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ISO 16890-1:2016

Current
Current

The latest, up-to-date edition.

Air filters for general ventilation — Part 1: Technical specifications, requirements and classification system based upon particulate matter efficiency (ePM)
Available format(s)

Hardcopy , PDF , PDF 3 Users , PDF 5 Users , PDF 9 Users

Language(s)

French, English

Published date

11-28-2016

ISO 16890-1:2016 establishes an efficiency classification system of air filters for general ventilation based upon particulate matter (PM). It also provides an overview of the test procedures, and specifies general requirements for assessing and marking the filters, as well as for documenting the test results. It is intended for use in conjunction with ISO 16890‑2, ISO 16890‑3 and ISO 16890‑4.

The test method described in this part of ISO 16890 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 inch × 24 inch).

ISO 16890 (all parts) refers to particulate air filter elements for general ventilation having an ePM1 efficiency less than or equal to 99 % when tested according to the procedures defined within ISO 16890‑1, ISO 16890‑2, ISO 16890‑3 and ISO 16890‑4. Air filter elements with a higher initial efficiency are evaluated by other applicable test methods (see ISO 29463-1, ISO 29463-2, ISO 29463-3, ISO 29463-4 and ISO 29463-5).

Filter elements used in portable room-air cleaners are excluded from the scope of this part of ISO 16890.

The performance results obtained in accordance with ISO 16890 (all parts) cannot by themselves be quantitatively applied to predict performance in service with regard to efficiency and lifetime. Other factors influencing performance to be taken into account are described in Annex A.

DevelopmentNote
Supersedes ISO/DIS 16890-1. Together with ISO 16890-2, ISO 16890-3 and ISO 16890-4, it supersedes ISO TS 21220. (12/2016)
DocumentType
Standard
Pages
27
PublisherName
International Organization for Standardization
Status
Current
Supersedes

