A View on Thermodynamics of Concentrated Electrolytes
Modification Necessity for Electrostatic Contribution of Osmotic Coefficient
(Sprache: Englisch)
Electrolytes, on dissolution, reduce the activity of water. This fact is utilized numerous applications in the areas of desalination of water, oil production, precipitation and corrosion in pipelines, the removal of CO2 from flue gases of power plants, and...
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Electrolytes, on dissolution, reduce the activity of water. This fact is utilized numerous applications in the areas of desalination of water, oil production, precipitation and corrosion in pipelines, the removal of CO2 from flue gases of power plants, and in biotechnology. The classical theory for prediction of the water activity is the Debye-Hückel. However, Debye-Hückel theory is not accurate in concentrated solutions. At higher concentration, the electrostatic interaction between the central ion and the surrounding counterions is significantly stronger than the region outside where the bulk dielectric constant of water prevails. As the electrolyte concentration increases, the probability of finding the counterion in the low dielectric constant region in the vicinity of the central ion progressively increases. This causes deviation of the electrostatic interaction from the Debye-Hückel theory. So, an improved theory should not only correctly account for the nonelectrostatic interaction, but also appropriately modify the Debye-Hückel theory for electrostatic interaction.
Autoren-Porträt von Jyoti Sahu, Vinay Juvekar
Sahu, JyotiDr. Jyoti Sahu is Research Fellow in Chemical Engineering Department at IIT Delhi. Previously, she was Research Associate in Chemical Engineering Department at IIT Bombay. Born in India, she received her B.Tech. in Chemical Engineering from H.B.T.I, Kanpur. She recently received her M.Tech.- Ph.D. in Chemical Engineering from IIT Bombay, Mumbai.
Bibliographische Angaben
- Autoren: Jyoti Sahu , Vinay Juvekar
- 2018, 180 Seiten, Maße: 22 cm, Kartoniert (TB), Englisch
- Verlag: LAP Lambert Academic Publishing
- ISBN-10: 6139888670
- ISBN-13: 9786139888672
Sprache:
Englisch
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