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Natural gas - Determination of composition and associated uncertainty by gas chromatography - Part 7: Rapid determination of helium content using two packed columns
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GB/T 27894.7-2025
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Basic data | Standard ID | GB/T 27894.7-2025 (GB/T27894.7-2025) | | Description (Translated English) | Natural gas - Determination of composition and associated uncertainty by gas chromatography - Part 7: Rapid determination of helium content using two packed columns | | Sector / Industry | National Standard (Recommended) | | Classification of Chinese Standard | E24 | | Classification of International Standard | 75.060 | | Word Count Estimation | 18,138 | | Date of Issue | 2025-08-29 | | Date of Implementation | 2026-03-01 | | Issuing agency(ies) | State Administration for Market Regulation; Standardization Administration of China |
GB/T 27894.7-2025: Natural gas - Determination of composition and associated uncertainty by gas chromatography - Part 7: Rapid determination of helium content using two packed columns ---This is an excerpt. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.), auto-downloaded/delivered in 9 seconds, can be purchased online: https://www.ChineseStandard.net/PDF.aspx/GBT27894.7-2025
ICS 75.060
CCSE24
National Standards of the People's Republic of China
Composition and calculation of natural gas by gas chromatography
Related Uncertainties, Part 7.Using Two Filling Columns
Rapid determination of helium content
packedcolumns
Published on 2025-08-29
Implemented on 2026-03-01
State Administration for Market Regulation
The State Administration for Standardization issued a statement.
Table of Contents
Preface III
Introduction IV
1.Scope 1
2 Normative References 1
3.Terms and Definitions 1
4.Principle 1
5.Reagents and Materials 2
6.Instruments and Equipment 2
7 Sample Collection 3
8.Sample Analysis and Testing 3.
9 Data Processing 4
10 Precision 5
11 Test Report 5
Appendix A (Informative) Example 7 of Rapid Determination of Helium Content Using Gas Chromatography with Two Packed Columns
Appendix B (Informative) Evaluation of Measurement Uncertainty in Helium Content Determination Results 9
Appendix C (Informative) Test Report Reference Format 11
References 12
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 is Part 7 of GB/T 27894 "Determination of Composition and Calculation of Related Uncertainties of Natural Gas by Gas Chromatography".
GB/T 27894 has published the following parts.
---Part 1.General Guidelines and Composition Calculations;
---Part 2.Uncertainty Calculation;
---Part 3.Precision and Bias;
---Part 4.Determination of nitrogen, carbon dioxide, and C1 to C5 and C6 molecules using two chromatographic columns in laboratory and online measurement systems
Hydrocarbons;
---Part 5.Determination of nitrogen, carbon dioxide, and C1 to C5 and C6 atoms using three chromatographic columns in laboratory and online process systems
Hydrocarbons;
---Part 6.Determination of hydrogen, helium, oxygen, nitrogen, carbon dioxide, and C1 to C8 hydrocarbons using a three-capillary column;
---Part 7.Rapid determination of helium content using two packed columns.
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 Technical Committee on Standardization of Natural Gas (SAC/TC244).
This document was drafted by. Exploration and Development Research Institute of China National Petroleum Corporation (CNPC) and CNPC West Coast Institute of Petroleum Corporation (CNPC West Coast Institute of Petroleum).
Southwest Oil & Gas Field Branch Natural Gas Research Institute, China National Petroleum Corporation Southwest Oil & Gas Field Branch Exploration and Development Research Institute, China
Southwest Oil and Gas Field Branch of China National Petroleum Corporation (Chengdu Natural Gas Chemical Plant) and Southwest Oil and Gas Field Branch of China Petroleum & Chemical Corporation (Sinopec)
Gas Branch Company, China Testing Technology Research Institute, China University of Petroleum (Beijing), Shaanxi Yanchang Petroleum (Group) Co., Ltd. Research Institute.
The main drafters of this document are. Wang Xiaomei, Wang Xiaobo, Wang Huitong, Li Zhisheng, Xiong Dequan, Li Jian, Zhang Bin, Hou Lianhua, Chen Yong, Li Nong, and Song Kejing.
Wang Li, Gao Lixin, He Kun, Liang Ying, Pan Yi, Deng Fanfeng, Chen Jianfa, Cui Huiying, Yang Chunlong, Wan Ying, Deng Xiaofeng, Chen Lin, Gu Jinghua, Guo Jintao.
introduction
GB/T 27894 provides methods for natural gas analysis and for calculating the mole fraction and uncertainty of components, intended for use in measuring H2, He, and other components.
N2, CO2, and hydrocarbon components, as well as component clusters, are analyzed, where component clusters are determined by uniformly classifying heavy components with C5 or higher as C6.This method is applicable to various...
