By Paul Fennell, Ben Anthony
Calcium and Chemical Looping know-how for strength iteration and Carbon Dioxide (CO2) Capture studies the elemental ideas, structures, oxygen vendors, and carbon dioxide providers correct to chemical looping and combustion.
Chapters overview the marketplace improvement, economics, and deployment of those platforms, additionally delivering distinctive details at the number of fabrics and techniques that may aid to form the way forward for CO2 capture prepared energy plants.
- Reviews the elemental rules, platforms, oxygen companies, and carbon dioxide vendors correct to calcium and chemical looping
- Provides a lucid rationalization of complex options and advancements in calcium and chemical looping, excessive strain structures, and substitute CO2 carriers
- Presents details out there improvement, economics, and deployment of those systems
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Additional resources for Calcium and chemical looping technology for power generation and carbon dioxide (CO2) capture : solid oxygen- and CO2-carriers
Brautsch, A. (2009). Alstom’s calcium oxide chemical looping combustion coal power technology development. In 34th international technical conference on clean coal & fuel systems (Clearwater, Florida, USA). Aston, V. , Evanko, B. , & Weimer, A. W. (2013). Investigation of novel mixed metal ferrites for pure H2 and CO2 production using chemical looping. International Journal of Hydrogen Energy, 38, 9085e9096. , & Lyngfelt, A. (2009). Chemical-looping combustion of petroleum coke using ilmenite in a 10 kWth unit-high-temperature operation.
The development of these materials is much lower than traditional Fe-based materials, and it requires more research work to conﬁrm its suitability for the CLWS process. 3 Using liquid fuels Liquid fuels can be used in a-CLR process as fuel for H2 generation. , 2012). Regarding material selection, several studies showed the suitability of using NiO, CuO, Fe2O3 or CaSO4 (Kale, Kulkarni, & Bharadwaj, 2013; Moldenhauer, Rydén, Mattisson, & Lyngfelt, 2012; Pimenidou, Rickett, Dupont, & Twigg, 2010a; Wang, 2014) as an oxygen carrier.
Recently, the ‘integrated gasiﬁcation chemical looping combustion’ of solid fuels has been proposed by Zhang, Doroodchi, and Moghtaderi (2012). This process is also based on the use of three reactors, that is fuel reactor, steam reactor and air reactor, but the gasiﬁer is integrated into the chemical looping ﬂow sheet. Thus, part of H2 produced as well as unconverted steam from the steam reactor is fed to the gasiﬁer in order to produce syngas and methane by gasiﬁcation and methanation reactions.