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Dehydration behavior of synthetic Al0.5Fe0.5PO 4·2.5H2O

Author(s)
Boonchom, Banjong
Vittayakorn, Naratip
Date Issued
September 9, 2010
Type
Article
DOI
10.1021/je100096e
Abstract
The dehydration behavior of the experimentally produced Al 0.5Fe0.5PO4·2.5H2O solid solution is assessed from thermogravimetrical (TG, differential thermogravimetric, DTG, and differential thermal analysis, DTA) and differential scanning calorimetry (DSC) analyses. The dehydration proceeded through a well-defined step at low temperatures (< 300 °C), which corresponds to the loss of 2.5 water molecules. The fluctuating dependence of the activation energies on fraction mass loss (α) for the dehydration reaction of Al 0.5Fe0.5PO4·2.5H2O calculated through isoconversional methods (Ozawa and the Kissinger-Akahira-Sunose) indicates the existence of a complex multistep mechanism. The Avrami exponent value of 1.11 is indicative of one-dimensional growth as a phase boundary mechanism. The thermodynamic functions (ΔH*, ΔG*, and ΔS*) of the dehydration reaction calculated from the DSC technique are discussed for the first time. © 2010 American Chemical Society.
Citation
Journal of Chemical and Engineering Data, 55(9), 3307-3311, 2010
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