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  4. Assessing the potential exposure risk and control for airborne titanium dioxide and carbon black nanoparticles in the workplace
 
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Assessing the potential exposure risk and control for airborne titanium dioxide and carbon black nanoparticles in the workplace

Journal
Environmental Science and Pollution Research
Journal Volume
18
Journal Issue
6
Pages
877-889
Date Issued
2011
Author(s)
Ling M.-P.
CHIA-PIN CHIO  
Chou W.-C.
Chen W.-Y.
Hsieh N.-H.
Lin Y.-J.
CHUNG-MIN LIAO  
DOI
10.1007/s11356-011-0447-y
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-79960094406&doi=10.1007%2fs11356-011-0447-y&partnerID=40&md5=ef05a0ef7f8159ee7243f0de3951aaa5
https://scholars.lib.ntu.edu.tw/handle/123456789/602131
Abstract
This study assessed the potential exposure risks for workers in the workplace exposed to airborne titanium dioxide nanoparticles (TiO(2)-NPs) and carbon black nanoparticles (CB-NPs). The risk management control strategies were also developed for the NP engineering workplace. The method used in this study was based on the integrated multiple-path particle dosimetry model to estimate the cumulative dose of nanoparticles (NPs) in the human lung. The study then analyzed toxicological effects such as pulmonary cytotoxicity and inflammation and evaluated the health risk associated with exposure to NPs in the workplace. Risk control measures such as the use of ventilating systems and N95 respirator protection are also discussed. This study found that: (1) the cumulative dose of CB-NPs was greater than that of TiO(2)-NPs in human lungs; (2) there is a potential health risk to workers exposed to TiO(2)-NPs and CB-NPs in the absence of control measures in the workplace, with higher health risks associated with CB-NPs than TiO(2)-NPs; and (3) the use of a ventilating system and an N95 respirator offers greater protection in the workplace and significantly reduces the health risks associated with NP exposure. The present risk management control strategy suggests that the most effective way to reduce airborne NPs is to incorporate the use of a ventilating system combined with N95 respirator protection. This will enable the concentrations of TiO(2)-NPs and CB-NPs to be reduced to acceptable exposure levels.
Type
journal article

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