ISO 13137:2022

International Standard   Current Edition · Approved on 31 August 2022

Workplace atmospheres — Pumps for personal sampling of chemical and biological agents — Requirements and test methods

ISO 13137:2022 Files

English 29 Pages
Current Edition
194.46 USD

ISO 13137:2022 Scope

This document specifies performance requirements for battery powered pumps used for personal sampling of chemical and biological agents in workplace air. It also specifies test methods in order to determine the performance characteristics of such pumps under prescribed laboratory conditions.

This document is applicable to battery powered pumps having a nominal volumetric flow rate above 10 ml ⋅ min−1, as used with combinations of sampler and collection substrate for sampling of gases, vapours, dusts, fumes, mists and fibres.

This document is primarily intended for flow-controlled pumps.

Best Sellers

YSMO GSO 150-2:2020
GSO 150-2:2013 
Yemeni Technical Regulation
Expiration dates for food products - Part 2 : Voluntary expiration dates
GSO 150-2:2013
 
Gulf Standard
Expiration dates for food products - Part 2 : Voluntary expiration dates
YSMO GSO 2055-1:2020
GSO 2055-1:2015 
Yemeni Standard
HALAL FOOD - Part 1 : General Requirements
GSO 2055-1:2015
 
Gulf Technical Regulation
HALAL FOOD - Part 1 : General Requirements

Recently Published

ISO 24690:2025
 
International Standard
Glass reinforced thermosetting plastic (GRP) pipes — Test method for the determination of long-term pressure endurance strength
ISO 15614-11:2025
 
International Standard
Specification and qualification of welding procedures for metallic materials — Welding procedure test — Part 11: Electron and laser beam welding
IEC/TS 81001-2-2:2025
 
International Standard
Health software and health IT systems safety, effectiveness and security — Part 2-2: Guidance for the implementation, disclosure and communication of security needs, risks and controls
ISO 37190:2025
 
International Standard
Guidance for practical implementation of ISO 37155 series for supervising at each life cycle phase of smart community infrastructures