ISO 27368-2008 Analysis of blood for asphyxiant toxicants - Carbon monoxide and hydrogen cyanide《导致窒息有毒物的血液分析 一氧化碳和氰化氢》.pdf
《ISO 27368-2008 Analysis of blood for asphyxiant toxicants - Carbon monoxide and hydrogen cyanide《导致窒息有毒物的血液分析 一氧化碳和氰化氢》.pdf》由会员分享,可在线阅读,更多相关《ISO 27368-2008 Analysis of blood for asphyxiant toxicants - Carbon monoxide and hydrogen cyanide《导致窒息有毒物的血液分析 一氧化碳和氰化氢》.pdf(64页珍藏版)》请在麦多课文档分享上搜索。
1、 Reference number ISO 27368:2008(E) ISO 2008INTERNATIONAL STANDARD ISO 27368 First edition 2008-08-15 Analysis of blood for asphyxiant toxicants Carbon monoxide and hydrogen cyanide Analyse du sang pour substances toxiques asphyxiantes Monoxyde de carbone et acide cyanhydrique ISO 27368:2008(E) PDF
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5、PROTECTED DOCUMENT ISO 2008 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 either ISO at the address below or IS
6、Os member body in the country of the requester. ISO copyright office Case postale 56 CH-1211 Geneva 20 Tel. + 41 22 749 01 11 Fax + 41 22 749 09 47 E-mail copyrightiso.org Web www.iso.org Published in Switzerland ii ISO 2008 All rights reservedISO 27368:2008(E) ISO 2008 All rights reserved iii Conte
7、nts Page Foreword iv Introduction v 1 Scope . 1 2 Normative references . 1 3 Terms and definitions. 2 4 Symbols and abbreviated terms . 5 5 Blood samples 6 5.1 General. 6 5.2 Sample condition 6 5.3 Sample collection . 6 5.4 Sample storage . 7 5.5 Sample analysis 7 6 Materials 7 7 Common quality anal
8、ytical elements 7 7.1 General. 7 7.2 Qualitative, quantitative and confirmatory analyses 7 7.3 Replicate analyses 7 7.4 Analytical batch 8 7.5 Open controls 8 7.6 Calibrators . 8 8 Measurement of CO in blood as COHb. 8 8.1 COHb by whole-blood oximeters 8 8.2 COHb by palladium chloride reduction 10 8
9、.3 COHb by visible spectrophotometry (using calibration curve) . 12 8.4 COHb by visible spectrophotometry (with CO saturation). 14 8.5 COHb by visible spectrophotometry (without CO saturation) . 16 8.6 COHb by headspace gas chromatography Nickel-hydrogen reduction and flame ionization detection 19 8
10、.7 COHb by headspace gas chromatography Thermal conductivity detection. 22 9 Measurement of HCN in blood as CN 23 9.1 CN by colourimetric method (p-nitrobenzaldehyde and o-dinitrobenzene) 23 9.2 CN by visible spectrophotometry 25 9.3 CN as HCN by headspace gas chromatography Nitrogen phosphorous det
11、ection 29 9.4 CN by headspace gas chromatography Electron capture detection 31 9.5 CN by spectrophotofluorimetry or high-performance liquid chromatography using a fluorescence detector. 33 9.6 CN by high-performance liquid chromatographymass spectrometry. 37 Annex A (normative) Analytical report pro
12、 forma. 41 Annex B (informative) Additional aspects of analytical methods . 43 Annex C (informative) Interpretation of results. 47 Bibliography . 52 ISO 27368:2008(E) iv ISO 2008 All rights reservedForeword ISO (the International Organization for Standardization) is a worldwide federation of nationa
13、l 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 established has the right to be represented on that committee. Internation
14、al 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 standardization. International Standards are drafted in accordance with the rules
15、 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. Publication as an International Standard requires approval by at le
16、ast 75 % of the member bodies casting a vote. Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. ISO shall not be held responsible for identifying any or all such patent rights. ISO 27368 was prepared by Technical Committee ISO/TC 92
17、, Fire safety, Subcommittee SC 3, Fire threat to people and environment. ISO 27368:2008(E) ISO 2008 All rights reserved v Introduction Carbon monoxide (CO) and hydrogen cyanide (HCN) are two of the primary toxic combustion gases present in fire atmospheres. Upon burning, carbon-containing substances
18、 generate CO, whereas nitrogen-containing substances also produce HCN. Since structures surrounding human beings are composed of polymeric materials containing carbon and nitrogen elements as their constituents, these materials generate CO and HCN upon burning and fire victims are exposed to these g
19、ases by inhaling smoke. Although ISO 19701 documents methods for the analysis of CO and HCN in fire effluents, the actual toxic insult to exposed persons can be assessed only by the analysis of the fire casualties blood for CO as carboxyhaemoglobin (COHb) and HCN as cyanide ion (CN ). These analytic
20、al findings are useful for estimating life-threatening characteristics of fire atmospheres, evaluating the degree of toxicity caused by smoke inhalation in fire victims, determining the cause and manner of death of fire victims, improving understanding of the direct causes of fire injury and death,
21、enhancing understanding of acute and delayed adverse effects of smoke on fire casualties, administering immediate treatment for smoke poisoning and monitoring delayed adverse effects of smoke, choosing appropriate emergency, long-term and/or follow-up treatments for surviving fire casualties, settin
22、g priorities for emergency treatment of multiple fire casualties, establishing relationships between the concentrations of CO and HCN in a fire atmosphere, blood COHb and CN levels, and the degree of toxicity and performance impairment, achieving correlations between concentrations of the two gases
23、in fire atmospheres and of COHb and CN in blood in order to improve tenability models, identifying deficiencies with materials, products, assemblies, structures and escape routes, and improving forensic toxicology analytical processes and procedures. Compliance with this International Standard can h
24、elp ensure a consistent data set for use in a variety of fields such as a) fire statistics, which themselves are frequently used to develop regulatory policy, b) international collaboration on improved design, materials and use of habitable structures, and, c) ultimately, improvement of internationa
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