Artigo Revisado por pares

Aerosols Generated During Beryllium Machining

2000; Lippincott Williams & Wilkins; Volume: 42; Issue: 1 Linguagem: Inglês

10.1097/00043764-200001000-00006

ISSN

1536-5948

Autores

John W. Martyny, Mark D. Hoover, Margaret M. Mroz, Kimberly Ellis, Lisa A. Maier, Karen L. Sheff, Lee S. Newman,

Tópico(s)

Analytical chemistry methods development

Resumo

Some beryllium processes, especially machining, are associated with an increased risk of beryllium sensitization and disease. Little is known about exposure characteristics contributing to risk, such as particle size. This study examined the characteristics of beryllium machining exposures under actual working conditions. Stationary samples, using eight-stage Lovelace Multijet Cascade Impactors, were taken at the process point of operation and at the closest point that the worker would routinely approach. Paired samples were collected at the operator's breathing zone by using a Marple Personal Cascade Impactor and a 35-mm closed-faced cassette. More than 50% of the beryllium machining particles in the breathing zone were less than 10 μm in aerodynamic diameter. This small particle size may result in beryllium deposition into the deepest portion of the lung and may explain elevated rates of sensitization among beryllium machinists.

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