Aerosol resuspension from fabric: implications for personal monitoring in the beryllium industry
The fabric used for work clothing at an industrial site can significantly influence personal monitor (PM) exposure estimates because dust resuspension from clothing can increase the concentration at the sampler inlet. The magnitude of the effect depends on removal forces and on the interaction of the contaminant particles with work garments. Aerosol deposition and resuspension on cotton and Nomex aramid fabrics was evaluated at a beryllium refinery. Electrostatically charged cotton backdrops collected more beryllium than neutral controls, but electronegative Nomex backdrops did not. Moving fabrics collected more beryllium than did stationary controls. When contaminated fabrics were agitated, PMs mounted 2.5 cm in front of the fabric collected more beryllium than monitors above the fabric, positioned to simulate the nose or mouth. The difference between the air concentrations measured by these PMs increased with Be loading and tended to level off for highly contaminated fabric. Cotton resuspended a larger fraction of its contaminant load than Nomex. These results are consistent with current knowledge of the behavior of particles on fabric fibers. Aerosol resuspension from garments is an important consideration in assessing inhalation exposure to toxic dusts. A garment may attract and retain toxic particles. This contamination is then available for later resuspension.
- Research Organization:
- New York Univ., New York
- OSTI ID:
- 5667336
- Report Number(s):
- CONF-8505143-
- Journal Information:
- Am. Ind. Hyg. Assoc. J.; (United States), Vol. 46:2; Conference: American Industrial Hygiene conference, Las Vegas, NV, USA, 19 May 1985
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
BERYLLIUM
MONITORING
PARTICLE RESUSPENSION
PROTECTIVE CLOTHING
CONTAMINATION
AEROSOLS
COTTON
DUSTS
INDUSTRIAL PLANTS
TEXTILES
ALKALINE EARTH METALS
CLOTHING
COLLOIDS
DISPERSIONS
ELEMENTS
METALS
SOLS
500200* - Environment
Atmospheric- Chemicals Monitoring & Transport- (-1989)