Debye P, Hückel E, Zur Theorie, der Elektrolyte I (1923) Gefrierpunktsemiedrigung und verwandte Erscheinungen. Physikalische Zeitschrift 24:185–206
Martina Costa R (2021) Ion activity models: the Debye-Hückel equation and its extensions. ChemTexts 7(9):1–17
Brönsted JN (1922) Z Physik Chem 102((U1)):169–207
Bjerrum NZ (1924) Z Physik Chem 108((U1)):82–100
Davies CW (1938) The extent of dissociation of salts in water. Part VIII. An equation for the mean ionic activity coefficient of an electrolyte in water, and a revision of the dissociation constants of some sulphates. J Chem Soc 397:2093–2098
Davies CW (1962) Ion association. Butterworths; First Edition
Burgos Francisco S, del Mar María, Graciani Ernestina Muñoz, Moya María L, Capitán María J, Galán Manuel, Hubbard Colin D (1988) Kinetic salt effects in the bromide oxidation by bromate. J Solut Chem 17(7):653–659
Rosseinsky DR (1968) Bjerrum-Brönsted prediction of ionic-strength independence of some multi-ionic reaction rates. J Chem Phys 48(10):4806–4806
Levine Ira N (2008) Physical chemistry, 6th edn. McGraw-Hill Education, New York
González-Arjona Domingo, Dominguez Manuel M, López-Pérez German, Mulder Willem H (2019) Primary kinetic salt effect on fading of phenolphthalein in strong alkaline media: experimental design for a single lab session. Chem Educ 24:126–132
Pitzer KS (1972) Thermodynamic properties of aqueous solutions of bivalent sulphates. J Chem Soc Faraday Trans II 68:101
Meissner HP, Kusik CL (1972) Activity coefficients of strong electrolytes in multicomponent aqueous solutions. AIChE J 18:294
Bromley Leroy A (1973) Thermodynamic properties of strong electrolytes in aqueous solutions. AlChE J 19(2):313–320
Rosseinsky DR, Nicol MJ (1965) Kinetics and mechanism of the formation of manganese(III) from manganese(II) and (VII) in aqueous perchlorate solution. Trans Faraday Soc 61:2718–2723
Pethybridge AD, Prue JE (1972) Kinetic salt effects and the specific influence of ions on rate constants. Progress in inorganic chemistry. John Wiley and Sons Inc, Hoboken
Truesdell AH, Jones BF (1974) WATEQ, a computer program for calculating chemical equilibria in natural waters. US Geol Surv J Res 2:223
Judson Winifred, Walker James Wallace (1898) XLII.-Reduction of bromic acid and the law of mass action. J Chem Soc Trans 73:410–422
Indelli A Jr, George N, Edward SA (1960) Salt effects in the reactions between bromate and iodide ions. J Am Chem Soc 82(13):3233–3236
Arian Elias, Pauer Werner (2021) Contributions to the kinetics of the iodide-iodate test reaction for micromixing time calculation with extended incorporation models. Chem Eng Sci 237:116549
Schmitz G (1999) Kinetics and mechanism of the iodate-iodide reaction and other related reactions. Phys Chem Chem Phys 1:1909–1914
Liebhafsky Herman A, Roe Glenn M (1979) The detailed mechanism of the Dushman reaction explored by computer. Int J Chem Kinet 11(7):693–703
Guichardon Pierrette, Baqueiro Carlos, Ibaseta Nelson (2021) Villermaux-dushman test of micromixing characterization revisited: kinetic effects of acid choice and ionic strength. Ind Eng Chem Res 60(50):18268–18282
Brönsted JN (1921) LXIII.-the influence of salt on chemical equilibria in solutions. J Chem Soc Trans 119:574–592
Kennedy CD (1990) Ionic strength and the dissociation of acids. Biochem Educ 18(1):35–40
Kao Yung-Hsiang, Fitch Carolyn A, Bhattacharya Shibani, Sarkisian Christopher J, Lecomte Juliette TJ, Bertrand García-Moreno E (2000) Salt effects on ionization equilibria of histidines in myoglobin. Biophys J 79(3):1637–1654
Article CAS PubMed PubMed Central Google Scholar
Brönsted JN, King Cecil V (1925) Secondary kinetic salt effect in the case of hydroxyl-ion catalysis. J Am Chem Soc 47(10):2523–2531
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