Document jm38p8E1nzdad7nxop6OVVey9
Federal Register / Vol. 51, No. 22 / Monday, February 3, 1986 / Proposed Rules
4173
DEPARTMENT OF HEALTH AND HUMAN SERVICES
Food and Drug Administration
21 CFR Parts 172,175,176, 177, 179, and 181
[Docket No. 75N-0190]
Vinyl Chloride Polymers; Withdrawal of Proposal
agency: Food and Drug Administration. action: Withdrawal of proposal.
summary: The Food and Drug Administration (FDA) is withdrawing
the notice of proposed rulemaking that would have restricted the uses of vinyl chloride polymers in contact with food.
The agency is taking this action because, based upon new scientific and
legal developments. FDA has decided that the actions outlined in the proposal -no longer represent the appropriate course of regulatory action.
FOR FURTHER INFORMATION CONTACT:
Vir Anand. Center for Food and Safety and Applied Nutrition (HFF-335), Food and Drug Administration, 200 C St. SW,, Washington, DC 20204,202-472-5690.
SUPPLEMENTARY INFORMATION: In the Federal Register of September 3,1975 (40 FR 40529), FDA proposed to prohibit some uses of vinyl chloride polymers (homo- and copolymers), including their use in semirigid and-rigid food-contact articles such as bottles and sheet, and to interim list the use of these polymers in water pipe.
Since publication of the proposal,
there have been a number of significant
developments that bear on the agency's
position concerning regulation of vinyl
chloride polymers. The major
developments include: (1) Vastly
improved production technology has
made it possible for manufacturers to
succeed in reducing the level of residual
vinyl chloride monomer in vinyl chloride
polymer by a factor of nearly 1 million:
(2) the agency has developed a policy
concerning the regulation of food and
color additives that may contain
carcinogenic impurities; and (3) FDA
now believes that developments in
scientific technology and its experience
with risk assessment procedures make it
possible for the agency to determine
whether the use of additives that
contain carcinogenic impurities is safe.
As a consequence of these
'
developments, many of the issues raised
by the September 1975 proposal and by
1 the comments on that proposal are
moot FDA now believes that the use of
vinyl chloride polymers can be regulated provided that such polymers meet
certain limitations on the levels of
elsewhere in this issue of the Federal
residual vinyl chloride monomer.
Register. The term "chloroethene" is not
In the Federal Register of March 15,
a commonly used term for vinyl
1977 (42 FR 14302). FDA reorganized and chloride. FDA concludes that vinyl
republished regulations formerly
chloride is adequately defined by its
codified in 21 CER Part 121. In the
chemical formula and its CAS Reg. No.
present document. FDA will refer to the
2. One comment stated that vinyl
old Part 121 section numbers and, if
chloride-vinylidene chloride copolymer
appropriate, to the recodified section
should be renamed vinylidene chloride-
numbers.
vinyl chloride copolymer to reflect the
Elsewhere in this issue of the Federal relative dominance of the monomers. It
Register. FDA is proposing: (1) To
noted that vinylidene chloride is the
provide for the safe use of vinyl chloride more dominant monomer in copolymers
polymers; (2) to codify all known prior sanctions of vinyl chloride polymers; (3)
to provide for the use of certain previously unregulated vinyl chloride polymers in manufacturing vinyl chloride bottles: and (4) to delete vinyl chloride-vinylidene chloride copolymers
from the list of materials that may be used as coatings on fresh citrus fruit (21
CFR 172.210). FDA received 190 comments on the
September 1975 proposal. One hundred
fifty-four of these comments did not include any data on the use of vinyl chloride polymers. Of these comments,
of vinyl chloride and vinylidene
chloride.
FDA concludes that vinyl chloride-"
vinylidene chloride copolymers should
continue to be so named. Vinyl chloride \
has customarily been the first monomer \
cited in industry usage and in food
\
additive regulations when referring to
copolymers, regardless of the major
j
component. Although there may be some
Jadvantage to naming copolymers by the
predominance of monomers, renaming
the copolymers would only lead to . /
confusion and unnecessary paperwork. .
86 supported the proposal; 57 expressed B.Administrative--Legal
concern about the risk associated with the use ofvinyl chloride polymers; and 11 opposed the proposed ban on rigid and semirigid vinyl chloride polymers. The remaining 36 comments did submit data or legal arguments for FDA's consideration.
