David J. Bayless

Affiliations: 
Department of Mechanical Engineering Ohio University, Athens, OH, United States 
Area:
Mechanical Engineering, Energy, Chemical Engineering
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"David Bayless"
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Publications

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Drabold E, McGaughy K, Agner J, et al. (2020) Challenges and Process Economics for Algal Carbon Capture with Novel Integration: Hydrothermal Carbonization Bioresource Technology Reports. 100556
Tanim T, Bayless DJ, Trembly JP. (2014) Modeling a 5 kWe planar solid oxide fuel cell based system operating on JP-8 fuel and a comparison with tubular cell based system for auxiliary and mobile power applications Journal of Power Sources. 245: 986-997
Tanim T, Bayless DJ, Trembly JP. (2013) Modeling of a 5 kWe tubular solid oxide fuel cell based system operating on desulfurized JP-8 fuel for auxiliary and mobile power applications Journal of Power Sources. 221: 387-396
Silva KCRD, Kaseman BJ, Bayless DJ. (2011) Accelerated anode failure of a high temperature planar SOFC operated with reduced moisture and increased PH3 concentrations in coal syngas International Journal of Hydrogen Energy. 36: 9945-9955
Silva KCRD, Kaseman BJ, Bayless DJ. (2011) Silver (Ag) as anode and cathode current collectors in high temperature planar solid oxide fuel cells International Journal of Hydrogen Energy. 36: 779-786
Cooper M, Channa K, Silva RD, et al. (2010) Comparison of LSV/YSZ and LSV/GDC SOFC Anode Performance in Coal Syngas Containing H2S Journal of the Electrochemical Society. 157
Shi L, Bayless DJ, Prudich ME. (2009) A CFD model of autothermal reforming International Journal of Hydrogen Energy. 34: 7666-7675
Burnette DD, Kremer GG, Bayless DJ. (2008) The use of hydrogen-depleted coal syngas in solid oxide fuel cells Journal of Power Sources. 182: 329-333
Shi L, Bayless DJ, Prudich M. (2008) A model of steam reforming of iso-octane: The effect of thermal boundary conditions on hydrogen production and reactor temperature International Journal of Hydrogen Energy. 33: 4577-4585
Shi L, Bayless DJ. (2008) Analysis of jet fuel reforming for solid oxide fuel cell applications in auxiliary power units International Journal of Hydrogen Energy. 33: 1067-1075
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