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Homepage>BS Standards>75 PETROLEUM AND RELATED TECHNOLOGIES>75.160 Fuels>75.160.10 Solid fuels>BS EN ISO 21911-1:2023 Solid recovered fuels. Determination of self-heating Isothermal calorimetry
immediate downloadReleased: 2023-09-07
BS EN ISO 21911-1:2023 Solid recovered fuels. Determination of self-heating Isothermal calorimetry

BS EN ISO 21911-1:2023

Solid recovered fuels. Determination of self-heating Isothermal calorimetry

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Standard number:BS EN ISO 21911-1:2023
Pages:22
Released:2023-09-07
ISBN:978 0 580 97149 5
Status:Standard

BS EN ISO 21911-1:2023 Solid Recovered Fuels - Determination of Self-Heating Isothermal Calorimetry

Introducing the BS EN ISO 21911-1:2023, a comprehensive standard guide that provides a detailed methodology for the determination of self-heating in solid recovered fuels using isothermal calorimetry. This standard is an essential tool for professionals in the energy sector, particularly those dealing with solid recovered fuels. It is designed to ensure safety, efficiency, and accuracy in the measurement and handling of these fuels.

Key Features

The BS EN ISO 21911-1:2023 is a 22-page document, released on the 7th of September, 2023. It carries the ISBN number 978 0 580 97149 5, ensuring its authenticity and credibility. This standard is currently active and in use by professionals worldwide.

Comprehensive and Detailed

This standard provides a comprehensive and detailed methodology for determining self-heating in solid recovered fuels. It covers all aspects of the process, from the initial preparation of the sample to the final analysis of the results. The procedures outlined in this standard are designed to ensure that the results obtained are accurate, reliable, and reproducible.

Importance of Self-Heating Determination

Self-heating in solid recovered fuels can lead to spontaneous combustion, which can cause serious safety hazards. Therefore, it is crucial to accurately determine the self-heating properties of these fuels. The BS EN ISO 21911-1:2023 provides a reliable method for doing so, helping to prevent accidents and ensure the safe handling and storage of these fuels.

Use of Isothermal Calorimetry

The standard employs isothermal calorimetry, a technique that measures the heat flow in and out of a sample while maintaining a constant temperature. This method is particularly effective for determining self-heating in solid recovered fuels, as it allows for precise measurements and provides detailed information about the thermal properties of the sample.

Who Should Use This Standard?

The BS EN ISO 21911-1:2023 is intended for use by professionals in the energy sector, particularly those dealing with solid recovered fuels. This includes energy producers, waste management companies, environmental agencies, and research institutions. It is also a valuable resource for academics and students studying in related fields.

Conclusion

The BS EN ISO 21911-1:2023 is a crucial standard for anyone dealing with solid recovered fuels. Its comprehensive and detailed methodology ensures accurate and reliable determination of self-heating, helping to prevent safety hazards and improve efficiency in the handling and storage of these fuels. With its use of isothermal calorimetry, it provides detailed and precise measurements, making it an invaluable tool in the energy sector.

Get your copy of the BS EN ISO 21911-1:2023 today and ensure the safe and efficient handling of solid recovered fuels.

DESCRIPTION

BS EN ISO 21911-1:2023


This standard BS EN ISO 21911-1:2023 Solid recovered fuels. Determination of self-heating is classified in these ICS categories:
  • 75.160.10 Solid fuels
This document specifies an analytical method for quantification of the spontaneous heat generation from solid recovered fuels using isothermal calorimetry. This document gives guidance on the applicability and use of the specified analytical method. It further establishes procedures for sampling and sample handling of solid recovered fuels prior to the analysis of spontaneous heat generation. The test procedure given in this document quantifies the thermal power (heat flow) of the sample during the test. It does not identify the source of self-heating in the test portion analysed.