Thomas Adams
Thomas Adams
Professor of Chemical Engineering, McMaster University
Verifisert e-postadresse på mcmaster.ca - Startside
TittelSitert avÅr
Combining coal gasification and natural gas reforming for efficient polygeneration
TA Adams II, PI Barton
Fuel Processing Technology 92 (3), 639-655, 2011
1192011
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
1102009
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, 2012
902012
Optimal design and operation of flexible energy polygeneration systems
Y Chen, TA Adams, PI Barton
Industrial & Engineering Chemistry Research 50 (8), 4553-4566, 2011
882011
High‐efficiency power production from coal with carbon capture
TA Adams, PI Barton
AIChE Journal 56 (12), 3120-3136, 2010
662010
Optimal design and operation of static energy polygeneration systems
Y Chen, TA Adams, PI Barton
Industrial & Engineering Chemistry Research 50 (9), 5099-5113, 2010
622010
High-efficiency power production from natural gas with carbon capture
TA Adams II, PI Barton
Journal of Power Sources 195 (7), 1971-1983, 2010
602010
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
432015
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
432015
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
402011
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
382013
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
342013
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
282014
Semicontinuous distillation for ethyl lactate production
TA Adams II, WD Seider
AIChE Journal 54 (10), 2539-2552, 2008
272008
Polygeneration of fuels and chemicals
TA Adams II, JH Ghouse
Current Opinion in Chemical Engineering 10, 87-93, 2015
262015
Coal-fuelled systems for peaking power with 100% CO< sub> 2</sub> capture through integration of solid oxide fuel cells with compressed air energy storage
J Nease, TA Adams II
Journal of Power Sources 251, 92-107, 2014
252014
Decomposition strategy for the global optimization of flexible energy polygeneration systems
Y Chen, X Li, TA Adams, PI Barton
AIChE Journal 58 (10), 3080-3095, 2012
232012
Semicontinuous reactive extraction and reactive distillation
TA Adams II, WD Seider
Chemical Engineering Research and Design 87 (3), 245-262, 2009
232009
Semicontinuous distillation with chemical reaction in a middle vessel
TA Adams II, WD Seider
Industrial & engineering chemistry research 45 (16), 5548-5560, 2006
232006
Application of rolling horizon optimization to an integrated solid-oxide fuel cell and compressed air energy storage plant for zero-emissions peaking power under uncertainty
J Nease, TA Adams II
Computers & Chemical Engineering 68, 203-219, 2014
222014
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Artikler 1–20