Document 15rzM6VGr29Db16YeJ3JE03Oa
FILE NAME: Pfizer (PFIZ)
DATE: 1972-1976
DOC#: PFIZ005
DOCUMENT DESCRIPTION: Pfizer Talc Docs & Memos from Manville Archive
vuotine to aUMiini riiiil under lliw
5(eiy mi H tW il^ ti This standard limiti the 8
lion* limn weighted aidmrne eoncentretiom ol nthrtini libers. In which employees we exposed, 108 illicit per cubic centimeter ol-air, 1 addition. * ceiling concentration e l 10 l t * u il not to Ire .
exceeded. This regulation delines tremolile, actinolile, end other acieular minerals commonly /, C assocuted with some industrial laics as asbestos. Wide-spread need iti industry to comply with the new OSHA standards, and possible futura FDA regulations, adds significance to the contents of the
following research study report.
The Detection and Identification of Asbestos and Asbestiform Materials in Talc
Harold D. Stanley and Robert E> Norwood Pfizer Inc.--Minerais, Pigments & Metals Division
INTRODUCTION
The pncumoconiolic and cancer inducing health hazards of exposure to asbestos and asbestiform minerals often found associated with talc have been appropriately identified by recent research and mass-media publica tions f 1-(i). Because of Pfizer's position as a supplier of talr to many industries, a reliable method of detecting and identifying asbestos and asbestiform minerals pos sibly present in the talc had to be developed. Ideally the technique should he simple and direct but above all it must he positive and unambiguous.
la ic is a naturally occuring hydrous magnesium silicate
having a general formula of Mg* (S i,,0JO) 2 Mg (O il);.
The mineral, talc, is felt to be formed by the hydro-
thermal alteration of serpentine and trcmolile. Talc can
he derived from minerals containing various amounts of
tremolile, Mg( ( ( 'a ;S i,, 0 ;;) Mg (OH)], chlorite, Mg4
( Si K
Mg (O il);, chrysolite Mg, (Si0;)*8M g
(O H ),, and a group of rlirysolile-like minerals called
amphiholcs or ashestlform minerals. Chief among these
asbestiform minerals are anlhophyllite, (Mg.Fe**);
-SiOj, (O il),, amoslle, (Mg.Fe*')7 S i,,O j, (OH)j,
crocidolile, Na7Fe`\lF c '* 7 (SiR0 77) (OH); and actino-
lite. Ca, (Mg,Fe``)s S i,O j, (OH);.
From the above chemical formulas one can get an ap preciation for the interrelatedness of talc and the ashestos type minerals, particularly when one considers that the degree of replacement of one element for another is seldom in exact proportion. Although talc itself has not been shown to induce tire irreversible health problems (7). ils chemical near-neighbors have (8). The exact causes of the undersirable reactions of the human body
when exposed to asbestiform minerals is not entirely clear at th time o f this writing but it is felt to be som e how linked to the fiborous nature o f the asbestos-like minerals.
Currently available methods and methodology for detec ting asbestos, tremolile and the asbestiform minerals in the presence o f talc were reviewed. The three most likely candidates were:
1. Light microscopy 2. X-ray diffraction 3. Transmission electron microscopy
Samples or "pure" laic and tremolile were obtained front various deposits owned by Pfizer Inc. Samples of pure and carefully characterized asbestos minerals were obtained from the International Union Against Cancer, (U.I.C.C.), Pneumoconiosis Research Unit, Llsndough Hospital, Penarth, Glamorgan, United Kingdom. The talcs and asbestiform minerals were examined in the pure nr as-received state, their characteristics noted and mixtures made to determine If detection of asbestiform minerals was possible at low levels and, if so, what the minimum detection levels might be.
EXPERIMENTAL
X-ray diffraction patterns were obtained for ail the minerals and mixtures used in this study employing the conventional technique o f scanning at rates o f 0.5 to 1.0 degrees 2 theta per minute. The samples were then subjected to scrutiny by optical and electron micros copy. During this procedure it was discovered that
CRMC-LLF-Pfizer-Micro-000002
certain niixtiin siiiiil a'.ln".liform minerals by the conventional X-ray diffrac tion technique mentioned nhovr and the light microMii|tr exhibited fairly hire* percentages. (5'7 and more), of tm nnlile and/or ashrstifnmis when viewed in ill transmission electron microscope. Delineation of the reasons for Ibis paradox enabled us to develop reliable leebiiiques for delecting Iremnlite and the asbosllforms at the 0.25'; and 0.5% levels respeelively in most tales by X-ray diffraelion. Even lower levels of these minerals are detectable by transmission electron microscopy.
X RAY DIFFRACTION
The rispat-ings Tor tale, chlorite, tremolite and the asbestiform minerals are giien in Table 1. The values given in Table 1 are averaged values for pure materials and can shift as much as *0.2 / *0.3 Angstroms de pending upon sample preparation and/or level at which the constituent is found in the parent mineral matrix and the specimens conformity to the idealized chemical compositions.
When attempting to detect tremolite and the asbestiform minerals in tale at concentrations of 5 '/ or below. It was found that the normal scanning rate of 0.5 to 1 degrees 2 theta per minute was not satisfactory for the following reasons:
1. The noise level is so high that a detection limit of .V; is (lie minimum possible.
2. II is difficult to accurately quantify data from a high noise level traring.
In order lo avoid lliese difficulties, an automated step-Manning method was employed in which the diffractometer was moved in increments of 0.05 degrees 2 theta and the intensity of X-radiation at each step measured Tor a total of two minutes. An intensity versus degrees 2 Ibeta plot over the area of interest was obtained from a Wang 720 programmable calculator will* plotler/prinler output. Figures I and 2 show the step scan method plotted for tremolite. This method allowed the signal to noise ratio lo be raised suffi-
inlcgralion technique. Calibration curves were estab lished by integrating thc area under the appropriate
X-ray diffraction peak o f samples with i% to 1(1%
additions o f the species under investigation to a sample of tale shown to be tremolite and asbestiform free by the method o f transmission electron microscopy out lined below. Examples o f these curves are shown in
Figures 3 and 4. Extrapolation of these curves to zero
percent addition yields the minimum amount o f the mineral that can be detected in the talc matrix.
For tremolite in talc Ihc minimum detectable amount was found to be 0.25%. For chrysolite and the other asbestiforin minerals the minimum detectable level obtained by Ibis method is 0.5%, but this ran only be achieved in the absence o f chlorite. Attempts to remove the chlorite by a careful acid wash succeeded only in rendering the chrysotile amorphous to the X-ray beam with *he result that no X-ray spectrum was obtained in the chrysotile region. Further experimentation revealed that the presence o f tremolite at fairly low levels tended to mask or interfere with the detection o f some of the asbestiform minerals. It was thus clear that another technique would be needed in these special cases in order to be able to achieve an unambiguous analysis.
ii & /Vi'
fj/ t s fo k S a
Aufrmvifpti u rp tr.mnini) *?*(?cufpd with X-ray diffraction.
1
Dispersion siaininq technique with light or optical microscopy.
LIGHT MICROSCOPY
Techniques employing the optical microscope have been used to identify mineral specimens for a long time. One of the more interesting and useftd of these techniques is the Cherkasov focal screening dispersion staining proce dure (9). This technique, often shortened to "Dispersion Staining," has been applied successfully to the identifica tion of asbestiform fibers ( 10.11). Fairly extensive data taken by Julian and Met"rone have shown that the asbestiform minerals are readily distinguished from one another
CRMC-LLF-Pfizer-Micro-000003
m
ml that different samples of each of Ui* arc similar ami will exhibit afam ilyresem hlance.
The difficulty in applying this technique to the problem is that while it works well with pure samples oil fairly massive fiber lciiRlh (it to 5 microns and larger), ohservn
HfiePld'IofYPieHw PcbV. R. I H B . ....... ..... m
detected in each field o f view than the lower detection limit can be postulated to b e 0.2% cr lower. Figure 6
shows Priser's Montana lair exhibiting Hs typical platy
lions hy Iransmi.sion electron microscopy have shown character and total lack o f tiemolite or ashestiform
lhal naturally -m-curring ashestiform minerals often lie in-low the working resolution capabilities of the light
mineral. Figure 7 shows a commercial talc containing approximately 1" chrysolite which w u obscured from
microscope. While massive fiber bundles can often be detection by X-ray diffraction because o f the presence
observed by eiiher liRht or electron microscopy, the o f chlorite.
observation of individual fibers smaller than 0 5 x 0.02
micrometers requires Ihc high resolution capability of .Selected area elretron diffraction teas used in conjunc
Ilie transmi'Mou electron microscope. In addition, the tion with the examination o f gnorphology. Using this
limit of detection is confounded by the presence of tale method one single crystal or particle can be selected and
" fibers" formed when a thin talc plate curls up at the analyzed. Single particles usually yielded spot patterns
rdRe and rolls up into a cylindrical morphology. The but if a group or bundle o f fibers was found and would
lower limit of positive fiber detection and identification hy Ibis technique and under these eondilions is felt to be
transmit electrons, a polycrystalline ring type pattern would result.
Loo high to be of commercial value.
Table 2 lists the principle electron diffraction maxima
ELECTRON MICROSCOPY
Ity virtue of iis ability to examine individual particles in minute detail and at very high magnifications, the Iransmission electron microscope has been found by us
for talc, tremolite and the asbesliforms. In almost all cases many more spots or rings were observed than are reported here. In Table 2, only the strongest lines which are most likely to be observed have been tabulated.
to provide the technique, ancillary to X-ray diffraction, that is needed to complete the unambiguous detection and identification of ashestiform minerals. The mor phology of the ashestiform minerals and tremolile is generally described as nrirular or fibrous. This im mediately serves lo isolale them in the platy talc matrix even in the presenre of chlorite, sinee the chlorite morphology closely resembles that of talc. If the sample
Selected area electron diffraction was also used to prove that the pseudo fibers o f talc caused by plate-edge curling were actually talc and not tremolite or an ashestiform mineral. A comparison o f the selected area electron diffraction pattern o f these pseudo fibers to that o f the talc plaliets showed that the identical compound, talc, was the only species present.
made into a specimen for the transmission electron
microscope is or ran he marie homogeneous and a careful examination of approximately 100 different
CONCLUSIONS
fields of view fails to reveal any fiherous material, then that tale Is fell lo he free of tremolile, chrysolite and the ashestiform minerals.
The present work has shown that properly prepared samples of talc can be step-scanned by an X-ray diffractometer to delect tremolite at levels down to
The lower detection limit of this technique is difficult of arcess since one is often dealing with individual rryslals. However, a typical field of view of a talc which was originally asbestos-free but now contained a 5%
0.25% and ashestiform minerals at the 0.5% level in the absence o f chlorite. In the presence o f chlorite and at concentration levels lower than those stated above, the transmission electron microscope was found to provide reliable detection and identification o f tremolite and
ashestiform minerals. The transmission electron micro
scope is the most sensitive method and appears to be a
more or less referee technique since when morphology
observations are coupled with selcrted area electron
diffraction studies, there are no known interferences. Light microscopy was helpful only in screening samples
with large particles and high concentrations o f objection
able fibers.
Mmpholoqv obveiwation bv Irantmuiior. leelron microiecpv
Using the above techniques we have been able to screen large numbers of talc specimens. We have found Pfizer Inc.'s Montana talc to be free o f tremolite and Ihe ashestiform minerals. We have found some other com mercial talcs which contain tremolite and/or ashestiform minerals at low levels of concentration, (1% or less). Also, we have been able to detect ashestiform minerals
CRMC-LLF-Pfizer-Micro-000004
rriiTiiirrTniKTn]inrrinininniiiii
in low concentration, sperifiwlly chrysolite. by trans mission electron microscopy wheii' its presence-,'wns masked hy the presence of chitirile, (which was also present at less than 5% coneentralion).
We, therefore, feel we have a technique that allows us to detect and identify tremolite and the asbestiform min erals under any circumstances at concentrations down to 0.1 to 0.2% and possibly lower.
ACKNOWLEDGEMENTS
Tin* authors would like to thank Pfizer Inc. for permission to publish this work. We would also like to thank the Pneumoconiosis Research Unit, l.landou(jh Hospital, Fennrth, Glamorgan, United Kingdom for the samples of pure asbestiform minerals and all the helpful information on their physical and chemical charac terization.
BIOGRAPHICAL SKETCHES
Harold Stanley joined Pfizer Inc. in 1963 as a Research Investigator in Analytical Chemistry at Pfizer's M.P.M. Research Center. In 1961 he was transferred to the Physical Testing group where he built up a ligP and electron microscopy unit. In 1966 Mr. Stanley wa. given charge of the Physical Testing group and charged with the responsibility for the physiral characterization of commercial and H & I) materials. Mr. Stanley now has the title o f Research Chemist and holds a Masters degree in Physical Chemistry from ("high University, Beth lehem, Pennsylvania.
Robert Norwood joined Pfizer Inr. in I960 ns n Research Invest ig.ilnr in Analytical ('lu'inistry nt Pfizer's 'M.P.M. Research (.enter. In 1969 Mr. Norwond wsis assigned In the position of Group Leader for Physical and Chemical T< sling with the responsibility of coordi nating the characterization of commerical and It & IJ materials. Mr. Norwood is now Research Manager for Administration and Services at Pfizer's M.P.M. Research Center.
Hltinps ami Millerat I'nnteiil o f OismclK la ltu in Product*; fra lle y . I . . I , Key, M.M., Croth, D .ll.. I j m l u t l , W.S. and
l.igo, M.M.; J. Amer. Indus. Ilyg. Assoc., V l. 20. July-Aug.. p .ISO, 19AM.
A Study of Workers Kspnsed lo Talc and Other Dusting
Compounds in (he.. Kuhticr Industry: lloguc, W.L. Jr., and
Malic Ile, L.S.. J. Indus. Ilyg. 4 Toxical.. V o l. 31, p i s ,
1949.
Pulmonary Dnnhilify In Aabesln* Workers; Smith. K.W., Arch. tnd. tleatlh. V ul. 12. p I9M, 195 *.
'the Effects o f Inhaled Talc-Mining Dust on lire Human I. ung; Schepers, C .W .II., and T.M . Ilurkan. AMA Arch. Indus. Henllh. Vol. 12, p 182. 1955.
ihe Magic Mineral; llrodeui, I*.. New Ynrkrr Magazine, p I I . Oetoher I9ah.
la ir treated Hire and Japanese Stomach Cancer: Mrrliss, IC.lt., Science. Vol. 17.1. Sepl. 17, 1971, p 1141. 1142.
" t a li" . Iliingefoiis I'roperlirs of Indllslrial Materials. N. Irving Nas. I(J . Mcinhold Publishing Im p . New York. I V M p 1217.
ihid p 469.
