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Homepage>BS Standards>23 FLUID SYSTEMS AND COMPONENTS FOR GENERAL USE>23.120 Ventilators. Fans. Air-conditioners>BS EN ISO 16890-3:2024 Air filters for general ventilation Determination of the gravimetric efficiency and the air flow resistance versus the mass of test dust captured
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immediate downloadReleased: 2024-09-05
BS EN ISO 16890-3:2024 Air filters for general ventilation Determination of the gravimetric efficiency and the air flow resistance versus the mass of test dust captured

BS EN ISO 16890-3:2024

Air filters for general ventilation Determination of the gravimetric efficiency and the air flow resistance versus the mass of test dust captured

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Standard number:BS EN ISO 16890-3:2024
Pages:32
Released:2024-09-05
ISBN:978 0 539 22401 6
Status:Standard
BS EN ISO 16890-3:2024 - Air Filters for General Ventilation

BS EN ISO 16890-3:2024 - Air Filters for General Ventilation

Standard Number: BS EN ISO 16890-3:2024

Pages: 32

Released: 2024-09-05

ISBN: 978 0 539 22401 6

Name: Air filters for general ventilation Determination of the gravimetric efficiency and the air flow resistance versus the mass of test dust captured

Status: Standard

Overview

Introducing the BS EN ISO 16890-3:2024, the definitive standard for air filters used in general ventilation systems. This comprehensive document provides detailed guidelines on the determination of gravimetric efficiency and air flow resistance in relation to the mass of test dust captured. Released on September 5, 2024, this standard is an essential resource for professionals in the HVAC industry, ensuring optimal performance and compliance with international regulations.

Key Features

  • Comprehensive Guidelines: The standard offers in-depth procedures for evaluating the performance of air filters, focusing on gravimetric efficiency and air flow resistance.
  • International Compliance: Adheres to global standards, ensuring your ventilation systems meet the highest quality and safety requirements.
  • Detailed Documentation: With 32 pages of meticulously curated content, this standard provides all the necessary information for accurate testing and evaluation.
  • Up-to-Date Information: Released in 2024, this standard incorporates the latest advancements and research in air filtration technology.

Why Choose BS EN ISO 16890-3:2024?

Choosing the BS EN ISO 16890-3:2024 standard ensures that your air filtration systems are evaluated using the most current and rigorous methods available. This standard is designed to help you achieve the highest levels of air quality and system efficiency, which are critical for maintaining healthy indoor environments and reducing energy consumption.

Gravimetric Efficiency

Gravimetric efficiency is a key parameter in assessing the performance of air filters. This standard provides a detailed methodology for measuring the amount of dust captured by the filter, ensuring that your systems are capable of maintaining clean and healthy air.

Air Flow Resistance

Air flow resistance is another crucial factor in the performance of air filters. The BS EN ISO 16890-3:2024 standard outlines precise procedures for determining the resistance to air flow, helping you to optimize the balance between filtration efficiency and energy consumption.

Applications

This standard is applicable to a wide range of industries and settings, including:

  • Commercial Buildings: Ensure that your HVAC systems are compliant with the latest standards, providing a healthy and comfortable environment for occupants.
  • Industrial Facilities: Maintain optimal air quality and system performance in manufacturing and processing plants.
  • Healthcare Settings: Critical for maintaining sterile and contaminant-free environments in hospitals and clinics.
  • Residential Buildings: Enhance the air quality in homes, contributing to the well-being of residents.

Benefits

Implementing the BS EN ISO 16890-3:2024 standard offers numerous benefits, including:

  • Improved Air Quality: By adhering to this standard, you can ensure that your air filtration systems effectively remove contaminants, providing cleaner and healthier air.
  • Energy Efficiency: Optimizing air flow resistance helps to reduce energy consumption, leading to cost savings and a smaller environmental footprint.
  • Regulatory Compliance: Stay ahead of regulatory requirements and industry standards, avoiding potential fines and ensuring the safety and satisfaction of building occupants.
  • Enhanced System Performance: Regular testing and evaluation according to this standard help to maintain the efficiency and longevity of your HVAC systems.

Conclusion

The BS EN ISO 16890-3:2024 standard is an indispensable tool for anyone involved in the design, installation, and maintenance of air filtration systems. With its comprehensive guidelines and up-to-date information, this standard ensures that your systems are performing at their best, providing clean air and energy efficiency. Invest in the BS EN ISO 16890-3:2024 standard to achieve the highest levels of air quality and system performance.

DESCRIPTION

BS EN ISO 16890-3:2024


This standard BS EN ISO 16890-3:2024 Air filters for general ventilation is classified in these ICS categories:
  • 91.140.30 Ventilation and air-conditioning systems
  • 23.120 Ventilators. Fans. Air-conditioners
  • 91.140.30 Ventilation and air-conditioning systems
This document specifies the test equipment and the test methods used for measuring the gravimetric efficiency and resistance to air flow of air filter for general ventilation. It is intended for use in conjunction with ISO 16890-1, ISO 16890-2 and ISO 16890-4. The test method described in this document is applicable for air flow rates between 0,25 m3/s (900 m3/h, 530 ft3/min) and 1,5 m3/s (5 400 m3/h, 3 178 ft3/min), referring to a test rig with a nominal face area of 610 mm × 610 mm (24 in × 24 in). This document refers to particulate air filter elements for general ventilation having an ePM1 efficiency less than or equal to 99 % and an ePM10 efficiency greater than 20 % when tested as per the procedures defined in the ISO 16890 series. NOTE            The lower limit for this test procedure is set at a minimum ePM10 efficiency of 20 % since it is very difficult for a test filter element below this level to meet the statistical validity requirements of this procedure. This document does not apply to filter elements used in portable room-air cleaners.