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Homepage>BS Standards>65 AGRICULTURE>65.160 Tobacco, tobacco products and related equipment>BS EN ISO 24211:2022 Vapour products. Determination of selected carbonyls in vapour product emissions
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immediate downloadReleased: 2022-10-03
BS EN ISO 24211:2022 Vapour products. Determination of selected carbonyls in vapour product emissions

BS EN ISO 24211:2022

Vapour products. Determination of selected carbonyls in vapour product emissions

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Standard number:BS EN ISO 24211:2022
Pages:26
Released:2022-10-03
ISBN:978 0 539 05574 0
Status:Standard
BS EN ISO 24211:2022 Vapour Products Standard

BS EN ISO 24211:2022 - Vapour Products: Determination of Selected Carbonyls in Vapour Product Emissions

Standard Number: BS EN ISO 24211:2022

Pages: 26

Released: 2022-10-03

ISBN: 978 0 539 05574 0

Status: Standard

Overview

The BS EN ISO 24211:2022 standard is an essential document for anyone involved in the production, regulation, or analysis of vapour products. This comprehensive standard provides detailed methodologies for the determination of selected carbonyls in vapour product emissions, ensuring that your products meet the highest safety and quality standards.

Why This Standard is Important

Carbonyl compounds, such as formaldehyde and acetaldehyde, are known to be harmful when inhaled. The presence of these compounds in vapour products can pose significant health risks to users. The BS EN ISO 24211:2022 standard outlines precise methods for detecting and quantifying these harmful substances, thereby helping manufacturers to minimize their presence and ensure consumer safety.

Key Features

  • Comprehensive Methodology: The standard provides a detailed, step-by-step approach for the determination of selected carbonyls in vapour product emissions.
  • Internationally Recognized: As an ISO standard, it is recognized and respected globally, making it easier for your products to meet international regulatory requirements.
  • Up-to-Date Information: Released on October 3, 2022, this standard incorporates the latest scientific research and technological advancements in the field.
  • Detailed Documentation: With 26 pages of in-depth information, this standard covers all aspects of the testing process, from sample preparation to data analysis.

Who Should Use This Standard?

The BS EN ISO 24211:2022 standard is invaluable for a wide range of professionals, including:

  • Manufacturers: Ensure your vapour products are safe and compliant with international standards.
  • Regulatory Bodies: Use this standard to set and enforce safety regulations for vapour products.
  • Testing Laboratories: Implement the methodologies outlined in this standard to provide accurate and reliable testing services.
  • Researchers: Utilize the detailed procedures and data analysis techniques for academic and industrial research.

Detailed Content

The BS EN ISO 24211:2022 standard is meticulously organized to provide clear and concise information. Here is a brief overview of its contents:

  • Introduction: An overview of the importance of detecting carbonyls in vapour products and the objectives of the standard.
  • Scope: Defines the range of vapour products and carbonyl compounds covered by the standard.
  • Normative References: Lists other relevant standards and documents that are referenced within the text.
  • Terms and Definitions: Provides clear definitions of key terms used throughout the standard.
  • Principle: Describes the scientific principles underlying the methodologies used for carbonyl detection.
  • Reagents and Materials: Lists the chemicals and materials required for the testing procedures.
  • Apparatus: Details the equipment needed to carry out the tests.
  • Sampling: Provides guidelines for the collection and preparation of vapour product samples.
  • Procedure: Step-by-step instructions for conducting the tests, including sample analysis and data recording.
  • Calculation and Expression of Results: Explains how to calculate the concentration of carbonyls and interpret the results.
  • Precision and Bias: Discusses the accuracy and reliability of the testing methods.
  • Test Report: Outlines the information that should be included in the final test report.

Benefits of Compliance

Adhering to the BS EN ISO 24211:2022 standard offers numerous benefits, including:

  • Enhanced Safety: By accurately detecting harmful carbonyls, you can take steps to reduce their presence, thereby protecting consumers.
  • Regulatory Compliance: Meet the stringent requirements of international regulatory bodies, facilitating market access and reducing the risk of legal issues.
  • Consumer Trust: Demonstrating compliance with this respected standard can enhance your brand's reputation and build consumer confidence.
  • Quality Assurance: Implementing the standard's methodologies can help you maintain consistent product quality and performance.

Conclusion

The BS EN ISO 24211:2022 standard is an indispensable resource for anyone involved in the vapour product industry. Its comprehensive guidelines for the determination of selected carbonyls in vapour product emissions ensure that your products are safe, compliant, and of the highest quality. By adhering to this standard, you can protect consumers, meet regulatory requirements, and enhance your brand's reputation.

DESCRIPTION

BS EN ISO 24211:2022


This standard BS EN ISO 24211:2022 Vapour products. Determination of selected carbonyls in vapour product emissions is classified in these ICS categories:
  • 65.160 Tobacco, tobacco products and related equipment
This document specifies a method for the determination of the amount of selected carbonyl compounds (formaldehyde and acetaldehyde) as their 2,4-dinitrophenylhydrazones in vapour product emissions using reversed phase liquid chromatography coupled with ultraviolet or diode array detector (LC-UV or LC-DAD). This document does not include the analysis of other carbonyl compounds, such as acrolein and crotonaldehyde, due to previous work indicated issues associated with stability of these compounds in the e-liquid solutions that were used to evaluate method performance[4].