An auto-sustainable solid oxide fuel cell system fueled by bio-ethanol Process simulation and heat exchanger network synthesis

Luis E. Arteaga-Perez, Yannay Casas, Luis M. Peralta, Viatshelav Kafarov, Jo Dewulf, Pablo Giunta

Abstract

In this paper the simulation and heat integration of a solid oxide fuel cell (SOFC) integrated with an ethanol steam reforming system are carried out. The ethanol reaction is studied using a novel kinetic model reported in a previous work. The system and fuel cell efficiencies are studied under different process conditions, temperature (723 < T < 873 K), water to ethanol molar ratio (3 < R(AE) < 6) and fuel utilization coefficient (0.7 < FUC < 0.9). The SOFC off gases are mixed and fed to an after burner providing heat to the process. Two heat exchanger networks are designed considering the influence of the fuel utilization coefficient (0.7-0.9) at the cell electrodes. If the SOFC is operated at FUC < 0.8 a self sufficient limit could otherwise extra ethanol must be combusted with an overall efficiency penalty. A process be established, flow diagram is proposed in order to obtain a high efficiency and to avoid the use of any external source of energy. (C) 2009 Elsevier B.V. All rights reserved.

Más información

Título según WOS: An auto-sustainable solid oxide fuel cell system fueled by bio-ethanol Process simulation and heat exchanger network synthesis
Título de la Revista: CHEMICAL ENGINEERING JOURNAL
Volumen: 150
Número: 1
Editorial: ELSEVIER SCIENCE SA
Fecha de publicación: 2009
Página de inicio: 242
Página final: 251
Idioma: English
URL: http://linkinghub.elsevier.com/retrieve/pii/S138589470900148X
DOI:

10.1016/j.cej.2009.02.032

Notas: ISI - ISI