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- W2734722135 abstract "Abstract A combined system containing molten carbonate fuel cell power plant, coal gasification, hydrogen production cryogenic CO 2 capture, Rankine steam cycle and ammonia-water absorption refrigeration system is introduced and analyzed. In this process, power, heat and cooling are produced. An electrochemical model is developed to validate the experimental results of the fuel cell. In this system at first coal burn with oxygen and produce synthesis gas which is primary fuel for molten carbonate fuel cell and hydrogen production. Outlet gases which contain carbon dioxide are sent to the cryogenic CO 2 capture system and hydrogen is separated from CO 2 . Effect of key parameters on performance of the process is investigated. The power output from the system is 6.55 MW which 6 MW is gained from the fuel cell and 0.55 MW from the heat recovery and steam cycle. Also, this process produce 90 kmol/h hydrogen and 90% of the produced CO 2 is captured. Electrical efficiency of the hybrid system is 58% (LHV). Refrigeration duty (−30 °C) and the recovered heat are 101.2 kW and 22.11 kW respectively." @default.
- W2734722135 created "2017-07-21" @default.
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- W2734722135 creator A5067952387 @default.
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- W2734722135 date "2017-10-01" @default.
- W2734722135 modified "2023-09-25" @default.
- W2734722135 title "Introducing a hybrid multi-generation fuel cell system, hydrogen production and cryogenic CO2 capturing process" @default.
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- W2734722135 doi "https://doi.org/10.1016/j.cep.2017.07.008" @default.
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