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- W2140457170 abstract "Reduction of CO2 emissions is the key driving force behind the development and implementation of new energy production solutions. One solution is circulating fluidized bed (CFB) combustion technology combined with a high-efficiency once-through water-steam cycle. Foster Wheeler’s CFB technology is today commercially available up to 800 MWe capacities with ultra-supercritical steam parameters. Simultaneously, the Flexi-Burn CFB technology is being developed to provide capability to flexible operation in air firing and oxy-combustion for carbon capture. CFB technology can offer an attractive solution for the reduction of CO2 emissions as it will provide the advantages like fuel flexibility and low emissions as the air fired CFB technology offers today. Experiments done at pilot test facilities provide information about the CFB performance on oxy-combustion, and the acquired knowledge is being incorporated in boiler modeling and design tools. One of the European R&D initiatives on CCS is the Technological Centre for CO2 Capture and Transport, which is supported by the Spanish Government through the Fundacion Ciudad de la Energia (CIUDEN). CIUDEN is a research and development institution created by the Spanish Administration in 2006 and fully conceived for collaborative research in CO2 capture, transportation and storage. The Technology Development Centre for CO2 Capture comprises two technologies on oxy-combustion: Pulverized Coal (PC) and Circulating Fluidized Bed (CFB). This paper will focus on the design and main characteristics of the 30 MWth oxy-CFB boiler. Foster Wheeler is the technology provider of the Flexi-Burn CFB unit, for which commissioning is planned during the second half 2011. The CFB unit design allows either the operation under conventional combustion with air or under oxy-fuel conditions. The size of this experimental boiler is sufficient to allow the scaling of the results to commercial units. In this way, multiple fuels and operating conditions can be tested economically in this experimental unit. The results will validate the design of a future 330 MWe supercritical Oxy-Combustion Power Station (OXY-CFB-300 Compostilla Project) intended to demonstrate the CCS technology in commercial scale. The Compostilla OXY-CFB-300 Project is one of the 6 CCS demonstration projects funded under the European Energy Programme for Recovery (EEPR) of the EU. The Project is based on a future 330 MWe Circulating Fluidised Bed (CFB) supercritical oxy-combustion plant, with CO2 storage in a deep geological formation. The first phase of the project, granted by the EEPR program and lead by the Spanish utility ENDESA, includes all studies and characterization work needed on the capture, transport and storage as well the costs, financing, regulatory and permitting required, prior to the final investment decision of the plant by the end of 2012 for the construction phase. ** Flexi-Burn is a trademark of Foster Wheeler Energia Oy, registered in the US, EU, Finland." @default.
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- W2140457170 date "2012-06-01" @default.
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- W2140457170 title "Development and Demonstration of Oxy-fuel CFB Technology" @default.
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