Composition of Vapor and Liquid Phases in the Potassium Hydroxide + Methanol Reaction System at 25 °C

@article{Platonov2010CompositionOV,
  title={Composition of Vapor and Liquid Phases in the Potassium Hydroxide + Methanol Reaction System at 25 °C},
  author={Andrew Yu. Platonov and Alexander V. Kurzin and Andrey N. Evdokimov},
  journal={Journal of Solution Chemistry},
  year={2010},
  volume={39},
  pages={335-342}
}
The composition of the vapor and liquid phases of the KOH + CH3OH system has been studied by the gas chromatography (GC) method at 25 °C. It has been found that the methanol vapor concentration, and the quantity of potassium methoxide formed as a result of the acid–base reaction of potassium hydroxide with methanol, both depend on the KOH/CH3OH mole ratio. The maximum mass fraction of potassium methoxide that forms is 2.6% at the mole ratio 0.018. 
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