DIN EN 15443-2011 Solid recovered fuels - Methods for the preparation of the laboratory sample German version EN 15443 2011《固体回收燃料 实验室样品的备制方法 德文版本EN 15443-2011》.pdf
《DIN EN 15443-2011 Solid recovered fuels - Methods for the preparation of the laboratory sample German version EN 15443 2011《固体回收燃料 实验室样品的备制方法 德文版本EN 15443-2011》.pdf》由会员分享,可在线阅读,更多相关《DIN EN 15443-2011 Solid recovered fuels - Methods for the preparation of the laboratory sample German version EN 15443 2011《固体回收燃料 实验室样品的备制方法 德文版本EN 15443-2011》.pdf(39页珍藏版)》请在麦多课文档分享上搜索。
1、May 2011 Translation by DIN-Sprachendienst.English price group 17No part of this translation may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for German Standards (DIN-Normen).ICS 75
2、.160.10!$p_h“1776069www.din.deDDIN EN 15443Solid recovered fuels Methods for the preparation of the laboratory sampleEnglish translation of DIN EN 15443:2011-05Feste Sekundrbrennstoffe Verfahren zur Herstellung von LaboratoriumsprobenEnglische bersetzung von DIN EN 15443:2011-05Combustibles solides
3、de rcupration Mthodes de prparation des chantillons de laboratoireTraduction anglaise de DIN EN 15443:2011-05SupersedesDIN CEN/TS 15443:2007-01www.beuth.deDocument comprises pagesIn case of doubt, the German-language original shall be considered authoritative.3904.11 DIN EN 15443:2011-05 A comma is
4、used as the decimal marker. National foreword This standard has been prepared by Technical Committee CEN/TC 343 “Solid recovered fuels” (Secretariat: SFS, Finland). The responsible German body involved in its preparation was the Normenausschuss Materialprfung (Materials Testing Standards Committee),
5、 Working Committee NA 062-05-83 AA Sekundrbrennstoffe. Amendments This standard differs from DIN CEN/TS 15443:2007-01 as follows: a) the prestandard status has been changed to that of a full standard; b) the terminology has been harmonized throughout the standard; c) Clause 12 “Precision” has been b
6、een included; d) Annex C “Examples of sample preparation” has been extended to include large pieces SRF; e) Annex D (informative) “Data on the precision of sample preparation” has been added; f) the Bibliography has been updated; g) the standard has been editorially revised. Previous editions DIN CE
7、N/TS 15443: 2007-01 2 EUROPEAN STANDARD NORME EUROPENNE EUROPISCHE NORM EN 15443 March 2011 ICS 75.160.10 Supersedes CEN/TS 15443:2006English Version Solid recovered fuels - Methods for the preparation of the laboratory sample Combustibles solides de rcupration - Mthodes de prparation des chantillon
8、s de laboratoire Feste Sekundrbrennstoffe - Verfahren zur Herstellung von Laboratoriumsproben This European Standard was approved by CEN on 22 January 2011. CEN members are bound to comply with the CEN/CENELEC Internal Regulations which stipulate the conditions for giving this European Standard the
9、status of a national standard without any alteration. Up-to-date lists and bibliographical references concerning such national standards may be obtained on application to the CEN-CENELEC Management Centre or to any CEN member. This European Standard exists in three official versions (English, French
10、, German). A version in any other language made by translation under the responsibility of a CEN member into its own language and notified to the CEN-CENELEC Management Centre has the same status as the official versions. CEN members are the national standards bodies of Austria, Belgium, Bulgaria, C
11、roatia, Cyprus, Czech Republic, Denmark, Estonia, Finland, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, Netherlands, Norway, Poland, Portugal, Romania, Slovakia, Slovenia, Spain, Sweden, Switzerland and United Kingdom. EUROPEAN COMMITTEE FOR STANDA