In addition, the docket contains 15 ' supplements to comments; 21 letters from industry, professional societies, public interest groups, and individuals; 11 memoranda of meetings; and 11 memoranda of telephone conversations. None of the additional letters and memoranda contained data, but the 15 supplements to comments contained scientific data that FDA reviewed and evaluated.
All comments received in response to the proposal are addressed in this document.
A. Nomenclature
3. Five comments stated that FDA did not have the statutory authority to issue food additive regulations prescribing conditions of use for a substance that may not reasonably be expected to become a component of food. The comments claimed that there was no expectation of migration of vinyl chloride monomer into food from the use of vinyl chloride polymer packaging.
Section 201(s) of the Federal Food, Drug, and Cosmetic Act (the act) defines a food additives as "any substance Hie intended use of which results or may reasonably be expected to result, directly or indirectly, in its becoming a component or otherwise affecting the
characteristics of any food (including any substance intended for use in producing, manufacturing, packing,
processing, preparing, treating, packaging, transporting, or holding food,
1. One comment stated that vinyl
and including any source of radiation
chloride should be referred to as "vinyl intended for any such.use) * " *" (21
chloride monomer" or as "VCM" in the U.S.C. 321 (s)). Section 409(d) of the act
various proposed regulations to prevent (21 U.S.C. 348(d)) authorizes FDA to
any misunderstanding about what
estabfish regulations prescribing, with
particular substance is being prohibited. respect to any particular use of a food
The comment further stated that the .
additive, the conditions under which
identification of vinyl chloride monomer such additive may be safely used.
should include its chemical fomula
Vinyl chloride polymer becomes a
(CjHaCl), its alternative name
component of food (a food additive]
"chloroethene." and its Chemical
when the nnreacted vinyl chloride
Abstracts Registry Number (CAS Reg.
monomer trapped in the polymer matrix
No.).
migrates from the polymer to food. The
FDA agrees that it should use the CAS data; both experimental and theoretical,
Reg. No. and the term "vinyl chloride
produced by industry and by FDA
monomer" to identify the monomer. H
laboratories about vinyl chloride
has done so m the proposal published
polymers demonstrate that, under
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,rmal conditions of use, migration of
was not incorporated into the agency's Additionally, since the publication of
vinyl chloride monomer will occur from final action on vinyl chloride polymers. the 1975 notice of proposed rulemaking,
all types of vinyl chloride polymer food-
FDA disagrees with this comment.
scientific developments, such as
contact articles, regardless of the levels FDA has explained why it has
improved risk assessment procedures,
of the monomer in the articles. The
concluded that the viijyl chloride
have led FDA to reconsider how it
amount of vinyl chloride monomer that monomer will migrate in response to the regulates food and color additives when
migrates to food will depend on the
preceding comment. In regard to a
the additive as a whole contains
initial residual monomer content, the
request for a public hearing, section
carcinogenic impurities but has not been
time and temperature of exposure to
409(f)(1) of the act provides that, within shown to be a carcinogen in appropriate
food, the thickness of the polymer, and 30 days after publication of a final order testing. As a result of its
such other properties of the polymers as on a food additive, any person adversely reconsideration, the agency has decided
their permeability and whether they
affected by the order may file objections that it can approve or list the use of such
have been plasticized.
to the order and may request a public
additives when an assessment shows
One example of the work done on
hearing on the matter. There are no
vinyl chloride monomer is that of Ethyle provisions in section 409 of the act for
that the risk from the use of these additives, with their carcinogenic
Corp. In a series of reports dating from requesting a public hearing in response impurities, is so low that there is a
January 17,1975, Ethyl proposed and
to a notice of proposed rulemaking,
reasonable certainty of no harm from
utilized a diffusion model that
although this request may be made in
their use. The application of this
accurately predicted levels of vinyl
response to final regulations on this
approach to vinyl chloride polymers is
chloride monomer migration into food
subject.
described in detail in the notice of
simulating solvents. Based on this model's success in predicting the !
5. Two comments stated that no final action to ban rigid and semirigid vinyl,
proposed rulemaking appearing, elsewhere in this issue of the Federal
observed levels of monomer migration, chloride polymers should be taken until Register.
Ethyle's diffusion model can be relied
an examination has beep made of the
7. Four comments suggested that
upon to predict the level of such -
potential migration from currently*
proposed 121,2009 Vinyl chloride
migration even.when the monomer is
produced vinyl chloride polymers that polymer resins, which listed the prior-
not detectable by current analytical
. contain low levels of residual vinyl
: sanctioned uses of vinyl chloride
capabilities.
chloride monomer.
