc.titleNumerical Modeling of Ammonia-Fueled Protonic-Ion Conducting Electrolyte-Supported Solid Oxide Fuel Cell (H-SOFC): A Brief Reviewru
dc.typeArticleru


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