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Thomas Adams
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Energy conversion with solid oxide fuel cell systems: A review of concepts and outlooks for the short-and long-term
TA Adams, J Nease, D Tucker, PI Barton
Industrial & Engineering Chemistry Research 52 (9), 3089-3111, 2013
1632013
Combining coal gasification and natural gas reforming for efficient polygeneration
TA Adams II, PI Barton
Fuel Processing Technology 92 (3), 639-655, 2011
1622011
A dynamic two-dimensional heterogeneous model for water gas shift reactors
TA Adams II, PI Barton
International Journal of Hydrogen Energy 34 (21), 8877-8891, 2009
1402009
Optimal design and operation of flexible energy polygeneration systems
Y Chen, TA Adams, PI Barton
Industrial & Engineering Chemistry Research 50 (8), 4553-4566, 2011
1212011
Modeling and simulation of energy systems: A review
ASR Subramanian, T Gundersen, TA Adams
Processes 6 (12), 238, 2018
982018
High‐efficiency power production from coal with carbon capture
TA Adams, PI Barton
AIChE journal 56 (12), 3120-3136, 2010
892010
Optimal design and operation of static energy polygeneration systems
Y Chen, TA Adams, PI Barton
Industrial & Engineering Chemistry Research 50 (9), 5099-5113, 2011
832011
High-efficiency power production from natural gas with carbon capture
TA Adams II, PI Barton
Journal of Power Sources 195 (7), 1971-1983, 2010
792010
A novel polygeneration process to co-produce ethylene and electricity from shale gas with zero CO2 emissions via methane oxidative coupling
YK Salkuyeh, TA Adams II
Energy Conversion and Management 92, 406-420, 2015
652015
A novel polygeneration process to co-produce ethylene and electricity from shale gas with zero CO 2 emissions via methane oxidative coupling
Y Khojasteh Salkuyeh, TA Adams
Energy Conversion and Management 92, 406-420, 2015
652015
Combining coal gasification, natural gas reforming, and solid oxide fuel cells for efficient polygeneration with CO< sub> 2</sub> capture and sequestration
TA Adams II, PI Barton
Fuel Processing Technology 92 (10), 2105-2115, 2011
652011
Combining coal gasification, natural gas reforming, and solid oxide fuel cells for efficient polygeneration with CO2 capture and sequestration
TA Adams II, PI Barton
Fuel processing technology 92 (10), 2105-2115, 2011
652011
A multi-scale dynamic two-dimensional heterogeneous model for catalytic steam methane reforming reactors
JH Ghouse, TA Adams II
International Journal of Hydrogen Energy 38 (24), 9984-9999, 2013
622013
Combining coal gasification, natural gas reforming, and external carbonless heat for efficient production of gasoline and diesel with CO< sub> 2</sub> capture and sequestration
YK Salkuyeh, TA Adams II
Energy Conversion and Management 74, 492-504, 2013
582013
Polygeneration of fuels and chemicals
TA Adams II, JH Ghouse
Current Opinion in Chemical Engineering 10, 87-93, 2015
512015
Comparison of CO2 Capture Approaches for Fossil-Based Power Generation: Review and Meta-Study
TA Adams, L Hoseinzade, PB Madabhushi, IJ Okeke
Processes 5 (3), 44, 2017
492017
A new power, methanol, and DME polygeneration process using integrated chemical looping systems
YK Salkuyeh, TA Adams II
Energy conversion and management 88, 411-425, 2014
472014
Impact of fuel composition transients on SOFC performance in gas turbine hybrid systems
NF Harun, D Tucker, TA Adams
Applied Energy 164, 446-461, 2016
442016
Techno-economic comparison of Acetone-Butanol-Ethanol fermentation using various extractants
G Dalle Ave, TAII Adams
Energy Conversion and Management 156, 288-300, 2018
432018
Technical challenges in operating an SOFC in fuel flexible gas turbine hybrid systems: Coupling effects of cathode air mass flow
NF Harun, D Tucker, TA Adams II
Applied Energy 190, 852-867, 2017
392017
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