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Jakob Rabjerg Vang
Jakob Rabjerg Vang
Test Engineer, Advent Technologies A/S
Verificeret mail på advent.energy - Startside
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A comprehensive review of PBI-based high temperature PEM fuel cells
SS Araya, F Zhou, V Liso, SL Sahlin, JR Vang, S Thomas, X Gao, ...
International Journal of Hydrogen Energy 41 (46), 21310-21344, 2016
4072016
High temperature PEM fuel cell performance characterisation with CO and CO2 using electrochemical impedance spectroscopy
SJ Andreasen, JR Vang, SK Kær
International journal of hydrogen energy 36 (16), 9815-9830, 2011
1762011
Experimental study to distinguish the effects of methanol slip and water vapour on a high temperature PEM fuel cell at different operating conditions
S Thomas, JR Vang, SS Araya, SK Kær
Applied energy 192, 422-436, 2017
392017
Comparative study of the break in process of post doped and sol–gel high temperature proton exchange membrane fuel cells
JR Vang, SJ Andreasen, SS Araya, SK Kær
international journal of hydrogen energy 39 (27), 14959-14968, 2014
332014
A transient fuel cell model to simulate HTPEM fuel cell impedance spectra
JR Vang, SJ Andreasen, SK Kær
International Conference on Fuel Cell Science, Engineering and Technology …, 2011
332011
New load cycling strategy for enhanced durability of high temperature proton exchange membrane fuel cell
S Thomas, C Jeppesen, T Steenberg, SS Araya, JR Vang, SK Kær
International Journal of Hydrogen Energy 42 (44), 27230-27240, 2017
222017
Investigating different break-in procedures for reformed methanol high temperature proton exchange membrane fuel cells
S Thomas, SS Araya, JR Vang, SK Kær
International Journal of Hydrogen Energy 43 (31), 14691-14700, 2018
182018
Estimating important electrode parameters of high temperature PEM fuel cells by fitting a model to polarisation curves and impedance spectra
JR Vang, F Zhou, SJ Andreasen, SK Kær
Ecs Transactions 68 (3), 13, 2015
122015
HTPEM fuel cell impedance: mechanistic modelling and experimental characterisation
JR Vang
82014
EIS Characterization of the Poisoning Effects of CO and CO2 on a PBI Based HT-PEM Fuel Cell
SJ Andreasen, R Mosbæk, JR Vang, SK Kær, SS Araya
International Conference on Fuel Cell Science, Engineering and Technology …, 2010
72010
Experimental analysis of the effects of CO and CO2 on high temperature PEM fuel cell performance using electrochemical impedance spectroscopy
SJ Andreasen, JR Vang
Progress in MEA Materials for Medium and High Temperature Polymer …, 2010
32010
Evaluation of performance degradation of high temperature proton exchange membrane fuel cells using a simple start-stop testing protocol
N Mlakar, A Lotrič, M Sekavčnik, M Mori, SS Araya, SJ Andreasen, ...
2022 8th International Youth Conference on Energy (IYCE), 1-7, 2022
12022
An electrochemical impedance model for HTPEM fuel cells
JR Vang
Master’s thesis, Aalborg University, Aalborg, Denmark, 2010
12010
Characterisation of the effects of CO and CO2 on HTPEM fuel cells using electrochemical impedance spectroscopy
R Mosbæk, JR Vang
Technical report, Aalborg University, 2010
12010
Investigating the Effect of Water Vapor and Residual Methanol on the Anode of High Temperature PEM Fuel Cell
S Thomas, SS Aarya, SK Kær, JR Vang
6th European Fuel Cell Technology and Applications Conference-Piero Lunghi …, 2015
2015
Model Estimation of HTPEM Mea Parametersfrom EIS and IV Curves
JR Vang, F Zhou
2015
HTPEM Fuel Cell Impedance: Mechanistic Modelling and Experimental Characterisation: Dissertation Submitted to the Faculty of Engineering and Science in Partial Fulfillment of …
JR Vang
Department of Energy Technology, Aalborg University, 2015
2015
Impedance Analysis of the Conditioning of PBI–Based Electrode Membrane Assemblies for High Temperature PEM Fuel Cells
SS Araya, JR Vang, SJ Andreasen, SK Kær
5th European Fuel Cell Technology & Applications Conference-Piero Lunghi …, 2013
2013
Determining HTPEM electrode parameters using a mechanistic impedance model
JR Vang, M Mamlouk, K Scott, SK Kær
2012
Modelling and Parametric Study of a µCHP HTPEM Fuel Cell System
RL Mosbæk, AA Michea, JR Vang, MP Nielsen, A Arsalis
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