BS ISO 13168-2015 Water quality Simultaneous determination of tritium and carbon 14 activities Test method using liquid scintillation counting《水质 氚和碳14活性的同时测定 液体闪烁计数试验方法》.pdf
《BS ISO 13168-2015 Water quality Simultaneous determination of tritium and carbon 14 activities Test method using liquid scintillation counting《水质 氚和碳14活性的同时测定 液体闪烁计数试验方法》.pdf》由会员分享,可在线阅读,更多相关《BS ISO 13168-2015 Water quality Simultaneous determination of tritium and carbon 14 activities Test method using liquid scintillation counting《水质 氚和碳14活性的同时测定 液体闪烁计数试验方法》.pdf(28页珍藏版)》请在麦多课文档分享上搜索。
1、BSI Standards PublicationBS ISO 13168:2015Water quality Simultaneousdetermination of tritiumand carbon 14 activities Test method using liquidscintillation countingBS ISO 13168:2015 BRITISH STANDARDNational forewordThis British Standard is the UK implementation of ISO 13168:2015.The UK participation
2、in its preparation was entrusted to TechnicalCommittee EH/3/8, Radioactivity measurements methods.A list of organizations represented on this committee can beobtained on request to its secretary.This publication does not purport to include all the necessaryprovisions of a contract. Users are respons
3、ible for its correctapplication. The British Standards Institution 2015. Published by BSI StandardsLimited 2015ISBN 978 0 580 81173 9ICS 13.060.60; 13.280Compliance with a British Standard cannot confer immunity fromlegal obligations.This British Standard was published under the authority of theStan
4、dards Policy and Strategy Committee on 31 July 2015.Amendments issued since publicationDate Text affectedBS ISO 13168:2015 ISO 2015Water quality Simultaneous determination of tritium and carbon 14 activities Test method using liquid scintillation countingQualit de leau Dtermination simultane des act
5、ivits volumiques du tritium et du carbone 14 Mthode par comptage des scintillations en milieu liquideINTERNATIONAL STANDARDISO13168First edition2015-07-01Reference numberISO 13168:2015(E)BS ISO 13168:2015ISO 13168:2015(E)ii ISO 2015 All rights reservedCOPYRIGHT PROTECTED DOCUMENT ISO 2015, Published
6、 in SwitzerlandAll rights reserved. Unless otherwise specified, no part of this publication may be reproduced or utilized otherwise in any form or by any means, electronic or mechanical, including photocopying, or posting on the internet or an intranet, without prior written permission. Permission c
7、an be requested from either ISO at the address below or ISOs member body in the country of the requester.ISO copyright officeCh. de Blandonnet 8 CP 401CH-1214 Vernier, Geneva, SwitzerlandTel. +41 22 749 01 11Fax +41 22 749 09 47copyrightiso.orgwww.iso.orgBS ISO 13168:2015ISO 13168:2015(E)Foreword iv
8、Introduction v1 Scope . 12 Normative references 13 Symbols, definitions and units . 24 Principle 35 Reagents and equipment . 35.1 Reagents 45.1.1 Water for the blank 45.1.2 Calibration source solutions 45.1.3 Scintillation solution. 45.1.4 Quenching agent. 55.2 Equipment . 55.2.1 Liquid scintillatio
9、n counter 55.2.2 Counting vials . 56 Sampling and samples 66.1 Sampling . 66.2 Sample storage 67 Procedure. 67.1 Sample preparation 67.2 Preparation of the sources to be measured . 67.3 Counting procedure 67.3.1 General 67.3.2 Control and calibration. 77.3.3 Measurement conditions 87.3.4 Interferenc
10、e control 88 Expression of results 88.1 General . 88.2 Activity concentration of tritium . 98.3 Activity concentration of carbon 14 . 98.4 Combined standard uncertainty for tritium . 108.5 Combined standard uncertainty for carbon 14 . 118.6 Decision threshold for tritium 118.7 Decision threshold for
11、 carbon 14 118.8 Detection limit for tritium 128.9 Detection limit for carbon 14 128.10 Confidence interval limits. 128.11 Calculations using the activity per unit of mass 139 Test report 13Annex A (informative) Example 14Bibliography .16 ISO 2015 All rights reserved iiiContents PageBS ISO 13168:201
12、5ISO 13168:2015(E)ForewordISO (the International Organization 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 subj
13、ect for which a technical committee has been established 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 (IE
14、C) on all matters of electrotechnical standardization.The procedures used to develop this document and those intended for its further maintenance are described in the ISO/IEC Directives, Part 1. In particular the different approval criteria needed for the different types of ISO documents should be n
15、oted. This document was drafted in accordance with the editorial rules of the ISO/IEC Directives, Part 2. www.iso.org/directivesAttention 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
16、or all such patent rights. Details of any patent rights identified during the development of the document will be in the Introduction and/or on the ISO list of patent declarations received. www.iso.org/patentsAny trade name used in this document is information given for the convenience of users and
17、does not constitute an endorsement.For an explanation on the meaning of ISO specific terms and expressions related to conformity assessment, as well as information about ISOs adherence to the WTO principles in the Technical Barriers to Trade (TBT) see the following URL: Foreword - Supplementary info
18、rmationThe committee responsible for this document is ISO/TC 147, Water quality, Subcommittee SC3 Radioactivity measurements.iv ISO 2015 All rights reservedBS ISO 13168:2015ISO 13168:2015(E)IntroductionRadioactivity from several naturally-occurring and anthropogenic sources is present throughout the
19、 environment. Thus, water bodies (e.g. surface waters, ground waters, sea waters) can contain radionuclides of natural, human-made, or both origins: natural radionuclides, including potassium 40, tritium, carbon 14, and those originating from the thorium and uranium decay series, in particular radiu
20、m 226, radium 228, uranium 234, uranium 238, lead 210, can be found in water for natural reasons (e.g. desorption from the soil and wash-off by rain water) or can be released from technological processes involving naturally occurring radioactive materials (e.g. the mining and processing of mineral s
21、ands or phosphate fertilizer production and use); human-made radionuclides, such as transuranium elements (americium, plutonium, neptunium, curium), tritium, carbon 14, strontium 90 and gamma emitting radionuclides can also be found in natural waters as a result of authorized routine releases into t
22、he environment in small quantities in the effluent discharged from nuclear fuel cycle facilities. They are also released into the environment following their use in unsealed form for medical and industrial applications. They are also found in the water as a result of past fallout contamination resul
23、ting from the explosion in the atmosphere of nuclear devices and accidents such as those that occurred in Chernobyl and Fukushima.Drinking-water may thus contain radionuclides at activity concentrations which could present a risk to human health. In order to assess the quality of drinking-water (inc
24、luding mineral waters and spring waters) with respect to its radionuclide content and to provide guidance on reducing health risks by taking measures to decrease radionuclide activity concentrations, water resources (groundwater, river, lake, sea, etc.) and drinking water are monitored for their rad
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