Occupational Exposure to Airborne Nanomaterials: An Assessment of Worker Exposure to Aerosolized Metal Oxide Nanoparticles in Semiconductor Wastewater Treatment

被引:21
作者
Brenner, Sara A. [1 ]
Neu-Baker, Nicole M. [1 ]
Caglayan, Cihan [2 ]
Zurbenko, Igor G. [2 ]
机构
[1] SUNY Albany, Polytech Inst, Coll Nanoscale Sci, Nanobiosci Constellat, Albany, NY 12203 USA
[2] SUNY Albany, Dept Epidemiol & Biostat, Sch Publ Hlth, Rensselaer, NY USA
关键词
engineered nanomaterials; nanometal oxides; semiconductor fabrication; chemical mechanical planarization; occupational exposure assessment; LUNG-CANCER CELLS; OXIDATIVE STRESS; ENGINEERED NANOMATERIALS; IN-VITRO; SILICA NANOPARTICLES; TOXICITY; CERIUM; PARTICLES; CYTOTOXICITY; WORKPLACE;
D O I
10.1080/15459624.2015.1018515
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This study characterized potential inhalation exposures of workers to nanometal oxides associated with industrial wastewater treatment processes in a semiconductor research and development facility. Exposure assessment methodology was designed to capture aerosolized engineered nanomaterials associated with the chemical mechanical planarization wafer polishing process that were accessible for worker contact via inhalation in the on-site wastewater treatment facility. The research team conducted air sampling using a combination of filter-based capture methods for particle identification and characterization and real-time direct-reading instruments for semi-quantitation of particle number concentration. Filter-based samples were analyzed using electron microscopy and energy-dispersive x-ray spectroscopy while real-time particle counting data underwent statistical analysis. Sampling conducted over 14 months included 5 discrete sampling series events for 7 job tasks in coordination with on-site employees. The number of filter-based samples captured for analysis by electron microscopy was: 5 from personal breathing zone, 4 from task areas, and 3 from the background. Direct-reading instruments collected data for 5 sample collection periods in the task area and the background, and 2 extended background collection periods. Engineered nanomaterials of interest (Si, Al, Ce) were identified by electron microscopy in filter-based samples from all areas of collection, existing as agglomerates (>500 nm) and nanoparticles (100 nm-500 nm). Particle counts showed an increase in number concentration during and after selected tasks above background. While additional data is needed to support further statistical analysis and determine trends, this initial investigation suggests that nanoparticles used or generated by chemical mechanical planarization become aerosolized and may be accessible for inhalation exposures by workers in wastewater treatment facilities. Additional research is needed to further quantify the level of exposure and determine the potential human health impacts.
引用
收藏
页码:469 / 481
页数:13
相关论文
共 50 条
[1]   Exposure Assessment Approaches for Engineered Nanomaterials [J].
Abbott, Linda C. ;
Maynard, Andrew D. .
RISK ANALYSIS, 2010, 30 (11) :1634-1644
[2]  
[Anonymous], 2013, NIOSH PUBL
[3]  
[Anonymous], 2013, CURRENT INTELLIGENCE
[4]  
Borst C.L., 2002, CHEM MECH POLISHING
[5]   Occupational exposure to nanomaterials: Assessing the potential for cutaneous exposure to metal oxide nanoparticles in a semiconductor facility [J].
Brenner, Sara A. ;
Neu-Baker, Nicole M. .
JOURNAL OF CHEMICAL HEALTH & SAFETY, 2015, 22 (04) :10-19
[6]   Harmonization of Measurement Strategies for Exposure to Manufactured Nano-Objects; Report of a Workshop [J].
Brouwer, Derk ;
Berges, Markus ;
Virji, Mohammed Abbas ;
Fransman, Wouter ;
Bello, Dhimiter ;
Hodson, Laura ;
Gabriel, Stefan ;
Tielemans, Erik .
ANNALS OF OCCUPATIONAL HYGIENE, 2012, 56 (01) :1-9
[7]  
Centers for Disease Control and Prevention (CDC)/National Institute for Occupational Safety and Health (NIOSH)/Nanotechnology Research Center (NTRC), 2007, PROGR SAF NAN WORKPL
[8]   Metal Oxide Nanoparticles Induce Unique Inflammatory Footprints in the Lung: Important Implications for Nanoparticle Testing [J].
Cho, Wan-Seob ;
Duffin, Rodger ;
Poland, Craig A. ;
Howie, Sarah E. M. ;
MacNee, William ;
Bradley, Mark ;
Megson, Ian L. ;
Donaldson, Ken .
ENVIRONMENTAL HEALTH PERSPECTIVES, 2010, 118 (12) :1699-1706
[9]   Cerium oxide nanoparticles protect gastrointestinal epithelium from radiation-induced damage by reduction of reactive oxygen species and upregulation of superoxide dismutase 2 [J].
Colon, Jimmie ;
Hsieh, Nelson ;
Ferguson, Amber ;
Kupelian, Patrick ;
Seal, Sudipta ;
Jenkins, D. Wayne ;
Baker, Cheryl H. .
NANOMEDICINE-NANOTECHNOLOGY BIOLOGY AND MEDICINE, 2010, 6 (05) :698-705
[10]   Exposure Characterization of Metal Oxide Nanoparticles in the Workplace [J].
Curwin, Brian ;
Bertke, Steve .
JOURNAL OF OCCUPATIONAL AND ENVIRONMENTAL HYGIENE, 2011, 8 (10) :580-587