Dispersion Staining, Pails I and II. iirown. K.M.. and
MeCrone, W.C., Microscope Vol. tA. p .Til ff and Vol. 14 p .19 ff. 196.1.
in. Iilenlilicaliiin of Asheslos l-ilirrs hy Microscopical Ills persion Staining. Julian. V .. amt McCTonr. W.C.. Micro scope, Vol. IK, p I If, 1970.
M. CTiaracIcrislirs o f Ihe Inlcrnalionnl Union Against Cancer
Standard Reference Samples of Asheslos. lim h tell, V ., Pine. Ini. Pncumiironiosis Cnnf.. Johannesburg. I9A9.
TABLE I
principal la i MINERALS
Mineral Species
Talr
Chlorite Tremnliie
Chrysolite Ainnsiln Aiilhnjihyllili! Cioculnlile
rice spa cin o so f talc and related BV X HAV DIFFRACTION Co K 114
Principal rJ-Spadnm in Angstroms
1
2
3` 4
5
6
951
4 /3 3.14 2.61 2.50
4 62
14.00 703 4.70 3.53 2.87
8.38 338 3.12 294 271
3.27
7.81 759
2.53
7.38 4.55 3.66 2.45 1.54
8.26 327 307 777
9 60 B40 4 58 3.25 3.13 30G
R43 451 343 311 7 72
j W - - * ...
H!.J
- i;..
* * J f i.
C eeh iil U psr.iirh la h a ia in r y . Easloo j re, MPM Dtvisirm
TABLE 2
S E L E C T E D AREA ELECTRO N Oil FRACTION MAXIMA F OR TAI C AND HE! A IE I) M INERALS' IIN ANGSTROMS)
Talc Ttfim ilno Chi ysolile Amosite Anihnt'hyllile
460
4 51
4 58
368
4 58
2 67
7 59
3 G7
345
2 65
2 37
7 53
2 Cl
300
7 77
1 74
2 32
7 14
264
1 75
159
2 77
1 70
1 74
1 55
1.53
7 04
1 55
1 61
1 33
1.33
1 86
1 34
155
1 28
1 78
1 69
1 79
1 37
1.73
1.65
'T h e dam for Chi vsolde. Amost Ir and A nihophylhie w n r taken from releienee ITT)
CRMC-LLF-Pfizer-Micro-000005
COUNTS PER M IN U TE
Mi /mm
1,0150 -
5000 --
4000
3000
2000 11
JL
_L
10 5 '
10'
9.5"
Degrees 2 Theta
FIGURE I
Step sc,) plot of intensity ve,sus degrees
2 theta for Pfizer Inc Montana Iole.
Wem
Ul 26,000
H D v 2 27,000 s " in,ooo
z ^ M.00
........ :
:1|P*
I 01
I___ J___I___I___i______L
23456789
10
PERCENT ASBESTOS
FIGURE 3 Percent asbestos as a Iunction ol inlensily ol dillracted X-rays.
COUNTS PS3 MINUTE
FIGURE 7
iii* I Main Iilt ol sntiMiMty wio'.m (|i*i|M>cs ? Ih r II showmq Ihr r*fli'fI ol arfrlimj 1%,n u l fii'innlili* fo lain
FIGURE 4 fr?ri:nni fMtmnlil? tv. a lunclion ol inicmiity of drffracied X-ray.
CRMC-LLF-Pfizer-Micro-000006
. CRMC-LLF-Pfizer-Micro-000007
CRMC-LLF-Pfizer-Micro-000008
/
Pfizer*c
us to seek a reliable method to itlewalSBSl---u................. ^
asbcstiform minerals possibly present in taic, Ideally ve wanted
the technique to be simple and direct but above all, it must be
positive and unambiguous. Talc is a naturally occurring hydrous
magnesium silicate and you have been given the formulas from various
and sundry people this morning and this afternoon; and is derived
from minerals containing various amounts of tremolite, chlorite,
chrysotile and a group of chrysotile-like minerals called amphiboles
or asbestiform minerals. Chief among these are anthophyllite,
amosite, crocidolite and actinolite. From their chemical formulas,
which you can find in the reference, you can see the close chemical
similarity between talc and these asbestos type minerals. It becomes
particularly difficult to analyze for these when one considers
that the degree of replacement of one ion for another is seldom in
exact proportion. Often the best that you can do is say that,thls
particular material is, for example, like anthophyllite or most like
anthophyllite. We investigated the currently available methods and
methodology for detecting asbestos and tremolite and the asbestiform
minerals in the presence of talc. The three most likely candidates
that we came up with were light microscopy, X-ray diffraction and
transmission electron microscopy. Samples of pure talc and tremolite
were obtained from various deposits owned by Pfizer. Samples of very
pure and very carefully characterized asbestos minerals were obtained
KKbh
CRMC-LLF-Pfizer-Micro-000009
talc and asbestiform minerals were obtained in the pure, as received state, their characteristics noted and mixtures mode to determine if the detection of asbestiform minerals was possible at low levels and, if so, what might the minimum detection levels be7 Experimentally we started with X-ray diffraction. We obtained patterns for all of the minerals and mixtures used in the study employing the conventional X-ray techniques of scanning at rates of from 0.5 to 1 degrees 2 theta per minute. These samples were then subjected to scrutiny by optical and electron microscopy. When we did this we found that sometimes mixtures and mineral species shown to be free of asbestos minerals by the conventional X-ray diffraction techniques mentioned above and the light microscope also exhibited very large percentages of 5% or more of tremolite and/or asbestos minerals when viewed in the transmission electron microscope. We sought to find out the reason for this paradox which then enabled us to develop reliable techniques for detecting tremolite and the asbestiforms at 0.25% to 0.5% by X-ray diffraction. Even lower levels than these could be detected by electron microscopy.
The first table, Table I, shows the d spacing for talc, chlorite, tremnJite and the asbestiform minerals. These are for pure minerals and can shift by as much as 0.2 to 0.3 angstroms depending on the sample preparation. You can see the problem that is going to present itself when you consider that you are really dealing with three specific items. You arc dealing with talc, you are dealing with chrysotile
CRMC-LLF-Pfizer-Micro-000010
thrown in -- chlorite we did is use an ordinary Btep scanning diffractometer which moved the counter .05 degrees 2 theta and the intensity ;o*sthe X radiation at each step was measured for approximately 2 to U minutes. We then plotted the intensity of this versus 2 theta over the area of interest - roughly 13 degrees to 9 degrees 2 theta shown in.^igure 1. This is the type of output we obtained when we examined talc from our Montana deposit. The general upward slope as you go lover in degrees is caused by the measuring device entering the primary beam of the X-ray tube. We established calibration curves by integrating the areas under these curves and the appropriate X-ray diffraction peak, samples with as little as 0.1% and as much as 10% additions of the species under investigation vere examined. We extrapolated these curves to 0% and we got the minimum background with the minimum amount detectable using the standardized formula of 3 times the square root of background level at that point. For tremolite in talc, the minimum detectable level was found to be 0.25%. For chrysotile and other asbestiform minerals the minimum detectable level by this method is 0.5% but this can only be achieved in the absence of chlorite. Referring back to the first figure, the chlorite tends to mask the presence of chrysotile asbestos because it is so close to chrysotile asbestos in its major diffraction peak. The consequance of this is that when you have chrysotile asbestos or when you Imvo chlorite, you can't be sure* exactly which of the two you have. If you have a small amount of chlorite, it will very effectly
CRMC-LLF-Pfizer-Micro-000011
chlorite is ticid soluble so we thought what we would do in this
case was to acid wash the talc containing the chlorite, get rid of
the chlorite and then examine it for chrysotile asbestos and in fact,
the chrysotile asbestos peak and the chlorite peak both did disappear*
The only problem was that when we looked at these samples in the electron
\
microscope, the presence of the chrysotile fibers was still found.
This is explained by the fact that chrysotile asbestos is in fact
partially soluble in hydrochloric acid. It is a diffusion controlled
reaction and as the magnesium ions depart from the crystal structure,
you are left with a shell of silicon which is amorphous to the X-ray
3
beam - the X-ray beam does not see it. The electron microscope
does pick it out.
Figure 2 demonstrates the difference in X-ray intensity one gets over the
same angular region when one adds 5% tremolite or 1% tremolite. The
same type of plot is available when one adds chrysotile asbestos or any
%
of the other asbestiform minerals. Figure 3 is the calibration plot
that, we obtained for chrysotile. Therefore, we can put a pretty
good handle on the percent asbestos or tremolite or asbestiform
mineral that we are going to find. Figure 1* is the calibration curve
"
obtained for tremolite. So you can see that it is a fairly sensitive
technique and ir, easily performed. Table 2 shows the selected area
electron diffraction maxima for talc, tremolite, chrysotile, amosite,
nnthophyllite. We use these for the positive identification of these
Y*
minerals. Transmission electron microscopy is employed in this
CRMC-LLF-Pfizer-Micro-000012
identification
,
, f,''ri "
Y-f/l 'r"'.
need to be unambiguous about our analysis. We want to 1
what we are looking at. The electron microscope has the ability to
single out individual particles and by virtue of selected area
electron diffraction, we can derive the same type of data as an X-ray
diffraction unit except we are quite a bit more sensitive here. By
virtue of its ability to exomine these individual fibers and particles
at very high magnification, the transmission electron microscope
has been found by us to provide the technique ancillary to X-ray
diffraction that is needed to complete the unambiguous detection of the
identification of asbestiform minerals. The morphology of the asbestiform
! minerals and tremolite is generally described as acicular or fibrous.
This immediately serves to Isolate it from the pl&ty talc matrix even
in the presence of chlorite since chlorite, fortunately closely M
resembles the morphology of talc. The chlorite is platy; the talc
is platy so that eliminates immediately the problem of detecting
fibers since the investigator disregards all platy particles and
looks only for fibers. How if a careful examination of approximately
100 different fields of view fails to reveal any fibrous material,
M then we feel that talc is free of tremolite, chrysotile and the
asbestiform minerals. The problem of particle curling was mentioned
earlier. One of the uses for selected area electron diffraction is
to diffract from curled up plates. You can tell that the diffraction
pattern is no different from that of the plate from which this material
starts to curl. With the transmission electron microscope, you are
*--I
i '
CRMC-LLF-Pfizer-Micro-000013
:;*. ;.r< .voTiF'.`%'.' :'i/W?a
-v'':^ J & 's*' looking right into the particle
:V *'' ' "*^ >0*4.
from the pseudo fiber of curled up talc and you find that its pattern ie identical to that of the main talc body. Therefore, there is no difference mineralogically between the two. The talc pseudo fiber can
;
Just as likely unroll as it can roll up. How at first we had a little problem with our talcs because when we used the Montana materia]., we couldn't find any fibers, we couldn't find any chrysotile, we couldn't find any tremolite, we couldn't find anything but a small bit of chlorite. This prompted us to spike some samples and we did this by adding a weighed amount of chrysotile asbestos in one case for example to a weighed amount of our talc and we were able to construct calibration curves similar to the type that we used in the X-ray diffraction work and ve found for example that with 1% addition of chrysotile asbestos to the Montana talc, we would find on the average in the 100 fields of view, 6 fibers with a standard deviation of approximately 1-1/2 fibers and it also followed a Guasian distribution which made us feel a good deal better about the homogeneity of the sample. These samples were prepared by slurrying the dry powders in a Waring blender with isoprophyl or ethyl alcohol for five minutes and then allowing them to dry and then Just simply crumbling them up. We also used 0.1% and 0.5# asbestos and up to 5%. Figure 6 is a typical example of Montana talc. The micron marker is 1 micron and these are all platy materials. There have been no fibers identified in thi material. Figure 5 shows a typical example when you spike the sample with 1# chrysotile asbestos. Fibers are readily observed. I call your attention to the thinness
' i
CRMC-LLF-Pfizer-Micro-000014
of the fibers - I would' certainly tu r n
a sample or naturally occurring talc with a naturally occurring
chrysotile asbestos contaminant, the chrysotile running at on
approximate 1<50 angle. These fibers will become individualized.
They are pretty much individualized right there and they are also
very thin. m
We also tried light microscopy since the optical microscope has for
many years been used to identify mineral species and one of the things
we turned to was dispersion staining since that has been successfully
applied to the identification of asbestiform fibers. There has been
a great deal of work done on it and asbestiform minerals are in fact
m
readily distinguishable from one another. The difficulty in applying
this to the problem at hand is that while it vorks well on pure samples
of fairly massive fiber length from 3 to 5 microns, our observations
by transmission electron microscopy have shown that naturally occurring
asbestiform minerals often lie below the working resolution capabilities
of the light microscope and furthermore while massive fiber bundles
can often be observed by either light or electron microscopy the observation
of individual fibers smaller than 0.5 by 0.2 micrometers often will require
the high resolution capability of the transmission electron microscope.
In addition, the limit of detection is confounded by the presence of
talc fibers which are the thin talc plates curled up at the edge. Talc
plates sitting on an edge also give difficulty. The lower limit of
detection war. felt to be too high to be of commercial value.
CRMC-LLF-Pfizer-Micro-000015
... concliiiVIon, we feel tba* trie proptrly prepared nomples of talc cpin be step canned by X-ray diffraction to detect trcmollte down to a l/t of a percent, and an asbestiform mineral at the 1/2? level in the absence of chlorite. In the presence of chlorite arid at concentration levels lower than those stated above the transmission electron microscope was found to provide reliable detection in identification of tremolite and the aBbestiform minerals. . The transmission electron microscope is the most sensitive method and appears to be a more or less referee technique since when morphology observations are coupled with selected area electron diffraction studies, there are no known interferences. We found light.microscopy helpful only in scrutinizing samples with very large particles at very high concentrations of objectionable fibers.
CRMC-LLF-Pfizer-Micro-000016
to G . C o ombs
September 2, 1976
From: R* S. Lamar
copies: J. H. Swensen, H, R. Keefe, T, E. Remitters, W. C. Streib, E. M. Fenner, D, C
Subject: X - r a y D i f f r action Analysis of Talc; Lower L i m i t of Detectability for Asbestos Minerals
The attached paper by Stanley and Norwood, "The Detection and Identification of Asbestos and Asbestiform Materials in Talc" should be helpful.
Under the conditions described in this paper the lower limit of detectability for treraolite is 0.25% and for chrysotile, 0.5%. The principal lattice spacings for chlorite at 7.03 d-spacing in Angstroms and 7.38 for chrysotile should be resolvable by using the curved graphite crystal on the X-ray diffracometer and very fine tuning of the optical system and the electronics.
