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Thermodynamic predictions of performance of a bagasse integrated gasification combined cycle under quasi-equilibrium conditions

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Exergy, Thermodynamic analysis, Biomass gasification, Combined cycle, OXIDE FUEL-CELL, EXERGY ANALYSIS, ENERGY, SUGAR

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Citation

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MLA
Arteaga-Pérez, Luis E, Yannay Casas-Ledón, Wolter Prins, et al. “Thermodynamic Predictions of Performance of a Bagasse Integrated Gasification Combined Cycle Under Quasi-equilibrium Conditions.” CHEMICAL ENGINEERING JOURNAL 258 (2014): 402–411. Print.
APA
Arteaga-Pérez, L. E., Casas-Ledón, Y., Prins, W., & Radovic, L. (2014). Thermodynamic predictions of performance of a bagasse integrated gasification combined cycle under quasi-equilibrium conditions. CHEMICAL ENGINEERING JOURNAL, 258, 402–411.
Chicago author-date
Arteaga-Pérez, Luis E, Yannay Casas-Ledón, Wolter Prins, and Ljubisa Radovic. 2014. “Thermodynamic Predictions of Performance of a Bagasse Integrated Gasification Combined Cycle Under Quasi-equilibrium Conditions.” Chemical Engineering Journal 258: 402–411.
Chicago author-date (all authors)
Arteaga-Pérez, Luis E, Yannay Casas-Ledón, Wolter Prins, and Ljubisa Radovic. 2014. “Thermodynamic Predictions of Performance of a Bagasse Integrated Gasification Combined Cycle Under Quasi-equilibrium Conditions.” Chemical Engineering Journal 258: 402–411.
Vancouver
1.
Arteaga-Pérez LE, Casas-Ledón Y, Prins W, Radovic L. Thermodynamic predictions of performance of a bagasse integrated gasification combined cycle under quasi-equilibrium conditions. CHEMICAL ENGINEERING JOURNAL. 2014;258:402–11.
IEEE
[1]
L. E. Arteaga-Pérez, Y. Casas-Ledón, W. Prins, and L. Radovic, “Thermodynamic predictions of performance of a bagasse integrated gasification combined cycle under quasi-equilibrium conditions,” CHEMICAL ENGINEERING JOURNAL, vol. 258, pp. 402–411, 2014.
@article{5702548,
  author       = {Arteaga-Pérez, Luis E and Casas-Ledón, Yannay and Prins, Wolter and Radovic, Ljubisa},
  issn         = {1385-8947},
  journal      = {CHEMICAL ENGINEERING JOURNAL},
  keywords     = {Exergy,Thermodynamic analysis,Biomass gasification,Combined cycle,OXIDE FUEL-CELL,EXERGY ANALYSIS,ENERGY,SUGAR},
  language     = {eng},
  pages        = {402--411},
  title        = {Thermodynamic predictions of performance of a bagasse integrated gasification combined cycle under quasi-equilibrium conditions},
  url          = {http://dx.doi.org/10.1016/j.cej.2014.07.104},
  volume       = {258},
  year         = {2014},
}

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