BS 6721-8-1989 Sampling and analysis of copper and copper alloys - Method for determination of nickel in copper alloys titrimetric method《铜和铜合金的取样与分析 第8部分 用滴定法对铜合金中镍的测定方法》.pdf
《BS 6721-8-1989 Sampling and analysis of copper and copper alloys - Method for determination of nickel in copper alloys titrimetric method《铜和铜合金的取样与分析 第8部分 用滴定法对铜合金中镍的测定方法》.pdf》由会员分享,可在线阅读,更多相关《BS 6721-8-1989 Sampling and analysis of copper and copper alloys - Method for determination of nickel in copper alloys titrimetric method《铜和铜合金的取样与分析 第8部分 用滴定法对铜合金中镍的测定方法》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD BS 6721-8: 1989 ISO 4743:1984 Sampling and analysis of copper and copper alloys Part 8: Method for determination of nickel in copper alloys: titrimetric method ISO title: Copper alloys Determination of nickel content Titrimetric method UDC 669.3:669.245:543.24:620.1BS6721-8:1989 Thi
2、s British Standard, having been prepared under the directionof the Non-ferrous Metals Standards Committee,waspublished underthe authority of the BoardofBSI and comes into effect on 28 February 1989 BSI 12-1999 The following BSI references relate to the work on this standard: Committee reference NFM/
3、34 Draft (ref. 86/38270) announced inBSI News January 1988 ISBN 0 580 17121 3 Committees responsible for this British Standard The preparation of this British Standard was entrusted by the Non-ferrous Metals Standards Committee (NFM/-) to Technical Committee NFM/34 upon which the following bodies we
4、re represented: British Non-ferrous Metals Federation Copper Development Association London Metal Exchange Non-ferrous Metal Stockists Society of British Aerospace Companies Limited Coopted members The following bodies were also represented in the drafting of the standard, through subcommittees and
5、panels: BNF Metals Technology Centre British Bronze and Brass Ingot Manufacturers Association Copper Smelters and Refiners Association Ministry of Defence National Brassfoundry Association Coopted members Amendments issued since publication Amd. No. Date of issue CommentsBS6721-8:1989 BSI 12-1999 i
6、Contents Page Committees responsible Inside front cover National foreword ii 1 Scope and field of application 1 2 Principle 1 3 Reagents 1 4 Apparatus 1 5 Procedure 2 6 Expression of results 3 7 Notes on procedure 3 8 Test report 3BS6721-8:1989 ii BSI 12-1999 National foreword This Part of BS6721 ha
7、s been prepared under the direction of the Non-ferrous Metals Standards Committee. BS6721 is a multi-part standard and describes methods of sampling and analysis for copper and copper alloys. It is intended that Parts1 to3 of BS6721 will describe methods of sampling copper and copper alloys in vario
8、us forms. The remaining Parts will give methods for the determination of individual elements in copper and copper alloys. This Part of BS6721 is identical with ISO4743:1984 “Copper alloys Determination of nickel content Titrimetric method”, published by the International Organization for Standardiza
9、tion (ISO). Terminology and conventions. The text of the International Standard has been approved as suitable for publication as a British Standard without deviation. Some terminology and certain conventions are not identical with those used in British Standards; attention is drawn especially to the
10、 following. The comma has been used as a decimal marker. In British Standards it is current practice to use a full point on the baseline as the decimal marker. Wherever the words “International Standard” appear, referring to this standard, they should be read as “Part of BS 6721”. In British Standar
11、ds it is current practice to use the symbol “L” for litre (and in its submultiples) rather than “l”. The recommended name for the reagent described in3.7 (hexamethylene tetramine) is hexamine. The recommended name for the reagent described in3.10 (diacetyldioxime, commonly known as dimethylglyoxime)