R. S. Lamar RSL/imb Attachment all copies
CRMC-LLF-Pfizer-Micro-000017
To: J. H. Swensen From: R. S. L a m a r
Data A u gust 31, 1976 -pi m
Copies: Subject:
E. M. Fenner, G. R. Kinzer, H. R_. Keefe, T. E. Remitters, w. c . streib, S. R. Spell, G. Coombs, D, C
Meeting with Pfizer personnel at R&D Center August 31, 1976, Asbestos Minerals in Talc and Test Methods
We met wi t h Robert E. Norwood, Research M a nager for Pfizer's Minerals, Pigments, and Metals Division and wi t h Harold D. Stanley, Jr.; Group Leader, Testing.
This was a good meeting in that both Pfizer and J-M are
essentially in agreement as to test methods and interpreta
tion of data. They use all of the same procedures we do:
XRD, TEM, SEM, DTA, TGA, etc. but seem to rely most heavily upon TEM and XRD.
::''kpf
We showed them our data on samples of their CP talcs indica
>m
ting up to 30% tremolite by XRD. They couldn't understand
this and we gave them portions of the same samples for
testing. They promised to get back to Ed Fenner with their
results.
They had complete analytical data on three samples of
Penhorwood which they recently obtained from some unknown
source. By XRD they show no asbestos minerals. They
believe that their lower limit of detectability by XRD is
p0l.a1%ty ortallcessw.ith Byan ToEcMcaaslilontahlreefibPeernho-rwloeosds sthaamnpleosne shfiobweerd ;a
per field. Th e y d o n 't regard this as significant and wou l d interpret this as no asbestos mineral by OSHA requirements.
I
We gave them three additional Penhorwood samples from our
files for additional studies.
We also discussed commercial talcs from other sources. They feel that R. T. Vanderbilt is c o m p l e t e l y "off the track" in their stand on OS H A regulations concerning asbestos minerals. They think it is on l y a matter of time until this stand completely destroys Vanderbilt.
They described Jack Bartel's "emotional" interest in buying Desert Minerals Co. from J-M but believe that this will not happen because they view this business the same way we do the tremolite is too great a hinderance to marketing.
R. S. Lamar
RSL/imb
CRMC-LLF-Pfizer-Micro-000018
CT|
J.'};! JOoihns-P/isnviiie
iteroaS C o r r e s p o n d a n c e
To: E. M. Fenner - 4 North
From: w. C. Streib - R&D Ctr
Dote:: July 26, 1974
C o p ie s :
Subject: ACTION MINUTES June 11, 1974, Committee Meeting
f)
In line with the assignment I was given at the subject F&M Environmental Committee meeting, I would like to advise you that Pfizer and United Sierra talcs do not contain fibers that meet OSHA's asbestos standard cri teria.
Using EM techniques, minute chrysotile fibers can be de tected in these competitive talcs, but they do not meet the 5 micron length criteria established by OSHA.
Would you please pass this information on to those Com mittee members who might be interested in it.
..MCS/rs
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1. SUMMARY. THIS HFSSAPF IDENTIFIES SOURCES OF. ASBESTOS FREE
RAtCRltL WHICH ARE ACCEPTABLE SU**STHUIE TOR KEF A MATERIAL. END SUNK*!
2 NT KEF SUSY CHASM REPORTED THAT TECHNICAL TALC PROCURED TO REF A .CONTAINS NINE P E R C ^ T ASBESTOS NO THAT LOCAL USE HAS M E N S U S P F N P E H . N&Y CHASM IS SUPP1ITIN6 REPORT REQUIftEO PT REF C.
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A. PFIZER* INC.
MINERAL* PIGMENTS AND METALS 0IY M S E. **Nl* STREET
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PAGE US RUt.SSGGf.lS? USCI*S ??3 RFO SCHOOL LAKE P H ILLIPSM U K* KJ 0686*
pRcnuci: t a l c , u s p 100
PROCURIKG * C t I V I I I E S ARE R F OUFSTEO TO RASE ACCEPTANCE OF MATERIAL UPON K i r r i P I Or SUPPLIERS TEST DATA IN D IC A T IN G THE TLC I S FREE OF ASBESTOS ANP OTHER F I- S O U S A S *E S I JFORK MINERALS AND THAT LAPELS on s h ip p in g co ntainers reflec t such in f o r m a t io n . . ACCEPTABLE A N A LY T IC A L t e c m m c u e s f o r d e t e r m i n i n g p r e s e n c e of SSESOS ARE D lS P F R S T O n S T A IN IN G MICROSCOPY OK X-RAY D IF F R A C T IO N . I F ASSISTANCE r e g a r d i n g a n a l y t i c a l TECHNIQUES I S REOUIPED CONTACT NAVENVHLTHCFN tN EH C I C I N C I N N A I I . OH (M R . J . CRAWL t AUOVON R 8 V - T B M OR COMMERCIAL ( S 1 3 I 6 M - 3 6 6 3 . S . I F USE OF * C * A MATERIAL I S R F N U lR f 0 RCFOKE ACCEPTABLE S U 3 S T IIU T E MATERIAL I S OBTAINED I N S T IT U T E THE SAFETY REQUIREMENTS OF APPENDIX OF REF !) OR CONTACT NEAREST NAVY REGIONAL MEDICAL CENTER FOR G U lP A ftC E . * . FOR ALL N A V S H IP Y ^ S : SUSPEND USE O r KEF A MATERIAL IM M E D IA T E L Y . 7 . FOP NAVSEC: FORWARD a PURCHASE D ES CR IP TIO N TO SPCC FOR ASBESTOS FREE F O K t U L A l l O N OF TECHNICAL 1ALC 1 0 F A C IL IT A T E E S T A B L IS H IN G A N th N S S . I N I T I A T E CHANGE TO M T L - S 1 0 - 1 H A A i o d e l e t e t h e r e q u i r e m e n t f o r
I PAGE Oh RULSSGG0AS2 UNCLAS ASBESTOS C O N U IN IN S TALC
p . FOk RAVSUPi REQUEST ISSUE or A D EFEC TIV E MATERIAL SUMMARY
B U L L E T IN FOR REF a MATERIAL YKCLU01N6 INFO t N PARAGRAPHS 3 A # AND . REOUEST i n F N T I F Y A 0 0 T IO M A L STOCK HUMMERS FOR TALC PROCURED TO M l L - S T b - l * * * OMTAtN SAMPLES AND COORDINATE WITH NEHC TO O M tA t N A N L LR S lS 0* ASBESTOS CONTENT REQUEST HAWSEA OAF ANO NAVSEC 6 1 0 1 RE APPRISED OF E S 1 RESULTS.
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PAGE 02 RULS5CS6452 USCLAS
D. NAVSHIPS TECHNICAL MANUAL CHAPTER 635 1. SU GARY. THIS MESSAGE IDENTIFIES SOURCES OF AS3EST0S FREE
MATERIAL WHICH ARE ACCEPTABLE SUBSTITUTES FOR REF A MATERIAL. END SUMMARY.
2. BY REF B FiSY CHASA REPORTED THAT TECHNICAL TALC PROCURED TO REF A CONTAINS NINE PERCENT ASBESTOS AND THAT LOCAL USE HAS BEEN
SUSPENDED. NSV CKASN IS SUBMITTING REPORT RE5UIRE0 BY REF C.
3. UNTIL A NEW NSW BECOMES AVAILABLE ARC A CENTRAL SUPPLY POSITION IS ESTABLISHED* LOCAL PROCUREMENT OF SUBJECT MATERIAL IS AUTHORIZED.
SEVERAL PROCUREMENT SOURCES FOR AN ACCEPTABLE SUBSTITUTE ARE 1 A. PFI2ES* INC.
mineral* pigments and metals civ
235 E. 2ND STREET NEU YORK* NY 10017
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PAGE 09 RULSS5364S2 UNCLAS
__
ASBESTOS CONTAINING TALC
5 fo r n a v s u p : r e q u e st i s s u e o f a o e f e c t i y e m a t e r i a l summary
BULLETIN FOR REF A MATERIAL INCLUDING INFO IN PARAGRAPHS 3* 4 AND
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CRMC-LLF-Pfizer-Micro-000023
CRMC-LLF-Pfizer-Micro-000024
Revised 1975 Talc Forecast vs. Original Plan
Grade
Std. Grind DT-51 DT-54 DT-55 DT-84 D-H2
Fractionated Hi Press Hi Fine 80
Micronized DT-57 DT-506 ' DT-507 . 0T-7O6 DT-707
CycIonized Cyclo-Fil Cvclo-Sorb
Clay PV #l PV #3
Crude
TOTAL
1975 Original Plan
Tons
s
14,600 1*150
775 400 2*500
$ 775,900 64.400
44*950 22.400 100,000
2,500 1,900
107*500 125,400
3,100 200 650 250 750
285,200 16*800 64,350 22,500 72,000
5.000 5.000
4A8C5O,10AW0AWAW0
6,000 800
3.000 49,175
303,600 40,000 69.000
. $* 049,000
1975 Forecast As Of 4/1/75
Tons
____ $
19,600 1*150 775 400 2,500
$ 921,200 64.400 44,950 22.400
250,040
2,500 3,400
105.000 221.000
1,600 200 650 250 750
2%9,fJ5rU0a V0*
144,000 16,400 61,750 21,500 69,000
235,00C Sia, ti
6,000 800
1.200 47,775
270,000 37,600
120.023 $2 ,919,263
CRMC-LLF-Pfizer-Micro-000025
II, Divnion
Revised Sales and Net vs. Original Plan PLANNED EARNINGS* DIVISION
Original
Revised
C Plan % C Plan %
%
GROSS SALES TO CUSTOMERS
3124
4 /1 /7 5
TRANSPORTATION
45
RETURNS
DISCOUNTS
allow ances
30
SALES TO OTHER DIV.FOR USE NET SALES VALUE
3047
2919
STD. COST SHIPPED
2194
1815
EARNS. AFTER STD.COST SHF.
855
1104
NON-STD PLANT COST OPERATING VOLUME T R A N S F E R R E D -N E T TOTAL
GROSS EARNINGS
161
r
l5 t> 699
536 568
DISTRICT EXPENSE SALESMEN
62
60
SALES OFFICE
85
nr-
INTER-OIV. COMM.
WAREHOUSES
17
16
TOTAL EARNINGS AFTER DIST. EXP.
GENERAL A ADM IN. EXPENSE! DIVISION ADVERTISING RESEARCH TECH. SERVICES ENG. A TECH. PROJECTS DIVISION AOMIN.
TOTAL MISC. INCOME A ` DEDUCT.*
167 532
20 ill
50 30 10 5 _
316 15*
164 404
20 ill
50
.1 0 0
311 15*
DIVISION OPERATING EARN. COMPANY ADMIN. A AOVEAT.
201 156
78 150
% i
PRE-TAX EARNINGS INCOME TAXES NET EARNINGS
45
(72)
9
15
36
(57)
* Istiilated by 1. K. Comann noli ides non-i tanc ard costs
CRMC-LLF-Pfizer-Micro-000026
III.
Influences
A. External
1. Labeling-- During June of 1974 we discussed with
various customers the possibility of labeling
our talc products. This resulted in an immediate
loss of some accounts. Letters were sent to our
customers advising that the label would be affixed
to our bags effective November 1, 1974. These
letters were sent out in September of 1974. The
|
results of the letter in September and the actual
labeling November 1 caused a further loss of customers. Our estimate of lost business on an annual basis was approximately 30 percent of our
tonnage and 40 percent of our dollar volume. Please
refer to my attached letter to P. Kotin which shows
this effect.
R. T. Vanderbilt and Pfizer (California talc) are
not labeling. R. T. Vanderbilt is certifying their
talcs are asbestos-free, but we have no knowledge that Pfizer is doing the same. We feel that Vanderbilt and Pfizer (California talc) will be required to label before the end of 1975.
The adverse publicity generated concerning asbestos and tremolite has been such that even if we could remove the asbestos label from our talc, it would
be some extended period of time, possiniy a year or more, before we could regain business lost to asbestos-free talcs.
2. OSHA and NIOSH-- Jointly studying asbestos in talc. OSHA has requested NIOSH to study asbestos in commercial talc, and NIOSH is studying asbestos
content of talc mines with MESA. NIOSH considers all particles of chrysotile and the amphiboles that have three-to-one aspect ratio and over 5 as
asbestos fibers. We expect increased activity from state (particularly California) OSHA offices on our talc customers because of tremolite.
3. PDA-- Does not appear to be a problem at the moment. Thair position stated in.the Federal Register March 14, 1975 withdraws their proposed ban of talc in food packaging. The proposed ban drew attention to asbestos in talc and we will have an uphill
battle to get back market share we lost.
CRMC-LLF-Pfizer-Micro-000027
4. General Market Conditions-- See Talc Sales attached a. Our ceramic and tile business remains relatively strong in spite of our problems. b. Paint is weak due to the economy and our tremolite/labeling problems. c. Our plastic business has all but disappeared due to the tremolite problem with the exception of Solo Cup which we started to sell in October of 1974. Solo remains strong but tremolite and the label are an ever present potential problem. Competition from Pfizer is fierce but we manage to hold on because Solo likes our product. d. Tremolite, the label, and quality, plus a poor business climate have combined to hurt our sales to the paper industry. Competitors from Montana talcs have been only too eager to point out to our customers that our talcs contain asbestos fiber. This is very rough competition, and coupled with the economy and quality problems, makes for difficult marketing conditions, to say the least. e. Price increases-- Ke had planned a six percent price increase for talc on an annual basis. We have implemented a three percent (annual basis) increase and have met great customer resistance. It is doubtful that a six percent will be achieved in 1975. A.decision to label by Vanderbilt and Pfizer could reduce the pressure on Desertalc and allow for selective price increases.
