Uneingeschränkter Zugang

Economical aspects of the CCS technology integration in the conventional power plant


Zitieren

Badea, A.A., Dinca, C.F. (2012). CO2 capture from post-combustion gas by employing MEA absorption process-experimental investigations for pilot studies. University” Politehnica” of Bucharest Scientific Bulletin, Series D: Mechanical Engineering, 74(1), 21-32.Search in Google Scholar

Badea, A.A., Voda, I., Dinca, C.F., (2010). Comparative analysis of coal, natural gas and nuclear fuel life cycles by chains of electrical energy production. University” Politehnica” of Bucharest Scientific Bulletin, Series C-Electrical Engineering and Computer Science Volume, 72, 221-238.Search in Google Scholar

Dinca, C. (2013). Technical, environmental and economic assessment of CO2 absorption chemical process integration in the power plant technologies. Book: Materials and processes for energy: communicating current research and technological developments. Editor: A. Méndez-Vilas, Formatex Research Center, Spain, 935-945.Search in Google Scholar

Dinca, C., Badea, A. (2013). The parameters optimization for a CFBC pilot plant experimental study of post-combustion CO2 capture by reactive absorption with MEA. International Journal of Greenhouse Gas Control, 12, 269-279.10.1016/j.ijggc.2012.11.006Search in Google Scholar

Dinca, C., Badea, A., Stoica, L., Pascu, A. (2015). Absorber design for the improvement of the efficiency of post-combustion CO2 capture. Journal of the Energy Institute, 88(3), 304-313.10.1016/j.joei.2014.08.003Search in Google Scholar

Dinca, C. (2016). Critical parametric study of circulating fluidized bed combustion with CO2 chemical absorption process using different aqueous alkanolamines. Journal of Cleaner Production, 112, 1136-1149.10.1016/j.jclepro.2015.06.051Search in Google Scholar

Hadri, E.N., Quang, D.V., Goetheer, E.L., Abu-Zahra, M.R. (2017). Aqueous amine solution characterization for post-combustion CO2 capture process. Applied Energy, 185, 1433-1449.10.1016/j.apenergy.2016.03.043Search in Google Scholar

Kim, H., Lee, K.S. (2017). Energy analysis of an absorption-based CO2 capture process. International Journal of Greenhouse Gas Control, 56, 250-260.10.1016/j.ijggc.2016.12.002Search in Google Scholar

Liang, Z., Fu, K., Idem, R., Tontiwachwuthikul, P. (2016). Review on current advances, future challenges and consideration issues for post-combustion CO2 capture using amine-based absorbents. Chinese Journal of Chemical Engineering, 24(2), 278-288.10.1016/j.cjche.2015.06.013Search in Google Scholar

Norişor, M., Badea, A., Dinca, C., (2012). Economical and technical analysis of CO2 transport ways. University Politehnica of Bucharest Scientific Bulletin Series C-Electrical Engineering and Computer Science Volume, 74, 127-138.Search in Google Scholar

Pascu, A., Stoica, L., Dinca, C., Badea, A. (2016). The package type influence on the performance of the co2 capture process by chemical absorption. University Politehnica of Bucharest scientific bulletin series c-electrical engineering and computer science, 78(1), 259-270.Search in Google Scholar

Porter, R.T., Fairweather, M., Kolster, C., Mac Dowell, N., Shah, N., Woolley, R.M. (2016). Cost and performance of some carbon capture technology options for producing different quality CO2 product streams. International Journal of Greenhouse Gas Control.Search in Google Scholar

Rahman, F.A., Aziz, M.M.A., Saidur, R., Bakar, W.A.W.A., Hainin, M.R., Putrajaya, R., Hassan, N.A. (2017). Pollution to solution: Capture and sequestration of carbon dioxide (CO2) and its utilization as a renewable energy source for a sustainable future. Renewable and Sustainable Energy Reviews, 71, 112-126.10.1016/j.rser.2017.01.011Search in Google Scholar

Singh, S., Sørensen, K., Simonsen, A.S., Condra, T.J. (2017). Implications of fin profiles on overall performance and weight reduction of a fin and tube heat exchanger. Applied Thermal Engineering, 115, 962-976.10.1016/j.applthermaleng.2017.01.043Search in Google Scholar

Wang, M., Joel, A. S., Ramshaw, C., Eimer, D., Musa, N.M. (2015). Process intensification for post-combustion CO2 capture with chemical absorption: a critical review. Applied Energy, 158, 275-291.10.1016/j.apenergy.2015.08.083Search in Google Scholar

eISSN:
2558-9652
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
Volume Open
Fachgebiete der Zeitschrift:
Wirtschaftswissenschaften, Volkswirtschaft, andere, Betriebswirtschaft, Industrielle Chemie, Energiegewinnung und Umwandlung