Document X8rBo2vpbpRzv41Kby3z1XN6B
Clayton tmironmental Consultants, Inc.
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locations equidistant from the vacuum cleaner exhaust port. An additional area sample,' located in the. north,
east corner of the room, was taken immediately after the vacuum cleaner iss turned off. The room was then venti lated for approximately two hours to minimize the possi bility of interference with subsequent tests. To reduce the possibility that fibrous dust, which might normally he present in the indoor air, or fibers generated by a previous test might interfere with the analyses of the test samples, "control" samples were taken immediately prior to each of the tests before any hand\ing of the asbestos-containing dust.
Since it would be difficult, if not impossible, to simu
late with a commercial asbestos product actual "brake
dust," with respect to particle and fiber size distribu tions end thus to simulate the efficiency with which the
fibers were removed by the- vacuum cleaner filtration sys
tem, it was desirable to use for the evaluation actual
asbcstos-containi r.p. dust generated in a manner similar
to that associated with automobile maintenance procedures,
c.g., grinding of brake shoes. A bulk sample of dust pro
duced by grinding of brak-. shoes was obtained from a local
automotive a:;lc plant. This dust had been collected by
fabric filters incorporated in the plant's local exhaust
ventilation systems. The physical appearance of the dust
was that of a very fine, dry, Ri'iyish-brovn powder simi
lar in consistency to talcum or face powder.
No other
dust was mixed with the brake dust during or after en
trainment by the exhaust-fi11rat i on systems. The dust
was analyzed in the Clayton laboratory for percent fiber
and fiber length distribution by phase contrast micro
scopy at 400X magnification. The results indicated that
the dust was composed of approximately 19.4 percent fiber
(i.c. , fiber to particle ratio), and that fiber lengths
ranged from approximately four micrometers to greater
than fifty micrometers. Apprcximate1y four percent of
the fibers were less than si:: micrometers in length,
about forty-two percent measured betwter six end twelve
micrometers, and the remaining fifty-iour` percent meas
ured greater than twelve micrometers in length.
sampling and analytical methods
both general jrve and breathing zone samples were col lected by droving air at a nominal flowrate of two liters p:r minute through Is 7. mm- diameter cellulose eater mem brane filter.- : Mi ) 1 i oorv, Type AA, nominal pore site ).E % micrometer-} m. .tunica i v a cvrec-pioct c ...> c 11 u v,jt.t t...cover removed,- uaing portable battery-operated pumps (Mine
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