ISO/TR 4277:2009
(Main)Cryolite, natural and artificial — Conventional test for evaluation of free fluorides content
Cryolite, natural and artificial — Conventional test for evaluation of free fluorides content
ISO/TR 4277:2009 describes a conventional test for the evaluation of the free fluorides content of natural, artificial and recovered cryolite. This method is applicable to products having free fluorides content greater than 0,15 % (mass fraction) of AIF3 or 0,4 % (mass fraction) of NaF.
Cryolithe, naturelle et artificielle — Essai conventionnel pour l'évaluation de la teneur en fluorures libres
General Information
- Status
- Published
- Publication Date
- 20-Oct-2009
- Technical Committee
- ISO/TC 226 - Materials for the production of primary aluminium
- Drafting Committee
- ISO/TC 226 - Materials for the production of primary aluminium
- Current Stage
- 6060 - International Standard published
- Start Date
- 21-Oct-2009
- Completion Date
- 14-Feb-2026
Overview
ISO/TR 4277:2009, titled Cryolite, natural and artificial - Conventional test for evaluation of free fluorides content, provides a standardized method for evaluating the free fluorides content in natural, artificial, and recovered cryolite materials. Published by the International Organization for Standardization (ISO), this technical report outlines a laboratory procedure that ensures consistent, accurate assessment of fluorides, supporting quality control and regulatory compliance in industries where cryolite is used. The method applies to samples with free fluorides content greater than 0.15% (mass fraction) as AlF₃ or 0.4% (mass fraction) as NaF.
Key Topics
Scope and Applicability:
- Defines the conventional test's range: suitable for cryolite with significant free fluorides content.
- Applicable to natural, artificial, and recovered cryolite.
Outlined Methodology:
- Details the sintering of a test portion with sodium fluoride at controlled high temperatures.
- Extraction and acidification are followed by titration with standard thorium nitrate solution using alizarin-S as an indicator.
- Calibration with standard sodium fluoride solutions ensures accuracy.
- Calculation formulas allow conversion of lab results to mass percentages for both NaF and AlF₃.
Essential Laboratory Practice:
- Uses high-purity reagents and carefully calibrated apparatus.
- Emphasizes result validity by specifying minimum thresholds and adjustment procedures for special sample cases.
Reporting Requirements:
- Specifies what must be included in a test report (reference to the standard, sample/data details, test results, and any deviations or unique observations).
Applications
ISO/TR 4277:2009 plays a critical role in sectors where cryolite's chemical composition must be tightly controlled, such as:
Aluminium Production:
- Cryolite is a key flux in electrolytic aluminium manufacture. Accurate assessment of free fluorides is essential for efficient operation and product quality.
Raw Material Quality Assurance:
- Refineries and material suppliers use the standardized test to confirm compliance with client specifications or regulatory limits.
Recycled and Recovered Material Assessment:
- For recycled cryolite, consistent fluoride measurement is necessary to ensure it is suitable for reuse in industrial processes.
Research and Development:
- Provides a benchmarking method for developing alternative processes or evaluating substitute materials in metallurgical applications.
By following ISO/TR 4277:2009, laboratories and industries benefit from internationally recognized methods, supporting trade, compliance, and technological advancement.
Related Standards
Several other ISO standards relate to the analysis and handling of cryolite and similar materials, enhancing the value of ISO/TR 4277:2009 in a broader quality framework:
- ISO 1619:1976 – Cryolite, natural and artificial - Preparation and storage of test samples
- ISO 1620:1976 – Determination of silica content
- ISO 1693:1976 – Determination of fluorine content
- ISO 1694:1976 – Determination of iron content
- ISO 2366:1974 – Determination of sodium content
- ISO 2830:1973 – Determination of aluminium content
- ISO 5938:1979 – Determination of sulphur content (X-ray fluorescence method)
- ISO 4277:1977 – Previous edition of this conventional test (withdrawn)
These standards collectively contribute to a comprehensive approach for the chemical analysis of cryolite, ensuring holistic quality management in primary aluminium production and material supply chains.
Keywords: ISO/TR 4277:2009, cryolite analysis, free fluorides content, conventional test, aluminium production, laboratory standards, quality control, chemical analysis, ISO standards
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Frequently Asked Questions
ISO/TR 4277:2009 is a technical report published by the International Organization for Standardization (ISO). Its full title is "Cryolite, natural and artificial — Conventional test for evaluation of free fluorides content". This standard covers: ISO/TR 4277:2009 describes a conventional test for the evaluation of the free fluorides content of natural, artificial and recovered cryolite. This method is applicable to products having free fluorides content greater than 0,15 % (mass fraction) of AIF3 or 0,4 % (mass fraction) of NaF.
ISO/TR 4277:2009 describes a conventional test for the evaluation of the free fluorides content of natural, artificial and recovered cryolite. This method is applicable to products having free fluorides content greater than 0,15 % (mass fraction) of AIF3 or 0,4 % (mass fraction) of NaF.
ISO/TR 4277:2009 is classified under the following ICS (International Classification for Standards) categories: 71.060.50 - Salts. The ICS classification helps identify the subject area and facilitates finding related standards.
ISO/TR 4277:2009 is available in PDF format for immediate download after purchase. The document can be added to your cart and obtained through the secure checkout process. Digital delivery ensures instant access to the complete standard document.