12、RDIZATION COMIT EUROPEN DE NORMALISATION EUROPISCHES KOMITEE FR NORMUNG Management Centre: Avenue Marnix 17, B-1000 Brussels 2011 CEN All rights of exploitation in any form and by any means reserved worldwide for CEN national Members. Ref. No. EN 15443:2011: EEN 15443:2011 (E) 2 Contents Page Forewo
13、rd 41 Scope 72 Normative references 73 Terms and definitions .74 Symbols and abbreviations 85 Principles of correct sample preparation 96 Apparatus 116.1 Apparatus for sample division 116.1.1 Riffle boxes 116.1.2 Rotary sample dividers 116.1.3 Shovels and scoops . 126.2 Apparatus for particle size r
14、eduction . 136.2.1 Coarse cutting mill or wood crusher 136.2.2 Cutting mill 136.2.3 Shredder 136.3 Sieves . 146.4 Balance 147 Sample preparation procedure 147.1 General structure 147.2 Step 1: Collection of the relevant information of the material to be sampled 147.3 Step 2: Making a sample preparat
15、ion plan . 157.3.1 General . 157.3.2 Retaining the minimum (sub-)sample size . 177.4 Step 3: Performing the sample preparation plan 178 Methods for sample division . 189 Methods for reducing laboratory samples to sub-samples and general analysis samples . 209.1 General . 209.2 Initial sample divisio
16、n 219.3 Initial mass determination . 219.4 Pre-drying 219.5 Coarse cutting (particle size reduction to (1) where m is the mass retained after each sample division step in g; d95is the nominal top size in mm; is a constant over the whole sample preparation procedure for a particular material in g/mm3
17、. The value and unit of constant is fixed by the nominal particle size, d95, and the sample size, m, of the sample before sample preparation. EXAMPLE A sample of 10 kg of SRF fluff has d95of 50 mm. For the analysis is a test portion of 5 g required. The third power law results in = 10 000 g divided
18、by 50 mm to the third power. The value of is now 0,08 g/mm3. Using this value in Equation (1) for a reduced sample size results in a nominal top size for the particles in the test portion of 3,97 mm (cube root of 5,0 g divided by 0,08 g/mm3). Below in the table are shown the figures. m in g In g/mm3
19、d95in mm 10 000 0,08 50 5 0,08 3,97Table 1 shows the resulting reduction factors for the minimum (sub-)sample size, if a certain reduction of the nominal top size is chosen and the third-power law is respected. The reduction factor of the nominal top size can be calculated by dividing the current no
20、minal top size by the proposed nominal top size after size reduction. DIN EN 15443:2011-05 EN 15443:2011 (E) 10 Table 2 shows the resulting reduction factors for the minimum nominal top size, if a certain reduction of the (sub-)sample size is chosen and the third-power law is respected. The reductio
21、n factor of the minimum (sub-)sample size can be calculated by dividing the current minimum (sub-)sample size by the proposed minimum (sub-)sample top size after size reduction. Equation (1) can be used to calculate the exact values for each specific situation. Table 1 Common values for desired redu
22、ction factor minimum (sub-)sample size Table 2 Common values for desired reduction factor nominal top size Chosen reduction factor of the nominal top size Resulting reduction factor for the minimum (sub-)sample size Desired reduction factor for the minimum (sub-)sample size Necessary reduction facto
23、r of the nominal top size 1,5 3,4 2 1,32 8 3 1,43 274 1,6 4 64 5 1,75 12510 2,26 21620 2,7 7 343 50 3,78 51280 4,39 729100 4,6 10 1 000 200 5,820 8 000500 7,930 27 0001 000 10,0 For SRF, however, many materials turn out to be far from granular. For example in fluff the particles turn out to be predo
24、minantly flat. Therefore, for solid recovered fuels, a correction can made for non-granular materials. Care is needed to avoid loss of fine particles and volatile components such as moisture and mercury during milling and other operations. If a sub-sample is required for the determination of moistur
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