B. Internal Influences 1. Ore Quality and Control Related to F.P.S.-- The problems with ore quality came about when we were forced to above ground mining. The lack of selective mining has caused virtually all of our problems con cerning brightness and acid solubles. The Mining Division is formulating a mining plan which should be completed soon to alleviate this oroblem. Problems encountered at the milling locations resulting in inability to meet F.P.S. stem primarily from the crude ore being shipped from Warm Springs. This, hopefully, will be corrected by the mining plan mentioned above. Other quality problems were caused by grinds being too coarse and poor plant management. Plans to train and adequately staff quality control personnel have been put into effect by Mining and Research. Plant management and supervision should
CRMC-LLF-Pfizer-Micro-000028
improve dramatically when the Mining Division implements! their new organization plan for Desert Minerals on April 1, 1975. IV. Action That We Plan to Minimize Unfortunate Influences A. Tremolite and the Label-- We are and will continue to educate our customers on the necessity of proper dust control not only for asbestos fiber, but for all dust which is required by OSHA. Our industrial hygiene studies are very helpful in this respect. We believe and are attempting to convince the customers that they must clean up their plants and control dust to comply with OSHA regulations. By so doing, he eliminates the problem of asbestos. Wherever possible, we discuss bulk shipments to avoid dust problems. B. Ore Quality-- This problem is critical and compounds our problems with tremolite and the label. We are in constant contact with the Mining Division and communicating our problems in this regard. The formu lation and implementation of a good sound mining program, properly supervised, will eliminate this problem area. C. Quality Control Problems at Grindinq Locations-- Good quality crude is paramount, as it is the one area that the grinding plants have no control over. The training of plant quality control personnel so they know what they are looking for and can interpret their results properly will alleviate the problems of coarse grind. This, with better plant management which should be accomplished with the new plant organization, should reduce these problems to a minimum. T. E. Remmers has been assigned the responsibility of the key marketing liaison person to work and communicate to the Mining Division and to follow problem areas through. V. Recommendations The initial crunch of lost business due to the label has been felt. Our business seems to have stabilized. We expect further erosion in paint and possibly the loss of Solo Cup in plastics. Our ceramic business remains strong. We believe we can regain some lost paper tonnage with improved quality from Warm Springs and the grinding locations. During April we will phase out production from Los Angeles and move all production to Dunn. Some Cyclo-Fil may have to be made at Los Angeles on an intermittent basis due to capacities at Dunn. The consolidation of virtually all production at Dunn will cause Dunn to run at capacity for six-day weeks. The concentration of managerial personnel at Dunn should improve the plant's efficiency and eliminate
CRMC-LLF-Pfizer-Micro-000029
many quality, shipping, and outage problems we have been experiencing. The costs used to arrive at net earnings with the revised forecast were submitted by the Mining Division. The cost includes the fixed cost for the Los Angeles Plant, which are estimated at $200,000 per year while closed down. If we were to dispose of this plant the fixed cost would be eliminated. The cost of operating Dunn and Warm Springs, in my judgment, appear to be overstated. We have never operated Dunn at full capacity with full management capa bilities which should insure better efficiency. We believe we still have a 45,000-plus ton per year business. Mining Division believes this business concentrated at Dunn will improve our profitability. We would like to stay in the California talc business at least until Penhorwood comes on stream, to maintain continuity in the market. The Desert Minerals operation should be reviewed for profitability progress after May results are in. If this business, with the changes contemplated over the next two months, can be made profitable, it will remain a good small business as Penhorwood should have virtually n o effect on Desert Minerals.
CRMC-LLF-Pfizer-Micro-000030
CONFIDENTIAL - FOR J-M INTERNAL USE ONLY
To: P . A. Martinson - 2W
Data: March 20, 1975
From: R. S. Lamar - 2W
Copie: J. M. Fletcher - 2S
R. Keefe - 2W J. M. Sharratt - 2S
Subject: AN ASSESSMENT OF THE J-M POSITION WITH TALC
Three years since J-M's entry into the talc business with the acquisition of Desert Minerals Company is time enough for an appraisal of our position. This assessment is
broken down into eight sections as follows:
1. The Effects of Labeling: Our position here has been the only acceptable action J-M could take. According to the definitions that are a part of the law, our California talc products all contain asbestos in the form of tremolite. No play on words will change this fact.
mmmm mm mm j I
mm mm mm mm -- V - > m-- a. -- -- .. . - * ... -
. r. J..I
the uniquely high brightness and relatively low acid soluble content of G-l and G-2 talc ores, we
could hold onto most of the critical markets, in spite of labeling. I now seriously doubt our ability to do this.
The "talc-asbestos" problem is quite different from the "asbestos-asbestos" problem. In many applications foT asbestos, there are no acceptable substitutes. With our asbestos-containing talc, there are numerous possibilities for substitution:
(a) Non-asbestos containing talcs from both Pfizer and Cyprus from Montana sources and
(b) Other extender pigments such as kaolin and calcium carbonate (in paints, for example, and in paper filling uses).
We see this type of substitution being made and long-established markets for Desertalc products evaporating in the process.
P. A. Martinson
Page Two
2, The R. T. Vanderbilt Position: Their position with respect to labeling must be deliberately perfidious; they cannot be this misinformed. Slim Thompson, their technical director, has a Ph.D. in mineralogy. At the moment, Vanderbilt is misleading their customers and confusing ours with their decision not to label. Ultimately, the truth will out, and they will be forced to label. Pfizer's position is the same with their California talcs, h'ith all asbestos-containing talcs labeled, far greater value and emphasis in the market will be applied to asbestos-free talcs. I seriously question the capacity of these asbestos-free talcs to satisfy the total market. Also, in some applications, the asbestos-fTee talcs are just not a suitable sub stitute quality-wise. For example, in ceramic wall tile (a major market for treraolitic talc) there are few, if any, asbestos-free talcs that show the same forming and firing properties. Penhorwood fires to a brown color due to high.iron content. G-l Fires white due to very low iron content. Nevertheless, it is a fact that the Montana talc (asbestos-free) business of both Cyprus Industrial Minerals and Pfizer is booming, while we are in the doldrums.
3. (Quality: Historically, talc mining has been a highgrading operation with selective mining required to maintain acceptable quality fir various uses. This type of selective mining teas done successfully for over 25 years at the Grantham Mine. Proper quality and uniformity of ore were seldom, if ever, problems and sizeable markets were built on this foundation of quality. The unique high brightness of Cyclo-Fil (951 G.E.) was, in the past, properly maintained and a good and profitable market developed for this product in paper filling. With the brightness of current quality Cyclo-Fil dipping as low as 89%, there is no way we are going to maintain this business. Clays and other fillers at half the price of Cyclo-Fil can and are being used.
* '
P. A. Martinson
Page Three
Other quality considerations relating to high acid soluble content and improper grind have caused an erosion of our paper industry business until virtually nothing remains.
4. Markets: At one time (less than three years ago) sizeable markets for Descrtalc products existed in paper, paint, plastics, and ceramics. Both DT-51 and DT-57 were the most widely used fillers in 40% talcfilled polypropylene. We lost this business prior to labeling because of tremolite content. Many of our paint and paper accounts have been lest for the same reason and labeling has accelerated this loss. Labeling, plus the loss of proper quality, has been disastercus. Ceramic sales of DT-51 have been difficult to maintain. High acid soluble and water soluble contents of G-l ore have resulted in casting slip gelation and rheological problems. The high acid soluble content of current quality G-l and G-2 ore has increased the alum demand of Lulu Cywlu-Suib unu Cyclo-Fil in paper applications to the point where, even if we had proper brightness, a paper mill could not afford to use our products. I can foresee no markets that can be built or rebuilt under present conditions.
5. New Technology; Froth flotation will reduce the trerolite content of G-2 ore to less than 1%, but will not remove all of the tremolite. In such a wet process, acid leaching will increase brightness several points. HIMS could probably also be used to remove even paramagnetic material to improve brightness still further. Newly developed sand or attritor milling procedures can grind down to a maximum particle size of under 2 microns, but I believe that all of these new techniques are a waste of time as long as we have to label. Also, the relatively high mining costs at Warm Springs, plus the absence of adequate water for these wet processing methods makes the development of other sources more attractive.
C R M C -LLF -P fizer-M icro-000033
P. A. Martinson
Page Four
6. Penhorwood: Based on detailed testing, we feel certain that Penhorwood talc can be developed as a major source for pitch control and should be directly competitive with Mistron Vapor (Cyprus Industrial Minerals Montana talc). Other markets may be developed for Penhorwood in plastics filling, elastomer reinforcement, and paint. Although in this latter use, the relatively low brightness of Penhorwood is going to be difficult to overcome. If higher brightness grades could be developed from the same mining area, additional markets would become available. In paint uses, wet color uniformity is a majoT considera tion and must be maintained with Penhorwood talc or any other extender pigment. Analyses of Penhorwood core samples suggest that this may become a major problem.
7. Other Worldwide Talc Sources: With the worldwide decline in the industrial use of tremolitic or asbestoscontaining talcs, sources for asbestos-free talc will surely become more valuable. Major sources for this type of ore exist in France, Italy, Spain, India, Red China and other parts of the world. Generally, all of these deposits are selectively mined.
Only Finntalc and Johnson and Johnson are using froth flotation to separate talc products of acceptable quality. We will do the same at Penhorwood,' and the industry must move in this direction as deposits amendable to high-grading are depleted. Talc producing areas in California, Nevada, and Montana have been thoroughly--if not systematically and profes sionally explored. It is unlikely that new largescale talc-mining properties could be developed. However, this possibility should be explored--but only for asbestos-free materials. There would appear to be an opportunity for good geological work.
P. A. Martinson
Page Five
8. Conclusions and Recommendations a. Labeling, plus a general decline in quality, has caused a disasterous loss in J-M talc business. Some of this business might be regained in spite of labeling, providing we could re-establish prior high quality standards in both our mining and milling of these products. However, the effects of labeling will always place us in a serious competitive position. The economic viability of such an operation is also highly questionable. b. Until PenhoTwood is in operation, we should try to hold onto as much of our existing talc business as possible. Such a holding action will be difficult, expensive, and disheartening, but should be done. Penhorwood will not replace all existing markets for Grantham talc because of darker color and other differences. c. Beyond the development of Penhorwood, J-M should attempt to develop, on a worldwide scale, other asberto free sources for talc mineral. These will most surely become more valuable with time. It would be unfortunate, indeed, if we were to let our poor performance with Grantham talc interfere with J-M development of other worldwide talc sources under more desirable conditions.
X
>V\'V 'S'f
MANPOWER.
RESERVE A FFA IRS AN D LOGISTICS
ASSISTANT SECRETARY OF DEFENSE
r . WASHINGTON. D. C. 20301
2 7 J"1 1Q77
MEMORANDUM FOR DESIGNATED SAFETY AND OCCUPATIONAL
HEALTH OFFICIALS OF THE MILITARY
DEPARTMENTS AND THE DEFENSE AGENCIES
'
*
SUBJECT; Trade Nam e Products with Carcinogenic Hazards
T his is to provide you with a National Institute for Occupational S afety and H ealth (NIOSH) l i s t of p rod u cts w hich m ay contain one or m o r e of the 16 ca r cin o g e n s that the O ccupational Safety and H ealth Adm inistration regulates.
Your field safety and health p ersonnel should find the en closed lis t useful in their hazard surveillance program s. Since m anufacturers frequently change th eir products, verification of constituents should be accom plished as soon as DoD usage has been ascertained. This type of inform ation should be available through DoD channels once our m aterial safety data sheet system b ecom es .operational early next year.
T h is lis t w as a lso m a iled to about Z0 lab or unions by th e P u b lic C itizen's Health R esearch Group. Prom pt action to insure p ro tection of our em ployees who work with th ese products would he prudent.
E n clo su re c c : ASD (HA)
-- -- ---
G eorge M aricnthal Deputy A ssistan t S ecretary of Defense
(Environm ent and Safety)
* a* . ---
N ' S H I P 1731 C R M C -L L F -P fize r-M icro -0 0 00 36
TRABE NAMES WTTtl .CAKCTNcVT-NIC HAZARDS
` TRADE NAME PRODUCT Adco Seal B-100
Aerobond 2199 Part A
All Purpose Joint System
HAtZARD Asbestos
Asbestos
Asbestos
PERCENTAGE
OF HAZARD
ZN
TRADE NAME
PRODUCT
06 ;
09
01
Alum Anatia 301 Asbestos Fibred
Asbestos
11
Aluminum Roofing
Aluminum Asbestos
Asbestos
50
Aluminum Roof Coating
Asbestos
03
Aluminum Roof Coating
Asbestos
10
Aluminum Roof Coating
Amelco Adhesive r Armstrong Epoxy Resin A-6 and '
Activator 'Armstrong Tile Cement S-90
Asbestile Cement
Asbestine
Asbestos
a*
Asbestos
1Asbestos
Asbestos
Asbestos
Asbestos
07 0 ` 23 08 10 99
Asbestine 32S (3X)
Asbestos
25
Asbestos No. 352 Asbestos 7R-05
Asbestos
99
Asbestos
99
Asbestos Tiber 7R06
Asbestos
99
Asbestos Fibrous Roof i Equndatlon Eg E ~ ' - ~ ----- Coating .
Asbestos Fibre Shorts 7H-90
Asbestos Asbestos ~ 3
05 - ... 99 --
Asbestos Plastic Roof Cement Asbestos Plastic Roof Cement
Asbestos
19
Asbestos
14
Asphalt Flashing Cement
Asbestos
25
Asphalt Tlastlc Cement No. 050 Babbitrlte f30
Asbestos
13
Asbestos
07
PRODUCT KANPFACTim
0905353 06591*07 0033S72 0241344 0347007 0098758 0462681 0462685 - T W \ 0829362 0148850V^ 0434983 ) 0000367 0375573 0404087 04S2685 ' 0462685 3 O'. 0000367 -j.n]
0462685
Jlj 03898
0434948 0374915 0058348 0096017 0243164
N'SHIP 1736
thaiif. n a h i. produ ct Barrut Aluminum toi Coating Barret E22056 Mall Covering Cenuint
Bitucote Sealer Black Plastic Cement Blackline Plastic Cement
Blind Nailing Cement
Bond Master C 458 Series
Bond Master M611 Bond Master M1371 Adhesive
Buffing & Polishing Compound
Bull's Eye Plastic Cement
Butyl Tite Butyl Rubber Caulk
C-13-C4 Hydralt 800-13
Calidra Resin Grade 244
Carbonitc Packing Material
Carboslnc No.11 Green 2G5416
Carey Mastic Heavy Trowel Grade Damp Resistant Coating
Celluflow
itso
; **' "
^ Quarry Floor_Tileeement
Ceniitalc Chalking - Glazing CoTpound Chemical Sealing SM-9D2 Chrysolite #5 CM Sealer Coat Castrol Regal
( I t IIA/JUU
H TRADE NAME
PRODUCT
PRODUCT MANDFACTll 0109097 L'tit-'Uy 0109097 0864365 0000278 0099471 0462681 0710821 0710821
07k0821 0989959 005B350 0015666 0293882 1013956 0341462
0343207 id
0364250 Ctte 0223783 m n i? 0U40|^| 0275035 0015674 0780160 0223783
6000192 0254254
N--SH 1P 173S
C R M C -L L F -P fize r-M icro -0 0 0 0 3 8
C R M C -L LF -P fizer-M icro -00 0 0 3 9
C R M C -L L F " P fize r-M icro -0 0 0 0 4 0
TRADE KAMF. PRODUCT
Insulmastic
IPM 033
K92 K-326
K-361 K-682 Karnak Flashing Cer.cnt Karnak Insulation Adhesive Karnak Plastic Flashing Cement
Karnak Trowel Mastic 86
KAYLO KAY017 Knickerbocker Roof Coating Liquid Asbestos Fiber Roof Coating
Loorale Talc Luxall Fix It Plastic Cement U242 Elastic Glaring Compound
Mack 2510-45
Mania. Tradesman Plastic Roof
X m s Bond Safety
"
Paint - Black
Marlneco Coatings - Aluminum and Mastic R-13
Mastic Metal Peadcncr Metal Duct Scaler Cray 10-104
Met.aJJ 1c Sealant
HAZARD Asbestos
"OF HAZARD
IN TRADF. NAME
PRODUCT 05
PRODUCT MAKDFACTDR
Asbestos
09
6000213
Asbestos
04
0197530
Asbestos
02
0197510
Asbestos
02
0197510
Asbestos Asbestos
02
0197510
25
0056348
Asbestos 1 Asbestos'
Asbestos Asbestos
10 16 19
a * 15
0058348
|
l
0058348
'L
0058348
0000024 0,C'* 1
Asbestos
11
0000024
*1
Asbestos
01
0567525
Asbestos a Asbestos
04 m 0374915
25
0275035
Asbestos
12
0704508
* Asbestos
03
0447686
Asbestos
16
0254254
Asbestos 1
"f" ACtresres"' _ 4-
ay.
