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GB/T 5828: Historical versions
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Pure xenon, high purity xenon and ultra pure xenon
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| GB/T 5828-2006 | English | 239 |
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Xenon
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Xenon
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Basic data
| Standard ID | GB/T 5828-2025 (GB/T5828-2025) |
| Description (Translated English) | Pure xenon, high purity xenon and ultra pure xenon |
| Sector / Industry | National Standard (Recommended) |
| Classification of Chinese Standard | G86 |
| Classification of International Standard | 71.100.20 |
| Word Count Estimation | 14,164 |
| Date of Issue | 2025-08-29 |
| Date of Implementation | 2026-03-01 |
| Older Standard (superseded by this standard) | GB/T 5828-2006 |
| Issuing agency(ies) | State Administration for Market Regulation; Standardization Administration of China |
GB/T 5828-2025: Pure xenon, high purity xenon and ultra pure xenon
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ICS 71.100.20
CCSG86
National Standards of the People's Republic of China
Replaces GB/T 5828-2006
Pure xenon, high-purity xenon, and ultra-pure xenon
Published on 2025-08-29
Implemented on 2026-03-01
State Administration for Market Regulation
The State Administration for Standardization issued a statement.
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 5828-2006 "Xenon". Compared with GB/T 5828-2006, apart from structural adjustments and editorial changes, the main differences are as follows.
The technological changes are as follows.
---Content related to the uses, properties, molecular formula, and relative molecular weight of xenon has been removed from the scope (see Chapter 1,.2006 edition).
Chapter 1);
---The line about grading has been deleted, a requirement for 99.9999% purity xenon has been added, a requirement for total impurity content has been added, and some other changes have been made.
Limits for impurity content (see Chapter 4, Chapter 3 of the.2006 edition);
---The requirements for xenon gas sampling and sampling safety have been changed (see Chapter 5, 4.1.2 of the.2006 edition);
---The method for calculating xenon purity has been changed (see 6.1, 4.2 in the.2006 edition);
---The method for determining the hydrogen content in xenon gas has been changed (see 6.2, 4.4 of the.2006 edition);
---The methods for determining the carbon monoxide, carbon dioxide, and methane content in xenon gas have been revised (see 6.2, 4.5 of the.2006 edition);
---The method for determining moisture content has been changed (see 6.3, 4.6 in the.2006 edition);
---Requirements for exhaust gas treatment have been added (see 6.4);
---The requirements of the inspection rules have been changed, and provisions for rounding off numerical values have been added (see 7.1);
---Added labeling requirements (see 8.2);
---Added requirements for accompanying documents (see 8.3);
---The regulations for packaging, filling, transportation, and storage have been changed, and requirements for liquid xenon have been added (see Chapter 9,.2006 edition).
Chapter 5);
---Added safety information for xenon (see Chapter 10);
---The section on determining the content of nitrogen, oxygen, argon, krypton, nitrous oxide, and fluoride in xenon using helium ionization gas chromatography has been removed.
For a detailed description of the specific determination method, please refer to Appendix A of the.2006 edition.
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 by the China Petroleum and Chemical Industry Federation.
This document is under the jurisdiction of the National Technical Committee on Gas Standardization (SAC/TC206).
This document was drafted by. Quzhou Hangyang Special Gases Co., Ltd., Dalian Date Gases Co., Ltd., and Southwest Chemical Research and Design Institute Co., Ltd.
The company, Haohua Gas Co., Ltd. Southwest Branch, Shanghai Qiyuan Gas Development Co., Ltd., Guangxi Jinchuan Xinrui Gas Co., Ltd., Shanghai Fan
Wei Instrument Equipment Co., Ltd., Beijing Shougang Gas Co., Ltd., Shanghai Huaai Chromatography Analysis Technology Co., Ltd., Beijing Institute of Control Engineering
Hebei Handan Iron & Steel Specialty Gases Co., Ltd., Yude Gas Co., Ltd., Beijing PURE Analytical Instruments Co., Ltd., and Henan Xinlianxin Cryogenic Energy
Source Co., Ltd., China Shipbuilding (Handan) Peri Special Gases Co., Ltd., Jining Municipal Institute of Quality and Metrology Inspection and Testing, Hangzhou Xinshi
Ji Mixed Gas Co., Ltd., and the School of Modern Science and Technology, China Jiliang University.
The main drafters of this document are. Li Fufen, Guo Yingge, Na Zhaoyu, Hu Ying, Chen Yali, Cao Lei, Tang Xiamei, Lai Xiaofeng, Fang Hua, and Yu Jun.
Tao Senlin, He Bo, Cui Xiaojun, Tang Zhongwei, Song Fei, Fan Chao, Ma Weidong, Chen Libin, Sun Riguang, Shi Lan, Cui Zengtao, Zheng Mengjie, Su Zijie, Chen Chen
Yin Jinzhe, Li Yan, Li Changxing, Du Weidong, Ren Chao.
The release history of this document and the document it replaces is as follows.
---First published in 1986 as GB/T 5828-1986 "Pure Xenon";
---First revised in.1995 as GB/T 5828-1995 "Xenon", and incorporated into GB/T 5830-1986 "Testing of Pure Krypton and Pure Xenon".
The content of the "Methods" (GB/T 5830-1986 was the first publication);
---Revised for the second time in.2006 as GB/T 5828-2006 "Xenon";
---This is the third revision.
Pure xenon, high-purity xenon, and ultra-pure xenon
1.Scope
This document specifies the technical requirements for pure xenon, high-purity xenon, and ultra-pure xenon, as well as sampling, inspection rules, marking, labeling, accompanying documents, and packaging.
