BS ISO 12743-2007 en 1648 Copper lead zinc and nickel concentrates - Sampling procedures for determination of metal and moisture content《铜、铅、锌和镍精矿 金属和湿度含量测定的取样程序》.pdf
《BS ISO 12743-2007 en 1648 Copper lead zinc and nickel concentrates - Sampling procedures for determination of metal and moisture content《铜、铅、锌和镍精矿 金属和湿度含量测定的取样程序》.pdf》由会员分享,可在线阅读,更多相关《BS ISO 12743-2007 en 1648 Copper lead zinc and nickel concentrates - Sampling procedures for determination of metal and moisture content《铜、铅、锌和镍精矿 金属和湿度含量测定的取样程序》.pdf(86页珍藏版)》请在麦多课文档分享上搜索。
1、 g49g50g3g38g50g51g60g44g49g42g3g58g44g55g43g50g56g55g3g37g54g44g3g51g40g53g48g44g54g54g44g50g49g3g40g59g38g40g51g55g3g36g54g3g51g40g53g48g44g55g55g40g39g3g37g60g3g38g50g51g60g53g44g42g43g55g3g47g36g58for determination of metal and moisture content ICS 73.060.99Copper, lead, zinc and nickel concentr
2、ates Sampling procedures BRITISH STANDARDBS ISO 12743:2006BS ISO 12743:2006This British Standard was published under the authority of the Standards Policy and Strategy Committee on 30 April 2007 BSI 2007ISBN 978 0 580 50464 8Amendments issued since publicationAmd. No. Date Commentscontract. Users ar
3、e responsible for its correct application.Compliance with a British Standard cannot confer immunity from legal obligations.National forewordThis British Standard was published by BSI. It is the UK implementation of ISO 12743:2006. The UK participation in its preparation was entrusted to Technical Co
4、mmittee NFE/36, Copper, lead and zinc ores and concentrates.A list of organizations represented on NFE/36 can be obtained on request to its secretary.This publication does not purport to include all the necessary provisions of a Reference numberISO 12743:2006(E)INTERNATIONAL STANDARD ISO12743Second
5、edition2006-06-15Copper, lead, zinc and nickel concentrates Sampling procedures for determination of metal and moisture content Concentrs de cuivre, de plomb, de zinc et de nickel Procdures dchantillonnage pour la dtermination de la teneur en mtal et de lhumidit BS ISO 12743:2006ii iiiContents Page
6、Foreword vi 1 Scope . 1 2 Normative references . 1 3 Terms and definitions. 2 4 Sampling theory 4 4.1 General. 4 4.2 Total variance 5 4.3 Sampling-stage method of estimating sampling and total variance. 6 4.4 Simplified method of estimating sampling and total variance 9 4.5 Interleaved sample method
7、 of measuring total variance . 10 5 Establishing a sampling scheme 12 6 Mass of increment 17 6.1 General. 17 6.2 Mass of increment for falling-stream samplers. 17 6.3 Mass of increment for cross-belt samplers . 17 6.4 Mass of increment for manual sampling from stationary lots . 18 6.4.1 Primary incr
8、ements 18 6.4.2 Mass of secondary and subsequent increments 18 6.5 Mass of increment for stopped-belt reference sampling 18 7 Methods of sampling from concentrate streams 18 7.1 General. 18 7.2 Mass-basis systematic sampling 18 7.2.1 General. 18 7.2.2 Sampling interval 19 7.2.3 Sample cutter 19 7.2.
