Document 7RmN23a8y8r5LjL7eB301Zz2a
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Preprintfrom the 1986
BUREAU OF MINES MINERALS YEARBOOK
Asbestos
UNITED STATES DEPARTMENT OF THE INTERIOR
CTD007088
1
UNITED STATES DEPARTMENT OF THE INTERIOR * Donald Paul Hodel, Secretary BUREAU OF MINES * Oavid S. Brown. Acting Director
This publication it a chapter from the current Bureau of Miner Mineral! Yearbook, comprising Voluma /, Motali and Minoralt; Volume H, Aran deport*: DomesMe; Volume III, Area teporft: International. The separate volumes ot the Yearbook are told by the Superintendent of Documents, Washington, D.C. 20402.
CTD007089
Asbestos
By Robert L. Virta1
U.S. apparent consumption of asbestos declined in 1986. Shipments from domestic mines decreased 11% and imports for con sumption decreased 24% from those of 1985. Adverse publicity on asbestos-related health risks and a proposed Environmental Protection Agency (EPA) ban of certain asbestos products contributed to the poor market conditions in the United States.
Domestic Data Coverage.--Domestic pro duction data for asbestos are developed by the Bureau of Mines by means of a volun tary industry survey. Of the three can vassed operations to which a survey request was sent, all responded, representing 100% of the total production data shown in table 1.
Table 1__ Salient asbestos statistics
1982 1983 1984 1985 1986
United States:
Production <*alear.
Quantity____________ _ _____ metric tons. .
Value1_________________
Exports and reexports (unmanufactured*
Quantity. .................... ___ metric tone-
Value.
................. .. ______ thousands. _
Exports and reexports of asbestos products:
Value..................................
Imports for consumption (unmanufactured!:
Quantity............. .. __
Value. -- _________
Consumption, apparent*-------- _____ metric tone. .
World: Proauction______________
_ _ .do_____
63,515 624,917
58,771 $19,713
$127,867
241,737 $64,925 246.500 `4,559.495
69,906 $27,866
54,634 $19,683
$129,582
196,387 $57,956 217,000 `4.728.867
57.422 $24,238
57.457 $20,485
51,437 $17,367
39.919 $18,346
46.656 $16,489
47,281 $14,520
$163,347 $193,765 $163,896
209,963 $64,749
226,000
4.659,115
142.431 $44,093
162,000 "4,678.287
108.352 $26,537
119.627
*4,522,045
*EBtinuted `'Preliminary `Revised
`F.o.b. mine. `Production plus imports, minus exports, plus adjustments in Government and industry stocks. '
Legislation and Government Pro grams.--On January 29, 1986, the EPA announced a proposed ruling that would immediately ban the manufacture, importa tion, and processing of certain asbestos construction materials (asbestos-cement pipe and fittings, roofing felt, flooring felt, felt-backed sheet flooring, vinyl asbestos floor tile, and asbestos clothing) under sec tion 6 of the 1976 Toxic Substances Control Act.* In addition, the mining and importa tion of asbestos and the importation of asbestos products not directly banned would be placed under a permit system. The per mit system' would limit the mining and
importation of asbestos to 30% of the 1981, 1982, and 1983 average values and would phase out asbestos use within 10 years.
The Occupational Safety and Health Ad ministration (OSHA) enacted a ruling, effec tive July 21, that limits worker exposure to asbestos, tremolite, anthophyllite, and actinolite to 0.2 fiber per cubic centimeter per 8-hour work period.' OSHA also required employee training and medical surveillance when exposure levels exceed 0.1 fiber per cubic centimeter. A 9-month administrative stay was placed on that portion of the ruling covering the nonasbestiform varieties of tremolite, anthophyllite, and actinolite.'
1
CTD007090
2 MINERALS YEARBOOK, 1986
Worker exposure to the nonasbestiform va rieties was limited to 2.0 fibers per cubic centimeter by the administrative stay.
The EPA enacted a ruling, effective June 9, that limits asbestos exposures for State and local government employees who were not protected by OSHA regulations or by State plans approved under the Occupation al Safety and Health Act.1 Exposures for workers engaged in the removal, enclosure, or encapsulation of any friable material containing more than 1% asbestos are limited to 2.0 fibers per cubic centimeter per 8-hour period.
