Document jy7Na3M4oR0QkBRYkYd4ReZvZ
FILE NAME: Talc (TALC)
DATE: 1973 Nov 15
DOC#: TALC461
DOCUMENT DESCRIPTION: Memo RE Some Comments on the Use of Talc in Paper
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\ , J o * J . w 'iy * ' '-*/ U l i V . '<. l w V <
!., w. C, Streib, R&D Center
November 15, 197 3
tem p, s. Lamar/ R&D Center
U V ) , N i .
i..K,;Uv. SOME COMMENTS ON THE P*E OF TALC IN PAPER WITH.A SUMMARY OF
r>vi^jf>-( M?g L t ION STUDIES OF TrtLC-FILLED PAPER FOR FOOD PACKAGING
I. uses for Talc in the Paper Industry
These uses can be divided into several categories:
a Pitch and tramp organic control in pulp mills. b ! pitch and tramp organic control in fine paper and
C. Higl^birightness filler and white pigment in fine paper. p . - Titanium dioxide extender in fine paper.
In each of these uses talc provides a valuable function.
For example:
'
A. For pitch and tramp organic control in palp
other material functions as well as talc. The talc
selectively adsorbs pitch and other oleoresinous
S ' S c e s ^ s they >
*r the wood^urjn,
; pulping and digestion. The talc with its aclsorpeo
pitch remains in the sheet of paper.
the pitch in a finely dispersed, ^nocuous I t *' When first released these organic substances a:ce
colloidal in size. If not properly controlled, ^ e /
form agglomerates that deposit out on the machinery
and necessitate frequent shut-downs for cleaning.
Prior methods of control -have involved the use of surface
.
active agents or wetting agents to
with the pitch that is then washea. put of the pulp
. and^into the river or stream British Columbia (where they have a strong fis g
and tourist industry as.well as many
PtsP
mills) have shown that tnese surface _a c t ^ V o
` and emulsified pitch effluents are
toxic t
fish. These mills arc ben-g required to close up their
svstens, to stop the discharge.of pitch, and toxic
emulsions, This greatly aggravates the problem within
the mill-- unless talc is used for control.
CRMC-HT-TALC-000067
Page W. C. Streib
November 15, 1973 *
When using talc for pitch control in .the pulp mill no surface active agents arc needed. The talc i added at several points during processing to adsorb the pitch as it is released from the pulp. The_ fine particles of talc with adsorbed pitch remain in tue pulp. Mills can then be closed up to reduce, or - eliminate the uiScharge of toxic substances into streams and rivers. No other white adsorbent is^ known to possess these unusual surface characteris tics of talc. Normal rates of talc addition in a pulp mill will vary with the severity of th problem. These rates ra.*ge fronras little as 0.05 percent to 1.5 percent based on the weight of dry pulp.
. For pitch and tramp organic control in fine paper and board mills additional talc is required even though talc-control might have been exercized m the pu-lping operation. As the pulp is beat and^ further refined in the paper mill/ additional pitch is released and additional talc is needed for control, Also in the manufacture of fine paper alum-rosm sizing
, in many cases accentuates the pitch problem. Rosin size made from pitch, is added back to the pape^.. ^ Under certain conditions (improper pH control, bara water, etc.) this rosin size will precipitate, re-? combine with natural pitch, and magnify the problem.
In the paper mill the pitch is generally m a more agglomerated form than in the pulp mill. The talc is not as effective in adsorbing and controlling these larger agglomerates. Therefore, heavier dosages are needed. Paper mill talc additions for pitch control generally range from 0.25 percent to 2.5 percent again depending on the sever^y of the problem.
Talc retention in paper will vary with a number or
factors including the freeness or degree of beating
of the pulp, the type of pulp (sulfite or kraft),^
basis weight, etc. In most cases talc retention is. _
higher than with other pigments sue. as clay, T1 O2 , etc
Talc with its adsorbed pitch is mostly retained in the
sheet." White water problems are reduced through tne
use of talc in the paper mill. Effluents to streams
and rivers are similarly reduced.
,
. High brightness filler and white pigment uses for talc in the manufacture o.f fine paper are growing. In thl*
CRMC-HT-TALC-000068
Page W, C Strelb
November 15, 1973
uso rather substantial additions (up to 20 percent by weight), of talc are added to paper to improve bright ness, opacity, smoothness, an'1 receptivity to high fidelity color printing. With the growing shortage of titanium diox.de this U3e for talc in this irdustry is becoming increasingly important. Certain commercial grades of ta" having very high brightness, whiteness, and the proper particle size for optimum light scatter ing efficiency probably perform these combined function^
better than any other white pigment.
