001     906542
005     20240712113249.0
020 _ _ |a 978-3-95806-611-3
024 7 _ |2 Handle
|a 2128/30868
024 7 _ |2 URN
|a urn:nbn:de:0001-2022040531
037 _ _ |a FZJ-2022-01506
041 _ _ |a English
100 1 _ |0 P:(DE-Juel1)186729
|a Shi, Yan
|b 0
|e Corresponding author
|u fzj
245 _ _ |a Stationary and Transient Behaviour of Polymer Electrolyte Fuel Cells
|f - 2021-12-17
260 _ _ |a Jülich
|b Forschungszentrum Jülich GmbH Zentralbibliothek, Verlag
|c 2022
300 _ _ |a viii, 172 S.
336 7 _ |2 DataCite
|a Output Types/Dissertation
336 7 _ |0 PUB:(DE-HGF)3
|2 PUB:(DE-HGF)
|a Book
|m book
336 7 _ |2 ORCID
|a DISSERTATION
336 7 _ |2 BibTeX
|a PHDTHESIS
336 7 _ |0 2
|2 EndNote
|a Thesis
336 7 _ |0 PUB:(DE-HGF)11
|2 PUB:(DE-HGF)
|a Dissertation / PhD Thesis
|b phd
|m phd
|s 1648132345_11907
336 7 _ |2 DRIVER
|a doctoralThesis
490 0 _ |a Schriften des Forschungszentrums Jülich. Reihe Energie & Umwelt / Energy & Environment
|v 567
502 _ _ |a RWTH Aachen, Diss., 2021
|b Dissertation
|c RWTH Aachen
|d 2021
520 _ _ |a The Low Temperature Polymer Electrolyte Fuel Cell (LT-PEFC) is a promising alternative power source for automotive applications that offers a relatively simple system level, high efficiency, and completely harmless emissions. Fuel cell operations are complex processes that can be influenced by numerous different operating conditions. This thesis, therefore, focuses on the analysis of the impact of different operating conditions on, both static and dynamic behavior of the LT-PEFC. An accuracy study is first performed to evaluate the repeatability and reproducibility of the in-house assembled LT-PEFCs employed in the experiments. Four test cells are assembled and tested under the same operating conditions. It is found that the repeatability and reproducibility of the test cells are better when higher stoichiometry ratios and lower current density are applied in the tests. Overall, the LT-PEFCs used in the experiments are characterized by a high level of accuracy. Various operating parameters are considered in the cell static behavior analysis. With the help of split-plot design, cell orientation, cell temperature, cathodic stoichiometric ratio and backpressure are determined to be the most statistically significant factors for the cell static behavior. Furthermore, the optimal cell performance and corresponding parameter settings are determined via the response surface methodology (RSM). Voltage overshoot and undershoot behavior are used to characterize the cell dynamic behavior. Using split-plot design, the load change step, cell temperature, cathodic stoichiometric ratio and backpressure are selected as the most significant factors for both the voltage undershoot and overshoot behaviors. Additionally, the effect of load change ramp on voltage undershoot and overshoot is determined. The result suggests that the load change with the ramp can significantly reduce the undershoot and overshoot magnitudes. Moreover, the load change with the ramp has a limited impacton the average pressure drop and the ohmic resistance of the test cell.
536 _ _ |0 G:(DE-HGF)POF4-1231
|a 1231 - Electrochemistry for Hydrogen (POF4-123)
|c POF4-123
|f POF IV
|x 0
856 4 _ |u https://juser.fz-juelich.de/record/906542/files/Energie_Umwelt_567.pdf
|y OpenAccess
909 C O |o oai:juser.fz-juelich.de:906542
|p openaire
|p open_access
|p urn
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910 1 _ |0 I:(DE-588b)5008462-8
|6 P:(DE-Juel1)186729
|a Forschungszentrum Jülich
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913 1 _ |0 G:(DE-HGF)POF4-123
|1 G:(DE-HGF)POF4-120
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|a DE-HGF
|b Forschungsbereich Energie
|l Materialien und Technologien für die Energiewende (MTET)
|v Chemische Energieträger
|x 0
914 1 _ |y 2022
915 _ _ |0 StatID:(DE-HGF)0510
|2 StatID
|a OpenAccess
915 _ _ |0 LIC:(DE-HGF)CCBY4
|2 HGFVOC
|a Creative Commons Attribution CC BY 4.0
920 _ _ |l yes
920 1 _ |0 I:(DE-Juel1)IEK-14-20191129
|k IEK-14
|l Elektrochemische Verfahrenstechnik
|x 0
980 1 _ |a FullTexts
980 _ _ |a phd
980 _ _ |a VDB
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980 _ _ |a book
980 _ _ |a I:(DE-Juel1)IEK-14-20191129
981 _ _ |a I:(DE-Juel1)IET-4-20191129


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