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ASTM D 8208 : 2019

Current
Current

The latest, up-to-date edition.

Standard Practice for Collection of Non-Fibrous Nanoparticles Using a Nanoparticle Respiratory Deposition (NRD) Sampler
Available format(s)

Hardcopy , PDF

Language(s)

English

Published date

01-06-2019

This practice describes specified apparatus and procedures for collection of non-fibrous airborne metal nanoparticles generated during work activities.

1.1This practice describes specified apparatus and procedures for collection of non-fibrous airborne metal nanoparticles generated during work activities.

1.2Nanoparticle respiratory deposition (NRD) samplers are designed to follow a nanoparticulate matter (NPM) deposition curve based on the International Commission on Radiological Protection (ICRP) model for deposition of particles smaller than 300 nm (the minimum deposition for submicrometre particles) while removing the larger particles (1).2

1.3This practice is applicable to personal and area sampling during work processes and situations where metal nanoparticles may be generated (for example, welding, smelting, shooting ranges).

1.4This practice is intended for use by professionals experienced in the use of devices for occupational air sampling (such as cyclone samplers).

1.5This practice is not applicable to the sampling of fibrous nanoparticles such as carbon nanotubes.

1.6Detailed operating instructions are not provided owing to differences among various makes and models of suitable devices and instruments. The user is expected to follow specific instructions provided by the manufacturers of particular items of equipment. This practice does not address comparative accuracy of different devices nor the precision between instruments of the same make and model.

1.7This practice contains notes that are explanatory and are not part of the mandatory requirements of the method.

1.8The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

1.9This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use.

1.10This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

Committee
D 22
DocumentType
Standard Practice
Pages
8
ProductNote
THIS STANDARD ALSO REFERS TO :ISO 17205
PublisherName
American Society for Testing and Materials
Status
Current

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ASTM D 7202 : 2015 Standard Test Method for Determination of Beryllium in the Workplace by Extraction and Optical Fluorescence Detection
ASTM D 7202 : 2021 Standard Test Method for Determination of Beryllium in the Workplace by Extraction and Optical Fluorescence Detection
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ASTM D 7439 : 2014 Standard Test Method for Determination of Elements in Airborne Particulate Matter by Inductively Coupled Plasma–Mass Spectrometry
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ASTM D 1356 : 2020 Standard Terminology Relating to Sampling and Analysis of Atmospheres
ASTM D 1356 : 2000 : REV A Standard Terminology Relating to Sampling and Analysis of Atmospheres
ASTM D 5337 : 2011 Standard Practice for Flow Rate for Calibration of Personal Sampling Pumps
ASTM D 4532 : 2010 Standard Test Method for Respirable Dust in Workplace Atmospheres Using Cyclone Samplers
ASTM D 4532 : 2022 Standard Test Method for Respirable Dust in Workplace Atmospheres Using Cyclone Samplers
ASTM D 1356 : 2014 : REV B Standard Terminology Relating to Sampling and Analysis of Atmospheres
ASTM D 1356 : 2014 Standard Terminology Relating to Sampling and Analysis of Atmospheres
ASTM E 1370 : 1996 : R2008 Standard Guide for Air Sampling Strategies for Worker and Workplace Protection
ASTM D 7202 : 2022 Standard Test Method for Determination of Beryllium in the Workplace by Extraction and Optical Fluorescence Detection
ASTM D 7439 : 2021 Standard Test Method for Determination of Elements in Airborne Particulate Matter by Inductively Coupled Plasma–Mass Spectrometry
ASTM D 6832 : 2013 : R2018 Standard Test Method for the Determination of Hexavalent Chromium in Workplace Air by Ion Chromatography and Spectrophotometric Measurement Using 1,5-diphenylcarbazide
ASTM E 1370 : 2021 Standard Guide for Air Sampling Strategies for Worker and Workplace Protection
ASTM D 5337 : 2004 Standard Practice for Flow Rate for Calibration of Personal Sampling Pumps
ASTM D 7202 : 2005 Standard Test Method for Determination of Beryllium in the Workplace Using Field-Based Extraction and Fluorescence Detection
ASTM D 1356 : 2005 Standard Terminology Relating to Sampling and Analysis of Atmospheres
ASTM D 7035 : 2004 Standard Test Method for Determination of Metals and Metalloids in Airborne Particulate Matter by Inductively Coupled Plasma Atomic Emission Spectrometry (ICP-AES)
ASTM D 6832 : 2002 Standard Test Method for the Determination of Hexavalent Chromium in Workplace Air by Ion Chromatography and Spectrophotometric Measurement Using 1,5-diphenylcarbazide

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