AbstractThis work presents systems analysis results of an integrated gasification fuel cell (IGFC) combined cycle with carbon capture. The study assumes the use of an atmospheric pressure solid oxide fuel cell. The efficiency, carbon capture potential, and water consumption rates are evaluated and compared to another advanced coal-based power system, an integrated gasification combined cycle (IGCC)
On the road to sustainable generation of electricity, the efficiency of fossil-fuel power plants and...
The rapid global economic and population growth requires consistent supply of energy. Gasification i...
An advanced coal based power plant system that has an electrical efficiency of 60% on an HHV basis i...
This work analyzes the efficiency and economic performance of different configurations of a coal-fed...
The present research proposes an innovative multi-physics coupled model of different configurations ...
IGCC (Integrated Gasification Combined Cycle) technology is being developed to enable electricity to...
In this work, a parametric cost-benefit analysis concerning the use of integrated gasification combi...
Integrated gasification combined cycle (IGCC) systems may become the coal technology of choice, beca...
This Thesis-Restricted is brought to you for free and open access by the Dissertations and Theses at...
Over the past three decades, significant efforts have been made toward the development of cleaner an...
AbstractThe present study adopted commercial chemical process simulator, Pro/II® V8.1.1, to analyse ...
The pre-baseline configuration for an Integrated Gasification Fuel Cell (IGFC) system has been devel...
Integrated Coal Gasification Fuel Cell Combined Cycle (IGFC) is expected to be the most efficient po...
AbstractIntegrated Gasification Combined Cycle (IGCC) is a technology for power generation in which ...
The application of solid oxide fuel cells (SOFC) in gasification-based power plants would represent ...
On the road to sustainable generation of electricity, the efficiency of fossil-fuel power plants and...
The rapid global economic and population growth requires consistent supply of energy. Gasification i...
An advanced coal based power plant system that has an electrical efficiency of 60% on an HHV basis i...
This work analyzes the efficiency and economic performance of different configurations of a coal-fed...
The present research proposes an innovative multi-physics coupled model of different configurations ...
IGCC (Integrated Gasification Combined Cycle) technology is being developed to enable electricity to...
In this work, a parametric cost-benefit analysis concerning the use of integrated gasification combi...
Integrated gasification combined cycle (IGCC) systems may become the coal technology of choice, beca...
This Thesis-Restricted is brought to you for free and open access by the Dissertations and Theses at...
Over the past three decades, significant efforts have been made toward the development of cleaner an...
AbstractThe present study adopted commercial chemical process simulator, Pro/II® V8.1.1, to analyse ...
The pre-baseline configuration for an Integrated Gasification Fuel Cell (IGFC) system has been devel...
Integrated Coal Gasification Fuel Cell Combined Cycle (IGFC) is expected to be the most efficient po...
AbstractIntegrated Gasification Combined Cycle (IGCC) is a technology for power generation in which ...
The application of solid oxide fuel cells (SOFC) in gasification-based power plants would represent ...
On the road to sustainable generation of electricity, the efficiency of fossil-fuel power plants and...
The rapid global economic and population growth requires consistent supply of energy. Gasification i...
An advanced coal based power plant system that has an electrical efficiency of 60% on an HHV basis i...