Clees, TanjaTanjaCleesKlaassen, BernhardBernhardKlaassenNikitin, IgorIgorNikitinNikitina, LialiaLialiaNikitinaPott, SabineSabinePottKrewer, UlrikeUlrikeKrewerHaisch, TheresaTheresaHaisch2022-03-142022-03-142019https://publica.fraunhofer.de/handle/publica/406036In this paper, it is shown that the electrochemical kinetics of alkaline methanol oxidation can be reduced by setting certain fast reactions contained in it to a steady state. As a result, the underlying system of Ordinary Differential Equations (ODE) is transformed into a system of Differential-Algebraic Equations (DAE). We measure the precision characteristics of such transformation and discuss the consequences of the obtained model reduction.enmodeling of complex systemsobservational data and simulationsadvanced applicationsmathematical chemistry003005006518Model Reduction in the Design of Alkaline Methanol Fuel Cellsconference paper