23 European Symposium on Computer Aided Process Engineering: Techno-Economic Analysis of a Natural Gas Combined Cycle Power Plant with CO2 Capture (Computer Aided Chemical Engineering) by Chechet Biliyok, Roberto Canepa, Meihong Wang, Hoi Yeung
23 European Symposium on Computer Aided Process Engineering: Techno-Economic Analysis of a Natural Gas Combined Cycle Power Plant with CO2 Capture (Computer Aided Chemical Engineering) by Chechet Biliyok, Roberto Canepa, Meihong Wang, Hoi Yeung PDF, ePub eBook D0wnl0ad
Power generation via natural gas is projected to increase over the next decade. CO2 capture would be required to mitigate the associated emissions. Integrating a capture plant to power plants can be explored via process simulation. Hence, high fidelity models of a natural gas combined cycle power plant and a post-combustion capture plant were built – a 440MW power plant model that is tuned and validated with data from GE’s GateCycle®, and a rate-based capture plant model that is scaled up from a previously validated model. Along with a suitably sized compression train, the plants are integrated for 90% CO2 capture. Net power output is observed to fall by 14%, but cooling water demand increases by 33%. A 40% exhaust gas recirculation (EGR) results in a marginal recovery in output, but also raises cooling water demand further. A redesign of the steam cycle to account for integration would potentially improve performance. Economic analysis is performed via a bottom-up approach. The integrated plant overnight cost is determined to be 45% higher than cost of the power plant without capture, but is only 43% higher with EGR. The cost of electricity also increases by 41% for the integrated plant, but by only 38% with EGR. Lastly, the cost of CO2 avoided is estimated to be €69 per ton of CO2, but reduces to €63 with EGR.From reader reviews:
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