12、 is butanedione dioxime. WARNING. Throughout this Part of BS 6721, normal precautions concerning the use of perchloric acid in laboratory work should be observed. A British Standard does not purport to include all the necessary provisions of a contract. Users of British Standards are responsible for
13、 their correct application. Compliance with a British Standard does not of itself confer immunity from legal obligations. Summary of pages This document comprises a front cover, an inside front cover, pages i and ii, pages1 to 3 and a back cover. This standard has been updated (see copyright date) a
14、nd may have had amendments incorporated. This will be indicated in the amendment table on the inside front cover.BS6721-8:1989 BSI 12-1999 1 1 Scope and field of application This International Standard specifies a titrimetric method for the determination of the nickel content of copper alloys. The m
15、ethod is applicable to contents of nickel as an alloying element in all types of copper alloys listed in International Standards. 2 Principle Separation of nickel from an ammoniacal solution of a test portion by precipitation as the diacetyldioxime complex, followed by extraction of the complex into
16、 chloroform. After evaporation of the solvent and wet digestion of the complex, determination of the nickel content by indirect complexiometric titration using voltammetric end-point indication. 3 Reagents During the analysis, use only reagents of recognized analytical grade and only distilled water
17、 or water of equivalent purity. 3.1 Ammonia, solution, 0,91g/ml. 3.2 Ammonia, solution, diluted1+10. Dilute100ml of the ammonia solution(3.1) to1100 ml with water. 3.3 Nitric acid, solution, diluted1+1. Dilute100ml of the nitric acid, 1,40g/ml with100ml of water. 3.4 Perchloric acid 1) , 1,70g/ml. 3
18、.5 Hydroxylammonium chloride (Hydroxylamine hydrochloride) 3.6 Chloroform 3.7 Hexamethylene tetramine 3.8 Tartaric acid, 500g/l solution. Dissolve500g of tartaric acid (C 4 H 6 O 6 ) in water and dilute to1000ml. 3.9 Sodium tartrate, 100g/l solution. Dissolve100g of disodium tartrate dihydrate (Na 2
19、 C 4 H 4 O 6 .2H 2 O) in water and dilute to1000ml. 3.10 Diacetyldioxime, 10g/l methanolic solution. Dissolve10g of diacetyl-dioxime (C 4 H 8 N 2 O 2 ) in methanol and dilute to1000ml with methanol. 3.11 Hydrochloric acid, solution, diluted1+1. Dilute100ml of hydrochloric acid, 1,19g/ml, to200ml wit
20、h water. 3.12 Disodiumethylenediaminetetraacetate dihydrate (Na 2 EDTA), standard volumetric solution, c(Na 2 C 10 H 14 O 8 N 2 .2H 2 O) 0,01mol/l. 3.12.1 Preparation of the solution Dissolve 3,722 g of Na 2 EDTA in water and dilute to the mark in a1000 ml one-mark volumetric flask. 3.12.2 Standardi
21、zation of the solution Pipette20,00ml of the copper solution(3.14) into a250ml beaker. Add25,00ml of the Na 2 EDTA solution(3.12.1) and adjust the pH to6,2to6,4with the hexamethylene tetramine(3.7). Add2,5ml of the MnEDTA solution(3.13) and titrate the excess EDTA with the copper solution(3.14) as s
22、pecified in5.6. The factor of the EDTA solution, F, is given by the formula where V 0 is the volume, in millilitres, of copper solution used for the determination. 3.13 Manganese(II)EDTA, solution corresponding to0,2g of Mn per litre. Dissolve0,6155g manganese (II) sulphate monohydrate (MnSO 4 .H 2
23、O),1,0642g of ethylenediamine tetraacetic acid, and10g of the hexamethylene tetramine(3.7) in200ml of water and dilute to the mark in a1000ml one-mark volumetric flask. 1ml of this solution contains0,2mg of Mn(II). NOTETo establish whether the solution contains Mn and EDTA in stoichiometric combinat
24、ion, add several milligrams of the hydroxylamine hydrochloride(3.5) and a drop of Eriochrome Black T indicator solution. The resulting colour should be a dirty pink or blue which should turn to a pure red on the addition of1drop of the copper solution (3.14) or to pure blue on the addition of1drop o
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