2014
DOI: 10.1016/j.jpowsour.2014.03.097
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A novel approach to the experimental study on methane/steam reforming kinetics using the Orthogonal Least Squares method

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Cited by 38 publications
(30 citation statements)
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“…Therefore, the rate equation (see Eq. 9) takes the following form: has been determined using the method described in references [27,[32][33][34]. In this method, the water-gas-shift reaction (8) is assumed to be in equilibrium because of the high temperature inside the reactor.…”
Section: Reaction Rate Equationmentioning
confidence: 99%
See 1 more Smart Citation
“…Therefore, the rate equation (see Eq. 9) takes the following form: has been determined using the method described in references [27,[32][33][34]. In this method, the water-gas-shift reaction (8) is assumed to be in equilibrium because of the high temperature inside the reactor.…”
Section: Reaction Rate Equationmentioning
confidence: 99%
“…The reaction constant k is constant for the given temperature, therefore A and E can be determined from the Arrhenius plot. The generalized least squares method, described in references [34,35], was used to correct the experimental data.…”
Section: Reaction Rate Equationmentioning
confidence: 99%
“…Różni autorzy (zestawienie w [8]) przedstawiają różne parametry kinetyki reakcji, stąd potrzeba przeprowadzenia eksperymentu w celu wyznaczenia kinetyki procesu charakteryzującej badany problem. Schemat układu pomiarowego pokazano na rysunku 1.…”
Section: Układ Eksperymentalnyunclassified
“…Parametry kinetyczne równania opisującego szybkość reakcji reformingu paliwa zostały wyznaczone za pomocą metody najmniejszych kwadratów oraz dzięki wykreśleniu wykresu Arrheniusa ( [3], [8]). Ostateczne równanie opisują-ce szybkość reakcji ma postać: …”
Section: Układ Eksperymentalnyunclassified
“…Brus [3] experimentally investigated reforming kinetics on the Ni/SDC catalyst and successfully implemented it into the computational fluid dynamics (CFD) model of the methane/steam reformer which can be used in combination with high-temperature fuel cells. Sciazko with coworkers [23] analyzed the kinetics of methane/steam reforming reaction using the generalized least squares method for SOFC modeling. Mozdzierz et al [15] conducted parametric studies on the methane/steam reforming reaction and concluded that the adaptation of heating zones and localized catalyst density can significantly help in process control.…”
Section: Introductionmentioning
confidence: 99%