This article is the first of a two-part series presenting the thermodynamic evaluation and techno-economics of developing negative-emission power plants. The aim of this research is to evaluate the potential of biochar co-production in negative-emission power plants based on biomass-fed integrated gasification solid oxide fuel cell systems with carbon capture and storage (BIGFC/CCS) units. The influence of two gasification agents, namely, air and steam-oxygen, on the proposed system is investigated. In Part I, we present the thermodynamic models. A sensitivity analysis is carried out to investigate the system response to stepwise increase in biochar co-production (up to 10% by weight). Providing a secondary oxy-combustor in the steam-oxygen...
A novel cooling, heating, and power system integrated with a solid oxide fuel cell and biomass gasif...
Bio-Energy with Carbon Capture and Storage (BECCS) system is emerging as a promising technology to s...
In this research, a novel integration of a downdraft gasifier, an externally fired gas turbine, a mo...
This article is the first of a two-part series presenting the thermodynamic evaluation and techno-ec...
This article is the first of a two-part series presenting the thermodynamic evaluation and techno-ec...
In our previous work (Part I), we evaluated the thermodynamic models of the biomass-fed integrated g...
In our previous work (Part I), we evaluated the thermodynamic models of the biomass-fed integrated g...
In our previous work (Part I), we evaluated the thermodynamic models of the biomass-fed integrated g...
Combining biomass-fuelled power plant with carbon capture and storage allows CO2 to be removed from ...
Integration of solid oxide fuel cell (SOFC) and biomass gasification system is a promising way to ob...
Biochar derived from pyrolysis or gasification has been gaining significant attention in the recent ...
In this paper, an integrated solid oxide fuel cell (SOFC) and biomass gasification system is modeled...
Climate change mitigation requires developing low-carbon technologies capable of achieving CO2 emiss...
A novel cooling, heating, and power system integrated with a solid oxide fuel cell and biomass gasif...
Bio-Energy with Carbon Capture and Storage (BECCS) system is emerging as a promising technology to s...
In this research, a novel integration of a downdraft gasifier, an externally fired gas turbine, a mo...
This article is the first of a two-part series presenting the thermodynamic evaluation and techno-ec...
This article is the first of a two-part series presenting the thermodynamic evaluation and techno-ec...
In our previous work (Part I), we evaluated the thermodynamic models of the biomass-fed integrated g...
In our previous work (Part I), we evaluated the thermodynamic models of the biomass-fed integrated g...
In our previous work (Part I), we evaluated the thermodynamic models of the biomass-fed integrated g...
Combining biomass-fuelled power plant with carbon capture and storage allows CO2 to be removed from ...
Integration of solid oxide fuel cell (SOFC) and biomass gasification system is a promising way to ob...
Biochar derived from pyrolysis or gasification has been gaining significant attention in the recent ...
In this paper, an integrated solid oxide fuel cell (SOFC) and biomass gasification system is modeled...
Climate change mitigation requires developing low-carbon technologies capable of achieving CO2 emiss...
A novel cooling, heating, and power system integrated with a solid oxide fuel cell and biomass gasif...
Bio-Energy with Carbon Capture and Storage (BECCS) system is emerging as a promising technology to s...
In this research, a novel integration of a downdraft gasifier, an externally fired gas turbine, a mo...