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Homepage>BS Standards>27 ENERGY AND HEAT TRANSFER ENGINEERING>27.120 Nuclear energy engineering>27.120.30 Fissile materials>BS EN ISO 12183:2024 Nuclear fuel technology. Controlled-potential coulometric measurement of plutonium
immediate downloadReleased: 2024-05-23
BS EN ISO 12183:2024 Nuclear fuel technology. Controlled-potential coulometric measurement of plutonium

BS EN ISO 12183:2024

Nuclear fuel technology. Controlled-potential coulometric measurement of plutonium

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Standard number:BS EN ISO 12183:2024
Pages:38
Released:2024-05-23
ISBN:978 0 539 23638 5
Status:Standard
BS EN ISO 12183:2024 - Nuclear Fuel Technology

BS EN ISO 12183:2024 - Nuclear Fuel Technology. Controlled-Potential Coulometric Measurement of Plutonium

Standard Number: BS EN ISO 12183:2024

Pages: 38

Released: 2024-05-23

ISBN: 978 0 539 23638 5

Status: Standard

Overview

Introducing the BS EN ISO 12183:2024, a comprehensive standard dedicated to the field of nuclear fuel technology. This standard focuses on the controlled-potential coulometric measurement of plutonium, providing a detailed and precise methodology for professionals in the nuclear industry.

Why Choose BS EN ISO 12183:2024?

The BS EN ISO 12183:2024 standard is an essential resource for anyone involved in the nuclear fuel technology sector. Here are some compelling reasons to choose this standard:

  • Accuracy and Precision: The controlled-potential coulometric measurement technique outlined in this standard ensures high accuracy and precision in the quantification of plutonium.
  • Comprehensive Guidelines: With 38 pages of detailed instructions, this standard provides a thorough understanding of the measurement process, ensuring that all aspects are covered.
  • Up-to-Date Information: Released on 2024-05-23, this standard incorporates the latest advancements and best practices in nuclear fuel technology.
  • International Recognition: As an ISO standard, it is recognized and respected globally, making it a valuable addition to any professional's library.

Key Features

The BS EN ISO 12183:2024 standard includes several key features that make it an indispensable tool for professionals in the nuclear industry:

  • Detailed Methodology: The standard provides a step-by-step guide to the controlled-potential coulometric measurement of plutonium, ensuring that users can follow the process with ease and confidence.
  • Safety Considerations: Given the hazardous nature of plutonium, the standard includes comprehensive safety guidelines to protect users and ensure safe handling of materials.
  • Quality Assurance: The standard outlines quality assurance procedures to ensure that measurements are consistent, reliable, and meet the highest standards of accuracy.
  • Technical Specifications: Detailed technical specifications are provided to ensure that all equipment and materials used in the measurement process meet the required standards.

Who Should Use This Standard?

The BS EN ISO 12183:2024 standard is designed for a wide range of professionals in the nuclear industry, including:

  • Nuclear Engineers: Engineers involved in the design, operation, and maintenance of nuclear facilities will find this standard invaluable for ensuring accurate measurement of plutonium.
  • Quality Control Specialists: Professionals responsible for quality control and assurance in nuclear facilities will benefit from the detailed guidelines and procedures outlined in this standard.
  • Safety Officers: Safety officers will appreciate the comprehensive safety guidelines included in the standard, ensuring that all measurements are conducted safely and responsibly.
  • Researchers and Academics: Researchers and academics involved in nuclear fuel technology will find this standard to be a valuable resource for their studies and experiments.

Benefits of Using BS EN ISO 12183:2024

By adopting the BS EN ISO 12183:2024 standard, professionals in the nuclear industry can enjoy several benefits:

  • Enhanced Accuracy: The controlled-potential coulometric measurement technique ensures highly accurate and reliable results, reducing the risk of errors and improving overall measurement quality.
  • Improved Safety: The comprehensive safety guidelines included in the standard help to minimize the risk of accidents and ensure the safe handling of plutonium.
  • Consistency and Reliability: The standard's detailed procedures and quality assurance measures ensure that measurements are consistent and reliable, meeting the highest standards of accuracy.
  • Global Recognition: As an ISO standard, the BS EN ISO 12183:2024 is recognized and respected worldwide, enhancing the credibility and professionalism of those who use it.

Conclusion

The BS EN ISO 12183:2024 standard is an essential resource for professionals in the nuclear fuel technology sector. With its detailed methodology, comprehensive safety guidelines, and emphasis on accuracy and precision, this standard provides everything you need to ensure the controlled-potential coulometric measurement of plutonium is conducted to the highest standards.

Whether you are a nuclear engineer, quality control specialist, safety officer, or researcher, the BS EN ISO 12183:2024 standard is a valuable addition to your professional toolkit. Stay ahead in your field and ensure the highest standards of accuracy and safety with this indispensable resource.

Get your copy of the BS EN ISO 12183:2024 standard today and take the first step towards enhanced accuracy, improved safety, and global recognition in the field of nuclear fuel technology.

DESCRIPTION

BS EN ISO 12183:2024


This standard BS EN ISO 12183:2024 Nuclear fuel technology. Controlled-potential coulometric measurement of plutonium is classified in these ICS categories:
  • 27.120.30 Fissile materials and nuclear fuel technology
This document specifies an analytical method for the electrochemical measurement of pure plutonium nitrate solutions of nuclear grade, with an expanded uncertainty not exceeding ±0,2 % at the confidence level of 0,95 for a single determination (coverage factor, k = 2). The method is applicable for aqueous solutions containing plutonium at more than 0,5 g/l and test samples containing plutonium between 4 mg and 15 mg. Application of this technique to solutions containing plutonium at less than 0,5 g/l and test samples containing plutonium at less than 4 mg requires experimental demonstration by the user that applicable data quality objectives will be met.