ISO 23496:2019
Determination of pH value — Reference buffer solutions for the calibration of pH measuring equipment
Determination of pH value — Reference buffer solutions for the calibration of pH measuring equipment
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 13
- Дата публикации:
- 12 июля 2019 г.
- Издание:
- ISO IS 23496 edition 1 version 1
- ICS:
- 87.040
This document specifies reference buffer solutions for the calibration of pH measuring equipment.
Abstract
Overview
ISO 23496:2019 specifies reference buffer solutions for the calibration of pH measuring equipment. It defines the composition, preparation and metrological basis for primary and secondary pH reference buffers (pH(R)) used to assign accurate pH values to calibration standards. The standard supports traceable pH calibration by describing electrochemical measurement methods, uncertainty expectations, and preparation guidelines for commonly used buffer materials.
Key topics and technical requirements
- Primary vs secondary reference buffers
- Primary reference buffer solutions (pH(R)) are defined by electrochemical measurement against a platinum/hydrogen and Ag/AgCl cell (cell I). Chloride is added at several low molalities and the pH is obtained by extrapolating to zero chloride molality.
- Secondary reference buffers are calibrated against primary buffers using a differential potentiometric cell with a P40 glass frit (cell II), enabling pH differences down to ~0.001 when |pH(R) − pH| ≤ 0.02.
- Buffer types and temperature behaviour
- The standard lists named reference buffers A–I (examples: potassium tetraoxalate dihydrate, potassium hydrogen tartrate, potassium hydrogen phthalate, phosphate, borax, calcium hydroxide, sodium carbonate/bicarbonate) with typical pH(R) values (e.g., range ≈ 1.67 to 12.45 at 25 °C) and tables of pH versus temperature.
- Measurement theory and corrections
- pH calculation uses the Nernst slope and requires estimating chloride activity coefficients (Debye–Hückel form). The Bates–Guggenheim convention is referenced for ionic activity estimation; uncertainties associated with that convention are treated separately.
- Uncertainty and traceability
- Typical expanded uncertainties for primary pH(R) values at 25 °C are 0.002–0.005 (often 0.005 for prepared batches); for secondary buffers the expanded uncertainty is about 0.003–0.006 at 25 °C. Calibration certificates must document pH values and measurement uncertainty.
- Preparation and storage
- Solutions are prepared gravimetrically from appropriate reference materials; storage, shelf life and handling requirements are specified to ensure stability and homogeneity.
Applications and who uses it
ISO 23496:2019 is used by:
- National metrology institutes and calibration laboratories for assigning traceable pH values.
- Manufacturers and calibration service providers of pH meters and electrodes.
- Quality control and R&D laboratories across industries (chemical, pharmaceutical, environmental, food and coatings) that require accurate pH calibration and traceability.
- Producers of secondary buffer solutions and block/reference-cell manufacturers.
Key practical benefits: consistent, traceable pH calibrations; well‑defined uncertainty budgets; and standardized buffer preparation for reliable instrument performance.
Related standards
- ISO 19396-1 - pH electrodes with glass membrane (measurement practice)
- ISO 4793 - Laboratory fritted filters (used in cell II)
- ISO 80000-9 - Quantities and units (physical chemistry terminology)
- Bates–Guggenheim convention (for ionic activity estimation)
Keywords: ISO 23496:2019, pH calibration, reference buffer solutions, pH(R), primary reference buffer, secondary reference buffer, calibration certificate, Nernst slope, Debye–Hückel, Bates–Guggenheim.
Технические детали
- Технический комитет
- ISO/TC 35/SC 9 - General test methods for paints and varnishes
- SKU
- ISO 23496:2019
Похожие стандарты
Стандарты, упомянутые в описании
BS EN ISO 19396-1:2025
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