DIN ISO 22036-2009 Soil quality - Determination of trace elements in extracts of soil by inductively coupled plasma - atomic emission spectrometry (ICP-AES) (ISO 22036 2008) Englis.pdf
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1、June 2009DEUTSCHE NORM English price group 14No part of this standard 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 13.080.10!$X8k“1532172www
2、.din.deDDIN ISO 22036Soil quality Determination of trace elements in extracts of soil by inductivelycoupled plasma - atomic emission spectrometry (ICP-AES)(ISO 22036:2008)English version of DIN ISO 22036:2009-06Bodenbeschaffenheit Bestimmung von Spurenelementen in Bodenextrakten mittelsAtomemissions
3、spektrometrie mit induktiv gekoppeltem Plasma (ICP-AES)(ISO 22036:2008)Englische Fassung DIN ISO 22036:2009-06www.beuth.deDocument comprises 34 pagesDIN ISO 22036:2009-06 Contents Page National foreword .3 1 Scope5 2 Normative references5 3 Terms and definitions .6 4 Principle7 5 Interferences 10 5.
4、1 General .10 5.2 Spectral interferences.10 5.3 Non-spectral interferences.11 6 Reagents.12 7 Instrumentation .13 8 Procedure.14 8.1 Cleaning of glassware.14 8.2 Instrument performance parameters.14 8.3 Instrument optimization15 8.4 Alignment of the spectrometer 15 8.5 Calibration methods16 8.6 Solu
5、tions to be prepared 16 8.7 Measurement procedure.17 9 Calculation of results 18 10 Precision.18 11 Expression of results18 12 Test report19 Annex A (informative) Repeatability and precision results 20 Annex B (informative) Interferences .23 Bibliography34 2DIN ISO 22036:2009-06 National foreword Th
6、is standard has been prepared by Technical Committee ISO/TC 190 “Soil quality”, Subcommittee SC 3 “Chemical methods and soil characteristics”. The responsible German body involved in its preparation was the Normenausschuss Wasserwesen (Water Practice Standards Committee), Technical Committee NA 119-
7、01-02-02 UA Chemische und physikalische Verfahren. The DIN Standards corresponding to the International Standards referred to in this document are as follows: ISO 3696 DIN ISO 3696 ISO 5725-1 DIN ISO 5725-1 ISO 5725-2 DIN ISO 5725-2 ISO 11465 DIN ISO 11465 ISO 11466 DIN ISO 11466 ISO 14869-1 DIN ISO
8、 14869-1 ISO 14869-2 DIN ISO 14869-2 ISO 14870 DIN ISO 14870 3DIN ISO 22036:2009-06 4 National Annex NA (informative) Bibliography DIN ISO 3696, Water for analytical laboratory use Specification and test methods DIN ISO 5725-1, Accuracy (trueness and precision) of measurement methods and results Par
9、t 1: General principles and definitions DIN ISO 5725-2, Accuracy (trueness and precision) of measurement methods and results Part 2: Basic method for the determination of repeatability and reproducibility of a standard measurement method DIN ISO 11465, Soil quality Determination of dry matter and wa
10、ter content on a mass basis Gravimetric method DIN ISO 11466, Soil quality Extraction of trace elements soluble in aqua regia DIN ISO 14869-1, Soil quality Dissolution for the determination of total element content Part 1: Dissolution with hydrofluoric and perchloric acids DIN ISO 14869-2, Soil qual
11、ity Dissolution for the determination of total element content Part 2: Dissolution by alkaline fusion DIN ISO 14870, Soil quality Extraction of trace elements by buffered DTPA solution Soil quality Determination of trace elements in extracts of soil by inductively coupled plasma atomic emission spec
12、trometry (ICP-AES) WARNING The procedures in this International Standard should be carried out by competent, trained persons. Some of the techniques and reagents, including the use of equipment, are potentially very dangerous. Users of this International Standard who are not thoroughly familiar with
13、 the potential dangers and related safe practices should take professional advice before commencing any operation. 1 Scope This International Standard describes the determination of trace elements in digests or extraction solutions from soil by inductively coupled plasma - atomic emission spectromet
14、ry (ICP-AES) for 34 elements (see Table 1). This multi-element determination method is applicable to soil extracts obtained with aqua regia in accordance with ISO 11466, with DTPA in accordance with ISO 14870 or other weak extractants, or soil extracts for the determination of total element contents
15、 using the acid digestion method of ISO 14869-1 or the fusion method of ISO 14869-2. The choice of calibration method depends on the extractant and can be adapted to the extractant concentration. 2 Normative references The following referenced documents are indispensable for the application of this
16、document. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. ISO Guide 32, Calibration in analytical chemistry and use of certified reference materials ISO 3696, Water for analytical laborato
17、ry use Specification and test methods ISO 5725-1, Accuracy (trueness and precision) of measurement methods and results Part 1: General principles and definitions ISO 5725-2, Accuracy (trueness and precision) of measurement methods and results Part 2: Basic method for the determination of repeatabili
18、ty and reproducibility of a standard measurement method ISO 11465, Soil quality Determination of dry matter and water content on a mass basis Gravimetric method ISO 11466, Soil quality Extraction of trace elements soluble in aqua regia ISO 14869-1, Soil quality Dissolution for the determination of t
19、otal element content Part 1: Dissolution with hydrofluoric and perchloric acids ISO 14869-2, Soil quality Dissolution for the determination of total element content Part 2: Dissolution by alkaline fusion ISO 14870, Soil quality Extraction of trace elements by buffered DTPA solution DIN ISO 22036:200
20、9-06 53 Terms and definitions For the purposes of this document, the terms and definitions given in ISO 5725-1, ISO 5725-2, ISO Guide 32 and the following apply. 3.1 analyte element to be determined 3.2 blank calibration solution solution prepared in the same way as the calibration solution but leav
21、ing out the analytes 3.3 blank test solution solution prepared in the same way as the test sample solution but omitting the test portion 3.4 calibration solution solution used to calibrate the instrument, prepared from stock solutions by adding acids, buffer, reference element and salts as needed 3.
22、5 instrument detection limit lowest concentration that can be detected with a defined statistical probability using a clean instrument and a clean solution NOTE The clean solution is usually dilute nitric acid. 3.6 laboratory sample sample sent to the laboratory for analysis 3.7 linearity straight-l
23、ine relationship between the mean result of measurement and the quantity (concentration) of the analyte 3.8 method detection limit lowest concentration that can be detected using a specific analytical method with a defined statistical probability for defined maximum matrix element concentrations 3.9
24、 pure chemical chemical with the highest available purity and known stoichiometry NOTE The content of analyte and contaminants should be known with an established degree of certainty. 3.10 stock solution solution with accurately known analyte concentration(s), prepared from pure chemicals (3.9) NOTE
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