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>BSI Standards >71 CHEMICAL TECHNOLOGY>71.040 Analytical chemistry>71.040.50 Physicochemical methods of analysis>BS ISO 23971:2025 Surface chemical analysis — X-ray fluorescence analysis of particulate matter filters
immediate downloadReleased: 2025-11-26
BS ISO 23971:2025 Surface chemical analysis — X-ray fluorescence analysis of particulate matter filters

BS ISO 23971:2025

Surface chemical analysis — X-ray fluorescence analysis of particulate matter filters

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Standard number:BS ISO 23971:2025
Pages:36
Released:2025-11-26
ISBN:978 0 539 28558 1
Status:Standard
BS ISO 23971:2025 - Surface Chemical Analysis

BS ISO 23971:2025 - Surface Chemical Analysis

X-ray Fluorescence Analysis of Particulate Matter Filters

Introducing the BS ISO 23971:2025, a comprehensive standard that sets the benchmark for surface chemical analysis using X-ray fluorescence (XRF) to analyze particulate matter filters. This standard is an essential resource for professionals in the field of chemical analysis, environmental science, and materials engineering, providing a detailed framework for accurate and reliable analysis.

Key Features:

  • Standard Number: BS ISO 23971:2025
  • Pages: 36
  • Release Date: November 26, 2025
  • ISBN: 978 0 539 28558 1
  • Status: Standard

Why Choose BS ISO 23971:2025?

The BS ISO 23971:2025 standard is meticulously crafted to ensure that professionals have access to the most up-to-date and precise methodologies for X-ray fluorescence analysis. This standard is crucial for those who require high accuracy in the detection and quantification of elements present in particulate matter filters. By adhering to this standard, you can ensure that your analytical processes meet international quality and reliability benchmarks.

Comprehensive Coverage:

Spanning 36 pages, this standard provides an in-depth exploration of the techniques and procedures necessary for effective XRF analysis. It covers everything from sample preparation to data interpretation, ensuring that users have a complete understanding of the process. The detailed guidelines help in minimizing errors and enhancing the precision of analytical results.

Applications:

The BS ISO 23971:2025 standard is applicable across a wide range of industries and sectors, including:

  • Environmental Monitoring: Essential for analyzing air quality and assessing pollution levels by examining particulate matter collected on filters.
  • Industrial Hygiene: Used to monitor workplace environments and ensure compliance with health and safety regulations.
  • Materials Science: Valuable for research and development in materials engineering, providing insights into the composition of various substances.

Benefits of X-ray Fluorescence Analysis:

X-ray fluorescence analysis is a non-destructive technique that offers several advantages, including:

  • High Sensitivity: Capable of detecting trace elements with high precision.
  • Rapid Analysis: Provides quick results, making it ideal for time-sensitive applications.
  • Versatility: Suitable for a wide range of materials and sample types.

Stay Ahead with the Latest Standards:

By integrating the BS ISO 23971:2025 standard into your analytical processes, you ensure that your methods are aligned with the latest advancements in the field. This not only enhances the credibility of your results but also positions your organization as a leader in quality and innovation.

Conclusion:

The BS ISO 23971:2025 standard is an indispensable tool for professionals involved in surface chemical analysis. Its comprehensive guidelines and detailed methodologies provide a solid foundation for conducting X-ray fluorescence analysis with confidence and precision. Whether you are in environmental science, industrial hygiene, or materials research, this standard is your key to achieving excellence in analytical performance.

DESCRIPTION

BS ISO 23971:2025


This standard BS ISO 23971:2025 Surface chemical analysis — X-ray fluorescence analysis of particulate matter filters is classified in these ICS categories:
  • 71.040.50 Physicochemical methods of analysis