9、4 Taking of primary increments . 19 7.2.5 Constitution of subsamples and lot samples 19 7.2.6 Types of division. 20 7.2.7 Division of increments . 20 7.2.8 Division of subsamples 20 7.2.9 Division of lot samples. 20 7.3 Time-basis systematic sampling. 21 7.3.1 General. 21 7.3.2 Sampling interval 21
10、7.3.3 Sample cutter 21 7.3.4 Taking of primary increments . 22 7.3.5 Constitution of subsamples and lot samples 22 7.3.6 Types of division. 22 7.3.7 Division of increments and subsamples 22 7.3.8 Division of lot samples. 22 7.4 Stratified random sampling . 22 7.4.1 Fixed mass intervals. 22 7.4.2 Fix
11、ed time intervals 23 8 Mechanical sampling of concentrate streams. 23 8.1 General. 23 8.2 Design of the sampling system. 23 8.2.1 Safety of operators . 23 8.2.2 Location of sample cutters 23 BS ISO 12743:2006iv 8.2.3 Provision for interleaved sampling . 23 8.2.4 Provision for stratified random sampl
12、ing. 24 8.2.5 Checking precision and bias . 24 8.2.6 Avoiding bias. 24 8.2.7 Minimizing bias . 24 8.2.8 Configuration of the sampling system . 24 8.3 Sample cutters. 24 8.3.1 General . 24 8.3.2 Design criteria . 25 8.3.3 Cutter speed 26 8.4 Mass of increments. 27 8.5 Number of increments 27 8.6 Samp
13、ling interval 27 8.7 Routine checking 27 9 Manual sampling of concentrate streams 28 9.1 General . 28 9.2 Choosing the sampling location 28 9.3 Sampling implements . 28 9.4 Mass of increments. 28 9.5 Number of increments 28 9.6 Sampling interval 28 9.7 Sampling procedures . 29 9.7.1 General . 29 9.7
14、.2 Full stream cut from a falling stream 29 9.7.3 Partial stream cuts from a falling stream . 29 9.7.4 Sampling from moving conveyor belts.30 10 Stopped-belt reference sampling 30 11 Sampling from grabs 31 11.1 General . 31 11.2 Mass of primary increments 31 11.3 Number of primary increments 31 11.4
15、 Method of sampling 31 11.5 Constitution of subsamples and lot samples 31 12 Sampling from trucks, railway wagons and sampling hoppers. 32 12.1 General . 32 12.2 Mass of primary increments 32 12.3 Number of primary increments 32 12.4 Method of sampling 32 12.5 Constitution of subsamples and lot samp
16、les 32 13 Sampling of concentrate in bags or drums 35 13.1 General . 35 13.2 Mass of primary increments 35 13.3 Number of primary increments 35 13.4 Method of sampling 36 13.4.1 General . 36 13.4.2 Sampling during filling or emptying . 36 13.4.3 Spear sampling . 36 13.5 Constitution of subsamples an
17、d lot samples 36 14 Sampling of stockpiles . 37 15 Methods of comminution, mixing and division 37 15.1 General . 37 15.2 Comminution . 37 15.2.1 General . 37 15.2.2 Mills 37 15.3 Mixing. 38 15.3.1 General . 38 BS ISO 12743:2006v15.3.2 Methods of mixing 38 15.4 Division 40 15.4.1 Chemical analysis sa
18、mples . 40 15.4.2 Moisture samples 40 15.4.3 Number of increments for division . 40 15.4.4 Minimum mass of divided sample 40 15.4.5 Rotary sample division. 41 15.4.6 Cutter-type division 42 15.4.7 Manual increment division. 43 15.4.8 Spear division . 43 15.4.9 Fractional shovelling 44 15.4.10 Ribbon
19、 division. 45 15.4.11 Riffle division 47 16 Sample requirements . 49 16.1 Moisture samples 49 16.1.1 Mass of test portion 49 16.1.2 Processing of samples. 49 16.2 Chemical analysis samples . 49 16.3 Physical test samples. 50 17 Packing and marking of samples 50 Annex A (normative) Sampling stage met
20、hod of estimating sampling and total variance 51 Annex B (informative) Estimation of total variance Barge unloading using a grab . 58 Annex C (informative) Mechanical sample cutters . 62 Annex D (informative) Checklist for mechanical sampling systems 67 Annex E (normative) Manual sampling devices 71
21、 Annex F (informative) Apparatus for manual sampling of concentrates from stopped belts 73 Annex G (informative) Sampling of stockpiles 74 Annex H (normative) Increment division scoops for conducting manual increment division 76 Bibliography . 77 BS ISO 12743:2006vi Foreword ISO (the International O
22、rganization 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 estab
23、lished 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 standardizat
24、ion. 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
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