GB/T 14502-2025Analytical method for nickel-63 in water (English PDF)
水中镍-63的分析方法
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Issued by
State Administration for Market Regulation; Standardization Administration of China
Level / Type
National · Recommended
Issue date
October 5, 2025
Implementation date
May 1, 2026
Scope
GB/T 14502-2025 is the English-translated version of 水中镍-63的分析方法.
GB/T 14502-2025 is the Chinese national standard on analytical method for nickel-63 in water, in the field of energy and heat transfer engineering. The /T suffix marks it as a recommended standard: it is not compulsory by itself, but it becomes binding as soon as a contract, a tender or a customer specification calls it up - which in practice is how most foreign buyers meet it. It was issued on 5 October 2025 by the State Administration for Market Regulation; Standardization Administration of China, and has been in force since 1 May 2026. Classification: ICS 27.120.99, CCS F 46. This page is published from the official record of the standard held by the Chinese standards administration: the identification, the dates, the classification and the issuing body are taken from there. The clause text, the tables and the numeric limits are in the document itself, which is delivered complete in English translation.
Document preview — GB/T 14502-2025
National Standard of the People's Republic of China
- ICS
- 27.120.99
- Classification
- F 46
Issued by: State Administration for Market Regulation; Standardization Administration of China
Contents
- 1.Scope1
- 2 Normative References1
- 3.Terms and Definitions1
- 4.Principle1
- 5.Reagents or materials2
- 6.Instruments and Equipment 2 7 samples3
- 8.Experimental Steps3
- 9.Experimental Data Processing5
- 9 Appendix C (Informative) Instructions for Drawing and Using Quenching Correction Curves10
Foreword
This document complies with the provisions of GB/T 1.1-2020 "Standardization Work Guidelines Part
1.Structure and Drafting Rules of Standardization Documents". Drafting. This document replaces GB/T 14502-1993 "Analytical Methods for Nickel-63 in Water". Compared with GB/T 14502-1993, the only changes are structural adjustments. Aside from editorial changes, the main technical changes are as follows:
---The method for measuring chemical recovery has been changed, and the calculation formula is given (see 8.5,
7.7 of the.1993 edition);
---Added "Calculation Formula for Detection Efficiency" and "Calculation Formula for Method Detection Limit" (see
---Added "Quality Assurance and Control" (see 10.1, 10.2). Please note that some content in this document may involve patents. The issuing organization of this document assumes no responsibility for identifying patents. This document was proposed and is under the jurisdiction of the National Nuclear Energy Standardization Technical Committee (SAC/TC58). This document was drafted by the China Institute of Atomic Energy and China Nuclear Power Engineering Co., Ltd. The main drafters of this document are. Lou Hailin, Qin Wenchao, Cong Rili, Xie Yongji, Zheng Yifan, Wen Wen, Wang Xin, Pan Jingshun, Wang Shaolin, and Luo Zhiping. Chen Ling, Pang Hongchao, Ren Lixia, Qu Lili, Li Jiarui, Jia Xuan, Ni Wangmuhong. The release history of this document and the document it replaces is as follows:
---First published in.1993 as GB/T 14502-1993;
---This is the first revision. Analytical methods for nickel-63 in water
1 Scope
GB/T 14502-2025 is the Chinese national standard on analytical method for nickel-63 in water, in the field of energy and heat transfer engineering. The /T suffix marks it as a recommended standard: it is not compulsory by itself, but it becomes binding as soon as a contract, a tender or a customer specification calls it up - which in practice is how most foreign buyers meet it. It was issued on 5 October 2025 by the State Administration for Market Regulation; Standardization Administration of China, and has been in force since 1 May 2026. Classification: ICS 27.120.99, CCS F 46. This page is published from the official record of the standard held by the Chinese standards administration: the identification, the dates, the classification and the issuing body are taken from there. The clause text, the tables and the numeric limits are in the document itself, which is delivered complete in English translation.
This document describes the analytical method for nickel-63 in water, including the principle, reagents or materials, instruments and equipment, samples, experimental procedures, and experimental data. Processing, quality assurance, and control, etc. This document applies to the analysis of nickel-63 in surface water, groundwater, drinking water, and liquid effluents from nuclear facilities. The detection limit of this method for nickel-63 in water under typical conditions is given in Appendix A.
2 Normative references
The contents of the following documents, through normative references within the text, constitute essential provisions of this document. Dated citations are not included. For references to documents, only the version corresponding to that date applies to this document; for undated references, the latest version (including all amendments) applies. This document.
GB 8999 General Requirements for Quality Assurance of Ionizing Radiation Monitoring
GB/T 10259 Liquid Scintillation Counter
GB 12379 Regulations for Environmental Nuclear Radiation Monitoring JJG694 Atomic Absorption Spectrophotometer HJ
61 Technical Specification for Radiation Environment Monitoring
3 Terms and Definitions
The following terms and definitions apply to this document.
3.1 Quenching All of these interferences affect the process of converting X-ray energy into fluorescence released in the counting bottle, leading to a decrease in counting efficiency.
3.2 The value indicating the quenching level of the sample.
Note. Due to the different models of liquid scintillation counters used, the quenching parameters commonly used are the external standard quenching indication parameter [SQP(E)] and the external standard conversion index (tSIE). The numerical values of the Sample Spectrum Index (SIS), etc.
3.3 stability The ability of a measuring instrument to maintain its metrological characteristics constant over time.
Note. The stability of a measuring instrument is judged by examining whether a set of repeated measurements follows a Poisson distribution.
3.4 Figure of merit; FOM A quantitative indicator characterizing the measurement performance of a liquid scintillation counter for a specific sample system.
Note. This is obtained by dividing the square of the detection efficiency (E×100) by the background count rate.
4.Principles Nickel carrier was added to the water sample, and nickel was concentrated as a hydroxide precipitate. The nickel was then extracted with tri-n-octylamine-toluene and complexed with dimethylglyoxime to remove the nickel.
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This preview omits tables, figures, formulas and parts of the technical clauses. The complete document — 14 pages — is available in the English PDF.
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Editions of GB/T 14502
| Edition | Title | Revision | Status |
|---|---|---|---|
| GB/T 14502-2025 | Analytical method for nickel-63 in water | current edition | Current |
| GB/T 14502-1993 | method of nickel-63 in water | previous edition | Superseded |
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