New Improvements in Existing Combined-Cycles: Exhaust Gases Treatment with Amines and Exhaust Gas Recirculation
Author:
Publisher
Springer International Publishing
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-24374-5_6
Reference26 articles.
1. Cuviella-Suárez C, Colmenar-Santos A, Castro-Gil M (2012) Tri-generation system to couple production to demand in a combined cycle. Energy 40(1):271–290
2. Colmenar-Santos A, Gómez-Camazón D, Rosales-Asensio E, Blanes-Peiró J-J (2018) Technological improvements in energetic efficiency and sustainability in existing combined-cycle gas turbine (CCGT) power plants. Appl Energy 223:30–51
3. Li H, Haugen G, Ditaranto M, Berstad D, Jordal K (2011) Impacts of exhaust gas recirculation (EGR) on the natural gas combined cycle integrated with chemical absorption CO2 capture technology. Energy Procedia 4:1411–1418
4. Li H, Ditaranto M, Berstad D (2011) Technologies for increasing CO2 concentration in exhaust gas from natural gas-fired power production with post-combustion, amine-based CO2 capture. Energy 36:1124–1133
5. Li H, Mario Ditaranto M, Yan J (2012) Carbon capture with low energy penalty: supplementary fired natural gas combined cycles. Appl Energy 97:164–169
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