Title of article :
Multi-fuel multi-product operation of IGCC power plants with carbon capture and storage (CCS)
Author/Authors :
Cormos، نويسنده , , Ana-Maria and Dinca، نويسنده , , Calin-Cristian and Cormos، نويسنده , , Calin-Cristian، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2015
Pages :
8
From page :
20
To page :
27
Abstract :
This paper investigates multi-fuel multi-product operation of IGCC plants with carbon capture and storage (CCS). The investigated plant designs co-process coal with different sorts of biomass (e.g. sawdust) and solid wastes, through gasification, leading to different decarbonised energy vectors (power, hydrogen, heat, substitute natural gas etc.) simultaneous with carbon capture. Co-gasification of coal with different renewable energy sources coupled with carbon capture will pave the way towards zero emissions power plants. The energy conversions investigated in the paper were simulated using commercial process flow modelling package (ChemCAD) in order to produce mass and energy balances necessary for the proposed evaluation. ustrative cases, hydrogen and power co-generation and Fischer–Tropsch fuel synthesis (both with carbon capture), were presented. The case studies investigated in the paper produce a flexible ratio between power and hydrogen (in the range of 400–600 MW net electricity and 0–200 MWth hydrogen considering the lower heating value) with at least 90% carbon capture rate. Special emphasis were given to fuel selection criteria for optimisation of gasification performances (fuel blending), to the selection criteria for gasification reactor in a multi-fuel multi-product operation scenario, modelling and simulation of whole process, to thermal and power integration of processes, flexibility analysis of the energy conversion processes, in-depth techno-economic and environmental assessment etc.
Keywords :
Energy vectors poly-generation , power co-generation , Carbon capture and storage (CCS) , gasification , Coal & , biomass co-processing , Hydrogen &
Journal title :
Applied Thermal Engineering
Serial Year :
2015
Journal title :
Applied Thermal Engineering
Record number :
1908683
Link To Document :
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