Scinovex
article Open AccessTop 1% cited

Measurement of pH. Definition, standards, and procedures (IUPAC Recommendations 2002)

Pure and Applied Chemistry · 2002 · Vol. 74(11) · pp. 2169–2200
Richard P. BuckSandra RondininiA. K. CovingtonFriedrich G. K. BauckeChristopher M. A. BrettMaria Filomena CamõesMartin MiltonT. MussiniR. NaumannKenneth W. PrattPetra SpitzerG. S. Wilson

Abstract

Abstract The definition of a “primary method of measurement ” has permitted a full consideration of the definition of primary standards for pH, determined by a primary method (cell without transference, Harned cell), of the definition of secondary standards by secondary methods, and of the question whether pH, as a conventional quantity, can be incorporated within the internationally accepted system of measurement, the International System of Units (SI, Système International d’ Unités). This approach has enabled resolution of the previous compromise IUPAC 1985 Recommendations [ Pure Appl. Chem. 57 , 531 (1985)]. Furthermore, incorporation of the uncertainties for the primary method, and for all subsequent measurements, permits the uncertainties for all procedures to be linked to the primary standards by an unbroken chain of comparisons. Thus, a rational choice can be made by the analyst of the appropriate procedure to achieve the target uncertainty of sample pH. Accordingly, this document explains IUPAC recommended definitions, procedures, and terminology relating to pH measurements in dilute aqueous solutions in the temperature range 5-50 °C. Details are given of the primary and secondary methods for measuring pH and the rationale for the assignment of pH values with appropriate uncertainties to selected primary and secondary substances.

Analytical Chemistry and SensorsChemical and Physical Properties in Aqueous SolutionsWater Quality Monitoring and AnalysisChemical nomenclatureChemistryTerminologyPrimary (astronomy)Sample (material)Resolution (logic)Process engineeringAnalytical Chemistry (journal)ChromatographyOrganic chemistry
Citations
521
FWCI
10.49
field-weighted impact
References
2
Percentile
99%
vs. same field & year
Citations per year
Cited by
The acidity of atmospheric particles and clouds
Atmospheric chemistry and physics · 2020 · 730 citations
References
The physical chemistry of electrolytic solutions
Journal of the Franklin Institute · 1950 · 3,038 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.