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Method of Comparing Solid‐State Kinetic Data and Its Application to the Decomposition of Kaolinite, Brucite, and BaCO <sub>3</sub>

Journal of the American Ceramic Society · 1972 · Vol. 55(2) · pp. 74–77
John D. HancockJ. H. Sharp

Abstract

A method of comparing the kinetics of isothermal solid‐state reactions based on the classical equation for analysis of nucleation‐and‐growth processes is described. In this method, plots of In In (1‐α) vs In (time), where α is the fraction reacted, are used to distinguish reaction mechanisms. Even nonintegral slopes obtained for values of the fraction reacted from 0.15 to 0.50 may indicate whether the reaction rate is diffusion‐ or phase‐boundary‐controlled. The problems of ascertaining zero time and self‐cooling (or heating) of the reacting sample can be observed in the analysis but do not cause severe difficulties in interpretation, as they can for analyses based on reduced‐time plots. The analysis is applied to the dehydroxylation of kaolinite and of brucite and the decomposition of BaCO 3 .

Thermal and Kinetic AnalysisCrystallization and Solubility StudiesIron and Steelmaking ProcessesBruciteKaoliniteIsothermal processNucleationDecompositionThermodynamicsPhase (matter)ChemistrySolid-stateDiffusion
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References
Kinetics of Phase Change. I General Theory
The Journal of Chemical Physics · 1939 · 11,124 citations
Numerical Data for Some Commonly Used Solid State Reaction Equations
Journal of the American Ceramic Society · 1966 · 930 citations
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Method of Comparing Solid‐State Kinetic Data and Its Application to the Decomposition of Kaolinite, Brucite, and BaCO <sub>3</sub> · Scinovex