The Consumer Product Safety Commis sion issued an enforcement policy for house hold products to which asbestos is intention ally added.* The policy, effective December 23, requires warning labels to be placed on asbestos-containing products that are likely to release asbestos fibers when handled or used.
The EPA announced a final ruling estab lishing effluent limitation guidelines for the
discharge of conventional pollutants into navigable waters by specified industrial dischargers.' No changes were made to previous effluent limitation guidelines for asbestos manufacturing. Previous guide lines set no limitations on effluent dis charge with regard to best conventional pollutant control technology except for sol vent recovery, where the best conventional technology is required to control total sus pended solids and pH.
On October 22, the Asbestos Hazard Emergency Response Act of 1986 was signed into law.* The act requires EPA to develop regulations for inspecting public and pri vate school buildings for asbestos-con taining materials, evaluating the risk that these materials represent, recommending corrective action and an air monitoring protocol, and issuing disposal guidelines for asbestos-containing materials.
Stockpile goals for asbestos were un changed from those of 1985.
Table 2.--Stockpile goals and Government inventories for asbestos as of December 31
(Metric tons)
Stock.pile goals
Total inventories
'
1984 19tft
1986
Amosite Chrysotile__________ Crocidohte________________________________________________________
Total_________________ _____________ ___________________________
15.422 2,722
__
18.144
30.855 9.754 33
40.642
30.855 9.772 33
40.660
30.853 9.711 33
40.597
Source: General Service* Administration, Federal Property Service.
Environmental Impact--The Interna tional Labor Organization at its 1986 con ference voted to support the controlled use of asbestos.* Its recommendations would require ratifying countries to enact legisla tion that would protect the worker from asbestos exposure; provide for safe, proven asbestos substitutes if the use of asbestos would represent an unacceptable hazard to the worker; ban the use of crocidolite and the use of sprayed asbestos except under special conditions; and establish worker ex posure limits.
EPA announced the availability of a regu
latory determination for solid waste from the extraction and beneficiation of ores and minerals as required by the Resource Con servation and Recovery Act (RCRA).' The report discussed wastes from asbestos, phos phate, uranium, and several metal mining operations. Approximately 5 million metric tons of waste containing greater than 5% chrysotile were generated from asbestos production according to the EPA report. EPA concluded that current RCRA criteria could not be used to evaluate asbestos waste sites and that different criteria would have
to be developed.
DOMESTIC PRODUCTION
Mine shipments decreased 11% in quanti ty and 15% in value from those of 1985. The decreased activity was due primarily to adverse publicity on asbestos-related health risks.
Three mines in California and Vermont marketed asbestos. Calaveras Asbestos Ltd. in California led in asbestos sales in the United States, followed by KCAC Inc. and Vermont Asbestos Group Inc.
1
CTD007091
ASBESTOS
3
Table 3.--Asbestos producers in the United States in 1986
State and company
County
Mine
Type of asbestos
California Calaveras Asbestos Ltd KCAClnc
Vermont Vermont Asbestos Group Inc
Calaveras Sun Benito
Orleans
Copperopolis Santa Rita Lowell
Chrysotile
Do Do
CONSUMPTION AND USES
Total U S. asbestos consumption decreas ed 26%. Approximately 98% of the asbestos consumed was chrysotile and 2% was crocidolite. Chrysotile grade 7 was most com monly used, followed by grades 4, 6, and 5. Spinning grades 1, 2, and 3 represented approximately 1% of the total consumption.
The packing and flange manufacturers
increased their use of asbestos substitutes because of stricter asbestos regulations and increased concern over asbestos-related health risks." Traditionally 80% to 90% of their products contained asbestos. In 1986, slightly over 50% of the products contained asbestos.
Table 4.--U.S. asbestos consumption by end use, grade, and type
iThouaand metric tonsi
Chrysotile1
Grades Grade Grade Grade Grade
land.' :l
4
ti
Grade
7
T
lotal
A..m.o. site
Crjo,^
hle
ulh* er2
T--oIt,a.-l as0?*
los
I9K.5 total
19MK.
