Scinovex
article

A Simple Method for Estimating <i>f</i><i>(E)</i> and <i>k</i><sub>0</sub>(<i>E</i>) in the Distributed Activation Energy Model

Energy & Fuels · 1998 · Vol. 12(5) · pp. 864–869
Kouichi MiuraTaisuke Maki

Abstract

A new method that is simpler and more accurate than the author's previous method is presented for estimating f(E) and k0(E) in the distributed activation energy model. It utilizes at least three sets of experimental data obtained at different heating rates, a. The Arrhenius plot of ln(a/T2) vs 1/T (T: temperature) at the same conversion level allows determination of both E and k0 at that level by introducing an approximation. f(E) and k0(E), unique to the reaction system of concern, can then be obtained by changing the conversion level. The validity and accuracy of this new method are shown through model calculations. The method does not require a priori assumptions for f(E) and k0(E). The f(E) curves and the k0 vs E relationships for the pyrolysis reactions of Argonne premium coals estimated by this method were successfully used to predict the weight loss curves at markedly different heating conditions.

Thermochemical Biomass Conversion ProcessesThermal and Kinetic AnalysisHeat transfer and supercritical fluidsActivation energyArrhenius equationThermodynamicsSimple (philosophy)A priori and a posterioriArrhenius plotEnergy (signal processing)Plot (graphics)ChemistryPyrolysis
Citations
485
FWCI
2.43
field-weighted impact
References
23
Percentile
87%
vs. same field & year
Citations per year
Cited by
Global Kinetic Analysis of Complex Materials
Energy & Fuels · 1998 · 558 citations
References
General model of coal devolatilization
Energy & Fuels · 1988 · 509 citations
Coal devolatilization and hydrogastification
AIChE Journal · 1976 · 682 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.