Power generation from coal-fired power plants represents a major source of CO2 emission into the atmosphere. Efficiency improvement and integration of carbon capture and storage (CCS) facilities have been recommended for reducing the amount of CO2 emissions. The focus of this work was to evaluate the thermodynamic performance of s-CO2 Brayton cycles coupled to coal-fired furnace and integrated with 90% post-combustion CO2 capture. The modification of the s-CO2 power plant for effective utilisation of the sensible heat in the flue gas was examined. Three bottoming s-CO2 cycle layouts were investigated, which included a newly proposed single recuperator recompression cycle. The performances of the coal-fired s-CO2 power plant with and without...
In recent years coal-fired power plants have increased their role in the global energy scenario and ...
State-of-the-art integration scenarios of calcium looping (CaL), which is an emerging CO capture tec...
A closed-loop, indirect, supercritical Carbon Dioxide (sCO2) power cycle is attractive for fossil-fu...
AbstractPower generation efficiency penalty is the main concern about carbon capture technologies. I...
Closed supercritical carbon dioxide (S-CO2) Brayton cycle is a promising alternative to steam Rankin...
Bottoming thermodynamic power cycles using supercritical carbon dioxide (sCO(2)) are a promising tec...
Parametric design studies for the preliminary assessment of physical footprint of Supercritical CO2 ...
Carbon capture and storage (CCS) represents a key solution to control the global warming reducing ca...
This thesis was submitted for the degree of Doctor of Philosophy and awarded by Brunel University Lo...
In this paper a new generation line-focusing solar plants coupled to a s-CO2 Brayton power cycles ar...
AbstractConcentrated Solar Power using supercritical CO2 (S-CO2) recompression Brayton cycles offer ...
Supercritical carbon dioxide (sCO2) cycles can achieve higher efficiencies than an equivalent steam ...
Integrating a power plant with CO₂ capture incurs serious efficiency and energy penalty due to use o...
Calcium looping combustion (CaLC), which comprises an indirectly-heated calciner, is characterised w...
AbstractIt is likely that a significant number of existing pulverised coal-fired power plants will b...
In recent years coal-fired power plants have increased their role in the global energy scenario and ...
State-of-the-art integration scenarios of calcium looping (CaL), which is an emerging CO capture tec...
A closed-loop, indirect, supercritical Carbon Dioxide (sCO2) power cycle is attractive for fossil-fu...
AbstractPower generation efficiency penalty is the main concern about carbon capture technologies. I...
Closed supercritical carbon dioxide (S-CO2) Brayton cycle is a promising alternative to steam Rankin...
Bottoming thermodynamic power cycles using supercritical carbon dioxide (sCO(2)) are a promising tec...
Parametric design studies for the preliminary assessment of physical footprint of Supercritical CO2 ...
Carbon capture and storage (CCS) represents a key solution to control the global warming reducing ca...
This thesis was submitted for the degree of Doctor of Philosophy and awarded by Brunel University Lo...
In this paper a new generation line-focusing solar plants coupled to a s-CO2 Brayton power cycles ar...
AbstractConcentrated Solar Power using supercritical CO2 (S-CO2) recompression Brayton cycles offer ...
Supercritical carbon dioxide (sCO2) cycles can achieve higher efficiencies than an equivalent steam ...
Integrating a power plant with CO₂ capture incurs serious efficiency and energy penalty due to use o...
Calcium looping combustion (CaLC), which comprises an indirectly-heated calciner, is characterised w...
AbstractIt is likely that a significant number of existing pulverised coal-fired power plants will b...
In recent years coal-fired power plants have increased their role in the global energy scenario and ...
State-of-the-art integration scenarios of calcium looping (CaL), which is an emerging CO capture tec...
A closed-loop, indirect, supercritical Carbon Dioxide (sCO2) power cycle is attractive for fossil-fu...