Asbestos-cement pipe
Asbestos-cement sheet
Coatings and compounds
Flooring products
Friction products
Insulation
Electrical
Thermal
Packing and gaskets
Paper
Plastics
Roofing products
Textiles
Other
..
Total*
<11
17 IX X 12 1 13 7 1(1411 l.VI4 0 3 4*
7 3 155 5
127
4
i4i i4i
,4, H
l.l 14 2
l 5 3.4
17 ti
> 2.9 20 5 0
17 4 17 4
20
5 0 3 0 17.1 25.ti
23
i4) i4i
> 5 2 1 5 4.8
4 12 3 12.7
,4, H
l4l 4 19 4 19.X 9
i4t 2.x 3.ti
93 103 7XK 113.7 . . 20
19 0 50 17 4
25 6
3
(4|
4.8 12.7
6
19.8 .9
3.6
39 1157
'Estimated distribution based upon data provided by the Asbestos Institute. Montreal. Canada, and the Bureau of Mines, asbestos producer survey
^Bureau of the Census. *Does not include "Other" category in total "Other " contains unspecified fiber type and end use 4Lesathan 1/10 unit.
*Data may not add to totals shown because of independent rounding
PRICES
The average unit value of domestically metric ton. The average unit value of ex produced asbestos in 1986 was $338 per ported asbestos was $307 per ton.
4 MINERALS YEARBOOK, 1986
Tabic 5.--Customs unit values of imported asbestos
i Dollars per metric torn
19*2
19*4 19*5 IlIXfi
Canada. Chryeotile Cement Crude
Spinning Other South Africa. Republic of Amo6ite Crocidoiite
234 2'7 2*4
Tim 1.0*4 570 VI7
`>17 :I2
7:< 1 .'417
.334 3*4 441 2*3 229
771 *40 *09 *30 646 629 705 ."!* 5*2
Source Bureau of the Census
FOREIGN TRADE
There was a 16% decrease in the total value of asbestos fibers and asbestos prod ucts exported from the United States. The asbestos fiber portion was 8% of total value. Exports of brake linings and disc pads accounted for 76% of the value of all asbes tos products exported. Canada remained the largest importer of U.S. asbestos fibers and products, followed by Japan, Mexico, the
Federal Republic of Germany, Brazil, and Venezuela.
Canada provided 96% of the asbestos imported into the United States, and the Republic of South Africa provided 4%. Several other countries provided minor amounts. Approximately 95% of asbestos fiber imports was chrysotile. The value of imported asbestos fiber decreased 40%.
Table 6.--Countries importing U.S. asbestos fibers and products
(Thousand dollars)
Country
Australia . ......................... Brasil........................................ Canada .................... ................ Germany, Federal Republic of. Japan ........................................ Korea. Republic of ............... Kuwait ............ ........... Mexico Saudi Arabia ___________ Thailand______ ________ Turkey..................................... United Kingdom___ _______ _ Venezuela_____ Other....................... ..............
Total1
Unmanu factured
fibers
l 251 714 75 3.294 190 31 6.261
2 2.330
50 267 2.900
16.366
1985
Manu factured products
1.379 3.:>92 148.663 1.948 10,140 1.814
437 6.483 1.409
332 544 926 3.487 12,325
193.479
Total
1.380 3.843 149,377 2.023 13.434 2.004
468 12.744
1.411 2.662
544 976 3.754 15.225
209,845
Unmanu factured
fibers
17 467 605 300 2,981 624
2.667
2,490
166 218 3,864
14,401
1986
Manu factured products
1.341 2,555 123.819 2,746 7.867
825 221 5,593 1,062 354 361 1.313 2.688 12.108
162.851
'Data may not add to totals shown because of independent rounding. Source: Bureau of the Census.
Total1
1.358 3.022 124.424 3,047 10,848 1.449
221 8,260 1.062 2.844
361 1.479 2,906 15.972
177.252
Table 7.--U.S. exports and reexports of asbestos and asbestos products
Products
1984
Quan tity
Value (thou
sands)
Quan tity
Value (thou
sands!
Quan tity
EXPORTS
Unmanufactured
Crudes, fibers, stucco
. _ metric tons_ _
Sand and refuse ............................ - . ----- do_____
Total......................... .........
