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Updated: May 24, 2026

On-line Analysis of Nitrogen Containing Compounds in Complex Hydrocarbon Matrixes
Published on: August 5, 2016
Thermal decomposition of pyridoxine: an evolved gas analysis-ion attachment mass spectrometry study
Márta Juhász1, Seiji Takahashi, Yuki Kitahara
1Department of Chemistry, Faculty of Sciences and Engineering, Meisei University, Hodokubo 2-1-1, Hino, Tokyo, 191-8506, Japan.
Rationale:
Pyridoxine is an important vitamer in food and pharmaceutical products. Heat treatments applied during preparation or storage of the products cause the decomposition of pyridoxine. Identification and understanding of the degradation products of pyridoxine and studying its decomposition kinetics are essential in the preparation and preservation of pyridoxine-containing foods and pharmaceuticals.
Methods:
Real-time, non-isothermal decomposition of pyridoxine was studied using evolved gas analysis-Li(+) ion attachment mass spectrometry (EGA-Li(+) IAMS). Arrhenius parameters for the thermal decomposition of pyridoxine were obtained via the total ion monitoring (TIM) curve.
Results:
Most of the pyridoxine evaporated in molecular form, but the formation of pyridoxal and o-quinone methide, both biologically important species, was also observed from the solid-phase degradation of pyridoxine. The observation of o-quinone methide, a species possessing anticancer activity, was particularly noteworthy due to its chemical instability. The activation energy (E(a) ) for pyridoxine decomposition determined by EGA-IAMS was found to be 20.0 kcal mol(-1) , and the pre-exponential factor (A) was 5.7 × 10(9) min(-1) .
Conclusions:
The calculated kinetic parameters are important for predicting the thermal stability of pyridoxine vitamer. The estimated lifetime (t(90%,25°C) ) of 1.7 × 10(-2) years in nitrogen was also obtained from the EGA-IAMS experiment.
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