19
-
0567525
Asbestos Asbestos
10
6008157
1
16
6008104
Asbestos
09
0098090
Asbestos
02
0316812
Asbestos
02
0758237
-
N'SHIP 1742
TRA1)F. NAME PRODUCT Plastic Roofing Cement
Plastic Roofing Cement No. 204
Plastic Roofing Cement
Plastic Roofing Cement
Plantlocal Expanding Joint
Plastltc Roof Cement
Prcsstlte Products 440.22 Sealer
Pro Seal 700
PT1 707 Architectural Sealant
Quaker Coat Undercoating
Quaker Koat Solvent Type Undercoatir g
Quakercote Emulsion Type ' Undercoating
Radiator Sealer
Redy Coat Rain Patch 406 NTP
Roof Cement
Roof Coating Asphalt
Roof finish Roofing Cement
Roof Fix Coating
Roof Koter 732-00
Roof Patch - --
'
Roof Preservative, Ter 4 Asphalt
Roofing Mastic
Rutland No.4 Roofing Cement
SC-150
SC-210 Sealant
SKerwln Will lams Kcmak (R) Hard Set B D65YA
HAZARD
Asbestos
,)F HAZARD IN
trade name PRODUCT
20
PRODUCT
MANUEACTURT
0109097 UjutZ
Asbestos
04 - 0048371
Asbestos Asbestos
16
S 16
600S104 6010169
Asbestos
ID
0462685 -3-
Asbestos
10
090013.8
Asbestos
02
0405366
Asbestos
05
0083854
Asbestos "
1
0154049
Asbestos Asbestos
io-0 " 22
0080746 6008127
Asbestos
10
0080746
Asbestos
01
O26D20B
Asbestos
14
Asbestos
14
0515164 6014020
Asbestos
06
0096017
Asbestos
10
0462681
Asbestos l
04
Asbestos
05
0462681 0352861
Asbestos __
11
- 024133V |
'Asbestos
04
0015674"*
Asbestos Asbestos Asbestos Asbestos Asbestos
A O
20
600B097
12
0146907
30
0032589
0414648
08
0084642
N " SHI P *744
TRADE SAME PRODUCT S.X.5. Cement
SM 475 Sealer
. SM-856 Chemical Sealing
Stainless Putty
i
Supurcotc Roof Preservative
Talcote Cold Plastic Sewer Joint Compound
I Thermobestos Pipe Insulation
Tite Seal T-25LU
Translte Conduit Joint Sealing Compound
Tremco Glazing Compound
^^remco Mastic Roof Cement
Tremco Seam Sealer
Tremco Trcmflx Emergency Roof Repalz Mastic
Tremco 102 Texture Coating
Trenflx Emergency Roof Repalrmastle
Tropical Roofkoater Tru-Seal
Unlpar Mils-7916B Vulcatex P.C. Caulking Compound Vail Board Adhesive No.36 Wards Brake Shoes Wcathcrizcd Plastic Cement Weatherproofing Compound C 13A
Asbestos Asbestos Asbestos Asbestos Asbestos Asbestos
flK HA'/Ai: IN
trade name
10
05
16 03 02 18 '
PRODUCT MANUFACTURER 0109007
0780160
07801toO 0130879 0241333 0096017
Asbestos
07
Asbestos
26
e
Asbestos
10
Asbestos Asbestos Asbestos Asbestos
02 15
02 16
Asbestos
Asbestos
Asbestos Asbestos
testoa " *4: =>%
*4te9tei
Asbestos
13 2.6 05 13, 1 -n02
Asbestos
30
Asbestos
12
Asbestos .
46
Asbestos
01
Asbestos
08
0462685
a
0340361 0000367
a *
001567 ` 0015674 0015674 0015674 0
0015674 0015674 0352861 0981254 0016847 ! : 0241520 0160450 0351230 0740988 0254594 0109097 0097785
3 m
N` S H I P 17<is
CRMC-LLF-Pfizer-Micro-000044
TRA1>1?. NAME PRODUCT Velcast Cl 200
White Hydroseal #559 m
Vinter Plastic Wood Filler Paste
1-723 Light Cray Anti-Skid
MAZAR Asbestos
1M
TgAPK HAKE product
02
product
manufacturer 1020622
0469139 - CJ-H
0206704
0066304
.0031132 0462685 ,,
3 J.
5K04 Asbestos #7 Roof Cement
0146907 0462685
j Hit
7K05 Asbestos
0264680.
8A Resin
0264680
8B Catalyst #15 Asbestos FinisFheiltnpgerforated
#54 Acoustic R-200 8SZ Magnesium Insulation
#164 Vet Patch
#165-100 Stapon C Tank Coating WhltJ
Base
I
#165-101 C Stapon C Tank Coating Blue Base
#166-5 Epoxy
Asbestos Asbestos Asbestos Asbestos
Asbestos
#352-711 Refractory Cement
0
#352 Mortar
so r 0462685 *
09 1 0151526 15 1 0462685 1 12 1 * 6010025 01 ' I 0859094
01
0859094
0440316 0758237
0000367:
0462685 T-iV\ 0405366
421.83
0015666
600 Putty #613WB Vet Patch Plastic Cement 627 Tough Film Mortcx #758 Ashphalt
0677924 0098758 0098090
1746
C R M C -L LF -P fizer-M icro -00 0 0 4 5
174V
C R M C -L L F -P fize r-M icro -0 0 0 0 4 7
Oop>
pr od uct MANurAcnmr.n conn REFKRCiCFS
' 1SjL
0055883 Hercules Chemical Co. Inc\
000024 O w ens-C om ini; F ib e r g la s C orp.
84 Fifth Ave.
\
i
P.0. Box 901
New York, NY 10011
Toledo, OU 43659
0058348 Karnak Chemical Corp.
0000367 Johns-Manvillc Pdts. Corp..
* 330 Central Ave.
Greenwood Plaza
Clark, NJ 07066
Denver, CO 80236
0058350 Cardner-Martin Asphalt Corj
0000856 Tuff Kote Co. Inc.
Florida Asphalt Div.
210-14 S. Seminary
i
P.0. Box 5776
Woodstock, ILL 60098
Tampa, Fla 33605
0015666 Dunn-Kalney Co. Inc. 3265 Demude St. Ferndale, Mich. 48220
0058914
Allied Chemical Corp'.
P.O. Box 3000 Morristown, NJ 07960
0015674 Tremco Hg. Co . 10701 Shaker Blvd. Cleveland, OH 44104
0016847 Thiokol Chemical Corp. P.0. Box 27 Bristol, PA 19007
0059049 Inmont Corp. i n Div. 1133 Ave. Americas
- New York, NY 10036 *
0064224
Philadelphia Resins Co. In*
P.O. Box 454 Montgoneryvl. PA 18936
0022961 Lea Mfg. Co. P.0. Box 71 Vaterbury, CT 06720
0031132 Matete Co. Inc. P.0. Box 10762 Houston, TX 77018 .
0066304 Lawrence Me Fadden Co. 7430 State Rd. Philadelphia, PA 19136
0068343 Fry, Lloyd A. Roofing Co. . 5818-24 S. Archer Rd. Argo, 111 60501
0032569 Reliance Universal Inc. Tex. P.0. Box 1113 Houston, TX 77001
0033872 Hamilton Materials Inc. 345 W. Meats Ave. Orange,'CA 92667
- 0036004 Southwestern Petroleras Orp.
-p.ft. Box 789 --
--- -
Toet Worth, TX 76101
0076985
Deshler Products Co. 299 Chestnut Dr. Deshler, OH 43516
0080473 Maremont Corp. Grizzly Div 700 V. Caroline Paulding, OH 45879
0080746 Quaker State Oil RefIn
Center St 7
"
Oil City, PA 16301
0043532 Manus Products Co. Inc. 2611 W. 14 Mile Rd. Royal Oak, MI 4B073
0047339 Lea-Mlchlgan Inc. 237 E. Aurora St. Watcrbury, CT 06708
371 Henry, U. W. Co. _ 608 Soto Huntington Pk., CA 90255
0083854
Telcdyne Inc. Teledyne Coast Pro-Seal Di P.O. Box 54748 Termin. Compton, CA 90221
0084642 ...
Shcrwin-Villlans Co. 101 Prospect Ave. NV Cleveland, Ohio 44115
N-SHIP 174
C R M C -L LF -P fizer-M icro -00 0 0 4 8
0096017
American retrofina r.O. Box 2159 Italiflit, Tx 75221
009/7U5 0096090
flintkotc Cu. Central Ave. & Oak S4E Kutherford, NJ 07073
1 Intercoastal Paint Corp.
2320 Edgevater Baltimore, MD 21222
0096758 Morteli Co. 23333 Sherwood Harren, Ml 48091
0098765
Palmer Asbestos & Rubber Corp. 146 St. Matthevs Ave Louisville, KY 40207
0099471
Southern Protective Pdts. Co. P.O. Box 10915 Atlanta, GA 30310
0102408 Union'Carbide Corp. 270 Park Ave. Hew York, NY 10017
0109097 Celotex Corp., The P.O. Box 22602 Tampa, Fla 33607
0130879
Black Swan Manufacturing Co. 4540 W. Thomas St. Chicago, ILL 60651
0131390
Pecora Corp Texas
2601 Oakland Ave.. ^ . ... r '
0137159
llandl Products Co. P.O. Box 1955 Cleveland, OH 44106
0146907
Rutland Fire Clay Co. ine Curtis Ave. Rutland, VT 05701
0148850 Armstrong Products Co. Inc. ' * P.O. Box 657 Warsaw, XND 46580
0151526
Roach Paint Co. Inc. 1306 River St. Dallas, TX 75202
0154049
Protective Treatments Inc. P.O. Box 14116 Dayton, OH 45414
0160450 0167311
Parker-Hannifin Corp 17325 Euclid Ave. Cleveland, OH 44112
0>
Reliance Universal Inc. II 1901 Sheridan Rd. N. Chicago, ILL 60064
0187114 0197510
Dart Industries Inc. Fibei 1701 K. Heidelbach Ave. Evansville, XND 47717
9 Kalman Paint & Chemical G 33 Tucker St. Trenton, NJ 0B618
0206704 0207125
Union Chemical & Oil Co. 3211 S. Hood Chicago, 111 60608
9
Lilly Industrial Coatings 666 S. California Indianapolis, IN 46225
0211065
Perfection Model Products 4145 H. Kinzie Ave. Chicago, ILL 60624
0211259
Moyen C.P. Co. 8157 Hontieello Skokie, J P L 60076
0214068`'"CKici'go "Mastic Co. 7100 N.Mannheim Rd.
Des Plaines, ILL 60018
0223783
Cellulo Co. 1321 First St. Sandusky, OH 44870
0236542
Coodrich, B.F. Co. Goodrich, B.F. Chemical 8 Main St. Akron, OH 44318
N 'SH IP 1700
Sonneborn building Produces
7777 Computer Ave.* Minneapolis, MN 55435
. 0488524
0515064
R. A. Chemical Co. 774 E. 43rd St. Brooklyn, NY 11210
Oil non Ire Inc. 2946 NO Columbia Blvd. Portland, OR 97211
056752S
Seaboard Plastics Corp. 10 Washington Ave. Irvington, NJ 07111
0579999 Antedi Xnc. Telegraph Rd. Odenton, MD 21113
0593176
Goodrich, B.F. Co. 3135 Euclid Ave. Cleveland, OH 44115
677924
Marvin Carp. The Bluf Rd. Montebello, CA 90640
0704508
National Mfg. Corp. 153 Fillmore Ave. Tonavanda, NY 14150
0710821
National Starch 6 Chen 225 Bellville Ave. Bloomfield, NJ 07003
0725673 - Mastcll Inc*.___ _ * r:T - -- i M M t Leiningcr -- irt.lH 46514
0740988 Ohio Sealants Inc. 7249 Commerce Dr.
. Mentor, OH 44060
0758237
Imprex Inc. 3260 S. 108th St. Milwaukee, WI .43227
0779967
Morteli Co. Industrial Blvd. Griffin, CA 30223
0780160
Chemical Scaling Corp. 2016 Steel Dr. Tucker, CA 30084
0829362
American Elastomer Co. 400 linden Wilmette, U L 60091
0832312
Alcatraz Co. Inc. The 1900 Ellen Rd. . Richmond, VA 23230
0859094
Standard Paint & Varnish 3300 River Rd. Harvey, LA 70bS8
0864365 Bitucote Products Co. a# Smaller Rd. 6 Big Four RR
Cincinnati, OH 45215 a "
0884445 Nicolet Industries
*
H/E Uissahlckon 6 Maple
Ambler, Pa. 19002
0892007 0900138
Roymal Co.
Guild Rd.
Newport, KH 03773
.
