1998Journal of the Chemical Society Faraday TransactionsRequires access

Spectrophotometric measurement of the first dissociation constants of carbonic acid at elevated temperatures

Sung Nam Park, Chang Shik Kim, Myung Hwa Kim, In-Ja Lee, Keon Kim

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Abstract

Using 2,5-dintrophenol as an optical indicator, the pH of a carbonate buffer solution was spectrophotometrically measured at temperatures from 25 to 175°C. The pH values measured in this study were utilized to determine the first dissociation constant of carbonic acid at various temperatures. The result was where T is in Kelvin. By using this fitted function, the thermodynamic functions for carbonic acid at 25°C were calculated. When the dissociation reaction of carbonic acid was rewritten as an isocoulombic reaction, the plot of log KOH against 1/T was approximately linear over the temperature ranges studied, as in other isocoulombic reactions.

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What this paper is about

Using 2,5-dintrophenol as an optical indicator, the pH of a carbonate buffer solution was spectrophotometrically measured at temperatures from 25 to 175°C. The pH values measured in this study were utilized to determine the first dissociation constant of carbonic acid at various temperatures. The result was where T is in Kelvin. By using this fitted function, the thermodynamic functions for carbonic acid at 25°C were calculated. When the dissociation reaction of carbonic acid was rewritten as an isocoulombic reaction, the plot of log KOH against 1/T was approximately linear over the temperature ranges studied, as in other isocoulombic reactions.

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Available abstract

Using 2,5-dintrophenol as an optical indicator, the pH of a carbonate buffer solution was spectrophotometrically measured at temperatures from 25 to 175°C. The pH values measured in this study were utilized to determine the first dissociation constant of carbonic acid at various temperatures. The result was where T is in Kelvin. By using this fitted function, the thermodynamic functions for carbonic acid at 25°C were calculated. When the dissociation reaction of carbonic acid was rewritten as an isocoulombic reaction, the plot of log KOH against 1/T was approximately linear over the temperature ranges studied, as in other isocoulombic reactions.

Key concepts: Carbonic acid, Chemistry, Dissociation (chemistry), Dissociation constant, Acid dissociation constant, Carbonate, Inorganic chemistry, Analytical Chemistry (journal)

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