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Rational approximations of the integral of the Arrhenius function

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TLDR
Rational approximations have been derived for the integral of the Arrhenius function dT which is important in the kinetic analysis of thermogravimetric data and is found to be equivalent to the Gorbachev approximation.
Abstract
Rational approximations have been derived for the integral of the Arrhenius function $$\int\limits_0^T {\exp ( - E/RT)}$$ dT which is important in the kinetic analysis of thermogravimetric data. The first degree rational approximation is found to be equivalent to the Gorbachev approximation, i.e., RT2 exp (−E/RT)/(E+2RT). The second degree rational approximation is more accurate than the Zsako empirical approximation when E/RT 5. The third and higher degree rational approximations are found to be more accurate than any other previous approximation.

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Non-isothermal decomposition of 4-((4-fluoro-3-phenoxy- benzylidene) amino) benzenesulfonamide under oxygen atmosphere

TL;DR: In this article, the thermal decomposition of 4-FBABS was studied under dynamic oxygen atmosphere at different heating rates of 10, 15 and 20 K min −1, the calculated ∆G ≠ values show that the decomposition processes are endothermic and non-spontaneous nature.
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Non-isothermal decomposition kinetics of commercial polyacrylamide hydrogel using TGA and DSC techniques

TL;DR: In this article , the thermal decomposition method was employed to analyze the non-isothermal kinetics of commercial polyacrylamide hydrogel and the activation energies for the first and second stages were calculated.

Application of simplified version of advanced isoconversional procedure in non-isothermal kinetic study

TL;DR: In this paper, the activation energy associated with the first, second, and third stages of the thermal decomposition of NH4Co0.9Zn0.1PO4� H2O were obtained, which demon-strates that the third stage is a kinetically complex process, and the first and second stages are single-step kinetic processes and can be described by a unique kinetic triplet (Ea, A, and g(a)).
References
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Journal ArticleDOI

Kinetic Parameters from Thermogravimetric Data

A. W. Coats, +1 more
- 01 Jan 1964 - 
TL;DR: In this article, a thermocouple is used to measure the sample temperature in a Stanton HT-D thermobalance, the bead of which is positioned in or near the sample, depending on crucible design.
Journal ArticleDOI

Empirical formula for the exponential integral in non-isothermal kinetics

TL;DR: The exponential integral of the exponential integral can be approximated by means of the empirical formula, e.g. as mentioned in this paper, which approximates p(x) = - \int\limits_\infty ^x {\frac{{e^{ - u} }}{{u^2 }}} \cdot du\).
Journal ArticleDOI

Reaction kinetics and differential thermal analysis

TL;DR: In this paper, the relationship between chemical kinetics and differential thermal analysis (DTA) curves is studied for the reactions which follow the general rate expression: r = r/sub 0/e/sup -E/RT/(1 - x).
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