- polymers, should be revised to permit
On the basis of existing theories*
FDA has reviewed the data on the
the use of polymers listed.in that section
diffusion models, and available experimental data, FDA concludes that vinyl chloride monomer is capable of
migration of vinyl chloride monomer from polymers that contain varying levels of residual monomer (Division of
in articles that will contact all types of ' food or should be revised to allow the use of additional types of articles
migrating into food from vinyl chloride Chemistry and Physics memorandum
produced from vinyl chloride polymers.
polymers in more than insignificant
, dated July 27,1979). The agency
The agency finds that such a revision
' amounts. The use of models capable of concludes that migration of the
' \ is inappropriate. Proposed 121.2009
predicting monomer migration has been monomer into food will occur if there is /) was intended to be a listing of those-
addressed in Monsanto v. Kennedy, 613 any residual monomer in the polymer. 1 uses of vinyl chloride polymers that are
F.2d 947 (1979), where the court stated: The new proposed regulations published the subject of prior sanctions, i.e., those
"Nor is it necessary that the level of
elsewhere in this issue of the Federal - j k uses that were approved by FDA or the
migration be significant with reference Register reflect this determination.
U.S, Department of Agriculture (USDA)
to the threshold of direct detectability, so long as its presence in food can be predicted'on the basis of a meaningful
6. Two comments objected to permitting any use of vinyl chloride . polymers in contact with food because
before September 8,1958. The list of such uses cannot be altered or expanded to include additional uses
projection from reliable data." .
of the presence of a carcinogen (vinyl
FDA has further concluded that, given chloride monomer) in these polymers.
without proof that those additional uses were approved by FDA or USDA before
the fact that vinyl chloride monomer has The comments claimed that, by
that date.
been shown to be a carcinogen, the
permitting"the use of these polymers,
Therefore, the agency cannot expand
projected vinyl chloride monomer
FDA was, in effect, setting a tolerance.
migration from vinyl chloride polymers ' for a carcinogen at the level of .
the prior-sanctioned uses of vinyl, chloride polymers to cover contact with
under the conditions ofuse currently
sensitivity of the analytical methods to - all .types of food as proposed in these
specified in its regulaions is not so small detect vinyl chloride monomer. The - comments.
as to present no public health or safety comment stated that all uses of vinyl .
In the 1975 proposal, FDA listed those
concerns. The agency finds, however,
chloride polymers should be banned .. prior sanctions for which it could find
that safety can be assured through the until manufacturers can produce vinyl- . evidence and explicitly solicited
establishment of limits on residual
chloride polymers that contain no vinyl - evidence of any additional sanctions.
monomer concentrations, as proposed
chloride monomer.
No evidence of other prior sanctions
elsewhere-in this issue of the Federal Register. The agency, therefore, is
FDA agrees that vinyl chloride polymers with unsafe levels of vinyl
was submitted to FDA. FDA, however, located in its own files evidence of four
exercising its authority under section
chloride monomer should not be
additional prior sanctions. (1. Letter to
409 of the act to promulgate regulations permitted on the market. However, FDA Firestone Plastics Co., Pottstown, PA,
that would prevent the marketing of
does not believe that banning vinyl
dated-April 20,1951, permitting the use
polymers with unsafe levels of vinyl
chloride polymers is necessary because of vinyl chloride resins as films for food
chloride monomer,
these polymers now can be -
packaging. 2. Letter to Firestone Plastics
4, One comment contended that there manufactured with residual \rinyl
Co., Pottstown, PA, dated October 5,
was no reasonable expectation of,
- chloride monomer levels that are at. -
1956, permitting the use of rigid
migration and, also, that the polymers
least one million times lower than the: . polyvinyl chloride (homopolymer) sheet
were not food additives. The comment residual monomer levels in polymers
for packaging poultry. 3. Letter to
requested a hearing if its point of view. .. that were marketed-in the early 1970's. - Firestone Plastics Co. Pottstown, PA,
BFG10840
Federal Register / Vol. 51. No. 22 / Monday. February 3, 1986 / Proposed Rules
4175
dated February 21. 1957, permitting the use of vinyl chloride and vinyl chlorideacetate resins for "food wrapping
purposes." 4. Letter of Borden Co., Santa Barbara. CA. dated August 15.1957. permitting the use of vinyl chloride
fjjolymers as tubing for food-contact use.) ^ The agency has included these sanctions ^ in its proposal published elsewhere in m this issue of the Federal Register. The Aq agency believes that all valid prior
sanctions of vinyl chloride polymers are set forth in the new proposaL ' v 8. Two comments stated that the
wording of proposed 121.2009(a)(3) should be revised to provide a proper
description of the materials used for coating conveyor belts. The comments asserted that these materials are blends of vinyl chloride homopolymer and butadiene or butadiene/acrylonitriie copolymer rather than "vinyl chloride/ butadiene" or "vinyl chloride/
butadiene/acrylonitrile" copolymer, as described in the proposal.
