BS 3908-13-1970 Methods for the sampling and analysis of lead and lead alloys - Antimony in lead and lead alloys (low contents) (photometric method)《铅和铅合金取样与分析方法 第13部分 少量锑含量的测定(光度测.pdf
《BS 3908-13-1970 Methods for the sampling and analysis of lead and lead alloys - Antimony in lead and lead alloys (low contents) (photometric method)《铅和铅合金取样与分析方法 第13部分 少量锑含量的测定(光度测.pdf》由会员分享,可在线阅读,更多相关《BS 3908-13-1970 Methods for the sampling and analysis of lead and lead alloys - Antimony in lead and lead alloys (low contents) (photometric method)《铅和铅合金取样与分析方法 第13部分 少量锑含量的测定(光度测.pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD BS3908-13: 1970 Method for The determination of antimony in lead and lead alloys (lowcontents) (photometric method)BS3908-13:1970 This British Standard, having been approved by the Non-ferrousMetals Industry Standards Committee, was published under the authority ofthe Executive Boar
2、d on 30 January1970 BSI11-1999 The following BSI references relate to the work on this standard: Committee references NFE/22, NFE/22/6 Draft for comment68/21413 ISBN 580 05656 2 Co-operating organizations The Non-ferrous Metals Industry Standards Committee, under whose supervision this British Stand
3、ard was prepared, consists of representatives from the following Government departments, and scientific and industrial organizations: Aluminium Federation Institution of Mining and Metallurgy Association of Bronze and Brass Founders Institution of Production Engineers Association of Consulting Engin
4、eers Institution of Structural Engineers Board of Trade Lead Development Association* British Bronze and Brass Ingot Manufacturers Light Metal Founders Association Association London Metal Exchange British Lead Manufacturers Association* Magnesium Industry Council British Non-ferrous Metals Federati
5、on* Ministry of Defence, Army Department British Non-ferrous Metals Research Ministry of Defence, Navy Department* Association* National Brassfoundry Association Copper Development Association Non-ferrous Metal Stockists Crown Agents for Oversea Governments and Post Office* Administrations Royal Ins
6、titute of British Architects Electric Cable Makers Confederation* Society of Motor Manufacturers and Traders High Conductivity Copper Group Ltd. Institute of British Foundrymen Tin Research Institute Institute of Metals Zinc Development Association Institution of Mechanical Engineers Individual manu
7、facturers (Automobile Division) The Government department and scientific and industrial organizations marked with an asterisk in the above list, together with the following, were directly represented on the committee entrusted with the preparation of this British Standard: Accumulator Makers Associa
8、tion Ministry of Defence British Battery Makers Society Solder Makers Association Chemical Industries Association United Kingdom Atomic Energy Authority London Transport Board Amendments issued since publication Amd. No. Date CommentsBS3908-13:1970 BSI 11-1999 i Contents Page Co-operating organizati
9、ons Inside front cover Foreword ii 1 Introduction 1 2 Apparatus 1 3 Solutions required 1 4 Sampling 1 5 Procedure 1 6 Calibration 2 7 Notes 2BS3908-13:1970 ii BSI 11-1999 Foreword This standard makes reference to the following British Standards: BS3908, Method for the sampling and analysis of lead a
10、nd lead alloys Part1:Sampling of ingot lead, lead alloy ingots, sheet, pipe and cable sheathing alloys. BS3978, Water for laboratory use. This method for the determination of small amounts of antimony in lead and lead alloys is the thirteenth of a series of methods which will form a complete British
11、 Standard under the collective title “Methods for the sampling and analysis of lead and lead alloys” each method being published as a separate part. The preparation of this series of methods has been authorized by the Non-Ferrous Metals Industry Standards Committee as part of a general programme for
12、 the standardization of methods for the sampling and analysis of non-ferrous metals. Other methods in the series are as follows: Part1: Sampling of ingot lead, lead alloy ingots, sheet, pipe and cable sheathing alloys; Part2: Determination of arsenic in lead and lead alloys (photometricmethod); Part
13、3: Determination of bismuth in lead and lead alloys (photometricmethod); Part4: Determination of copper in lead and lead alloys (photometricmethod); Part5: Determination of nickel in lead and lead alloys (photometric method); Part6: Determination of tellurium in lead and lead alloys (photometricmeth
14、od) 1) ; Part7: Determination of silver in lead and lead alloys 1) ; Part8: Determination of cadmium in lead and lead alloys 1) ; Part9: Determination of sulphur in lead and lead alloys 1) ; Part10: Determination of antimony in lead and lead alloys (volumetricmethod); Part11: Determination of tin in
15、 lead and lead alloys (volumetric method); Part12: Determination of zinc in lead and lead alloys 1) ; Part14: Determination of tin in lead and lead alloys (low contents) (photometric-quercetin method) 1) ; Part15: Determination of iron in lead and lead alloys (photometricmethod) 1) . The complete Br
16、itish Standard methods will be found suitable for the grades of metals covered by BS334 “Chemical lead”, BS335 “Regulus metal”, BS602 and BS1085 “Lead pipes for other than chemical purposes”, BS801 “Lead and lead alloy sheaths of electric cable”, BS1178 “Milled lead sheet and strip for building purp
17、oses” and BS3909 “Ingot lead for radiation shielding”. The methods have been found to give reliable and reproducible results, and, while in some instances they may appear to be lengthy, it should be realized that they are put forward as “referee” methods to be used in cases of dispute. 1) In course
18、of preparation.BS3908-13:1970 BSI 11-1999 iii A British Standard does not purport to include all the necessary provisions of a contract. Users of British Standards are responsible for their correct application. Compliance with a British Standard does not of itself confer immunity from legal obligati
19、ons. Summary of pages This document comprises a front cover, an inside front cover, pagesi to iv, pages1and 2 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.iv bla
20、nkBS3908-13:1970 BSI 11-1999 1 1 Introduction 1.1 Principle. The sample is dissolved in a mixture of acetic acid and hydrogen peroxide, hydrochloric acid is added and the pentavalent antimony chloride extracted into isopropyl ether. Rhodamine “B” is added and the determination is completed photometr
21、ically. 1.2 Range. From0.002to0.05% antimony. 1.3 Reproducibility. Experiments have been carried out independently by a number of analysts using this method. The degree of reproducibility that can be expected is shown by the following analysis of the results obtained. 2 Apparatus 2.1 Any volumetric
22、glassware used shall be of ClassA accuracy as defined in the appropriate British Standards, or where no British Standards exists, as described in the National Physical Laboratory Publication “Volumetric tests on volumetric glassware”. 2.2 Any instrument suitable for measuring the optical density of
23、the solution at a wavelength of550nm may be used together with a2 or4cm cell. Alternatively when a filter photometer of the balanced two photo cell type is used the following conditions have been found suitable: 3 Solutions required All reagents shall be of the highest purity obtainable and distille
24、d or demineralised water complying with BS3978 2)shall be used throughout. Solutions shall be freshly prepared and where necessary filtered. Standard antimony (1mlN 0.0025mg of antimony). Dissolve0.15g of high-purity antimony trioxide in hydrochloric acid (sp.gr.1.161.18). Cool, transfer to a1litre
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