Coopers Creek Chemical Corp. W/S River Rd. V Conshohockn, PA
19428
0905353 Adco Michigan 4401 Page Ave.
'Centre, MI 49254
091.8549 AM Adhesive Metals Co. 460 Colt StT^ " 4
-"Irvington, NJ 07111
0961254
Ellxcr Industries 17809 S. Broadway Gardena, CA 90248
0981739
Bitco Sealant Inc. 5937 St. Louis Ave. St. Louis, M0 63120
0989959
Harrison Co. Inc. 487 Crovcland Haverhill, MA 01830
N-SHIP 1753
CRMC-LLF-Pfizer-Micro-000052
DEPARTMENT O F THE NAVY
MARE ISLAND NAVAL. SHIPYARD VALLEJO. CALIFORNIA B49BZ
m h a t w n TO. 134.05-Ser 376 9631
Commander, Mare Island N a v a l Shipyard Commander, Naval Sea Systems Command (05D21)
J A H 0 7 1930
SubJ: Asbestos content of tale suitable for use In MIL-P-24441 paint
Xef: (a) NAVSEA ltr 05D2/6101C/JJT 9631 Ser 55 of 30 May 1979
End: (1) Project Proposal, Evaluating the Airborne Asbestos Released by Grinding, Sanding, and Hasting Asbestos Containing Paints
1. Reference (a) requested Mere Island Naval Shipyard to examine four tal.a for asbestos content and for comparability to the Pfizer Microtalc CP 20-30 talc used to cake reformulated MIL-P-24441 paints.
2. The asbestos content of the talcs was determined by microscopic analy sis using dispersion staining. The oil absorptions are based on data reported by the National Paint and Coatings Association and by the talc suppliers. The oil absorptions vere determined according to ASIM D-2B1 which has a reproducibility of + 25Z. The results are as follows:
Source Cyprus ttistron 139
Oil Absorption
33
Asbestos Content
Slight amount of fibrous tremolite in one of tvo samples.
Desert Minerals Talc Co.,
36
El-Fine 80
Large amounts of fibrous tramolite preaant.
Pfizer Mierotalc CP 20-30
29
Slight amount of fibrous tremolite la one of two ssmples tasted.
R. T. Vanderbilt, Nytal 300
29
Large amounts of fibrous tramolite and a small amount of anthophyllite present.
3. The elxborne dust hazards of asbestos in paint are unknown. Asbestos fibers that are tightly bound into a .paint should not be a problem. However, when paints axe removed by dust generating methods, such as sanding or abrasive blasting, asbestos fibers could be released. Cried paints are brittle and the shattering actiou of abrasive removal could break tha paint vehicle away from the asbestos and release the fibers.
El
*.
134.05-Ser 376
> '
9631
< Subj: Asbestos content of tslc suitable for use in HIL-P-24441 paint
Tale Is a common paint Ingredient and is used in a wide variety of paints sold to the Navy. Some talcs are relatively free of asbestos while others may contain from 20 to 6CZ asbestos. Hence, it is safe to assume that all commissioned ships are coated with asbestos containing paints. The poten tial'for generating airborne asbestos particles during grinding, sanding, or abrasive blasting of ships coated with asbestos containing paints will depend on the amount of asbestos in the dried paint being removed. Unfortunately, there is no standard analytical method for measuring the asbestos content of dried paint and the actual amount of airborne asbestos released by surface preparation of such paints Is not known.
4. The potential problem of generating airborne asbestos particles during surface preparation can be prevented by: (a) prohibiting the use of high asbestos content tale in Navy formula paints and, (b) requiring the use of Navy formula paints whenever prartleal. However, this approach will not work for proprietary formulas such as those procured under TT-E-490 (silicone-alkyd topside paint). Standard analytical methods for measuring the asbestos content of paints do not exist and there is no accepted limit for the asbestos content of paints. Consequently, there is no way to establish and enforce practical asbestos limitations for proprietary paints.
5. based on these observations. It is recommended that:
a. The airborne ashester generated during the surface preparation of high asbestos content peine* bo investigated. Such an invert!gr.tian will have to determine the airborne asbestos dusting hstard posed by using dif ferent surface preparation methods to remove paints of known asbestos con tent. A major parr, of such a task will be to develop analytical methods for determining the asbestos content of vet and dry paints. Enclosure (1) outlines a project to accomplish auch a study.
b. Approve Mlstron 139 and Microtalc CP2030 for use in MIL-P-24441 paints.
6. Mare Island Naval Shipyard has trained personnel and equipment needed to accomplish the recommended task. Rowevar, no technical personnel are available for assignment to the teak at this tima. The potential airborne asbestos problem associated with asbestos containing paints should be Investigated. Mare Island is willing to support such a project to the fullest extent possible but cannot take the lead on such a task until
FT 81. It is estimated the project can be completed within 12 months for $75,000.
\
M.'l. PITTMAN By direction
2 54
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CRMC-LLF-Pfizer-Micro-000055
CRMC-LLF-Pfizer-Micro-000056
m e o amotm orlas
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fnilupsours. mj i n n PRODUCT TALC. OSP *111
OOCUtlNG ACTIVITIES ME KCUCSTCO TO VASE ACCEPTANCE OF MATERIAL
IP RECEIPT OF SUPPLIERS TEST OATA INDICATIK THE TALC IS FREE
W ASKSTOS AND OTHER FIBROUS ASBESTIFOM MINERALS ANO THAT LABAS
SNIPPING CONTAINERS REJECT OWN IROlWTIflH.
. ACMPTASU AMALTTICAL TECWIOIES FOR KTERMNIK PRESENCE OF
a t o m a c mversion stansir o crokot m shut o if f r r t ir .
W A M IS T A R C RE SA H R IR ANALYTICAL TEO MIQICS I I RCOUNKI CORTRT
RMEMVIM.TOEN O C R ) CIRCIRRATf, C M . J . GRAB.) AUTOVOR
R S -3 0 S 3 flR CORRERIAL ) W - 9 f l .
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MSTITUTE MA'ullAL IS 0BTAIBE3 INSilTUTL Tit SAFETY REJUIfiEICHTS
tf CP AFPENSII A f t REF fi OR CONTACT RAREST NAW RCCIONAL RBICAL
a n a r a chirare.
A. FOR ALL NAVSNIPVOSt SUSPEND USE OF REF A M I T E * It IMCQIATELY.
7. FOP ivSEii FORIARC A PURCHASE PCSCRfTlOL K SPCC FOR A" TOS FREE FOfeWLATIQh OF TECHNICAL TALC TC FACILITATE ESTABLISHING A NR RM. INITIATE CNMBC TO NIL-41B-VM* ID OOHEJNE REOWRSMW P R ------
4{
PACE RULSSGCM5* UNCIAS asbestos contaihiw talc.
0 for NAVIIF I REQUEST ISSUE OF A KFECTIVE MATERIA. SUMMARY NLLCIIN FOI REF A MATERIAL IRLUOIR INFO l i PARACRAPMS 3, A, AMD 9. REQUEST IOEMTIFT ASOITMNAL HOCK RUOOS NR TALC FMCURED TO IM L -rO -l, OOTAIH SABLES AR COORDIRATE IITM RENC TO ORTAIR ANALYSIS OF ASIESTOS CONTENI. IEWEST NIVSCA IAf A MAVSEC <111 K APPRISE! or test ncsjits. T
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P a S C 0 M M N F S S S 0771 U M C L F S 1 . acr a iravcxn mal spcc saai ac paovioco aaaiiaL ocaaao Fon asbestos Forc iccpaicai. Tatc ano uan pacaasc oesiREO n l* oas oa ta o o u p i ta aceoaoaacc u l t u r o . 9* 0ac<M0Uk3
a . o a i j u m e I 07a a a v s M i p t o m b r e a r o r t e d t o a a o s e * i o m c i 7n a l ittrtOuCN m i c r o s c o p i o r v a i u t T I O M * l a t e u s c o t a p r o o u c t i o n
f b c i l i i # t i m o a k t c r s s ' i a p p t a M C O t o c o /t i m b s p c s t o s F i n c a s . 0 . a MOLO M4S P.CFO OM > I L T * I C USCD IN PROOUCTIOa F a c t L l -
1 T a lla r * PPOCSSSES.
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tan ai aaac m a n e p e r f o r n C O Laa
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E . l l F T V - r i F M l MafiS ( u r iS M IH G 10 t * S . E a f M I O F T B L C t C E R T I
F I C O t fMf aaauracT.uRCN t o ac F a c e of asar s i i -f o r o m i m e r a l s u*s
p r o c u r i o raoa p f i /e p . tac. o f c m c r t v i l l e c a L l f O R N i a . m e late
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D1SU2 OCT 78
CRMC-LLF-Pfizer-Micro-000059
d e p a r t m e n t or t h e n a v y o r T> CHIEFOF NAVALGFtMTIOW
w-- ii-- toe a c uam
Bar 454/ 220702 5 Jol 1977
O l a f o f I n a l O p erations
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M r 357 Of 12 M ay 1977 (TOTAL)
(to) COKMAVSAXSCun
0 2 1 9 0 4 5 J v S 77
Cel o m T X a s r *2 6 0 .1 , c o n tro l o f
fee a n a l personnel and environs of 9 April 1974
(a) provided Clio (OP-45) a copy of an asbestos
at M M M M H M M M C m MIi J noted actions
1
b e in g
ttldi
by COHHAVSEASXSCOH and tbe Shipyard. Reference airborne asbestos sampling achadola in support
of sabjoct program. Those initiatives, as disensaad in
rafaronoaa (a) and (b), era concurred in wholeheartedly.
2
Zt in suggested, however, that future audits also reflect xefareooa (el, the currant Davy policy directive governing
ashaatoa use and control in Navy working environeants.
2. Zt is noted that the Naval Shipyard, Charleston, has recently placed in operation a new pipe insultation working facility e r r 74 HCON Project P-872). A list of facilities or projects, similar to P-872, which are planned for other hipyards, la requested for CTO programing Information.
3- It ie raqaasted that CTO COP-45) be kept apprised, via The Chief of Havel Material, of significant findings or deficiencies resulting free future efforts of a nature
those discussed in references (a) and (h).
Copy toi CHHAVHAT (MAT 04)
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SECRET, RACI OV C8e 21 SEP <1.
2. REO F0LL0VIA6 ARRARSEVENTS IN SUPPORT OF ABOVE AUDITS*
A. ARPARSE CORFERERCE AT M i l DURIR6 FIRST DAY OF AUDIT VITM
SmIPTD -DR ANO COCN IT ANT PERSONNEL TO INCLUDE APPROPRIATE Cn T
M e c t r u l s s c c s i s a u r c l a s e f t o SECRET, NACI IT pSe M SEP <B.
c. f.O . PATTERSON, C IV , S S -1 3 , SEA 8731, U .S. C IT IZ E N , ClCAREO SC rR E T , N AC I BY pSC ? 1 JUL 7.
0 . J . R . c * A l , c I V . E S - i ? . BE MC * 2 , U .S . C IT IZ E N CLEARED SECRET, NACI IT CSC t i SEP SB. 8 N U FOLLONI AMANSEMENTS IN SUPPORT OF ABOVE AUDITSi
A. ABRANSE CONFERENCE AT I B M DOR IN S F IR S T DAT R F AU D IT R IT N
u m , OHOF s u n t , u n o s a f e t y b a n a c e r , a r o r a w r e g i m a i . c o t t .
PC B A T I O * AL ARCA t ASHORE ANO AFLOAT OUR I K F IR S T HORRINO OF A W I T . O PERSONNEL P A S S E S ANO DOC V E N IC L E P A S2 TO F A C IL IT A T ! ERTRT
OT PERSONNEL TO C IA . 0 . O FFIC E SPArE R IT H PART T IR E C LERIC AL SU PPM T FOR A M IN
PURPOSES. E . REO F O I I RFO BE A V A IL OPteN TEAR A R R IV A L I ( 1 ) COMPILATION OF ALL CONNANO ANO LOCAL D IR E C T IV E S PERTINCNT
TO ASBESTOS O PERATIONS ANO CONTROL. INSTS SHOULO SE INOEXEO TO - I f l e U H i r t REFERENCE ANO OSE.
PASE 3 RULSSEC333 UNCLAS E F T 0 C2> PROVIDE L IS T OF COSNIZANT KEY PERSONNEL BY SHOP/OEPT,
PHONE EXT, BLOG NO.
j j ) /M .L W W I m * oe c i a u r v c T A t r r t t tu i r r i w a s
INVOLVING ASBESTOS OR F IB R O U S GLASS EXPO SURE. INCLUDE NO. ANO TTPE OF SA RPLCS COLLECTED W ITH RESULTS/RECORNENO ATION S,
(A ) T R A IN IN G P LA N S, O U T L IN E S. HANUOUTS, ETC. USEO TO
APPRISE tORfrs RF tsar^tflc u f th ha7 a ds !NCLUPIN6 COURSES SYED LAST 3 YEARS ANO THOSE PROPOSEU F0*< NEXT YEAR,
f ! ) DETAILS Or HEALTH I'ONITOSING PR06AM SPECIFICALLY
1
A, f'u.
A1
*'-1 -**
SHIPTD p BR ARD COGN IZANT PERSONNEL 10 INCLUDE APPROPRIATE " GUT
PENS, SMOP-SUPTS, SHIPTO SAFETY MANAGER, ANO RAW REGIONAL MEDICAL
CEBU* EPS.
Oo p i a n n l d / e s c o r t e o i n s p e c t i o n or a l l b e p r e s e b ? a ? i v e a s b e s t o s
O PERA SI9N A L AREAS ASHORE AND AFLOAT DURING F IR S T HORNING OF AUOIT.
r . CR50NNCI PASSES ANO ONE VEHICLE PASS TO FACILITATE ENTRY
OF PERSONNEL TO CIA. 0. OFFICE SirArt RlTH PART TIME CLERICAL SUPPORT FOR ASH 9
PMPOSLS.
C. K O FOL UFO BE AVAIL UrtiN TEAR ARRIVAL*
C l) CONPILATIBR OF ALL COBRAKO ANO LOCAL DIRECTIVES PSRTIREB1
n ASBESTOS 0PCR4TISRB ARE CONTROL.
b 4 ra-RnoE a t m t s a a m ass.
1RSTS SNSOL BE IROESEO TO
t - FACE *3 t a S i t U S M VNCLAS E F T 0
t n P tO V IB C L I S T OF 60C RIZART *C T PERSONNEL BY SH O P/O EPf,
POSSE EXT. BLBC M .
_E3) ALL i n RT i n
h y c smaus. H g J U l l a s t 3 TBS________
IN V O LVIR C ASBESTOS OR F IB R O U S GLASS EXPO SURE. INCLUDE NO. ANO TYPE
or SANPLCS COLLECTEO V t IH RESULTS/REC0HWEN3AT IONS,
k i T R A IN IN G P L A N S, OUTt IR E S , HANDOUTS, ETC USED TO
'M l i
ib c l u o in c co u rses^
LA ST 3 TEARS A M THOSE PROPOSES FOR N U T TEA.
CO) O C T A IL S OF NEALTM NON FT00 IR C PROCR AN S P E C IF IC A L L Y
P ERTA IN IN G TO SPIRO H C TRT, -R A T E V A LS PERFORMED ACO EQUIPMENT
U T IL IZ E D .
