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Comparison of Real Time Nanoparticle Monitoring Instruments in the Workplaces

Authors :
Seunghon Ham
Naroo Lee
Igchun Eom
Byoungcheun Lee
Perng-Jy Tsai
Kiyoung Lee
Chungsik Yoon
Source :
Safety and Health at Work, Vol 7, Iss 4, Pp 381-388 (2016)
Publication Year :
2016
Publisher :
Elsevier, 2016.

Abstract

Background: Relationships among portable scanning mobility particle sizer (P-SMPS), condensation particle counter (CPC), and surface area monitor (SAM), which are different metric measurement devices, were investigated, and two widely used research grade (RG)-SMPSs were compared to harmonize the measurement protocols. Methods: Pearson correlation analysis was performed to compare the relation between P-SMPS, CPC, and SAM and two common RG-SMPS. Results: For laboratory and engineered nanoparticle (ENP) workplaces, correlation among devices showed good relationships. Correlation among devices was fair in unintended nanoparticle (UNP)-emitting workplaces. This is partly explained by the fact that shape of particles was not spherical, although calibration of sampling instruments was performed using spherical particles and the concentration was very high at the UNP workplaces to allow them to aggregate more easily. Chain-like particles were found by scanning electron microscope in UNP workplaces. The CPC or SAM could be used as an alternative instrument instead of SMPS at the ENP-handling workplaces. At the UNP workplaces, where concentration is high, real-time instruments should be used with caution. There are significant differences between the two SMPSs tested. TSI SMPS showed about 20% higher concentration than the Grimm SMPS in all workplaces. Conclusions: For nanoparticle measurement, CPC and SAM might be useful to find source of emission at laboratory and ENP workplaces instead of P-SMPS in the first stage. An SMPS is required to measure with high accuracy. Caution is necessary when comparing data from different nanoparticle measurement devices and RG-SMPSs.

Details

Language :
English
ISSN :
20937911
Volume :
7
Issue :
4
Database :
Directory of Open Access Journals
Journal :
Safety and Health at Work
Publication Type :
Academic Journal
Accession number :
edsdoj.b4147de459cb4ea6b5acb474b31b93a7
Document Type :
article
Full Text :
https://doi.org/10.1016/j.shaw.2016.08.001