D. Another rapidly growing use for talc in the paper
industry involves .its use as an extenter pigment .
for titanium dioxide. Tic>2 tends to form tight
agglomerates which act as larger particles thus-
reducing opacifying efficiency (which is a function
of both particle size anct index of refraction) . Talc
of the proper particle size helps disperse the T 1 O2
and hold it in the properly dispersed state. -The
talc particles act as "spacers between the TiC>2
particles.
From the above you can see that the use of talc in oacer is not only important to J-M but is also important to the paper industry. Talc serves a number of 'valuable, important functions. Its restricted
use would- be detrimental to the paper m d u s ry an would create additional environmental control problems.
II. The Proposed FDA Test Method and Specification for Talc in Food 'and Food Packaging Material^________ _ _ ________
This would severely restrict and limit the use of talc containing minor amourtts of asbestos minerals m too packaging uses (paper, plastics, etc...
It is of the greatest`importance here that a distinction be made b e i w e L the use Sf. talc as a direct foo additive and its use in food packaging materials. Direct food additive uses for talc ar* of minor, even insignificant, commercial importance. These include the coating and polishing of rice, dusting of chewing gum to sticking in the wrapper, and the preparation of wbl.e
for pharmaceutical use. In those aPPlac* f is directly ingested, perhaps some kind be justified if indeed it is shown that the ingestion of^ asbestos-containing talc is medically harmful. The qu-s tion here is without any doubt primarily medical.
CRMC-HT-TALC-000069
Pg8R8P8gK8*8SBSSiWBBS^^
Page A W. C. Sfcreib
November 15, 1973
In these direct food additive uses talc serves no real purpose that might not be served by "he use of some . other agent or by a change in processing methods. In this respect it is quite different from the valuable uses for talc in food packaging and most specifically paper.
In food packaging applications for talc.the really
.
important question has been: "Does the talc s Y
paper under normal use conditions or does it somehow
leave the paper and contaminate the food? . If no
.
,,deration or contamination occurs then it is our opinion
that in this use taic'in food packaging should not oe
classified as a food additive and no rest^ ^ "s be necessary. We have, for this reason, devoted a great
deal of time to migration studies. This work has been
confined to talc-filled paper.
in talc-filled plastics used for food packaging the
S l o w o uldbe even .ore tightly
t" aTM OTe
migration occurs in paper, it would be logical to assu
that migration from plastics would also not occur.
A Summary of Migration Studies of Talc-Filled Paper for Food" Packaging______ '. ----- __------------ -
Recognizing the great importance and attaches to these studies,. J-M and particularly the Celxte Research and Basic Research groups have_.deve^ a g e . to deal of time and expense to this subject. It is fai. to state that it has received our finest effort. We ha/ been completely objective and scientifically honest in all of thesePevaluations performed at the J-M Research Center.
All of those working on the project understood t complete objectivity and scientific hone-uy were of paramount important regardless of the outcome, regard
less of the findings.
'
'
These migration studies have taken several different forms:
A. The preparation of talc-filled_paper on the pilot machine at Western Michigan University.
B. An evaluation of these papets at Western Michigan University by means of a wet-pick test.
C. An evaluation of these same papers by Walter C. McCr0ne
and Associates using, a m e a t m g wrapping freezing procedure to" simulate actual use conditions.
CRMC-HT-T ALC-000070
Page 5 W. C. Streib
November 15, 1973
.
0* .The development of a dry salt-scuffing test to study the breakdown of talc-filled paper.
E. An extension of this salt-scuffing test into more practical and re^l use conditions.
F. An examinati' of various dry packaged foods to determine the actual presence of talc ?n the paper food container or paper and to resolve the question: "Does talc in fact migrate from the paper container under actual use conditions and thereby contaminate
food?"
Sections A-C
'' .
A summary of points A-C is given by R. P. Carter in his
letter of April 20, 1973, to Allen T. Spiher, Jr., Food
!and Drug Administration. These will not be repeated in
detail here, but several comments should be restated from
page 8 of Carter's letter:
1. As Mr. Stewart states in Exhibit E, referring to the
test in which the meat was sandwiched between the papers: "Even .though in some instances the paper had
been completely saturated by the natural juices from
the meat, there was no quantifiable transfer-of tremolite from the paper to the meat." In other words, McCrone was unable to find any tremolite fibers in
the meat;following these test procedures, therefore,
concluding that absolutely no migration had taken
place.
.