26,381 13.398
39,779
$14,106 4.115
18,221
29.382 15.693
45.075
$12,705 3.661
16.366
30.252 16.645
46.897
Value (thou sands'
$9,728 4.673 14.401
CTD007093
ASBESTOS
5
Table 7.--U.S. exports and reexports of asbestos and asbestos products --Continued
Products
Quan tity
Value thou
sands!
EXPORTS --Continued
Manufactured: Asbestos fibers Brake linings and disk brake pads Clutch facings and linings Gaskets insulation Packing and seals Shingles and clapboard Other articles of asbestos Other articles, n.s p f
Total
metric tons do
number metric tons
do do do do . do
!).> NA NA 27r, NA 1.150 2.09X 1.759 NA
XX
$5,067 103.303 23.206
1.M5 .1.720 !MH^t l.m:. 2.595 10.306
162.090
REEXPORTS
Unmanufactured: Crudes and fibers . . Sand and refuse ...........
metric tons . . . do. .
Total1 _ . . ............................
Manufactured: Asbestos fibers.................
Brake linings and disk brake pads . . . . do_____
Clutch facings and linings................. number. .
Gaskets....................
metric tons. .
Insulation.........................
Packing and seals..............................
Other articles of asbestos ...___ . . . do. . . . Other articles, n-s.p.f.........................
Total___ _______
140
140
1 NA NA
46 i*i i*i NA
XX
rRevised. NA Not available. XX Not applicable.
`Data may not add to totals shown because of independent rounding. *Leas than 1/2 unit
Source: Bureau of the Census.
12'
123
47 194 136
to l
264
657
Quan tity
Value (thou
sands*
60T NA NA
7k NA 1.192 9X4 1,52! NA
XX
$3,793 144.202 20.71m
OOO 4..'i60
ho:i 2.4-17 IUIII
193.476
71 212 :>2
581 12:1
i*i 3 NA m NA 73
1 IK NA '1
4 NA 20 NA 1
XX r3U
Quan tity
Valup 'thou
sands)
723 NA NA 2iW NA K20 KM0 1 014 NA
XX
$3,902 liui.'t
Mi. 1X7 1.2X5 I.HM9 6.373
1.553 7.442
102X.I
429 9K 54 20
m 119
NA 222 NA 004
0 NA 24
i*> 50 NA 4 NA 78
XX 1,043
Table 8.--U.S. imports for consumption of asbestos fibers, by type, origin, and value
Type
Canada
Quantity
(metric tonal
Value
(thou sands)
South Africa, Republic of
Quantity
(metric tons)
Value (thou
sands)
1984
1985:
Amasite
._
Chrysotile:
Crude . ___
Spinning fibers
All other ....
Crocidoliteibluei ..
Other (unspecified
asbestos type)___
Total1___
1986: Chrysotile. Crude ...
Spinning fibers All other_____
Crocidohtetbluei . _ Other < unspecified
asbestos type)___
Total1 ...
195,651 $56,267
94 1,990 127.307
1.728
131.119
86 1.454 36,045
.
962
38,547
20 596 101.273
1.626
103,517
12 304 23,065
434
23.814
13,912
121 174 522 4.794 5,374 10.985
192 227 1.968 2.068 4,455
$8,033
100 100 301 2,726 1.997 5,224
104 139 1,154 1.109 2.506
1 Data may not add to totals shown because of independent rounding.
Source Bureau of the Census.
Other
Quantity (metric
tons)
Value (thou sands)
400 $449
90 110 37 16
200 196 327 322
107 94 20
253 119
380 217
Total1
Quantity (metric
tons)
Value (thou
sands)
209,963 $64,749
121
268 2.080 127.866 4.794
7,302
142,431
100
187 1,564 36,362 2,726
3,155
44.093
212 598 101.607 1.988
3.947
108.352
116 304 23.291 1.158
1.662
26,537
6 MINERALS YEARBOOK, 1986
WORLD REVIEW
World production of asbestoe decreased slightly from that of 1985. The major pro duction change occurred in Canada, where shipments were down 110,000 tons. The U SS R remained the largest producer of asbestos, followed by Canada. Brazil, Zimbabwe, China, the Republic of South Africa, and Italy.