The original letters received by FDA
on the conveyor belt coatings referred to the coatings as "resins." a term broadly applied to any thermoplastic material.
Although the letters that FDA wrote in response refer to the conveyor belt l coatings as copolymers, the coatings
were never identified as copolymers by the manufacturers. The agency, in reviewing these records, finds that the records contain no data that would limit the priorsanctions to copolymers rather than blends.
Accordingly, in the proposal published elsewhere in this issue of die Federal Register, FDA has revised
181.37 (proposed as 5 121.2009(a)(3)) to use the term "resin," rather than "copolymer," to refer to both the resin blend and the copolymer.
9. One comment stated that all food packaged in vinyl chloride polymers or prepared with equipment in which the food will come into contact with vinyl chloride polymers should be so labeled.
FDA has considered this comment and has concluded that the requested labeling is not necessary to ensure the safety of foods that contact vinyl. chloride polymers. In a notice of proposed rulemaking published elsewhere in this issue of the Federal Register, FDA sets forth proposed regulations that contain limitations on the amount of residual vinyl chloride monomer that may be present in various types qf vinyl, chloride food contact surfaces. FDA also sets forth in that ' proposal the basis on which it has
tentatively concluded that vinyl chloride
polymers that meet the proposed limitations are safe for food-contact use. Therefore, there is no need to label
foods that have contacted' vinyl chloride
polymers.
10. One comment stated that the use
of vinyl chloride polymers as coatings
on fresh citrus fruits, which is permitted
under 21 CFR 12T:1179 (now 21 CFR
172.210), has been discontinued.
After publication of the 1975 proposal,
the major producer of vinyl chloride-
vinylidene chloride copolymers
informed FDA that it was unaware of
any market for the coatings on fresh
citrus fruit (Telecommunication, M.
Flood to J. Cobler, September 30 and
October 3,1983, Dow Chemical Co.). On
the basis of this information, the agency
is proposing elsewhere in this issue of
the Federal Register to revoke the
regulation for die use of vinyl chloride
polymers as coatings on fresh citrus
fruit.
.
11. Four comments were received
objecting to the inclusion of rigid and
semirigid polymers in 121.106
Substancesprohibitedfrom use in
human food (now 21 CFR Part 189).
FDA has now completed its
evaluation of all safety data pertinent to
the use of rigid and semirigid vinyl .
chloride polymers and has tentatively
concluded that safe conditions of use
can be prescribed for these polymers.
Therefore, rather than banning the use
of these polymers, elsewhere in this
issue of the Federal Register, FDA is
proposing to approve certain uses of
these substances.
C. Chemistry
12. Seven comments stated that one or more of the proposed regulations should be revised to permit all uses of vinyl chloride polymars for which there is no reasonable expectation of. migration of vinyl chloride monomer to food.
Five of these comments contained data for calculations to support the contention that when a food-contact article does not contain detectable levels of vinyl chloride monomer, the potential amount of migration of this monomer is so insignificant as to make it unreasonable to expect that vinyl chloride polymer will become a component of food. One comment further stated that a regulation ' permitting the use of all vinyl chloride polymers when there was no detectable residual vinyl chloride monomer in the food-contact articles or not detectable migration of vinyl chloride monomer to food would adequately protect the public health.
A number, of these comments discussed specific processes used to remove "all" residual vinyl chloride
monomer from vinyl chloride polymers.
According to the. comments, these processes produced polymers in which
there were either very low levels (i.e.. 2 to 50 parts per billion (ppb)) or no detectable amount of residual vinyl
chloride monomer because the steps taken during these fabrication processes were adequate to remove aH of the
residual vinyl chloride monomer. On the basis of all available evidence!
