BS EN ISO 21663:2020
Solid recovered fuels. Methods for the determination of carbon (C), hydrogen (H), nitrogen (N) and sulphur (S) by the instrumental method
Standard number: | BS EN ISO 21663:2020 |
Pages: | 22 |
Released: | 2020-12-16 |
ISBN: | 978 0 580 51495 1 |
Status: | Standard |
BS EN ISO 21663:2020 - Solid Recovered Fuels Analysis Standard
Discover the essential standard for the analysis of solid recovered fuels with the BS EN ISO 21663:2020. This comprehensive document provides the methods for determining the content of carbon (C), hydrogen (H), nitrogen (N), and sulphur (S) using advanced instrumental techniques. Released on December 16, 2020, this standard is a critical resource for professionals in the field of fuel analysis and environmental science.
Overview
The BS EN ISO 21663:2020 standard is a pivotal document that outlines the instrumental methods for accurately determining the elemental composition of solid recovered fuels. This standard is crucial for ensuring the quality and environmental compliance of fuels derived from waste materials. By adhering to this standard, laboratories and industries can ensure that their fuel products meet the necessary regulatory and performance criteria.
Key Features
- Standard Number: BS EN ISO 21663:2020
- Pages: 22
- Release Date: December 16, 2020
- ISBN: 978 0 580 51495 1
- Status: Standard
Detailed Description
This standard provides a detailed methodology for the determination of key elements in solid recovered fuels. The accurate measurement of carbon, hydrogen, nitrogen, and sulphur is essential for assessing the energy content and environmental impact of these fuels. The methods described in this standard utilize state-of-the-art instrumental techniques, ensuring precision and reliability in results.
Importance of Elemental Analysis
Elemental analysis is a fundamental aspect of fuel quality assessment. The presence and concentration of elements such as carbon, hydrogen, nitrogen, and sulphur can significantly influence the combustion characteristics and emissions of solid recovered fuels. By following the procedures outlined in the BS EN ISO 21663:2020, analysts can obtain accurate data that is critical for optimizing fuel performance and minimizing environmental impact.
Applications
The methods described in this standard are applicable to a wide range of solid recovered fuels, including those derived from municipal solid waste, industrial by-products, and biomass. This versatility makes the BS EN ISO 21663:2020 an invaluable tool for laboratories and industries involved in the production and analysis of alternative fuels.
Benefits of Using BS EN ISO 21663:2020
- Compliance: Ensure that your fuel products meet international standards and regulatory requirements.
- Accuracy: Benefit from precise and reliable measurement techniques that enhance the quality of your analysis.
- Environmental Responsibility: Contribute to environmental sustainability by accurately assessing the emissions potential of your fuels.
- Industry Relevance: Stay ahead in the competitive fuel industry by adopting the latest standards and methodologies.
Conclusion
The BS EN ISO 21663:2020 is an essential standard for anyone involved in the analysis and production of solid recovered fuels. By providing a clear and detailed methodology for the determination of carbon, hydrogen, nitrogen, and sulphur, this standard ensures that your fuel products are of the highest quality and meet all necessary environmental and regulatory standards. Whether you are a laboratory technician, a fuel producer, or an environmental scientist, this standard is an invaluable resource that will enhance your work and contribute to a more sustainable future.
BS EN ISO 21663:2020
This standard BS EN ISO 21663:2020 Solid recovered fuels. Methods for the determination of carbon (C), hydrogen (H), nitrogen (N) and sulphur (S) by the instrumental method is classified in these ICS categories:
- 75.160.40 Biofuels
- 75.160.10 Solid fuels
This document specifies the determination of total content of carbon, hydrogen, nitrogen and sulfur in solid recovered fuels by instrumental method. Depending on the amount of test portion, micro or macro instrumental apparatus are used.
This method is applicable for concentrations on dry matter basis of C > 0,1 %, N > 0,1 %, H > 0,1 % and S > 0,05 %.