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| Content Provider | The American Society of Mechanical Engineers (ASME) Digital Collection |
|---|---|
| Author | Gambini, M. Vellini, M. |
| Copyright Year | 2003 |
| Abstract | In this paper the overall performance of a new advanced mixed cycle (AMC), fed by hydrogen-rich fuel gas, has been evaluated. Obviously, hydrogen must be produced and here we have chosen the steam-methane reforming for its production, quantifying all the thermal and electric requirements. At first, the thermodynamic performance of this cycle has been investigated in comparison with that attainable by combined cycle power plants (CC). Then, the power plants have been integrated with the fuel production system. Including all the material and energetic flows, the overall performance has been evaluated. The main result of the performed investigation is that, while the two power plants attain the same efficiency level without H2 production requirements (about 56% for AMC and 55.8% for CC), the AMC power plant achieves a net electric efficiency of about 48% when integrated with H2 production plant: it is about 3 points higher than the efficiency evaluated for the CC equipped with the same H2 production plant (about 45%). The final carbon dioxide emissions are about 0.0742 and 0.079 kg/kWh for AMC and CC respectively. |
| Sponsorship | Power Division |
| Starting Page | 943 |
| Ending Page | 951 |
| Page Count | 9 |
| File Format | |
| ISBN | 0791836924 |
| DOI | 10.1115/IJPGC2003-40129 |
| e-ISBN | 0791836770 |
| Volume Number | 2003 International Joint Power Generation Conference |
| Conference Proceedings | International Joint Power Generation Conference collocated with TurboExpo 2003 |
| Language | English |
| Publisher Date | 2003-06-16 |
| Publisher Place | Atlanta, Georgia, USA |
| Access Restriction | Subscribed |
| Subject Keyword | Methane Cycles Hydrogen Carbon dioxide Combustion Fuels Flow (dynamics) Emissions Gaseous fuels Steam Power stations Combined cycle power stations Manufacturing systems |
| Content Type | Text |
| Resource Type | Article |
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