Canada.--Three Canadian asbestos pro ducers, Asbestos Corp. Ltd., Bell Asbestos Mines Ltd., and Lac d'Amiante du Quebec, formed a partnership, effective July 1, 1986, that strengthened their resources and im proved their position in domestic and export markets." The new partnership was gov erned by a board of directors, although each facility operated under local management. The partnership controlled approximately 50% of the asbestoe production in the Prov
ince of Quebec. Carey Canada Inc., a subsidiary of the
Jim Walter Corp., permanently closed its chrysotile mine in the Beauce Mountains, near East Broughton, Quebec.'1 Economic conditions made the mine unprofitable. Car ey Canada produced chrysotile grades 4D to 7W for asphalt compounds, friction materi als, asbestos paper, vinyl asbestos tile, gas kets, phenolic compounds, and caulking compounds. The company marketed asbes tos primarily in North America and Asia.
China.--Approximately 100 asbestoscement (A-C) manufacturing plants operat ed with 200 production lines.1* Production of shingle and board were operating below
capacity because of shortages of asbestos and cement. Expansion was anticipated to meet increasing demands for new markets such as in power station cooling towers,
ventilation and roofing needs in textile mills, guard structures in fertilizer plants, and replacements for traditional clay brick structures. Plans were made to increase asbestos production and upgrade existing mill and plant equipment.
Italy.--Asbestos was produced by only one company, Amiantifera di Balangero S.p.A., from a surface mine at San Vittore." The crushed rock was processed in an auto mated plant where the fibers were removed from the host rock, dried in static vertical and revolving horizontal driers, and graded. Automated sampling was performed every 6 minutes to determine fiber quality. Approx imately 70% of the asbestoe was used by the A-C industry. Other uses included gaskets, brake linings, paint filler, and insulation material. Over 50% of manufactured prod ucts was exported.
.Morocco.--Although chrysotile deposits occur near Bou Azzer and Inguiem, no domestic production was undertaken." De mand for asbestos was met by imports, primarily from Canada and Botswana. As bestos was consumed primarily by the do mestic A-C industry for building and irriga tion projects. Despite domestic demand, 30% to 50% of A-C products was exported to neighboring countries.
South Africa, Republic of.--Griqualand Exploration and Finance Co. Ltd. imple mented an environmental program to revegetate old mine dumps.'* The mine dumps, which had been previously covered by soil and grass, were exposed owing to the grazing of livestock. The companies began planting vegetation that provides a dense soil cover and is impenetrable by animals.
Table 9.--Asbestos: World production, by country'
(Metric tons)
Country*
Argentina----------------------------------------------Australia------------------------------------------------Brazil (fiberi_____________________________ Bulgaria________________________________ Canada (shipments!_____________________ China*---------------------------------------------------Colombia________________________________ Cyprus Egypt-------------------------Greece __________________________________ India______ ___________ Indonesia*______________________________ Italy-------------------------------------------------------Japan* ----------Korea. Republic of_______________________ Mozambique________________ South Africa. Republic of . . ___________ _ _ Swaziland_____________________________ _
See footnotes at end of table.
1982
1.218 18.587 145,998
600 834.000 110,000
*5,400 18.952
424 17.016 26,761 25.000 116.410 a4.l35 15,933
g52 211,860
30,145
1983
1,240 '3.909 158.885
700 858,000 160.000
*5.400 17.288
245 31.811 24.873 25.000 139.054
4.000 12.-506 ' *600 221.111 26.287
1984
1.093
134.788 500
837.000 135.000
9.982 7.429 *325 45,376 25.450 25,000 147.272 4.000 8.062 '*400 167.389 2-5.832
1980"
*1.200
172.027 400
750.000 *150.000 12.435
16.360 *325
46.811 30.183 25.000 136.006
4.000 4.703
55 163.574 25.130
1986*
1.100
175.000 500
^o.ooo 150.000 13.000 16.000 300 48.000 30.000 25.000
3115.208 4.000 5.000
140.000 25,000
CTD007095
ASBESTOS
Table 9.--Asbestos: World production, by country1 --Continued
Metric tons'
Country*
m2
19*3 19*4 w,p
19*0*
Taiwan Turkev
..
USSR'
...