Standards Content (Sample)
TECHNICAL ISO/TR
REPORT 4277
First edition
2009-11-01
Cryolite, natural and artificial —
Conventional test for evaluation of free
fluorides content
Cryolithe, naturelle et artificielle — Essai conventionnel pour l'évaluation
de la teneur en fluorures libres
Reference number
©
ISO 2009
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ii © ISO 2009 – All rights reserved
Foreword
ISO (the International Organization for Standardization) is a worldwide federation of national standards bodies
(ISO member bodies). The work of preparing International Standards is normally carried out through ISO
technical committees. Each member body interested in a subject for which a technical committee has been
established has the right to be represented on that committee. International organizations, governmental and
non-governmental, in liaison with ISO, also take part in the work. ISO collaborates closely with the
International Electrotechnical Commission (IEC) on all matters of electrotechnical standardization.
International Standards are drafted in accordance with the rules given in the ISO/IEC Directives, Part 2.
The main task of technical committees is to prepare International Standards. Draft International Standards
adopted by the technical committees are circulated to the member bodies for voting. Publication as an
International Standard requires approval by at least 75 % of the member bodies casting a vote.
In exceptional circumstances, when a technical committee has collected data of a different kind from that
which is normally published as an International Standard (“state of the art”, for example), it may decide by a
simple majority vote of its participating members to publish a Technical Report. A Technical Report is entirely
informative in nature and does not have to be reviewed until the data it provides are considered to be no
longer valid or useful.
Attention is drawn to the possibility that some of the elements of this document may be the subject of patent
rights. ISO shall not be held responsible for identifying any or all such patent rights.
ISO/TR 4277 was prepared by Technical Committee ISO/TC 226, Materials for the production of primary
aluminium.
This first edition cancels and replaces ISO 4277:1977, of which it constitutes a minor revision.
Introduction
This Technical Report was published in order to retain the method specified in ISO 4277:1977 in a publicly
available standard.
ISO 4277:1977 was withdrawn in 2004.
iv © ISO 2009 – All rights reserved
TECHNICAL REPORT ISO/TR 4277:2009(E)
Cryolite, natural and artificial — Conventional test for
evaluation of free fluorides content
1 Scope
This Technical Report describes a conventional test for the evaluation of the free fluorides content of natural,
artificial and recovered cryolite.
This method is applicable to products having free fluorides content greater than 0,15 % (mass fraction) of AIF
or 0,4 % (mass fraction) of NaF.
2 Principle
A test portion is sintered with a known quantity of sodium fluoride at 790 ± 20 °C for 20 minutes. Under these
conditions, aluminium fluoride in excess of that required for the stoichiometric formula AlF ·3NaF reacts with
some of the sodium fluoride to form cryolite.
The ground sintered mass is extracted with boiling water and the solution is acidified with hydrochloric acid
solution to a pH less than 3,7, followed by titration of the excess sodium fluoride with standard volumetric
thorium nitrate solution in the presence of alizarin-S as indicator.
3 Reagents
During the analysis, use only reagents of recognized analytical grade and only distilled water or water of
equivalent purity.
3.1 Sodium fluoride, anhydrous, dried at about 120 °C to constant mass in a platinum crucible and cooled
in a desiccator.
3.2 Gelatine, 3 % freshly prepared solution.
3.3 Hydrochloric acid, approximately 0,1 N solution.
3.4 Sodium fluoride, 4,20 g/l standard solution (corresponding to 0,1 N).
Weigh, to the nearest 0,001 g, 4,20 g of the sodium fluoride (3.1). Transfer quantitatively to a 1 000 ml one-
mark volumetric flask containing a little water and, after dissolution, dilute to the mark and mix. Transfer the
solution to a suitable plastics bottle.
1 ml of this solution contains 4,20 mg of NaF.
3.5 Thorium nitrate, 0,1 N standard volumetric solution.
Weigh, to the nearest 0,001 g, 13,805 g of thorium nitrate tetrahydrate [Th(NO ) ·4H O], transfer
3 4 2
quantitatively to a 1 000 ml one-mark volumetric flask, dissolve in water, dilute to the mark and mix.
3.6 Buffer solution, pH 2,7.
Neutralize a 9,5 % (mass fraction) solution of monochloroacetic acid (CH CI-COOH) with an approximately
10 N sodium hydroxide solution, in the presence of phenolphthalein. Add 50 ml of this solution to 50 ml of the
same monochloroacetic acid solution and mix.
3.7 Alizarin-S (sodium alizarinsulfonate), 0,5 g/l solution.
4 Apparatus
Ordinary laboratory apparatus and in particular the following.
4.1 Platinum crucible, diameter approximately 40 mm, height approximately 30 mm.
4.2 Electric furnace, capable of being controlled at 790 ± 20 °C.
5 Procedure
5.1 Test portion
Weigh, to the nearest 0,001 g, 4 g of the dried sample (see ISO 1619:1976, 3.3).
5.2 Preparation of the calibration graph
5.2.1 Preparation of the standard matching solutions
Into a series of seven 100 ml conical plastics flasks, place the volumes of the standard sodium fluoride
solution (3.4) shown in the following table.
Table 1 — Volumes of standard sodium fluoride solution
Standard sodium fluoride
Corresponding mass of NaF
solution (3.4)
ml mg
0 0
1,0 4,20
3,0 12,60
5,0 21,00
7,0 29,40
9,0 37,80
10,0 42,00
5.2.2 Titration
Add to each conical flask 40 ml of water, 5 ml of the buffer solution (3.6), 1 ml of the alizarin-S solution (3.7)
and 10 ml of the gelatine solution (3.2). Titrate with the standard volumetric thorium nitrate solution (3.5) until
the colour of the indicator changes to pink.
2 © ISO 2009 – All rights reserved
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