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Homepage>BS Standards>75 PETROLEUM AND RELATED TECHNOLOGIES>75.060 Natural gas>BS EN ISO 10101-2:2022 Natural gas. Determination of water by the Karl Fischer method Part 2: Volumetric procedure
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immediate downloadReleased: 2022-10-31
BS EN ISO 10101-2:2022 Natural gas. Determination of water by the Karl Fischer method Part 2: Volumetric procedure

BS EN ISO 10101-2:2022

Natural gas. Determination of water by the Karl Fischer method Part 2: Volumetric procedure

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Standard number:BS EN ISO 10101-2:2022
Pages:22
Released:2022-10-31
ISBN:978 0 539 12295 4
Status:Standard
BS EN ISO 10101-2:2022 Natural gas. Determination of water by the Karl Fischer method Part 2: Volumetric procedure

BS EN ISO 10101-2:2022 Natural gas. Determination of water by the Karl Fischer method Part 2: Volumetric procedure

Standard number: BS EN ISO 10101-2:2022

Pages: 22

Released: 2022-10-31

ISBN: 978 0 539 12295 4

Name: Natural gas. Determination of water by the Karl Fischer method Part 2: Volumetric procedure

Status: Standard

Overview

Introducing the BS EN ISO 10101-2:2022, a comprehensive standard that provides a detailed methodology for the determination of water content in natural gas using the Karl Fischer method. This standard is an essential resource for professionals in the natural gas industry, ensuring accurate and reliable measurement of water content, which is crucial for maintaining the quality and safety of natural gas.

Key Features

  • Volumetric Procedure: This part of the standard focuses on the volumetric procedure of the Karl Fischer method, providing step-by-step instructions to ensure precise and consistent results.
  • Comprehensive Guidance: With 22 pages of detailed information, this standard covers all aspects of the volumetric procedure, from sample preparation to final analysis.
  • Up-to-Date Information: Released on 2022-10-31, this standard reflects the latest advancements and best practices in the field.
  • International Recognition: As a part of the ISO standards, it is recognized and respected globally, making it a valuable addition to any professional library.

Why Choose BS EN ISO 10101-2:2022?

The determination of water content in natural gas is a critical process that impacts the efficiency, safety, and quality of the gas. The BS EN ISO 10101-2:2022 standard provides a reliable and accurate method for this determination, ensuring that you can maintain the highest standards in your operations. Here are some reasons why this standard is indispensable:

  • Accuracy: The Karl Fischer method is renowned for its precision in measuring water content, and this standard ensures that you can achieve the highest level of accuracy in your measurements.
  • Consistency: By following the detailed procedures outlined in this standard, you can ensure consistent results across different samples and testing conditions.
  • Compliance: Adhering to this internationally recognized standard helps you meet regulatory requirements and industry best practices, enhancing your credibility and reputation.
  • Efficiency: The clear and concise instructions provided in this standard help streamline the testing process, saving you time and resources.

Who Should Use This Standard?

This standard is designed for a wide range of professionals in the natural gas industry, including:

  • Quality Control Managers: Ensure the highest quality of natural gas by accurately determining its water content.
  • Laboratory Technicians: Follow precise procedures to obtain reliable and consistent results in water content determination.
  • Regulatory Compliance Officers: Meet industry standards and regulatory requirements by adhering to this internationally recognized standard.
  • Researchers and Academics: Utilize the latest methodologies and best practices in your studies and research projects.

Detailed Content

The BS EN ISO 10101-2:2022 standard is meticulously structured to provide comprehensive guidance on the volumetric procedure of the Karl Fischer method. Here is a brief overview of the content covered:

  • Introduction: An overview of the importance of water content determination in natural gas and the relevance of the Karl Fischer method.
  • Scope: Defines the scope of the standard and the specific applications of the volumetric procedure.
  • Normative References: Lists the relevant standards and documents referenced in the standard.
  • Terms and Definitions: Provides clear definitions of key terms used throughout the standard.
  • Principle: Explains the fundamental principles behind the Karl Fischer method and its application in water content determination.
  • Reagents and Materials: Details the reagents and materials required for the volumetric procedure.
  • Apparatus: Describes the equipment and apparatus needed for accurate measurement.
  • Sampling: Provides guidelines for proper sampling techniques to ensure representative results.
  • Procedure: Step-by-step instructions for conducting the volumetric procedure, from sample preparation to final analysis.
  • Calculation: Explains the calculations required to determine the water content from the test results.
  • Precision and Bias: Discusses the precision and potential biases of the method, providing guidance on how to minimize errors.
  • Reporting: Outlines the requirements for reporting the results of the water content determination.

Conclusion

The BS EN ISO 10101-2:2022 standard is an invaluable resource for anyone involved in the natural gas industry. By providing a detailed and reliable method for determining water content, it helps ensure the quality, safety, and efficiency of natural gas. Whether you are a quality control manager, laboratory technician, regulatory compliance officer, or researcher, this standard will equip you with the knowledge and tools needed to achieve accurate and consistent results.

DESCRIPTION

BS EN ISO 10101-2:2022


This standard BS EN ISO 10101-2:2022 Natural gas. Determination of water by the Karl Fischer method is classified in these ICS categories:
  • 75.060 Natural gas
This document specifies a volumetric procedure for the determination of water content in natural gas. Volumes are expressed in cubic metres at a temperature of 273,15 K (0 °C) and a pressure of 101,325 kPa (1 atm). It applies to water concentrations between 5 mg/m3 and 5 000 mg/m3.