FDA has concluded that under normal
use conditions, migration of vinyl chloride monomer will occur from all types of vinyl chloride polymer articles
(see response to comment 3). The amount of vinyl chloride monomer that will migrate is determined by the nature of the articles (e.g.. film, bottle, or coating); the residual vinyl chloride monomer content; and the conditions of use (time'and temperature of exposure to food).
The agency is aware that over the past 10 years, the manufacturers of vinyl
chloride polymer products have succeeded in reducing the levels of residual vinyl chloride monomer by a factor of nearly a million. However, the
data that FDA has received from industry clearly establish that vinyl chloride polymers still contain
measurable levels of vinyl chloride monomer, and that available diffusion theory relates the level of monomer in
the polymer to the level of monomer in the food, even though the level may be below current analytical detection limits. Therefore, FDA concludes that
regulation should be based on safe upper limits of migration rather than the level of detectability.
13. One comment state'd that as the level of residual vinyl chloride monomer in a vinyl chloride polymer is reduced, there is a corresponding reduction in the migration of the monomer. The comment theorized that there are sites in a polymer to which some monomer can attach. These sites are called "active binding sites." The comment asserted that these active binding sites prevent migration of the monomer when there is less than 0.1 part per million of residual monomer. The comment argued that as a result. FDA had no authority to regulate the polymer when it contained such low levels of the monomer.
FDA finds that the available experimental data on the process of
migration of vinyl chloride monomer from vinyl chloride polymers do not support this theory (Division of Chemistry and Physics memorandum dated July 27.1979).
FDA's evaluation of the data on vinyl chloride migration that were submitted as comments to the 1975 proposal by
Ethyl Corp. revealed that under normal
use condition, migration of vinyl chloride monomer will occur from all
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Federal Register / Vol. 51, No. 22 / Monday, February 3, 1988 / Proposed Rules
pcs of vinyl chloride polymers, regardless of the monomer level in the
polymers. Although the alternative "active site" theory, if correct, would predict zero migration of vinyl chloride
monomer to food at some minimum residualmonomerlevel.no experimental data have been submitted . to FDA that would confirm the theory. A more detailed discussion of the migration issue is contained in the notice of proposed rulemaking published elsewhere in this issue of the Federal Register.
14. One comment outlined a
mathematical model that reportedly predicted the extractable levels of vinyl chloride monomer from any level of residual vinyl chloride monomer in vinyl chloride polymers. The comment stated that, based on the model and the low
concentration of residual vinyl chloride monomer in its product, there is not a reasonable possibility of migration of vinyl chloride monomer.
FDA disagrees and finds, upon evaluation of the model, that the model .
predicts zero migration only if there is no-monomer in the food container
(Division of Chemistry and Physics
memorandum dated July 27,1979). FDA is not aware at this time of any manufacturing process that can producevinyl chloride polymers without some
level of residual vinyl chloride monomer being present. The diffusivity of the vinyl chloride monomer is discussed ,, briefly in comment 12 and at length in the notice of proposed rulemaking published elsewhere in this issue of the Federal Register.
15. Three comments stated that the proposed regulations should be revised to exempt specific types of packaging such as laminates and packaging for dry solids. The comments stated that food packaged in such containers would not be expected to. contain vinyl chloride
monomer as a result of migration from the packaging materials. -
As discussed in response to comment 12, the agency concludes that use of vinyl chloride polymers as components of the types of packaging materials described in these comments will result in low levels of migration of vinyl - chloride monomer. However, the agency
is proposing to permit such use of vinyl chloride polymers, with limitations on the levels of residual vinyl chloride
monomer, as set forth in the proposed rule published elsewhere in this issue of the Federal Register.
18. One comment stated that the . restrictions on the use of rigid and ' semirigid articles should be revised to permit their use with dry food, or that the-proposed restrictlorts ih the-
regulations for adjuvants should be eliminated.
