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BSI PD CEN ISO/TS 19590:2024

$167.15

Nanotechnologies. Characterization of nano-objects using single particle inductively coupled plasma mass spectrometry

Published By Publication Date Number of Pages
BSI 2024 38
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This document specifies parameters, conditions and considerations for the reliable detection, characterization and quantification of nano-objects in aqueous suspension by spICP-MS. Particle number concentration, particle mass, particle mass concentration, particle spherical equivalent diameter, and number-based size distribution are considered the main measurands, but the technique also allows for determination of the dissolved element mass fraction in the sample. This document provides general guidelines and procedures related to spICP-MS application, and specifies minimal reporting requirements.

PDF Catalog

PDF Pages PDF Title
2 undefined
12 5.1 Introduction to spICP-MS
14 5.2 Reference material dependent calibration methods
5.2.1 Particle frequency method
16 5.2.2 Particle size method
17 5.3 Reference material free calibration methods
5.3.1 Dynamic mass flow method
19 5.3.2 Microdroplet calibration method
21 5.4 Particle number concentration determination
22 5.5 Particle mass and corresponding spherical equivalent diameter determination
25 5.6 Dissolved element fraction
5.7 Multi-isotope and multi-elemental analysis
26 5.8 Data treatment
27 6.1 Sample specification
6.2 Sample preparation
28 6.2.1 Aqueous suspensions and paste
6.2.2 Non-aqueous suspensions and creams
29 6.2.3 Powders
6.2.4 Larger pieces of solids
6.3 Selection of reference materials, quality control materials and representative test materials
30 6.4 Optimization of ICP-MS operating conditions
31 7.1 Applicability of spICP-MS
7.2 System qualification and quality control
32 7.3 Method performance criteria
7.3.1 Particle number concentration
7.3.2 Particle mass and equivalent spherical diameter
33 7.4 Method precision and measurement uncertainty
34 9.1 Apparatus and measurement parameters
9.2 Reporting test results
BSI PD CEN ISO/TS 19590:2024
$167.15