The requirements for filling, transporting, and storing xenon are described, along with relevant test methods and safety information.
This document applies to pure xenon, high-purity xenon, and ultra-pure xenon prepared by cryogenic separation and purification from air.
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/T 150 (All Parts) Pressure Vessels
GB 190 Packaging Marks for Dangerous Goods
GB/T 191 Pictorial Symbols for Packaging and Storage
GB/T 4844 Pure Helium, High-Purity Helium and Ultra-Purity Helium
GB/T 4946 Gas Chromatography Terminology
GB/T 5099 (all parts) Seamless steel gas cylinders
GB/T 5832.1 Gas analysis – Determination of trace moisture – Part 1.Electrolysis
GB/T 5832.2 Gas analysis – Determination of trace moisture – Part 2.Dew point method
GB/T 5832.3 Gas Analysis - Determination of Trace Moisture in Gases - Part 3.Cavity Ring-down Spectroscopy
GB/T 5832.4 Gas analysis – Determination of trace moisture – Part 4.Quartz crystal oscillation method
GB 6388 Transport Packaging Receipt and Delivery Marks
GB/T 7144 Color Marking for Gas Cylinders
GB/T 8170 Rules for rounding off numerical values and the representation and determination of limiting values
GB/T 11640 Seamless Aluminum Alloy Gas Cylinders
GB/T 14193 Regulations for Filling Liquefied Gas Cylinders
GB/T 14850 Glossary of Gas Analysis
GB 15258 Regulations for Writing Safety Labels for Chemicals
GB/T 16483 Contents and Item Order of Safety Data Sheets for Chemicals
GB/T 16804 Warning Labels for Gas Cylinders
GB/T 24159 Welded Insulated Gas Cylinders
GB/T 28054 Seamless steel gas cylinder bundling device
GB/T 28726 Gas Analysis - Helium Ionization Gas Chromatography
GB/T 30685 Technical requirements for upright road transportation of gas cylinders
GB/T 34525 Safety Regulations for Handling, Loading, Unloading, Storage and Use of Gas Cylinders
GB/T 43306 Sampling Guidelines for Gas Analysis
JB/T 6898 Safety Rules for the Use of Cryogenic Liquid Storage and Transportation Equipment
TSGR0005 Safety Technical Supervision Regulations for Mobile Pressure Vessels
TSG23 Gas Cylinder Safety Technical Regulations
3.Terms and Definitions
The terms and definitions defined in GB/T 4946 and GB/T 14850 apply to this document.
4.Technical Requirements
The technical requirements for pure xenon and high-purity xenon shall comply with the provisions of Table 1.
Table 1 Technical Requirements
project
index
Pure xenon, high-purity xenon, ultra-pure xenon
Xenon (Xe) purity (mole fraction). ≥99.99% ≥99.995% ≥99.999% ≥99.9995% ≥99.9999%
Nitrogen (N2) content (mole fraction). ≤20×10⁻⁶, ≤9×10⁻⁶, ≤2.5×10⁻⁶, ≤1.5×10⁻⁶, ≤0.2×10⁻⁶
[Oxygen (O2) Argon (Ar)] content (mole fraction) ≤5×10-6 ≤4×10-6 ≤1.5×10-6 ≤0.5×10-6 ≤0.2×10-6
Hydrogen (H2) content (mole fraction). ≤2×10⁻⁶ ≤1×10⁻⁶ ≤0.5×10⁻⁶ ≤0.5×10⁻⁶ ≤0.1×10⁻⁶
Carbon monoxide (CO) content (mole fraction). ≤1×10⁻⁶, ≤0.4×10⁻⁶, ≤0.2×10⁻⁶, ≤0.1×10⁻⁶, ≤0.05×10⁻⁶
Carbon dioxide (CO2) content (mole fraction). ≤1×10⁻⁶, ≤0.8×10⁻⁶, ≤0.3×10⁻⁶, ≤0.1×10⁻⁶, ≤0.05×10⁻⁶
Methane (CH4) content (mole fraction). ≤1×10⁻⁶, ≤0.8×10⁻⁶, ≤0.3×10⁻⁶, ≤0.1×10⁻⁶, ≤0.05×10⁻⁶
Moisture (H2O) content (mole fraction) ≤3×10⁻⁶ ≤3×10⁻⁶ ≤2×10⁻⁶ ≤1×10⁻⁶ ≤0.1×10⁻⁶
Krypton (Kr) content (mole fraction) ≤50×10⁻⁶ ≤20×10⁻⁶ ≤2×10⁻⁶ ≤1×10⁻⁶ ≤0.15×10⁻⁶
Nitrous oxide (N₂O) content (mole fraction). ≤2×10⁻⁶, ≤1×10⁻⁶, ≤0.2×10⁻⁶, ≤0.1×10⁻⁶, ≤0.05×10⁻⁶
Fluoride content [as shown by hexafluoroethane]
[C2F6 Content Meter] (Mole Fraction)
≤15×10⁻⁶ ≤10×10⁻⁶ ≤0.5×10⁻⁶ ≤0.1×10⁻⁶ ≤0.05×10⁻⁶
Total impurity content (mole fraction) ≤100×10⁻⁶ ≤50×10⁻⁶ ≤10×10⁻⁶ ≤5×10⁻⁶ ≤1×10⁻⁶
5.Sampling
It should comply with the provisions of GB/T 43306.
6.Test Methods
Warning---Some of the testing procedures specified in this document may lead to hazardous situations. Users should take appropriate safety and health precautions.
measure.
...