BS 6200-3 28 3-1995 Sampling and analysis of iron steel and other ferrous metals - Methods of analysis - Determination of sulphur - Steel and iron spectrophotometric method《铁、钢和其他黑.pdf
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1、BRITISH STANDARD BS 6200-3.28.3: 1995 ISO 10701:1994 Sampling and analysis of iron, steel and other ferrous metals Part 3: Methods of analysis Section 3.28 Determination of sulfur Subsection 3.28.3 Steel and iron: spectrophotometric method ICS 77.080.00BS6200-3.28.3:1995 This British Standard, havin
2、g been prepared under the directionof the Engineering SectorBoard, was published underthe authority of the Standards Board and comes intoeffect on 15December1995 BSI 08-1999 The following BSI references relate to the work on this standard: Committee reference ISE/18 Draft for comment 93/300210 DC IS
3、BN 0 580 24932 8 Committees responsible for this British Standard The preparation of this British Standard was entrusted to Technical Committee ISE/18, Sampling and analysis of iron and steel, upon which the following bodies were represented: BCIRA British Iron and Steel Producers Association Minist
4、ry of Defence TWI Coopted members Amendments issued since publication Amd. No. Date CommentsBS6200-3.28.3:1995 BSI 08-1999 i Contents Page Committees responsible Inside front cover National foreword ii 1 Scope 1 2 Normative references 1 3 Principle 1 4 Reagents 1 5 Apparatus 3 6 Sampling 4 7 Procedu
5、re 4 8 Expression of results 5 9 Special case 6 10 Notes on procedure 6 11 Test report 7 Annex A (informative) Additional information on the international cooperative tests 8 Annex B (informative) Graphical representation of precision data 9 Figure 1 Example of an apparatus for purification of the r
6、educing mixture 2 Figure 2 Example of an apparatus for reduction and distillation 3 Figure B.1 Logarithmic relationship between sulfur content (w s ) and repeatability (r) or reproducibility (R and R w ) 9 Table 1 1 Table 2 5 Table 3 6 Table A.1 8 List of references Inside back coverBS6200-3.28.3:19
7、95 ii BSI 08-1999 National foreword This Subsection of BS6200 has been prepared by Technical Committee ISE/18. It is identical with ISO10701:1994 Steel and iron Determination of sulfur content Methylene blue spectrophotometric method, published by the International Organization for Standardization (
8、ISO). The Technical Committee has reviewed the provisions of ISO377-2, ISO385-1 and ISO648, to which reference is made in the text, and has decided that they are acceptable for use in conjunction with this standard. Related British Standards for ISO385-1:1984 and ISO 648:1977 are, respectively, BS84
9、6:1985 Specification for burettes and BS1583:1986 Specification for one-mark pipettes. Appropriate procedures from ISO377 are incorporated in BS6200-2:1993 Methods of sampling and sample preparation. A British Standard does not purport to include all the necessary provisions of a contract. Users of
10、British Standards are responsible for their correct application. Compliance with a British Standard does not of itself confer immunity from legal obligations. Cross-references Publication referred to Corresponding British Standard ISO 1042:1983 BS 1792 Specification for one-mark volumetric flasks (I
11、dentical) ISO 3696:1987 BS 3978:1987 Specification for water for laboratory use (Identical) ISO 5725:1986 BS 5497 Precision of test methods Part 1:1987 Guide for the determination of repeatability and reproducibility for a standard test method by inter-laboratory tests (Identical) Summary of pages T
12、his document comprises a front cover, an inside front cover, pages i and ii, pages1 to 10, an inside back cover and a back cover. This standard has been updated (see copyright date) and may have had amendments incorporated. This will be indicated in the amendment table on the inside front cover.BS62
13、00-3.28.3:1995 BSI 08-1999 1 1 Scope This International Standard specifies a methylene blue spectrophotometric method for the determination of sulfur in steel and iron. The method is applicable to sulfur contents between0,0003% (m/m) and0,010% (m/m). However, niobium, silicon, tantalum and titanium
14、interfere in the determination of sulfur. Depending on the concentration of the interfering elements, the application ranges and test portion masses given inTable 1 apply. Table 1 2 Normative references The following standards contain provisions which, through reference in this text, constitute prov
15、isions of this International Standard. At the time of publication, the editions indicated were valid. All standards are subject to revision, and parties to agreements based on this International Standard are encouraged to investigate the possibility of applying the most recent editions of the standa
16、rds indicated below. Members of IEC and ISO maintain registers of currently valid International Standards. ISO 377-2:1989, Selection and preparation of samples and test pieces of wrought steels Part 2: Samples for the determination of the chemical composition. ISO 385-1:1984, Laboratory glassware Bu
17、rettes Part 1: General requirements. ISO 648:1977, Laboratory glassware One-mark pipettes. ISO 1042:1983, Laboratory glassware One-mark volumetric flasks. ISO 3696:1987, Water for analytical laboratory use Specification and test methods. ISO 5725:1986, Precision of test methods Determination of repe
18、atability and reproducibility for a standard test method by inter-laboratory tests. 3 Principle Dissolution of a test portion in a mixture of hydrochloric and nitric acids. Evaporation with perchloric acid until white fumes appear to remove hydrochloric and nitric acids. Dissolution of the salts in
19、hydrochloric acid. Evolution of hydrogen sulfide by reducing with a mixture of hydroiodic and hypophosphorous acids in a nitrogen atmosphere, distillation, and absorption into zinc acetate solution. Formation of methylene blue by reacting with N,N-dimethyl-p-phenylenediamine and iron(III) solution.
20、Spectrophotometric measurement at a wavelength of about665nm. 4 Reagents During the analysis, unless otherwise stated, use only reagents of recognized analytical grade with a very low sulfur content, and only freshly prepared grade2 water as specified in ISO3696. 4.1 Hydrochloric acid, about1,19g/ml
21、. 4.2 Hydrochloric acid, about1,19g/ml, diluted1+15. 4.3 Perchloric acid, about1,54g/ml. 4.4 Hydrobromic acid, about1,48g/ml. 4.5 Mixture of hydrochloric and nitric acids Mix one volume of hydrochloric acid (4.1) and one volume of nitric acid, about1,40g/ml. Prepare immediately before use. 4.6 Reduc
22、ing reagent solution Transfer200ml of hydriodic acid about57% (m/m) and50ml of hypophosphorous acid about50% (m/m) into the purifying apparatus (seeFigure 1). Purge with nitrogen (4.12) at a flowrate of100ml/min for10min, to mix the acids and expel air from the system. Switch on the electric heating
23、 mantle. Heat to boiling and boil gently for about120min at a temperature of about115 C in a current of nitrogen. When purification is completed (see10.3), switch off the electric heating mantle. Then cool the solution and keep it in a brown bottle. 4.7 Absorbing solution Dissolve5g of zinc acetate
24、dihydrate (CH 3 COO) 2 Zn.2H 2 O in400ml of water. Add200ml of sodium hydroxide solution,30g/l, and70g of ammonium chloride, and then dilute to1000ml with water. Maximum allowable content of the interfering elements Test portion Application ranges %w s % (m/m) % (m/m) Nb Si Ta Ti g 0,5 1,0 0,3 1,0 1
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