ISO 11041-1996 Workplace air - Determination of particulate arsenic and arsenic compounds and arsenic trioxide vapour - Method by hydride generation and atomic .pdf
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1、INTERNATIONAL STANDARD IS0 11041 First edition 1996-04-I 5 Workplace air - Determination of particulate arsenic and arsenic compounds and arsenic trioxide vapour - Method by hydride generation and atomic absorption spectrometry Air des lieux de travail - Dosage de /arsenic pat-ticulaire, des compos&
2、 particulaires de /arsenic et des vapeurs de trioxyde darsenic - M&hode par production dhydrures et spectrom&rie dabsorption atomique Reference number IS0 11041 :I 996(E) IS0 11041:1996(E) Foreword IS0 (the International Organization for Standardization) is a worldwide federation of national standar
3、ds bodies (IS0 member bodies). The work of preparing International Standards is normally carried out through IS0 technical committees. Each member body interested in a subject for which a technical committee has been established has the right to be represented on that committee. International organi
4、zations, governmental and non-governmental, in liaison with ISO, also take part in the work. IS0 collaborates closely with the International Electrotechnical Commission (IEC) on all matters of electrotechnical standardization. Draft International Standards adopted by the technical committees are cir
5、culated to the member bodies for voting. Publication as an International Standard requires approval by at least 75 % of the member bodies casting a vote. International Standard IS0 11041 was prepared by Technical Committee ISO/TC 146, Air quality, Subcommittee SC 2, Workplace atmospheres. Annex A of
6、 this International Standard is for information only. Q IS0 1996 All rights reserved. Unless otherwise specified, no part of this publication may be reproduced or utilized in any form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from
7、the publisher. International Organization for Standardization Case Postale 56 l CH-1211 Geneve 20 l Switzerland Printed in Switzerland ii INTERNATIONAL STANDARD 0 IS0 IS0 11041:1996(E) Workplace air - Determination of particulate arsenic and arsenic compounds and arsenic trioxide vapour - Method by
8、hydride generation and atomic absorption spectrometry WARNING - Arsenic and arsenic compounds are toxic and are recognized as human carcinogens (see reference 111 in annex A). Avoid any exposure by inhalation. Personal protection (e.g. an effective respirator) must be used in all cases where exposur
9、e to arsenic or arsenic compounds is possible. 1 Scope This International Standard specifies a method for the determination of the mass concentration of particulate arsenic and arsenic compounds and arsenic trioxide vapour in workplace air, using either continuous-flow hydride generation or flow-inj
10、ection-analysis hydride generation and atomic absorption spectrometry. The method is not suitable for determination of arsenic in the form of metal arsenides which decompose in the presence of water or acid (see 10.1). The method is applicable to the determination of masses of approximately 100 ng t
11、o 125 pg of arsenic per sample, for analysis of test solutions prepared using sample solution aliquots in the recommended range (see 9.3.2). The concentration range for arsenic in air, for which this procedure is applicable, is deter- mined in part by the sampling procedure selected by the user. The
12、 method is applicable to personal and fixed- location sampling. A number of transition metals may interfere with the determination of arsenic by hydride generation and atomic absorption spectrometry (see 10.3) this International Standard. At the time of publication, the editions indicated were valid
13、. All standards are subject to revision, and parties to agreements based on this International Standard are encouraged to in- vestigate the possibility of applying the most recent editions of the standards indicated below. Members of IEC and IS0 maintain registers of currently valid International St
14、andards. IS0 648:1977, Laboratory glassware - One-mark pipettes. IS0 1042:1983, Laboratory glassware - One-mark volumetric flasks. IS0 3585:1991, Borosilicate g/ass 3.3 - Properties. IS0 3696:1987, Water for analytical laboratory use - Specification and test methods. IS0 6955:1982, Analytical spectr
15、oscopic methods - Flame emission, atomic absorption and atomic fluorescence - Vocabulary. IS0 7708:1995, Air quality - Particle size fraction definitions for health-related sampling. IS0 8655-l :-I), Piston and/or plunger operated volumetric apparatus (POVA) - Part 1: Definitions. 2 Normative refere
16、nces The following standards contain provisions which, through reference in this text, constitute provisions of IS0 8655-2:-l), Piston and/or plunger operated volumetric apparatus (POVA) - Part2: Operating considerations. 1) To be published IS0 11041:1996(E) 0 IS0 IS0 8655-3:-l), Piston and/or plung
17、er operated volumetric apparatus (POVA) - Part3: Methods of test. IS0 8655-4:-l), Piston and/or plunger operated volumetric apparatus (POVA) - Part 4: Specifications. IS0 8756:1994, Air quality - Handling of tempera- ture, pressure and humidity data. EN 48211994, Workplace atmospheres - General requ
18、irements for the performance of procedures for the measurement of chemical agents. EN 482, CEN, Brussels, Belgium (1994). EN 1232:-l), Workplace atmospheres - Pumps for personal sampling of chemical agents - Require- men ts and test methods. 3 Principle 3.1 Particulate arsenic and arsenic compounds
19、and arsenic trioxide vapour are collected by drawing a measured volume of air through a cellulose ester membrane filter and a back-up paper pad impregnated with sodium carbonate and mounted in a sampler de- signed to collect the inhalable fraction of airborne par- ticles. 3.2 The cellulose ester mem
20、brane filter, back-up paper pad and collected sample are wet-ashed using nitric acid, sulfuric acid and hydrogen peroxide. The nitric acid and hydrogen peroxide are removed by boiling on a hotplate until dense, white fumes of sulfur trioxide are evolved, and the sample solution is then allowed to co
21、ol and diluted to a given volume with water. NOTE 1 The wet-ashing procedure specified in 8.2.2 is based upon a NIOSH procedure (see reference I21 in annex A) which has been modified to avoid taking the sample solution to dryness. 3.3 A test solution is prepared by transferring an aliquot of the sam
22、ple solution to a volumetric flask, together with appropriate volumes of dilute sulfuric acid, concentrated hydrochloric acid and potassium iodide solution, and diluting to volume with water. 3.4 The test solution is reacted with sodium tetra- hydroborate solution in a continuous-flow hydride genera
23、tion system or flow-injection-analysis hydride generation system to liberate arsine and hydrogen. These gaseous products are separated from the reaction liquid in a gas/liquid separator and carried by an inert purge gas into a silica or quartz absorption cell. This absorption cell is mounted in the
24、optical path of an atomic absorption spectrometer equipped with an arsenic hollow cathode lamp or electrodeless dis- charge lamp, and it is heated either electrically or by an oxidizing air/acetylene flame. NOTE 2 This international Standard describes the use of two types of hydride generation syste
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