<) .DATA PERT INERT TO L E V E L S OF -R A T DOSAGE R E C E IV E S 8V
PERSONNEL COVERED IN SU R V E IL L A N C E PROGRAM.
r. n eo n est arrange e i i t in t er v i e * v it h s h ip t o cor ano d e s io r a T C t R E P S FOR O E R R IE F / O IS C U S S IO H OF AUOIT F tH O IR G S T EN T A T IV EL Y S*EO
a
OR T H IR D DAY OF AUOIT AT EACH SH IP Y A R D .
) . IHFOvMATION and DATA d e v e l o p e d a s a r e s u l t o f a b o v e a u d i t s a r e
ro> 0 '" F l r IA L NAY USE ONLY AND ARE R E L E A SA B L E ONLY ITH PRIO R
RAVSEA APPROVAL.
CRMC-LLF-Pfizer-Micro-000063
TOPICS POR NAVNAT ICETIN6 6/20/77 RI. NAVY OCCUPATIONAL SAFETY AND HEALTH PROBLEMS OF MUTUAL CONCERN TO NAT/SYSCOMS
1. C aetra ra ra lra o f OMCP Cl a i t : In n o o r t a r t ic i la T ra it Talk (P ol. D k . 1 * J M / M / N t r 1177), the OCP rated a ra tte d o f a s s i s t i 1 the o a a tra ra ra ir'j o f cla ta a which o t h t r T r i m ! nigw rles ara t e p t a y toy. I t ts tea f l h t B - h r - O r oxw inetlaH * i r i d i a sso n o that taptagma a ra a t t r a ili fao paclte te d Por A rti- Graloyees tee ara a c t e d o f i U a tee GOP ra y be requested to i q n r t Ib r fStssew h r doty e e a la a t le o a a i. I f the a a ilc a l fin d in g s a rt a m t n n y he that o f t k t e a p le y a o 's ph ysician s. the e sa rin a tlo a ra a a lts nr bo rapart ad to ONCP Por f l a t i i t tarai n atio n o f eoployee's a n tltle a e n t to COP. Hither than n W t to ra d ica i exraintlon. a p l q m te ara r a t a s tra li* Incapacittad r a l l y ratara to doty.
U t p n o a ra ra s ara daffood lo FPN Chapter 3 9 . Stecte p ttr 1 -3 and m i Sappi a ra n t 7S2-1. Subchip te r S l-3 .
This appears ta b e worthwhile oethod to use and should ha fu lly plarad far raatlao application in OOP coatrararslon procedures.
2. Workplace logic Materials and Harmful Physical .Agents: NIOSH's Increased -- basis regarding toxic materials and harmful physical agents In tta workplace and OSHA's pronounced Intention of pnnul gating revised standards based on RIOSH stadias and o e o a a n d a tl , presagas increased OOiyievy involve-- t in assessing 1-- ct (technical and ecsamfc) of proposed stadards. As of 12/31/76. H505M has selnlttod 67 criteria decants bo ASM fo r coesldorettaa 1e standards develop* n e t aed ietaadb to s^srit $1 addltloeal dw m ets m r the east tee ears. The task facing the fcy In candKting a a d s ift] s s e a s a t of prapesad stnderdt is extensive.
PM A M addresses procedures for revlow of RIO Criteria Oocu-- ts aed. H r each dun-- it ra v iin d , requires 000 coepoeants to p n r lh a precursory assess-- t of wsos of tta n to rla ls wtanever possible, hecoartly. 05HA Issued a proposed standard fa r ban-- a on which CPRAV rag-- ted urgent review for technical accuracy and 1-- ct on tta Navy. Additionally. 000 requests all co-- mnts to advise o f the nutoer of employees (civilian and m ilit a r y ) occupationally
topesed to baa-- a. Ibis necessitates a survey o f a ll subordinate activities. A recent prnpnsod rPHAVNOTE on Hltretanlaas w ill also
require server f subordinate activities wtae promulgated. UMoubtdty. there tr ill to a need for other surveys to be conducted.
Guidelines are required to: a. Define "precursory assessment' In teres of data scope and
accuracy sought; and. b. Establish a pi-- dure for conduct of sect ossa-- its.
Isa-- ch as the proposed H I0 c riteria doc-- rits topics are lu-- 1. perhaps consideration should be given to a one-tins survey of
CRMC-LLF-Pfizer-Micro-000065
I , i
-
f >,
*
su b o rd in a te a t t i v i t i ^ l o a s s e s s u sage o f a l l m a te r ia ls c e r e r e i In KIOSK docuoonts r ic e th e c a s e -b y -c a s e b a s is o f su rvey as i s now
practiced. 3. todieel tenitori no Prograa: Radical mitering tar affects of npnoma to Bibostoe, hasum, oitroMortnes, b a ry lliw , isoqysraates M other industrial substances tdiicb present health ta a r h is eoo
or d i bo ragufrod by 1 . Ab the motor of toxic lodatr ia l
M b rtn c n to oxpoctod to increase, too oood ta r a cupnahwaiw, oil aeordtaotod booltb oooltofios pregm is parure*. Ito d ic c i ren iterief procoduros tar tto effects of exposure to variato tu ie b ilu c e toeold bo integrated into a structured pregru tdricb n c o p rtm that sow toxic substances require s lc ila r types and tatq u u ij o f oxaainatlees and provides tar one-tiae eve1nation tar ito oftacts o f n p r a v to m iltipie toxic lito fo n o .
3
-
CRMC-LLF-Pfizer-Micro-000066
Johns-Manville
Internal Correspondence
T6: R, Lamar - 3*05 From: E. M. Fenner - 1*06 Captan G, R. Knzer - RQD
O** October 29, 1976
Sabiact: PFIZER TALC SAMPLES
Harold D. Stanley, Jr., Group Leader - Testing In the Minerals, Pigments and Metals Division of Pfizer called me today to report on their analysis results of the five talc samples you furnished them at the end of their visit on Tuesday, August 31.
Research ID No.
Pfizer Code No.
Total Tremolite
RC-74340-3
CP 38-33
13-14
RC 74340-4
CP 20-30
3-4
RC 74340-5
CP 14-35
7-8
RC 74343-1
CP 38-33
10-11
RC 74343-2
CP 14-35
5-6
The total percentage of tremolite present in the samples was determined by x-ray diffraction and included both fibrous and particulate material. The samples were also examined by transmission electron microscopy. The results of this analysis indicated that less than 0.11 was fibrous by the OSHA definition. Mr. Stanley stated they were observing an average of 7 fibers in 100 microscope fields.
s. M.
EMF:jh
C R M C -LLF -P fizer-M icro-000067
MINUTES OP STAPF MEETING F&M DIVISION Large Board Room N o v e m b e r 13 1975
Presenti
C.A. Carlson R.K. Comann W.M. Palmer H.N. navens T.M. Jackson H.R. Keefe H. Kranich
OPC I 1975
C.I . Keelan R.S. Lamar A.T. Stroebel P.A. Martinson F.D. Richards S.W. Schulmeyer J.H. Swensen
Assignment
1. T i m e l y I t e m s of I n t e r e s t - In the future, all meetings will start at 8:00 A.M, sharp.
- E a g l e - P i c h e r in N e v a d a s h u t d o w n b y EPA d ue to h e a v y d u s t counts.
H.N. Havens to contact Armstrong Cork to see if J-M can give them some help. - NIOSH issued "cease and desist" order to Grefco and Silbrico at No Agua. J-M received citation. - Pfizer and Sierra have raised prices. - No. 4 System back on stream; all systems on line until end of the year. - District Sales Managers meeting held in Denver November 4-6. - Vacation schedule to be reviewed to be certain there is proper coverage during the holiday season. 2. R e v i e w M i n u t e s of O c t o b e r M e e t i n g - Color standards for natural, direct run and baghouse grades lowered two points. Specifications to be changed.
HNH JH S /S S
Quality Control and Service - Discussed natural powder problem. 40,000 tons of variable, dark
color crdue in glory holes; problem will continue. Investigating burning out of organic dark color using fuel mixed with this crude to produce filter aid. Uniformity of baghouse color is major concern. Questions are h o w to handle in the marketplace and what can Marketing do to help in this area after more information is developed. T.M. Jackson to discuss with C.A.Carlson. Tom to schedule meeting to discuss options available. T.M. Jackson will report next staff meeting on status.
TMJ TMJ
- J . J . C h i e r i c h e t t i 's v i s i t to T u r t l e W a x a n d S h e r w i n - W i l l i a m s very beneficial. Program set up for A.W. Wilson, J.J. Chierichetti and a loading foreman to visit customers experiencing problems.
LA112
J
L
L I
J I
JI
CRMC-LLF-Pfizer-Micro-000068
-2-
AHsignment
-- H.N. Havens assigned as Quality Control Coordinator for Talc and Perlite.
- Corporation is placing increased emphasis on quality control.
All specifications are to be in order.
T.M. Jackson and H.N.Havens assigned responsibility to
monitor specifications.
TMJ/HNH
- SFSP/White Mist: Shipping Bauer Mill White Mist as SFSF. Very satisfactory. Problem resolved.
- PE bags for recooperage - will try first on a few warehouses
and customers for reaction before making final decision.
T.M. Jackson to follow.
TMJ
- Reviewed status of Rockdale assets -- C.I. Keelan recommended that retirement should be in by end of year and assets written off in 1975.
ATS/HNH
- Form answering inquires from customers on fuel curtailmentno action - pending.
T.M. Jackson and H.N. Havens reviewed ESL loss locations.
Review Physical Pist. Ouestionnairre - FDR - Outstanding items were: bad arrival condition of diatomite,
shipping errors, rail equipment, dust free package for asbestos products, direct order placing on Lompoc and be certain recooperage bags are in car.
- Added cost to provide an unbreakable package averages $4 to 5/ton.
- Grefco shipping free dunnage to some accounts.
- Subjects to covered in more detail at SHARP meeting.
P d f '8
5. Lomuoc Operations -- CAC
- Reviewed order load. Estimating about 18,000 tons to be shipped in November.
- Delayed cars. - C.A. C a r l s o n to i n v e s t i g a t e a d d i n g a n o t h e r l a y e r (l-J- t o n s ) t o a car
to eliminate phantom freight. - Reviewed problem of oil smell in product. - PD car utilization about 70$ for November. - Export direct order placing will be completed third week in November. - Domestic order writing - have 530 customers on computer; all customers
will be on after the first of the year. - Direct order placing on Lompoc sometime in the future.
0?
LA112
j j r ii
, LJ i
CRMC-LLF-Pfizer-Micro-000069
-Sbp :1m
-3-
- Personnel: 389 hourly, 115 salaried. - Reviewed complaints.
- Reviewed competitive samples. Have requested samples from Europe.
- Anti static material on order.
Will plan to make the switch
about first quarter, 1976. - C.A. Carlson requested help regarding return of pallets. There is
a serious problem; plant is receiving junk material and very few
pallets. H. Kranich to follow.
- T.M. Jackson to fallow with C.A. Carlson on SPPI form.
- Bag coding equipment on order.
Assignment
HKr TMJ
FG Operations - no report
- T.M. Jackson to follow and have someone attend from FG.
EG
7. Status of Contract P l a n - CIK - Reviewed. 90fi complete. Expect to have out on schedule.
O c t o b e r R e s u l t s ________ _ Reviewed projection.
Trade Associations - Costs/Benefits - PAM - Membership in associations, participation, costs and benefits
to be reviewed by department heads and recommendations to be submitted to J.H. Swensen.
Terra Diatomacea -- PAM - Should be issued first week of December.
JHS/SS
Perlite - RKC/HNH
- Cost/ton n o w $12.
- Capacity to produce 19 to 20,000 tons in November.
- Four cars loaded ahead.
- Need orders in some grades.
- Union negotiations underway; vote to be taken next week.
- Reviewed projects,
reorganization and minfng plans.
- A .T . Stroebel reviewed roll crusher situation.
- Conmunications meeting to be scheduled to review quality versus
capacity.
H.N. Havens reviewed order situation.
- Mining Division to advise Marketing when Abollo unit is working.
Marketing to request samples.
k k c /h n h /b g r RKC/HNH
Talc - RKC - Reviewed shipments, organization and L.A. plant schedule. - Nothing new on legislation on Warm Springs. - Flotation tests for Penhorwood scheduled for middle of January;
should be in production April 1976.
LA112
Lj Lj Ji Jr
C R M C -LLF-P fizer-M icro-000070
CRMC-LLF-Pfizer-Micro-000071
D esert M inerals, Inc. Decem ber 13. 1972
Long Beach
H. R. Keefe
cc: P. A . Martinson R. F . Bassett*/-' H. M. Jackson F . D. Richards R. S. Lamar N. B. Scheffel
STATUS REPORT FDA - OSHA TALC CONSIDERATIONS
Here is the D ecem ber 15 status report:
I.
Developments to date:
Four m eetin gs have b een h eld at DHQ con cern in g both FDA and OSHA problem s as follows:
F irst m eeting. October 4: Joint m eeting of C elite D ivision, Environ mental Departments and L egal Department to define plans of action for:
A.
Postponement and elim ination of proposed amendment to
P art 121 (Food additives) of the F ed eral Food and Drug A ct
incorporating the phrase "free of asbestiform m inerals" after
the word talc relating to food or food packaging m aterial.
B.
E stab lish in g a v a ria n ce or am endm ent to OSHA regulation s
P art 1910 to elim inate or modify the term s concerning trem olite
a s related to asbestos fibers,and
C.
Develop a positive marketing program to ensure against
deterioration of our talc market because of existing regulations.
A draft of letter authored by Dick C arter directed to the Depart
m ent of HEW edited and finalized and subsequently m ailed under
date of October 3 requesting six-m onth postponement for prepar-
. ation of documents concerning proposed regulation. Initiated
action'on follow, up documents and data concerning five areas of
activity:
1. Definition of asbestiform p articles.
2. M easurement of content, siz e , and identification of particles contained in talc.
LA112
IIII III~II
CRMC-LLF-Pfizer-Micro-000072
Memo to H. R. Keefe D ecem ber 13, 1972, page 2
3. M igration studies from paper food packaging m aterial.
4. P ro cessin g to rem ove asb estifo rm p articles.
5. M edical evidence concerning carcinogenic asp ects.
Develop plans and action concerning OSHA regulations in relation to reclassification , com petition, bag labeling, and m arketing program . m Second m eetin g. O ctober 12, 1972; R&D m arketing con feren ce concerning new product development or product m odification program compatible with regulations. Further development program for m igration studies on paper, p la stic s, and coatings. Initiated plans to develop densified products (p ellets), slurry sy stem s, binder sy stem s, and new products conform ing to OSHA stan d ard s.
