Industrial facilities release a large amount of heat as a byproduct of their processes. To improve environmental performance and increase the process profitability, this waste heat can be recovered and employed to generate power. Supercritical carbon dioxide (sCO2) systems have emerged as potential alternatives to the well-established technologies because of their high performance, reduced footprint and low water consumption. This paper aims to investigate the techno-economic feasibility of a sCO2 closed loop for power generation coupled with heavyindustrial processes, which make flue gases available at high-temperatures (above 400 °C)
Copyright: The Authors, 2019. Industrial processes are currently characterized by thermal energy los...
In recent years supercritical carbon dioxide has gained popularity in the scientific and industrial ...
There has been an increase in interest over the past several years in supercritical CO2 (sCO2) cycle...
Industrial facilities release a large amount of heat as a byproduct of their processes. To improve e...
Industrial facilities release a large amount of heat as a byproduct of their processes. To improve e...
Industrial facilities release a large amount of heat as a byproduct of their processes. To improve e...
Industrial facilities release a large amount of heat as a by-product of their processes. To improve ...
In the European Industry, 275 TWh of thermal energy is rejected into the environment at temperatures...
This paper focuses on the potential of supercritical carbon dioxide closed cycle for waste heat reco...
This thesis was submitted for the degree of Doctor of Philosophy and awarded by Brunel University Lo...
It is estimated that in the United States alone, enough energy is wasted in industrial applications ...
Bottoming thermodynamic systems based on supercritical carbon dioxide as working fluid (sCO(2)) are ...
The Supercritical carbon dioxide (SCO2) is widely used in many industrial applications as process or...
Abstract Bottoming thermodynamic systems based on supercritical carbon dioxide as working fluid (sCO...
Waste heat to power conversion is a promising approach to reduce the carbon intensity in industry an...
Copyright: The Authors, 2019. Industrial processes are currently characterized by thermal energy los...
In recent years supercritical carbon dioxide has gained popularity in the scientific and industrial ...
There has been an increase in interest over the past several years in supercritical CO2 (sCO2) cycle...
Industrial facilities release a large amount of heat as a byproduct of their processes. To improve e...
Industrial facilities release a large amount of heat as a byproduct of their processes. To improve e...
Industrial facilities release a large amount of heat as a byproduct of their processes. To improve e...
Industrial facilities release a large amount of heat as a by-product of their processes. To improve ...
In the European Industry, 275 TWh of thermal energy is rejected into the environment at temperatures...
This paper focuses on the potential of supercritical carbon dioxide closed cycle for waste heat reco...
This thesis was submitted for the degree of Doctor of Philosophy and awarded by Brunel University Lo...
It is estimated that in the United States alone, enough energy is wasted in industrial applications ...
Bottoming thermodynamic systems based on supercritical carbon dioxide as working fluid (sCO(2)) are ...
The Supercritical carbon dioxide (SCO2) is widely used in many industrial applications as process or...
Abstract Bottoming thermodynamic systems based on supercritical carbon dioxide as working fluid (sCO...
Waste heat to power conversion is a promising approach to reduce the carbon intensity in industry an...
Copyright: The Authors, 2019. Industrial processes are currently characterized by thermal energy los...
In recent years supercritical carbon dioxide has gained popularity in the scientific and industrial ...
There has been an increase in interest over the past several years in supercritical CO2 (sCO2) cycle...