United States<aold or used by producers'
Yugoslavia
Zimbabwe
Total
2.392 95*
r2,700.000
63.515 11 ,657
'197.0X2
2>l!) i.-iin '2.000.000 69.906 in.502
*153.2*2!
1.355 1.439 '2.950.000 57.422
165.3*5
'4.72X,S(i7 4.659,115
625 I..T00 '2.900.000 57.457 6.916 173.5*0
4.67K.2M7
1.500 2.90fl.flnn
*..1.437 7.00(1
174,000
4.522.045
'Estimated Preliminary rRevised. 'Table includes data available through Apr 2b, INK" *ln addition to the countries listed. Afghanistan. Czechoslovakia. North Korea, and Romania also produce asbestos, but output is not officially reported, and available general information is inadequate for the formulation of reliable estimates of output levels.
^Reported figure
TECHNOLOGY
A semiquantitative method for distin guishing between asbestiform and nonasbestiform crystals was developed. The flex ibilities of several asbestiform and nonasbestiform tremolite crystals were measured and their bending strengths were calculat ed. The asbestiform and nonasbestiform varieties of tremolite could be differentiated using this technique.
A process was developed to synthesize zeolites using chrysotile as a starting material.'* The magnesium was stripped from the chrysotile structure. The remain ing siliceous material was mixed with alu mina and heated under pressure to synthe size zeolite crystals. Production of 1 ton of zeolite consumes 2 tons of chrysotile. If economically feasible, this synthesis process will create a new market for chrysotile.
Asbestos is used in pressure pipe to pro vide reinforcement strength, improve the drainage characteristics, and provide di mensional stability to uncured pipe. With concerns over asbestos-related environ mental issues, asbestos used in A-C pipe and sheet was facing competition from a variety of artificial and natural fibers. In general, these substitute fibers did not have the same reinforcing properties, did not bind as well with the cement and silica particles, and did not disperse in the cement matrix as well as asbestos."
A study of A-C pipe, polyvinyl chloride (PVCl pipe, and ductile iron (Dll pipe indi cated that A-C pipe was more cost effective over a wide range of diameters, strength classes, and applications than either PVC or DI pipe." A-C pipe is more versatile because interior and exterior coatings are not re quired for corrosion resistance; for a given
diameter, A-C pipe has higher crush and burst strengths; use of rubber sealing rings provides joint flexibility, shock resistance, pipe-expansion and pipe deflection; A-C pipe has a smooth bore, which results in a low coefficient of friction; and a single manu
facturing facility can make all forms of A-C pipe.
The packing and flange manufacturers investigated the use of asbestos substitutes in packings and gaskets." The major re placements were flexible graphite, carbon and graphite yarn, glass fibers, aramid, polybenzimidazale, polytetrafluoroethylene, ceramics, mica, and metals. Although none of these substitutes possessed all of the desirable properties of asbestos, packings and gaskets of equal or superior quality were produced using a combination of as bestos substitutes. Asbestos substitutes, however, were still not adaptable to many severe use applications and were more cost ly than asbestos.
The Chlorine Institute estimated that replacing asbestos diaphragm cells with nonasbestos membrane cells would cost the U.S. chlor-alkali industry $2 million.*1 Approximately 97% of the chlorine pro duced in the United States was generated using diaphragm cells. No substitute had the strength, physical structure, and chemi cal resistance to acids and alkalies of asbes tos. An alternative to replacing asbestos with asbestos substitutes was converting diaphragm cells to membrane cells. Mem
branes consisting of carboxylic-sulfonic compounds were developed to fit around the anodes of the diaphragm cell. Use of these membranes was reported to reduce electric ity costs by 20% and produce high-purity
8 MINERALS YEARBOOK, 1986
caustic soda of 30% to 35% concentration. Techniques for evaluating and controlling
asbestos exposures were developed " All of these techniques focus on evaluating the health risk posed by asbestos materials in the workplace. Detailed information on the type of asbestos, condition of the asbestos material, and activity levels are a few of the considerations of these risk management programs.
A technique for encapsulating asbestos in buildings using a low-density cellular poly mer insulation was developed." The poly mer insulation formed a durable coating over the asbestos that was more abrasion and impact resistant than resin coatings. The durable coating reduced the risk of asbestos release through abrasion. Encap sulation using the cellular polymer insula tion costs from 50% to 75% less than asbestos removal and eliminates the poten tial for Tiber release that may occur during removal operations.
