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  4. Statistical and Principal Component Analysis in the Design of Alkaline Methanol Fuel Cells
 
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2021
Conference Paper
Titel

Statistical and Principal Component Analysis in the Design of Alkaline Methanol Fuel Cells

Abstract
In this paper, the electrochemical alkaline methanol oxidation process, which is relevant for the design of efficient fuel cells, is considered. An algorithm for reconstructing the reaction constants for this process from the experimentally measured polarization curve is presented. The approach combines statistical and principal component analysis and determination of the trust region for a linearized model. It is shown that this experiment does not allow one to determine accurately the reaction constants, but only some of their linear combinations. The possibilities of extending the method to additional experiments, including dynamic cyclic voltammetry and variations in the concentration of the main reagents, are discussed.
Author(s)
Clees, Tanja orcid-logo
Fraunhofer-Institut für Algorithmen und Wissenschaftliches Rechnen SCAI
Klaassen, Bernhard
Fraunhofer-Institut für Algorithmen und Wissenschaftliches Rechnen SCAI
Nikitin, Igor
Fraunhofer-Institut für Algorithmen und Wissenschaftliches Rechnen SCAI
Nikitina, Lialia
Fraunhofer-Institut für Algorithmen und Wissenschaftliches Rechnen SCAI
Pott, Sabine
Fraunhofer-Institut für Algorithmen und Wissenschaftliches Rechnen SCAI
Hauptwerk
ADVCOMP 2021, Fifteenth International Conference on Advanced Engineering Computing and Applications in Sciences
Konferenz
International Conference on Advanced Engineering Computing and Applications in Sciences (ADVCOMP) 2021
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