BibTex format
@inproceedings{Millan:2016,
author = {Millan, M and Lorente, E and Boldrin, P and Brandon, N},
title = {Integration of gasification and fuel cells: Interaction between the anode and contaminants in the syngas},
year = {2016}
}
@inproceedings{Millan:2016,
author = {Millan, M and Lorente, E and Boldrin, P and Brandon, N},
title = {Integration of gasification and fuel cells: Interaction between the anode and contaminants in the syngas},
year = {2016}
}
TY - CPAPER
AB - Fouling due to carbon deposition on the fuel cell anode reduces the performance of the cell. • The addition of steam above S/C of 1 was found to reduce carbon deposition from tars but not fully suppress coke formation. • A combination of high S/C=ratio and current density may effectively inhibit carbon formation, maintaining cell performance. • Benzene and toluene represent a "worst-case scenario" as tar models and light fractions are more likely to produce carbon deposits.
AU - Millan,M
AU - Lorente,E
AU - Boldrin,P
AU - Brandon,N
PY - 2016///
TI - Integration of gasification and fuel cells: Interaction between the anode and contaminants in the syngas
ER -
Dr Paul Boldrin
Research Associate
Professor Nigel P Brandon FREng FRS
Dean of the Faculty of Engineering
Dr Laura Bravo Diaz
Academic Visitor
Dr Ian Campbell
Academic Visitor
Dr Sam Cooper
Senior Lecturer
Dr Martina De Marco
Research Project Manager
Dr Jacqueline Edge
MSM Research & Business Lead
Dr Carlos E Garcia
Research Associate
Mr Jason Jiang
Research Postgraduate
Mr Ashkan Kavei
Dr Niall D Kirkaldy
Research Associate
Dr Laura Lander
Academic Visitor
Dr Monica Marinescu
Senior Lecturer
Professor Ricardo F Martinez-Botas
Professor of Turbomachinery
Mr Waseem Marzook
Research Postgraduate
Dr Simon O'Kane
Research Associate
Professor Gregory J Offer
Professor in Electrochemical Engineering
Dr Yatish Patel
Advanced Research Fellow
Dr Catalina A Pino-Munoz
Research Associate in Flow Battery Modelling
Mr Ryan Prosser
Research Postgraduate