In our previous work (Part I), we evaluated the thermodynamic models of the biomass-fed integrated gasification solid oxide fuel cell system with a carbon capture and storage (BIGFC/CCS) unit. In this work (Part II), the techno-economic analysis of the proposed negative emission power plants is carried out. Levelized cost of electricity, net present value (NPV), payback period, internal rate of return (IRR), and levelized cost of negative carbon (LCNC) are the key economic parameters evaluated. The results of a series of sensitivity analysis show the impact of gasification agents and stepwise increase in biochar co-production on the performance of the system. The total overnight cost is estimated to be 6197 $/kW and 5567 $/kW for the air an...
This paper is a contribution to the ongoing debate on carbon-negative energy solutions. It deals wit...
Reduction of CO2 emissions from energy systems could be achieved through: CO2 capture and storage, e...
A life cycle energy use, CO2 emissions and cost input evaluation of a 650 MW Biomass Chemical Loopin...
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...
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...
This article is the first of a two-part series presenting the thermodynamic evaluation and techno-ec...
Combining biomass-fuelled power plant with carbon capture and storage allows CO2 to be removed from ...
Climate change mitigation requires developing low-carbon technologies capable of achieving CO2 emiss...
© 2016 Elsevier Ltd. Natural gas combined cycle (NGCC) power plants have emission intensities a half...
AbstractThis study analyses the impact of technological improvements and increased operating experie...
Bioenergy with Carbon Capture and Storage is a promising negative emissions technology to mitigate c...
Ambitious decarbonization pathways to limit the global temperature rise to well below 2 °C will requ...
Biomass-based power generation combined with CO2 capture and storage (Biopower CCS) currently repres...
This paper is a contribution to the ongoing debate on carbon-negative energy solutions. It deals wit...
Reduction of CO2 emissions from energy systems could be achieved through: CO2 capture and storage, e...
A life cycle energy use, CO2 emissions and cost input evaluation of a 650 MW Biomass Chemical Loopin...
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...
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...
This article is the first of a two-part series presenting the thermodynamic evaluation and techno-ec...
Combining biomass-fuelled power plant with carbon capture and storage allows CO2 to be removed from ...
Climate change mitigation requires developing low-carbon technologies capable of achieving CO2 emiss...
© 2016 Elsevier Ltd. Natural gas combined cycle (NGCC) power plants have emission intensities a half...
AbstractThis study analyses the impact of technological improvements and increased operating experie...
Bioenergy with Carbon Capture and Storage is a promising negative emissions technology to mitigate c...
Ambitious decarbonization pathways to limit the global temperature rise to well below 2 °C will requ...
Biomass-based power generation combined with CO2 capture and storage (Biopower CCS) currently repres...
This paper is a contribution to the ongoing debate on carbon-negative energy solutions. It deals wit...
Reduction of CO2 emissions from energy systems could be achieved through: CO2 capture and storage, e...
A life cycle energy use, CO2 emissions and cost input evaluation of a 650 MW Biomass Chemical Loopin...