152 Weeks." dated 1980); (4) CIVO Institute TNO second unpublished rat
As explained in the proposal
study on vinyl chloride monomer (the
published elsewhere in this issue of the final report.entitled "Lifespan Ora)
Federal Register, based^on the
Carcinogenicity Study of Vinyl Chloride
improvements in the manufacturing
in Rats," dated September 1983).
process for vinyl chloride polymers and on other scientific and legal developments, FDA now believes that it can approve the use of vinyl chloride polymers in rigid and semirigid articles not only with dry food but also with aqueous. alcoholic, and fatty foods. Because FDA is no longer proposing toban these uses of rigid and semirigid
vinyl chloride polymers, the question of restriction of adjuvants for use in rigid and semirigid vinyl chloride polymers is moot. However, FDA is proposing to . delete certain adjuvants currently regulated for use in vinyl chloride/ vinylidene chloride copolymer coatings for fresh citrus fruit. The us of this copolymer for coating fresh citrus fruit was discontinued several years ago and
The agency has determined that vinyl chloride monomer is a carcinogen via oral route of exposure on the basis of the results from these studies.
Elsewhere in this issue of the Federal Register, FDA is proposing to establish safe conditions of use for vinyl chloride polymers. FDA believes that vinyl chloride polymers can be regulated under the agency's carcinogenic impurities policy, which is described elsewhere in this document and in the accompanying notice of proposed rulemaking. FDA has used this policy to regulate food and color additives that contain carcinogenic impurities but which themselves have not been found to be carcinogenic.
there is no longer a need for the
The agency's proposed regulations
regulation. The deletion of this use of
published elsewhere in this issue Of the
these adjuvants from FDA's regulations Federal Register deal with the uses of
has no effect on their other regulated
vinyl chloride polymers including rigid
uses.
and semirigid articles.and the specific
D. Toxicology'
17. One commenj stated that the use of vinyl chloride polymers in rigid and
limitations that are heeded to ensure.. ' their safe use. .
E. Environmental Impact
semirigid food-contact articles should be permitted on an interim basis pending the outcome of studies necessary to demonstrate the safety of such polymers. The comment stated that FDA had based the proposed regulations on preliminary reports, speculation, and rumors, and that animal feeding studies to demonstrate the toxicity of vinyl chloride monomer when ingested were now underway and were expected to be completed within 30 months.
18; One comment stated that, under the proposed regulations, products . expected to substitute for vinyl chloride polymer products would have far greater environmental impacts than vinyl chloride polymer. In addition, the comment suggested that vinyl chloride polymer could be efficiently burned in properly designed and operated incinerators.
The agency's proposal, set forth
Since this comment was submitted,
elsewhere in this issue of the Federal
FDA has received four reports of
Register, provides conditions for the
completed bioassay studies on the
safe use of regulated and prior-
carcinogenicity of vinyl chloride
sanctioned vinyl chloride polymers. This
monomer. These include: (1) Feron et al.. . proposed action is in contrast to the
chronic rat oral study performed at the 1975 proposal; which would have
CIVO Institute TNO in the Netherlands prohibited certain uses of vinyl chloride
[Food and Cosmetics Toxicology,
polymers. FDA has prepared two
19:317-333.1981): (2) Maltoni et al. rat
documents, an environmental
study on vinyl chloride monomer by
assessment and a finding of no
both oral ingestion and inhalation routes significant impact, that evaluate the
of exposure [Atmals of the New York
potential impact, both adverse and
Academy of Sciences, 246:195-218,1975: beneficial, expected from the increased
Environmental Health Perspectives,
use. of vinyl chloride polymers. These
41:3-29:1981); (3) The British Industrial documents consider the environmental
Biological Research Association
factors addressed in the comment's
unpublished rat study on vinyl chloride submission. The environmental
monomer administered in the drinking
assessment and the finding'of no .
water for up to 152 weeks (the final
; significant impact may be seen in the
reportentitied "An Investigation Into " Dockets Management Branch (HFA-
the Carcinogenio-Potentlal of Vinyl
305), Food and Drug Administration, Rm
Chloride Monomer When Administered. " 4-62,5600 Fishers Lane, Rockville, MD
to Rats in the Drinking Water'for Up to 20857; '
`. '
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F. Economic Impact
,,
prior-sanctioned vinyl chloride
ADDRESS: Written comments to the
19. One comment stated that the proposed regulations appeared to be more restrictive than necessary to assure protection of the public health
from ingestion of vinyl chloride and discussed shortcomings and omissions in FDA's analysis of potential economic impact of the regulations. Another
polymers. This action is takerrander the Federal
Food. Drug, and Cosmetic Act (secs. 201 (s). 402. 409. 701, 52 Stat. 1042, 10461047 as amended,*1049,1055 (21 U.S.C.
321 (s), 342. 348. 371)) and under authority delegated to the Commissioner of Food and Drugs (21 CFR 5.10).
