Document 1Q6J30zjo6adJnVpdwdYDGgqK
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Appendix A. AsbMtoa-Containing Materials Found In Buildings*
Subdivision Surfacing malarial
Preformed thermal insulating products
Textiles
Camantitious concrete.like products
Papar products
Roofing felts
-
Generic name
sprayed- or
troweiad-on
Asbestos 1%:i Oates of use 1-96 1336-1970
Binder/sizing
sodium silicate. portend cement, organic binders.
betts, blocks, and pipe covering
85% magnesia
15 1926-1949
magnesium carbonate
calcium silicate
doth* blankets (fire)*
felts: blue stripe red stripe grtan stnp
sheets eord/rope/yern* tubing tape/strip curtains*
(theatre, welding)
5-8 1949-1971
100 90-96
to
90 95
50-95
80-100 80-65
90
1910-present 1920-present 1920-present 1920-present 1920-present
1920-preeent
1920-preeem 1920-present 1920-preeent
50-65 1946-present
calcium silicate
non# cotton/wool cotton cotton cotton cotton/wool cotton/wool cotton/ wool cot ton/ wool
cotton
extrusion panels corrugated
flat flexible flexible perforated laminated
(outer surface) roof tiles clapboard end shingles clapboard siding shingles rooting ghtngltt
pipe
- . ... . . . 8 - 1986-1977 20-45 1930-preaent 40-50 1930-present 30-50 1930-present 30-50 1930-present 35-50 1930-preeem
20-30 1930-present
12-15 12-14 20-32 20-15
1*44-1946
unknown-present unknown-present 1935-present
Portland eamant Portland cement Portland cement Portland eamant Portland eament Portland cement
Portland camant
Portland cemont Portland cement protlsnd cement Portland cement
corrugated high temperature moderate temperature
indented
millboard
90
35-70 99
80-85
1935-present 1910-present 1936-preeant 1925-present
sodium silicate starch
cotton and organic binder starch, lime, cley
smooth surface mineral surface shingles pipeline
10-15 10-15
1
10
1910-preeent 1910-present 1971-1974 1920-preeent
asphalt asphalt
asphalt asphalt
* The information in this Aopendix liken, with modification, from: Lory EE, Coin OC. February 1961. Managomtnt Proctdur* for Aautamant of Fnob/t Asbottos Intuito'ng Matarmt, Port Huanama, CA; Clvi Engineering Laboratory Naval Construction Battalion Canter. The U.S. Navy prohibits the use of asbestos-containing matsnets whan acceptable nonasbaetos substitutes have bean identified. Laboratory aprons, gloves, cord, rope, fire blankets, and curtains may be common in schools.
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Appendix A. (continued)
Subdrvition
Asbestos-containing compounds
Gr>#ric namt
caulking puttiat adhesive (cold sppliadl joint compound roofing asphalt maatica asphalt tila camant rool putty ptasttr/ttuceo spaefcias
Aibottos ebony products Flooring lit* and
Shast Goods
Wsllcovoring Paints and coatings
saalants hre/water camant insulation eamant finishing camam, magnttia
vinyl/asbestos tile ssphalt/atbetios tile shaat goods/rasiiiant
vinyl wallpaper
roof coating air tiohi
Asoestet (%l
30 5-25
5 5-25 13-25 10-25 2-tO 3-5
50-55 20-100
55 15 so
Oatas of usa
1930-prssam 1945-prasam 1945-1975 unknown-present 1920-prssam 1959-present unkrxnvn-prasant unknown-praters 1930-1975
1935-prasant 1900-1973 1920-1973 1925-1950 1930-prasant
BtnOtf/sizing
linsaad oil asphalt asphalt asphalt asphalt asphalt asphalt Portland camant tareft, cMm. synthatvc
raams caster oil or polyisooutylene day day magnesium carbonate Portland camant
21 25-33
30
1950-prasani
1920-prasant 1950-prasant
poMwny1)ehlorida
asphalt dry oils
6-t unknown-prasant --
*-? 1900-pressnt 15 1940-orasant
asphalt asphalt
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Appendix B. Common Units Used In Measuring Airborns Asbestos Concentrations
Length
1 meter (m)
= 39.37 inches or 3.28 feet
100 centimeters (cm) = 1 meter
1.000.000 micrometers (pm) * 1 meter
Volume
X~7
1.000,000 cm5 1 m5 1.000 cm3 = 1 liter
V_______
1 cubic m (m3)
Weight (mess)
454 grams (g) 1 pound - 1,000.000.000 nenogrsms (ng) * 1 gram -............
Concentration (mass contained in a stated volume)
2 fibers per cm3 (the current 8*hour OSHA industrial standard) means that 2 fibers are present in each cm3 of air. Since there are 1.000.000cm3 in 1 m3, there would be 2,000,000 fibers in a m3.
If each fiber is chrysotile asbestos (density of 0.0026 ng/pm3) and is just long and thick enough to be detected by the NIOSH procedure for determining compliance with the OSHA standard (5 pm in length and 0.3 pm in diameter), it would weight 0.0092 ng:
Mass * rr/4 (diameter)3 (length) (density) it/4 (0.0 pm)3 (8 pm) (0.0026 ng/pm3) * 0.0092 ng
A total of 2,000,000 of these fibers would weigh about 1,800 ng.
Since the fibers in the above example are the smallest (shortest and thinnest) counted by the NIOSH procedure, fibers actually measured using this protocol are typically larger and thus weigh more. Comparison of fibers in this example with those actually measured is further complicated since nonasbestos as well as asbestos fibers are counted by the NIOSH protocol. As noted in the footnote to Figure 1, comparisons of total fibers counted with the mass of
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asbestos measured in air sample* indicate that, on an average, about 30 fiber* counted by the NIOSH procedures equal one nanogram of asbestos. This relationship applies to samples collected during the spray application of asbeatos insulation. For these samples, each fiber counted weighs an average of 0.033 ng, or about 37 times more than those in the examola and 2.000,000 of them would weigh about 67,000 ng.
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