Article ID Journal Published Year Pages File Type
5359485 Applied Surface Science 2010 6 Pages PDF
Abstract
The isothermal kinetics of nicotine desorption from silicon dioxide (SiO2) was investigated. The isothermal thermogravimetric curves of nicotine at temperatures of 115 °C, 130 °C and 152 °C were recorded. The kinetic parameters (Ea, ln A) of desorption of nicotine were calculated using various methods (stationary point, model constants and differential isoconversion method). By applying the “model-fitting” method, it was found that the kinetic model of nicotine desorption from silicon dioxide was a phase boundary controlled reaction (contracting volume). The values of the kinetic parameters, Ea,α and ln Aα, complexly change with changing degree of desorption and a compensation effect exists. A new mechanism of activation for the desorption of the absorbed molecules of nicotine was suggested in agreement with model of selective energy transfer.
Related Topics
Physical Sciences and Engineering Chemistry Physical and Theoretical Chemistry
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