Dockets Management Branch (HFA-
305). Food and Drug Administration, Rm.
4-62. 5600 Fishers Lane. Rockville. MD
20857.
-
FOR FURTHER INFORMATION CONTACT:
Vir Anand, Center for Food Safety and Applied Nutrition (HFF-335), Food and Drug Administration, 200 C St. SW.,
comment contained data concerning the
Dated: January 27,1988.
Washington. DC 20204. 202^172-5690.
economic impact the proposed
Frank E. Young.
SUPPLEMENTARY INFORMATION:
regulations would have upon the firm. FDA has considered these data and
comments in preparing the economic assessment on the proposed regulations published elsewhere in this issue of the Federal Register. The economic assessment may be seen at the Dockets Management Branch (address above).
G. Conclusions
Since the publication of the '
September 1975 proposal, there have
been significant scientific and legal
developments that have caused FDA to
reconsider its proposed regulations on
the use of vinyl chloride polymers.
Improvements in the manufacturing
process have enabled vinyl chloride
; polymer manufacturers to lower greatly
the levels of residual vinyl chloride.- -
monomer in the polymers. This
.
development, along with procedures for
risk assessment, now make it possible
. for the agency to establish safe
conditions of use for vinyl chloride
polymers. Details of the scientific and
legal developments as well as the risk
assessment are set forth in the notice of
proposed rulemaking published
elsewhere in this issue of the Federal
Register.
The agency has also developed a
policy for providing for the safe use of
food additives and color additives
containing low levels of carcinogenic
impurities. This policy was set forth in
an advance notice of proposed
rulemaking published in the Federal.
Register of April 2,1982 (47 FR 14463).
The use of this policy was upheld by the
Commissioner ofFood and Drugs. [FR Doc. 86-2236 Filed 1-31-86: 8:45 am]
I. Introduction
BIUJNG CODE 4160-01-61
The purpose of this proposal is to provide for the safe use of vinyl chloride
polymers m contact with food.
21 CFR Parts 172,175,176,177, 179,
Vinyl chloride is a chemical with the
and 181
formulacCiH^CFused as a monomer in ?
[Docket No. 84N-0334]
the production of polymers. Other monomers-are chemically bonded to this
Proposed Uses of Vinyl Chloride Polymers
monomer by the process of
polymerization to form larger, more complex molecules called "polymers."
agency; Food and Drug Administration. When all of the monomers that are
action: Proposed rule,
polymerized together are molecules of
summary; The Food and Drug
the same substance, the resulting molecule is called a "homopolymer."
Administration (FDA) is proposing to amend its regulations to provide for the safe use of vinyl chloride polymers. The agency.is proposing: (1) To provide for the safe use of certain vinyl chloride polymers by establishing limits on the
The vinyl chloride homopolymer is
sometimes called "polyvinyl chloride"
(CAS Reg. No. 9002-86-2).
When molecules of different
.
chemicals are polymerized together, the
resulting molecule is called a
f] '
amount of residual vinyl chloride monomer that they may contain; (2) to codify all known prior sanctions for
"copolymer." Thus, when ethylene
l
molecules are polymerized to vinyl
chloride molecules, the resulting^_____
vinyl chloride polymers; (3) to provide for the use of certain previously unregulated vinyl chloride polymers in manufacturing vinyl chloride bottles;
copolymer is called "ethylene vmylidene. chloride."'
Elsewhere in this issue of the Federal Register, FDA is withdrawing an earlier
.and (4} to delete vinyl chloride-
proposal on vinyl chloride polymers that
vinylidene chloride copolymers from the it published on September 3,1975.
list of materials that may be used as
Responses to comments received on the
coatings on fresh citrus fruits. Elsewhere September 3,1975 proposal are set forth
in this issue of the Federal Register, FDA in the withdrawal document.
is withdrawing the proposal on vinyl
chloride polymers that it published in - 1L Regulatory History
the Federal Register of September 3,
Vinyl chloride [CAS Reg. No. 75-01-4)
1975 (40 FR 40529).
is a chemcial with the following
date: Comments by April 4,1986.
structure:
U.S. Court of Appeals in Scott v. FDA...
728 F.2d 322 (6th Cir. 1984), a case
. involving FDA's decision to list
permanently the use of D&C Green No. 5. This color additive contains a , carcinogenic impurity, but when the additive as a whole was tested in
Cl /
\ H
C2H3CI, Molecular weight: 62.5
laboratory animals it did not induce
cancer. This policy is explained in detail
in that document (47PR 14463).
