Equations for the Calculation of the pH of Buffer Solutions Containing Potassium Hydrogen Phthalate, Dipotassium Phthalate, and Potassium Chloride at 298.15 K
Author:
Affiliation:
1. Department of Chemical Technology, Lappeenranta University of Technology, P.O. Box 20, FIN-53851 Lappeenranta, Finland
Publisher
American Chemical Society (ACS)
Subject
General Chemical Engineering,General Chemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/je970040r
Reference28 articles.
1. The Dielectric Constant of Water and Debye‐Hückel Limiting Law Slopes
2. Report on the standardization of pH and related terminology
3. Redetermination of the standard ph values for potassium hydrogenphthalate reference buffer solution from 0 to 85°c
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3. pH Standardization of 0.05 mol·kg-1 Tetraoxalate Buffer at Temperatures from (5 to 45) °C with Added KCl Molality up to 1.0 mol·kg-1;Journal of Chemical & Engineering Data;2007-03-28
4. Re-evaluation of the First and Second Stoichiometric Dissociation Constants of Phthalic Acid at Temperatures from (0 to 60) °C in Aqueous Phthalate Buffer Solutions with or without Potassium Chloride. 2. Estimation of Parameters for the Model for the First Dissociation Constant and Tests and Use of the Resulting Activity Coefficient Equations;Journal of Chemical & Engineering Data;2006-09-23
5. Re-evaluation of the First and Second Stoichiometric Dissociation Constants of Phthalic Acid at Temperatures from (0 to 60) °C in Aqueous Phthalate Buffer Solutions with or without Potassium Chloride. 1. Estimation of the Parameters for the Hückel Model Activity Coefficient Equations for Calculation of the Second Dissociation Constant;Journal of Chemical & Engineering Data;2006-02-25
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