Potřebujeme váš souhlas k využití jednotlivých dat, aby se vám mimo jiné mohly ukazovat informace týkající se vašich zájmů. Souhlas udělíte kliknutím na tlačítko „OK“.
Standard Test Method for Air Cleaning Performance of a High-Efficiency Particulate Air- Filter System (Withdrawn 2018)
Automaticky přeložený název:
Standardní zkušební metoda pro čištění vzduchu výkonu vysoce účinných částic na vzduchu filtrační systém
NORMA vydána dne 1.3.2009
Označení normy: ASTM F1471-09
Poznámka: NEPLATNÁ
Datum vydání normy: 1.3.2009
Kód zboží: NS-50415
Počet stran: 13
Přibližná hmotnost: 39 g (0.09 liber)
Země: Americká technická norma
Kategorie: Technické normy ASTM
Keywords:
aerosol dilution, aerosol generator, average penetration, background particles, challenge aerosols, coincidence, compressed-air nebulizer, dilution ratio, fractional penetration, HEPA, laser aerosol spectrometer, test aerosols, Aerosol dilution, Aerosol generator, Airflow performance, Average penetration, Background particles, Calibration--spectrochemical analysis instrumentation, Challenge aerosols, Coincidence counting, Compressed air, Diluter calibration, Dilution ratio/value
Significance and Use | ||||
This test method describes a procedure for determining the penetration of aerosols through a one- or twostage HEPA filter installation. Testing multiple filter stages as a single unit eliminates the need for: installation of auxiliary aerosol bypass ducts, installation of aerosol injection manifolds between filter stages, and entry of test personnel into contaminated areas. It provides for filter testing without interruption of plant processes and operation of ventilation systems. The procedure is applicable for measuring penetrations requiring sensitivities to 0.1 μm. A challenge concentration of 2.5 × 10 5 particles/cm3 (p/cm3), is required for evaluation of one-filter stage, and 2 × 106 p/cm 3, or about 30 μg/L (assuming unit density), is required to properly evaluate a two-stage HEPA filter system as one unit. This test method can determine the penetration of HEPA filters in the particle-size range from 0.1 to 0.2 μm where the greatest penetration of particles is likely to occur. |
||||
1. Scope | ||||
1.1 This test method covers the procedure and equipment for measuring the penetration of test particles through high-efficiency particulate air (HEPA) filter systems using a laser aerosol spectrometer (LAS). This test method provides the capability of evaluating the overall effectiveness of HEPA filter systems consisting of one or two filter stages. 1.2 The aerosols used for testing have a heterodisperse size distribution in the submicrometer diameter range from 0.1 to 1.0 μm. 1.3 The purpose for conducting in-place filter testing by this test method is in the ability to determine penetration of multi-stage installations, without individual stage tests. Particle penetration as low as 10−8 can be measured by this test method. Also, the LAS provides a measure of penetration for discrete particle sizes. 1.4 Maximum penetration for an installed HEPA filter system is 5 × 10−4 for one filter stage, and 2.5 × 10−7 for two stages in series is recommended. Note 1—Acceptance penetration criteria must be specified in the program, or owners specifications. The penetration criteria suggested in this test method is referenced in Ref (1). 1.5 The values stated in SI units are to be regarded as the standard. 1.6 This standard does not purport to address all of the safety problems, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use. Specific precautionary statements are given in 9.6. |
||||
2. Referenced Documents | ||||
|
Historická
1.11.2007
Historická
1.4.2008
Historická
1.10.2012
Historická
1.5.2013
Historická
1.11.2011
Poskytování aktuálních informací o legislativních předpisech vyhlášených ve Sbírce zákonů od roku 1945.
Aktualizace 2x v měsíci !
Chcete vědět více informací? Podívejte se na tuto stránku.
Poslední aktualizace: 06.01.2025 (Počet položek: 2 218 326)
© Copyright 2025 NORMSERVIS s.r.o.