Nanoparticle exposure at nanotechnology workplaces: A review
Top Cited Papers
Open Access
- 1 January 2011
- journal article
- review article
- Published by Springer Nature in Particle and Fibre Toxicology
- Vol. 8 (1) , 22
- https://doi.org/10.1186/1743-8977-8-22
Abstract
Risk, associated with nanomaterial use, is determined by exposure and hazard potential of these materials. Both topics cannot be evaluated absolutely independently. Realistic dose concentrations should be tested based on stringent exposure assessments for the corresponding nanomaterial taking into account also the environmental and product matrix. This review focuses on current available information from peer reviewed publications related to airborne nanomaterial exposure. Two approaches to derive realistic exposure values are differentiated and independently presented; those based on workplace measurements and the others based on simulations in laboratories. An assessment of the current available workplace measurement data using a matrix, which is related to nanomaterials and work processes, shows, that data are available on the likelihood of release and possible exposure. Laboratory studies are seen as an important complementary source of information on particle release processes and hence for possible exposure. In both cases, whether workplace measurements or laboratories studies, the issue of background particles is a major problem. From this review, major areas for future activities and focal points are identified.Keywords
This publication has 54 references indexed in Scilit:
- Exposure assessment of workplaces manufacturing nanosized TiO2and silverInhalation Toxicology, 2011
- Characterization of Nanoparticle Release from Surface Coatings by the Simulation of a Sanding ProcessAnnals of Occupational Hygiene, 2010
- Comparison of dust released from sanding conventional and nanoparticle-doped wall and wood coatingsJournal of Exposure Science & Environmental Epidemiology, 2010
- Aerosol Monitoring during Carbon Nanofiber Production: Mobile Direct-Reading SamplingAnnals of Occupational Hygiene, 2010
- Nanoparticle Emission Assessment Technique (NEAT) for the Identification and Measurement of Potential Inhalation Exposure to Engineered Nanomaterials—Part B: Results from 12 Field StudiesJournal of Occupational and Environmental Hygiene, 2010
- Potential for Occupational Exposure to Engineered Carbon-Based Nanomaterials in Environmental Laboratory StudiesEnvironmental Health Perspectives, 2010
- Comparing aerosol surface-area measurements of monodisperse ultrafine silver agglomerates by mobility analysis, transmission electron microscopy and diffusion chargingJournal of Aerosol Science, 2005
- Exposure to Carbon Nanotube Material: Aerosol Release During the Handling of Unrefined Single-Walled Carbon Nanotube MaterialJournal of Toxicology and Environmental Health, Part A, 2004
- Size-Dependent Proinflammatory Effects of Ultrafine Polystyrene Particles: A Role for Surface Area and Oxidative Stress in the Enhanced Activity of UltrafinesToxicology and Applied Pharmacology, 2001
- Development of an Electrostatic Precipitator for Off-Line Particle AnalysisAerosol Science and Technology, 1999