Applications include determining the composition of calibration gas mixtures and natural gas, or providing uncertainty data for calorific value calculations and other physical property calculations.
GB/T 27894 is proposed to consist of 7 parts.
---Part 1.General Guidelines and Composition Calculations. This section aims to provide general guidelines and composition calculations for the analysis of natural gas using gas chromatography.
Data processing methods for mole fraction determination.
---Part 2.Uncertainty Calculation. This section describes the steps for calculating the uncertainty of the mole fraction of each component.
---Part 3.Precision and Bias. This section aims to describe the expected precision of gas chromatography methods established according to ISO 6974-1, in order to...
And provide guidelines for assessing biases.
---Part 4.Determination of nitrogen, carbon dioxide, and C1 to C5 and C6 hydrocarbons using two chromatographic columns in laboratory and online measurement systems
This class aims to provide methods for determining nitrogen, carbon dioxide, and [other substances] using gas chromatography with two columns in laboratory and online measurement systems.
Methods for C1 to C5 and C6 hydrocarbon components.
---Part 5.Determination of nitrogen, carbon dioxide, and C1 to C5 and C6 hydrocarbons using three chromatographic columns in laboratory and online process systems
This class aims to provide methods for determining nitrogen, carbon dioxide, and [other substances] using gas chromatography with three columns in laboratory and online process systems.
Methods for C1 to C5 and C6 hydrocarbon components.
---Part 6.Determination of hydrogen, helium, oxygen, nitrogen, carbon dioxide, and C1 to C8 hydrocarbons using a three-capillary column. The aim is to provide sampling...
Gas chromatography using three capillary columns was employed to determine hydrogen, helium, oxygen, nitrogen, carbon dioxide, and C1 to C8 hydrocarbon components.
method.
---Part 7.Rapid Determination of Helium Content Using Two Packed Columns. This section aims to provide a rapid method for determining helium content using two packed columns in gas chromatography.
Methods for determining helium content.
Helium is a globally important strategic resource, playing an irreplaceable role in the development of cutting-edge technologies such as aerospace, nuclear energy, and cryogenic superconductivity.
Function. Accurate determination of helium content is crucial to the accuracy of helium resource assessment results and the reliability of subsequent extraction engineering design. Currently, there are...
National or industry standards related to natural gas component analysis mainly target the dominant hydrocarbon components in natural gas, and the helium content in natural gas.
The quantitative analysis range is relatively narrow, the instrument configuration is complex, the detection time is long, and the analysis conditions are wide, making it difficult to quickly and accurately evaluate helium abundance and resource potential.
This presents significant challenges, including process upgrades. Therefore, establishing stable and reliable standards for rapid analysis methods of helium component content is crucial for different testing instruments.
The analytical data from these structures can be compared with each other, whether for an accurate assessment of helium composition and resource potential, or for evaluating the level of helium production technology.
The improvement of these aspects is of great significance.
Composition and calculation of natural gas by gas chromatography
Related Uncertainties, Part 7.Using Two Filling Columns
Rapid determination of helium content
Warning. This document does not address all potential security issues. Users are responsible for taking appropriate security and protective measures and ensuring compliance.
It meets the conditions stipulated by relevant national laws and regulations.
1.Scope
This document describes a method for the rapid determination of helium content using gas chromatography with two packed columns.
This document applies to different types of natural gas and similar gases, including wellhead natural gas, pipeline natural gas, processing plant feedstock gas, and processed natural gas.
Rapid determination of helium content in a mixture of gases with a mole fraction ranging from 0.005% to 40%.
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 4946 Gas Chromatography Terminology
GB/T 13609 Natural Gas Sampling Guidelines
GB/T 14850 Glossary of Gas Analysis
GB/T 20604 Natural Gas Vocabulary
GB/T 27894.1 Determination of Composition and Calculation of Related Uncertainties of Natural Gas by Gas Chromatography - Part 1.General Guidelines and Composition
calculate
GB/T 27894.2 Determination of Composition of Natural Gas by Gas Chromatography and Calculation of Related Uncertainties - Part 2.Uncertainty Calculation
GB/T 27894.3 Determination of Composition of Natural Gas by Gas Chromatography and Calculation of Related Uncertainties – Part 3.Precision and Bias
3.Terms and Definitions
The terms and definitions defined in GB/T 4946, GB/T 14850, and GB/T 20604 apply to this document.
4.Principles
A representative natural gas sample (hereinafter referred to as "gas sample") and a standard mixture of gas with known helium content (hereinafter referred to as "standard")
Under the same operating conditions, helium and hydrogen components are separated by pre-column cutting and backflushing, followed by analysis by an analytical column, and then introduced into the thermal conductivity detector.
The instrument completes the detection, and the helium content in the gas sample is calculated by comparing the peak height, peak area, or both, based on the helium component content value of the standard gas.
Component content.
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