E. I. du Pont de Nemours & Co. Inc., Standard Oil Co., Rhodes-American, Ash land Oil Inc., and Union Carbide Corp. formed a coalition to promote the use of asbestos substitutes." The coalition, called Alternative Materials Institute (AMI), re ported that substitutes such as aramid fi bers, carbon fibers, graphite, and other mineral and artificial fibers are available and that the transition to asbestos alterna tives has already begun for some products. AMI will focus on providing up-to-date in formation on the availability and use of safe and effective alternatives to asbestos.
Several products that could replace asbes tos in hot glass handling processes were developed." Using glass fiber fabrics im pregnated with fluorocarbon resins, materi als with high temperature capabilities, and a dry lubricated wear surface were produc ed Several of these materials could be molded to shape and had applications up to 1,000* F.
`Physical scientist. Division of Industrial Minerals. 'Federal Register. Environmental Protection Agency. Asbestos: Proposed Mining and Import Restrictions and
Proposed Manufacturing. Importation, and Procenino Prohibitions V .51. No. 19. Jan 29. 1986. pp. :rra^-3To *
*-------- . Occupational Safety and Health Administra tion. Occupational Exposure to Asbeatoa. Tremolite, Anthophylhte. and Actinolite: Final Rules. V 51. No no June 20.1986. pp. 22612-22790.
*-------- . Occupational Safety and Health Administra tion. Occupational Exposure to Asbestos. Tremolite. Anthophyliite. and Actinolite. V 51. No 201. Oct 17, 1986 pp. 37002-37007
5-------- Environmental Protection Agency Asbestos Abatement Projects V. 51. No 80. Apr 25.1986. pp. 157221.5733.
*-------- Consumer Product Safety Commiasion. Label ing of Asbestos-Containing Household Products: Enforce ment Policy V 51. No 185, Sept. 24.1986, pp 33910-33912
7-------- . Environmental Protection Agency Best Con ventional Pollutant Control Technology- Effluent Limita tions Guidelines V 51. No. 131. July 9. 1986. pp 2497424987.
-------- Environmental Protection Agency. Regulations Required by the Asbestos Hazard Emergency Response Act of 1986. V 51. No 250. Dec 31.1986. pp. 47265-17266.
'Asbestos The Convention of Asbestos V 2. No l. 4th querter 1986. pp. 8-9
`Federal Register. Environmental Protection Agency Regulatory Determination for Wastes From the Extraction and Beneuciation of Ores and Minerals. V. 51. No 128. July 3.1986. pp. 24496-24502.
``Parkinson. G Makers of Gaskets. Packings TryAsbestos Replacements. Chem. Eng., v. 93, No. 20. Oct. 27.1986,
pp. 23-26. `'Asbestos Thetford Mines Asbestos Mining Activities
Now Pooled. V 1, No. 4, 2d querter 1986. p. 12.
`'Industrial Minerals iLondon). Carey To Close Asbestos Mine. No. 223. Apr. 1986. p. 15.
`Griffiths. J. First International AC Conference. Ind. Miner.)London), No. 226. July 1986. pp.69-71.
`'Robbins, J Italy's Industrial Minerals. Ind. Miner (London). No. 231, Dec. 1986. pp. 19*50.
`'Power. T. Morocco. Ind. Miner. (London/. No. 225, June 1986. pp. 43-44.
`'Engineering and Mining Journal. An Environmental Clean-Up Program. V 187, No. 12, Dec. 1986. p. 68.
`'O'Hanley, D. S., and T. Zoltai. A Semi-Quantitative Method for Distinguishing Asbestiform and Nonasbestiform Acicular Crystals: Data for Tremolite. Paper in Proceedings of the International Mineralogies! Associa tion Meeting. Stanford Univ., Stanford, CA. 1986. p. 189.
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**Toxic Materials News. New Asbestos Encasement System Found Safer, Leas Costly Than Removal. V 13, No. 41. Oct. 15.1986. p. 325.
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''Glass. Replacing Asbestos in the Handling of Hot Glass. V. 63, No. 3. Mar. 1986, p. 95.
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