Third m eeting, November 9i M eeting with Dr. George Wright exploring m edical asp ects of FDA proposed regulations and OSHA standards. Develop program for literature search into biological studies epidem iological considerations and other m edical asp ects.
Fourth m eeting, November 28, 1972; Update a ll program s in progress concerning five areas of study regarding FDA proposal. A ll studies program ed for conclusion by D ecem ber 30, intending fir st draft of documents to be prepared early January.
Fifth m eeting scheduled Decem ber 18; For prelim inary preparation of reports.
Although no official word has been received concerning the postpone ment of the FDA deadline for com m ents on the regulations, com muni cations with FDA in Washington indicate that the six-m onth postpone ment w ill be secured. Approximately 30 responses received at FDA have been forwarded to C arter's office reinforcing the fact that additional study is needed before an appropriate regulation can be defined. P re lim inary reports, of m igration studies indicate no m igration at com m ercial lev els'o f usage of talc in food packaging papers. M edical literature search to date is developing a favorable case for lack of evidence supporting original.claim of carcinogenic influence as defined.
A s to OSHA regu lation s, two environm ental studies of u se conditions have been com pleted at Lompoc and a third study is in p rogress. Conclusions of these studies resulted in corporate approval of a m ar keting letter dated October 24 concerning usage of DESERTALC and CYGLONIZED products in relation to airborne contam ination and fiber count.
LA112
/ ii ii n
iO u
CRMC-LLF-Pfizer-Micro-000073
C R M C -L L F -P fize r-M icro -0 0 0 0 7 4
CRMC-LLF-Pfizer-Micro-000075
CRMC-LLF-Pfizer-Micro-000077
Talc industry
Talc is a natural mineral, generally magnesium silicate, mined
and processed throughout the world, principal operations in
the united States are in New York, California, Montana and
Vermont. So-called "eastern" talc tends to be fibrous, 'while
In 1971, total market was 875,000 tons, and nearly $25,000,000
During the 1960 decade, ton sales increased at a rate of about
4%; dollar sales at a rate of 5*2%.
'
.
Major uses are in ceramics, paint, paper, plastics;--insecticidesand roofing. Paint and paper applications have shown the greatest recent growth -- up 54% and 112% respectively in the last decade.
Growth has been most rapid in highly processed, highest priced specialty markets, particularly in the past few years.
Talc Quality Processed (ground) talc in general has commercial, utility as an inert filler/extender pigment because of
... color (whiteness) ... low abrasion (relative)
LA112
CRMC-LLF-Pfizer-Micro-000078
chrmical purity Desertalc is recognized world-wide as one of the brightest. Desertalo is recognized world-wide as having low abrasion index and this relates to good chemical purity. Desertalc is non- _ ^
t fibrous, and as such has application where fibrous talcs are
Grantham sales are 45,000 tons and $2,300,000 of ground talc
6% of tons and 9% of the dollar market.
Grantham also sells 25,000 tons ($700,000) of crude talc to the United Sierra Division of Cyprus Mines.
The "opened" tale mines at warm Springs number three. Two are being worked at this time. Based upon geological data furnished by Grantham, together with Johns-Manville mining
1.5 million tons^ 2.7 million tons
2.1 million tons 2.5 million tons
L A J 2
C R M C -LLF-Pfizer-M icro-000079
Some portion of tonnage between yross and recoverable may be mineable. A drill program would dictate action to be taken. At current and forecasted withdrawal rate, reserves are
Clay reserves at Mohave, California, are estimated in excess of one million mineable tons. At current and forecasted annual
Grantham's current employment is approximately 65 hourly and
15 salaried employees. Key people in the latter are, and each
of whom very probably would join J-M:
Rplf F. Bassett
- Finance-Management - Age 60
Richard Lamar
- r&d
- Age 50 .
Earl Smith
Mining
Norman B. Scheffel
Daniel B. Tash
* Now on contract with Grantham
Included in this group are considerable talents and capabilities related to the talc business, resulting from years of exposure in Grantham and formerly with other western talc businesses.
We plan also to have, a five-year Consultant Contract with W. B. Grantham for $60,000 per year.
LATI 2
CRMC-LLF-Pfizer-Micro-000080
. , . .;!w:
m
- `5 -
Mines The Warm Springs Canyon tala mining operation includes 80 lode
claims. Not all are being worked. Those that are not are
adjacent to- or contiguous with those that are worked. By
virtue of the "Apex Law" as related by Grantham mining engineers,
additional claims are included. The Apex basis is that any ore *
body continuous beyond an established claim is considered to
have common ownership.
The Warm Springs operation is in Inyo county, California (lower
Death Valley) and is 130 miles to union pacific rail head (Field or Dunn Siding, California)
140 miles to Las Vegas, Nevada 300 miles to Los Angeles
The Warm Springs operation includes
Diesel-operated electrical generation (no outside power);
mt
Well equipped base-camp living and recreation facilities,
including outside swimming pool; An ample source of spring-fed fresh water supply;
E & R facilities.
Ore is hauled by contract carrier from Warm Springs to rail head. Mining is a">T underground, using room and pillar method.
mfciii-'
m
The clay operation is- at Jaw Bone Canyon, Kern County, California. From mine to rail head (Southern Pacific - cantel, California) is
C R M C -L L F -P fiz e r-M ic ro -000081
pm
- 6-
.11 miles.
Ovo is contract mined and hauled, contract included in tha "Grantham package" calls for availability until "mine is exhausted." Mining is all open pit.
Dunn Option Johns-Manville has option to purchase plant, auxiliary buildings
and land (approximately 280 acres) from Pfizer. The latter
acquired the total facility in 1967 from Kennedy Minerals,
including tale mines. Pfizer had at the time milling facilities
at Victorville, California, and a second plant was soon considered
excess. The Dunn plant has been operated off and on during the
past few years. Lompoc plant engineers have surveyed and
;arained the Dunn facilities and concur with the option list of
equipment and facilities in general.
Option expires in late February 1972.
*
Financial Projection - S Years Sales Grantham's sales, limited by capacity, re $3.0 million -- 956 of the market.
Using Grantham's high quality talc and our sales force in our
markets, we plan a vigorous expansion to $5.2 million sales
in 1976, attaining 14% of the market.
I
"to:'.-'si--
CRMC-LLF-Pfizer-Micro-000082
~i^o -J
We plan $80,000 of earnings the first year (current level), growing to ovea?-$5 O0700 by 1976.
I*ffcsJ ***t/ Grantham now
we have used 35% after that
Investment and Cash Flow
Of the $6.3 million requested,y$5. million will be spent now.
I
'Jr*
In the next few years, we schedule $9.00^000 more -- with present
forecasts, most of this in 1975 and 1976.
At the end of the first year we will be out $5*0 million in cash flow, in the next few years we expect to pay for the future expansion and generate a positive flow of $2<2f"million
We do not pretend to know the long-run future of talc or our participation, but we believe we can eventually attain sales of $10,000,000 and earnings of $1,000,000. However, if we can hold our sales and earnings after 1976, we will attain a. DCF yield of lllT on this venture.
*l
LA112
C R M C -LLF-Pfizer-M icro-000083
Geology - Chemical - Health Aspects
Geologically, Grantham talc is in the Crystal Spring Formation (part of the pahrump Group in Death Valley) of the Panamint Range. There are three principal layers of ore bodies. There are outcroppings of the ore bodies, and portals are located at these points.' Ore strata are separated by dolomitic, diabase and volcanic rock formation. There are faults in the deposit which have been established in terms of quarrying procedures. The mineable ore beds are 10-15 feet in thickness and lie with
Chemically, the talc is essentially magnesium silicate. Minor
composition is calcium carbonate, sodium carbonate and potassium
oxide. Trace composition is oxide of aluminum, iron, titanium,'
manganese and copper. ___
------------------- ---
Petrographically, talc is major; tremolite small,or minor; calcite trace to small
No health cases are on record with working people -- mine or other -- related to dust or other exposure.
% 11 '
C R M C -LLF-Pfizer-M icro-000084
portadly other (pnrtieularly United sierra Division, Cyprus Mines and Vanderbilt) have had no cases related to environmental exposure.
-w S m rnm
Grantham clay (on contract not ownership) is geological! a claystone highly siliceous in composition. Minor com] is aluminum and potassium oxide; trace is oxide of iron calcium, magnesium and sodium The composition may be
1 considered an alminum silicate but not kaolinic in type
11treat as a nuisance dust
V!)Mrf.V'.f '*' .
C R M C -LLF-Pfizer-M icro-000085
SWf
FINANCIAL DATA
1973
3600
3900
gr&i
E"'- '' ' ,:i' Investment
' J'D ; 5410
"iOu MO
4300
-fIbO 830
m-o -40
4700
1976 5200
2,^0 -290
+>10 h34tr*
470
Total 6300
Ir.''
C R M C -LLF-P fizer-M icro-000086
CRMC-LLF-Pfizer-Micro-000087
paint industry customers include:
Celanese coatings
*
Desoto
Glidden
National Lead Sherwin-Williams
paper Industry customers include: American Can Georgia pacific Kimberly-Clark Oxford Paper Westvaco Weyerhaeuser
LA112
'! ' Vi_r L~i 0 C R M C -LLF-Pfizer-M icro-000088
Reference:
. *
Formula No. S-6S009-6 E .l. DuPont de Nemours & Company, Ine. Pigments Department Wilmington, Delaware 19898
FORMULATION
, .
M .^ .
INGREDIENTS \ . '
DISPERSION Water Carbitol Daxad 30 Igepal CA360
Ti-Pure titanium dioxide R-960
T alc
i
Mica 3 2 5 mesh waterground
CELITE 281
Colloid 5 8 1 -B
RT RECDeUllCosTizIeOWN P-4400 (2% solution)
Colloid 581-B W itco912 Elvacet 1454 2amino-2methyl-1 propanol Super-Ad-lt
v./.
POUNDS
GALLONS
150.0 3 0 .0 5.0 5.0
18.03 3.51 0.52
0.57
175.0 116.0
30.0 50.0
5.32
4.88 1.27 2.60
1.0
0.15
-
118.0
14.10
1.0
0.15
4.0
0.48
432.0
48.00
4.0
0.51
10.0
1.23
1,131.0
101.32
Pigment V olum e Concentration Viscosity (overnight)
= 36.4% = 70-75 KU
Disperse in high speed disperser .
V. tVvV/5
LA172
ST..
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CRMC-LLF-Pfizer-Micro-000089
BsSrffi'.
R e fe re n ce : Formula 50021 Aireo Chemicals and Plastics A Division o f Air R eduction Company, Inc. 150 East 42nd Street New York, N.Y. 10017
FORMULATION
-
INGREDIENTS
Natrosol 2 5 0 HR (2% solution)
R & R 551
Igepal CO-610
Tam ol850*
Ethylene glycol
Nopco NDW
Phenylmercuric a cetate (18% mercury)
Titanox RA-46
MICRO-CEL T -70
Satintone #1
.
T alc
1
Gold Bond R Silica
yVater
Aircofiex 500
POUNDS '
etj
250
3
3
8
25
2
.....
0.3 250
25
125
50
75
163
240
YIELD
100 gallons
SOLIDS
54%
PVC
59.5%
*
Either T-'.t .o I850 or Daxad 30 is specifically recommended, in order to prevent excessive viscosity buildup upon aging.
'fV.V .i.1'-
Ci> '] ' '-%'W
LA112
33
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CRMC-LLF-Pfizer-Micro-000090
CRMC-LLF-Pfizer-Micro-000091
NOTICE: i f tha film Imago Is las* claar than this notica, it ia Jus to tha quality of tha document being filmed____________
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CRMC-LLF-Pfizer-Micro-000092
DECLARATION OF MARGARET J. BAUMGARDNER
I, Margaret J. Baumgardner, declare: 1. Ia m not a party to this action. I have personal knowledge of the facts set
forth in this declaration, and if called as a witness, I could and would competently testify as to the truth of the matters set forth herein.
2. I am the Research Coordinator for the Claims Resolution Management Corporation ("CRMC"), a wholly owned subsidiary of the Manville Personal Injury Settlement Trust ("Trust"). The CRMC was created in December 1998 and is staffed by former Trust employees. On January 1, 1999, CRMC began providing claims resolution facility services to the Trust.
3. In this position, I manage the Asbestos Claims Research Facility ("Facility"), a document and records repository located'at 3390 Peoria Street, Suite 304, Aurora, Colorado. I am also the designated Records Custodian for the Facility. The Facility contains the business records including but not limited to correspondence, memoranda, reports, records and data compilations ("record") of Manville Corporation or related entities ("Manville"), generally, as well as Manville records relevant to litigation of asbestos liability. The records found at the Facility were transferred from Manville to the Trust beginning in November 28, 1988, the date on which the Manville bankruptcy plan was consummated. Additional records have been and continue to be transferred
Q directly to the Facility. The Facility's records have been in the custody and control of counsel for the Trust or Trust personnel since the date of consummation.
4. My experience and familiarity with the documents at the Facility began in 1983 while working for Manville. In my work as a paralegal for Manville, I assisted in locating, indexing and packing many of the records which became the foundation documents for the Facility. I continued to work for Manville until September 1987. From March 1988 to September 1988, I was hired to supervise and assist in the indexing of the first 20,000 boxes which were turned over to the Trust in November 1988. From September 1988 to January 1989, I assisted in the privilege review of documents to be given to the Trust. From November 1988 to April 1994,1 worked for Freeborn & Peters and was put in charge of the Facility, managing all productions and "new" acquisitions.
Declaration of Margaret J. Baumgardner
Page 1
In September 1995,1 was hired by the Trust to manage the Facility. In December 1998,1 was hired by the CRMC to manage the Facility for the Trust. Accordingly, I am personally familiar with many of the records stored at the Facility, as well as how the records have been gathered.
5. To the best of my knowledge, information and belief, I certify that these records were made at or near the time by, or from information transmitted by, a person with knowledge, were kept in the course of the regularly conducted business activity of Manville, and it was the regular practice and the business activity of Manville to make the records.
6. Attached are documents found among the microfilm collections at the Facility. These documents, bates labeled CRMC-LLF-Pfizer-Micro-000001 through CRMC-LLF-Pfizer-Micro-000093 are true and correct copies of documents found at the Facility.
I declare under penalty of perjury under the laws of the State of California and the State of Colorado that the foregoing is true and correct.
Executed on August 10, 2015 in Aurora, Colorado.
Declaration o f Margaret J. Baumgardner
Page 2
CRMC COPY FORM
CRMC-LLF-Pfizer-Micro-000001