EN 16893:2018 Conservation of Cultural Heritage - Specifications for location, construction and modification of buildings or rooms intended for the storage or use of heritage collections
BS EN ISO 16890-2:2016 Air filters for general ventilation Measurement of fractional efficiency and air flow resistance
UNE-EN ISO 16890-2:2017 Air filters for general ventilation - Part 2: Measurement of fractional efficiency and air flow resistance (ISO 16890-2:2016)
UNE-EN ISO 16890-3:2017 Air filters for general ventilation - Part 3: Determination of the gravimetric efficiency and the air flow resistance versus the mass of test dust captured (ISO 16890-3:2016)
BS EN ISO 16890-3:2016 Air filters for general ventilation Determination of the gravimetric efficiency and the air flow resistance versus the mass of test dust captured
I.S. EN ISO 16890-3:2016 AIR FILTERS FOR GENERAL VENTILATION - PART 3: DETERMINATION OF THE GRAVIMETRIC EFFICIENCY AND THE AIR FLOW RESISTANCE VERSUS THE MASS OF TEST DUST CAPTURED (ISO 16890-3:2016)
I.S. EN ISO 16890-2:2016 AIR FILTERS FOR GENERAL VENTILATION - PART 2: MEASUREMENT OF FRACTIONAL EFFICIENCY AND AIR FLOW RESISTANCE (ISO 16890-2:2016)
I.S. EN ISO 16890-4:2016 AIR FILTERS FOR GENERAL VENTILATION - PART 4: CONDITIONING METHOD TO DETERMINE THE MINIMUM FRACTIONAL TEST EFFICIENCY (ISO 16890-4:2016)
PD CEN/TR 16798-4:2017 Energy performance of buildings. Ventilation for buildings Interpretation of the requirements in EN 16798-3. For non-residential buildings. Performance requirements for ventilation and room-conditioning systems(Modules M5-1, M5-4)
DIN EN ISO 16890-3:2015-08 (Draft) AIR FILTERS FOR GENERAL VENTILATION - PART 3: DETERMINATION OF THE GRAVIMETRIC EFFICIENCY AND THE AIR FLOW RESISTANCE VERSUS THE MASS OF TEST DUST CAPTURED (ISO 16890-3:2016)
DIN EN ISO 16890-3:2017-08 AIR FILTERS FOR GENERAL VENTILATION - PART 3: DETERMINATION OF THE GRAVIMETRIC EFFICIENCY AND THE AIR FLOW RESISTANCE VERSUS THE MASS OF TEST DUST CAPTURED (ISO 16890-3:2016)
DIN EN ISO 16890-4:2017-08 Air filters for general ventilation - Part 4: Conditioning method to determine the minimum fractional test efficiency (ISO 16890-4:2016)
ISO 29464:2017 Cleaning of air and other gases Terminology
DIN EN ISO 16890-2 E : 2017 AIR FILTERS FOR GENERAL VENTILATION - PART 2: MEASUREMENT OF FRACTIONAL EFFICIENCY AND AIR FLOW RESISTANCE (ISO 16890-2:2016)
DIN EN ISO 16890-4:2015-08 (Draft) AIR FILTERS FOR GENERAL VENTILATION - PART 4: CONDITIONING METHOD TO DETERMINE THE MINIMUM FRACTIONAL TEST EFFICIENCY (ISO 16890-4:2016)
DIN EN ISO 16890-2:2017-08 Air filters for general ventilation - Part 2: Measurement of fractional efficiency and air flow resistance (ISO 16890-2:2016)
CEN/TR 16798-4:2017 Energy performance of buildings - Ventilation for buildings - Part 4: Interpretation of the requirements in EN 16798- 3 - For non-residential buildings - Performance requirements for ventilation and room-conditioning systems(Modules M5-1, M5-4)
I.S. EN 16893:2018 CONSERVATION OF CULTURAL HERITAGE - SPECIFICATIONS FOR LOCATION, CONSTRUCTION AND MODIFICATION OF BUILDINGS OR ROOMS INTENDED FOR THE STORAGE OR USE OF HERITAGE COLLECTIONS
BS ISO 29464:2017 Cleaning of air and other gases. Terminology
ISO 16890-2:2016 Air filters for general ventilation — Part 2: Measurement of fractional efficiency and air flow resistance
ISO 16890-3:2016 Air filters for general ventilation Part 3: Determination of the gravimetric efficiency and the air flow resistance versus the mass of test dust captured
ISO 16890-4:2016 Air filters for general ventilation — Part 4: Conditioning method to determine the minimum fractional test efficiency
BS EN ISO 16890-4:2016 Air filters for general ventilation Conditioning method to determine the minimum fractional test efficiency
EN ISO 16890-2:2016 Air filters for general ventilation - Part 2: Measurement of fractional efficiency and air flow resistance (ISO 16890-2:2016)
EN ISO 16890-4:2016 Air filters for general ventilation - Part 4: Conditioning method to determine the minimum fractional test efficiency (ISO 16890-4:2016)
EN ISO 16890-3:2016 Air filters for general ventilation - Part 3: Determination of the gravimetric efficiency and the air flow resistance versus the mass of test dust captured (ISO 16890-3:2016)
S.R. CEN/TR 16798-4:2017 ENERGY PERFORMANCE OF BUILDINGS - VENTILATION FOR BUILDINGS - PART 4: INTERPRETATION OF THE REQUIREMENTS IN EN 16798-3 - FOR NON-RESIDENTIAL BUILDINGS - PERFORMANCE REQUIREMENTS FOR VENTILATION AND ROOM-CONDITIONING SYSTEMS (MODULES M5-1, M5-4)
UNE-EN ISO 16890-4:2017 Air filters for general ventilation - Part 4: Conditioning method to determine the minimum fractional test efficiency (ISO 16890-4:2016)

ISO 16890-2:2016 Air filters for general ventilation — Part 2: Measurement of fractional efficiency and air flow resistance
ISO 15957:2015 Test dusts for evaluating air cleaning equipment
ASTM F 328 : 1998 Standard Practice for Calibration of an Airborne Particle Counter Using Monodisperse Spherical Particles
ASHRAE 52.2 : 2017 METHOD OF TESTING GENERAL VENTILATION AIR-CLEANING DEVICES FOR REMOVAL EFFICIENCY BY PARTICLE SIZE
ASTM F 649 : 2001 Standard Practice for Secondary Calibration of Airborne Particle Counter Using Comparison Procedures (Withdrawn 2007)
ISO 29464:2017 Cleaning of air and other gases Terminology
ISO 16890-3:2016 Air filters for general ventilation Part 3: Determination of the gravimetric efficiency and the air flow resistance versus the mass of test dust captured
ISO 16890-4:2016 Air filters for general ventilation — Part 4: Conditioning method to determine the minimum fractional test efficiency
EN 779:2012 Particulate air filters for general ventilation - Determination of the filtration performance
ASME MFC 3M : 2004 MEASUREMENT OF FLUID FLOW IN PIPES USING ORIFICE, NOZZLE, AND VENTURI
ISO 29463-3:2011 High-efficiency filters and filter media for removing particles in air — Part 3: Testing flat sheet filter media
EN 12341:2014 Ambient air - Standard gravimetric measurement method for the determination of the PM10 or PM2,5 mass concentration of suspended particulate matter

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