ISO 1620:1976
Cryolite, natural and artificial — Determination of silica content — Reduced molybdosilicate spectrophotometric method
Cryolite, natural and artificial — Determination of silica content — Reduced molybdosilicate spectrophotometric method
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 5
- Дата публикации:
- 1 сентября 1976 г.
- Издание:
- ISO IS 1620 edition 1 version 1
- ICS:
- 71.060.50
Specifies methods of test for natural and synthetic materials having a molar ratio sodium fluoride/aluminium trifluoride between 3 and 1,7 approximately. The method is applicable to products the phosphorus pentoxide content of which does not exceed 0,02 % (m/m). The procedure consists in alkaline fusion of a test portion by means of a mixture of sodium carbonate and boric acid. Dissolution of the fused mass in excess nitric acid so that the pH value is between 0,7 and 0,9. Formation of the (Yellow) oxidized molybdosilicate under clearly defined conditions of acidity, temperature, time and concentration of reagents. Selective reduction in the presence of tartaric acid and measurement at a wvelength of about 815 nm.
Abstract
Overview
ISO 1620:1976 specifies a reduced molybdosilicate spectrophotometric method for the determination of silica (SiO2) in natural and artificial cryolite and in materials with a NaF/AlF3 molar ratio of about 3 to 1.7. The method is intended for products with phosphorus pentoxide (P2O5) ≤ 0.02% (m/m) and is widely used in laboratories supporting aluminium and fluorochemical production.
The analytical sequence comprises an alkaline fusion (sodium carbonate and boric acid), dissolution in excess nitric acid to a defined pH, formation of the oxidized molybdosilicate complex, selective reduction in acidic medium with tartaric acid, and spectrophotometric measurement at ~815 nm.
Key Topics
- Scope and applicability: Natural and synthetic cryolite; P2O5 limited to ≤ 0.02% (m/m).
- Sample preparation: Test portion dried and fused with sodium carbonate and boric acid; controlled furnace steps at 550 ± 25 °C (initial reaction) and at 750 ± 25 °C for completion.
- Chemical reagents: Sodium carbonate, boric acid, nitric acid (≈8 N), sodium molybdate (≈0.8 M), tartaric acid, sulphuric acid, and a reducing solution (sodium metabisulphite or sodium sulfite plus 4-amino-3-hydroxy-1-naphthalene sulphonic acid).
- pH control: Dissolution and dilution steps adjusted so aliquot pH lies between ~0.7 and 0.9 (or 0.3–0.5 for different final volumes) to ensure reproducible colour development.
- Color development and measurement: Formation of yellow oxidized molybdosilicate followed by selective reduction in strongly acidic medium; measurement of the reduced coloured complex at about 815 nm against a compensation (blank) solution.
- Calibration: Multi-point standard silica solutions (e.g., 0.500, 0.020, 0.005 g SiO2 per litre stock dilutions) and plotting of a calibration graph for quantification.
Applications
- Quality control in cryolite manufacturing and handling for aluminium smelting alloys and fluxes.
- Process control where reliable SiO2 measurement in fluoride-rich matrices is required.
- Routine laboratory analysis to establish silica content for material specifications, acceptance testing, and trace-level contamination assessment.
Practical benefits include reproducible results through strict pH and temperature control, specificity provided by the molybdosilicate chemistry, and compatibility with standard spectrophotometers.
Related Standards
- ISO 1619 - Preparation and storage of test samples (sample handling prior to analysis).
- ISO 1693 / 1694 - Determination of fluorine and iron content (complementary compositional tests).
- ISO 2366, 2367, 2830 - Sodium and aluminium determination methods for related analyses.
- ISO 3391–3393, 4277, 4280 - Moisture, fluoride and sulphate methods referenced in cryolite testing programs.
This standard provides a robust spectrophotometric procedure for SiO2 determination in cryolite matrices; labs should follow reagent grades, furnace controls and pH checks as specified to ensure accuracy and comparability of results.
Технические детали
- Технический комитет
- ISO/TC 226 - Materials for the production of primary aluminium
- SKU
- ISO 1620:1976
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