2. Even more significant was the finding resulting from the meat wrapping-freezing tests which found no tremo lite migration whatsoever. This was a test involving the normal and regular use of food packaging paper by the consuming public. As Mr* Stewart has stated in Exhibit : "The object of these wrapping _tests .was to subject the paper to folding and handling stresses similar to those which it would undergo in normal use and which might result in greater degradation of the paper, and hense greater migration of the tremolite than would the sandwich tests described above." The test evidenced the total absence of any tremolite . migration from the' paper to the food.
3., Second, commercial food packaging paper always contains a coating of wax or polymers, which our test papers aid
CRMC-HT-TALC-000071
Page 6 W. C, Sfcreib
November 15, 1973
not have and which* -would further retard any possible
migration.
'
Section D, The Dry Suit-scuffing Test
This test was de 'sed after talking with some of the people at FDA. We all agreed that dry salt (granular NaCl) would be a good abrasive material for this kind of evaluation. A test method was developed and a number of commercial grades of talc-fill'ea paper evaluated. (See J - M 'Research and Engineering Center Report No. 414-2, September 28, 1973}. The test can be varied in degree of. severity simply by varying the shaking . time. In fact, the amount of paper_scuffed or abraded away was found to be a. linear function of time. Salt was found to be extremely abrasive under these test conditions and even attacked and frosted the necks of
the glas-s jars used in the test.
The results of these simulated use tests showed that , talc and/or associated tremolite used to fill paper does not selectively migrate from the paper. Any migration that does occur is the result of a complete breakdown of the.structure of the paper itself. Unless the paper fiber structure is destroyed by some scuffing or abrasive action the talc does not otherwise leave
this structure.
Section E, An Extension of the Salt-scuffing Test into
more Practical and Real use Conditions
'
These results have been described in detail in u-M
Research and Engineering Center Report Mo. 414-6,
_
November 15, 1973. Here paper-lined glass jars identi
cal to those used in the simulated salt-scuffing test
were shipped by truck from Denver, Colorado to Manville,
New Jersey and back. This was meant to simulate actual
use and transportation conditions. After being received
back in Denver the salt was examined petrographically and
by means of the transmission electron microscope for paper
fiber, talc, tremolite, and chrysotile contamination._
These results show that under these actual use conditions
the paper structure is not destroyed and no contamination
with talc, tremolite, ,or chrysotile occurs. These results
also show that the simulated salt-scuffing test is far
too severe and does not simulate use conditions. The
CRMC-HT-TALC-000072
Page 7 W. C. Streib
November IS,' 1973
simulated test has performed one valuable function. It proves that .talc and/or asbestos minerals "migrate" only when the paper structure itself is destroyed. These later tests pre /e that this does not normally occur during prolonged.transportation.
Section E , An Examination of Various dry Packaged Foods
This work is also described in Report No. 414-6. Various
dry packaged foods were purchased at a local supermarket.
These paper rood containers were tested petrographically
and by X-ray diffraction to confirm the presence of talc
in the paper. The various foods packaged in each paper
.
were also examined by the same procedures to determine
if any detectable amounts of talc, tremolite, or chryso-
tile were present due to contamination. In these studies
the most.careful and detailed examinations were made
using the electron microscope. These tests also show
that even though talc is present- in most of the paper
. containers, no talc or asbestos minerals were present
in the packaged foods. We must, therefore, conclude
that migration does not occur under actual conditions
with a variety of dry packaged foods.
Since migration does not occur, talc should not be considered a food additive when used in paper.
IV, Conclusions
Both meat wrapping and dry salt-scuffing tests, devised
to simulate as closely as possible actual.use conditions,
have shown that- talc and/or asbestos mineral contained in
paper does not migrate or contaminate food. Migration
only occurs when conditions are severe enough to destroy
the paper structure itself-- a condition which we have no
reason to believe occurs in actual use situations, An
examination of a number of dry packaged foods has shown
that these packages remain intact and in use and no
contamination .results.
'
If medical evidence indicates that the ingestion of talc and/or associated asbestos minerals is harmful, then FDA restrictions need be applied only to direct food or drug additive uses, not to food and drug packaging materials.
R. S. Lamar rr See Distribution on Reverse Side
CRMC-HT-TALC-000073
cc:
,
W. L. VanDerbeek 2 West
p. A. Martinson ~ 2 West
F. J. Solon
- 1 Wst '
E. C. Parker
- 5 West
E. M. Fenner
- 4 North
C.. I. Keelan
- 2 West
r . p. Carter
- 5 West
H. R. Keefe
2 West
F.. L. Pundsack . - R&D Center
S. Speil
_ R&D Center
Vi. C. Streib
- R&D Center
K. L, Kinder
- R&D Center
File No.: 259-16.2'
Keywords: FDA, talc, asbestos, food-packaging.
CRMC-HT-TALC-000074