Accordingly, FDA is withdrawing the ' A wide variety of vinyl chloride
equipment, flexible tubing, and .,
proposal published in the Federal -
polymers, including homopolymer and
waterpipe.
,
Register of September 3,1975 (40 FR' various .copolymers, are available for .
Under section 201(a) of the Federal
40529). Published elsewhere in this, issue . use in the production of articles
Footd, Drug, and Cosmetic Apt tthe act) .
of the Federal Register is a notice of j
intended to contact food, including food- (21.U.S.C. 321(b)), a substance is ...
f
proposed rulemaking (hat would
; .packaging materiala.coatings, plastisols. . excluded from.the definition pf a "food
i authorize the safe use of regulated and .. gaskets, parts for food-processing.. ... . additive" If itsuse waa.sanctipned by -
i
i
!
I I
BFG10843
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Federal Register / Vol. 51. No. 22 / Monday, February 3, 1986 / Proposed Rules
r ' before September 6,1958. the date e enactment of the Food Additives
vinyl chloride monomer as high as 20 parts per million (ppm). Other
have been permitted under the(an/ interim regulation.
Amendment. FDA issued several
components of the bottles that gave gin
The September 1975 proposal cited
sanctions for uses of vinyl chloride
and vodka an off-flavor were also
inhalation studies by Dr. Cesare
polymers before that date. Those
extracted, but these components were
Maltoni, who reported the development
sanctions were in the form of letters,
not identified. By May 1CT1973, FDA
of angiosarcomas of the liver along with
advisory opinions, and articles by FDA chemists had confirmed that vinyl
other types of tumors at levels of
scientists that appeared in scientific
chloride monomer was present in vinyl atmospheric exposure as low as 250
journals. Although currently there is no chloride polymer liquor bottles, and that ppm ("Carcinogenicity Biossay of Vinyl
list of the prior-sanctioned uses of vinyl it migrated into the liquor.
Chloride,'" Environmental Research,
chloride polymers in the Code of Federal As a result of these findings, FDA
7:387-045,1974). Since then, vinyl
Regulations, FDA is aware of such
published a notice of proposed
chloride has been shown to be an
sanctions for their use as components of rulemaking in the Federal Register of
animal carcinogen both by inhalation
Film for food wraps, as components of
May 17,1973 (38 FR 12931), to restrict
and by oral administration and a human
can enamels, and as components of
the use of vinyl chloride polymer resins carcinogen by inhalation, as discussed
certain types of rigid food-packaging
to food-packaging materials that were
below (1ARC Monographs, 19:409-412,
materials, excluding bottles.
used with nonalcoholic foods.
1979).
Since the enactment of the Food Additives Amendment in 1958. FDA has approved a variety of uses of vinyl
chloride polymers in food-contact
By March 1974, the agency had received information from various sources suggesting that the migration of vinyl chloride monomer from vinyl
Data Received in Response to Proposal
As a result of the September .3,1975 proposal, FDA received numerous
articles. The regulations codifying these approvals include: 172.210 Coatings on fresh citrus fruit (formerly
121.1179); 175.105 Adhesives (formerly 5 121.2520); 9 175.300 Resinous andpolymeric coatings (formerly 121.2514); 9 175.320 Resinous and polymeric coating for polyolefin films (formerly 9 121.2569); 9 178.170 Component ofpaper and
chloride polymer resins was not limited to situations in which the polymer was used in food-contact articles for alcoholic beverages. By this time, vinyl chloride monomer had been linked to liver cancer in humans. Therefore, in the Federal Register of April 22,1974 (39 FR 14215), FDA proposed to ban vinyl chloride as ah aerosol propellant in drug and cosmetic preparations and also
comments, which are addressed elsewhere in this issue of the Federal Register, and considerable analytical manufacturing and toxicological data
bearing on the reduction in the level of , vinyl chloride monomer in vinyl chloride polymers. These data led FDA to publish this new proposal on vinyl chloride polymers.
Data submitted by industry in
paperboard in contact with aqueous and 'tyfoods (formerly 9 121.2526);
.76.180 Components ofpaper and paperboard in contact with dryfood
requested data Grom industry about the use of vinyl chloride polymers, the residual concentration of vinyl chloride monomer in vinyl chloride polymers,
response to the September 1975 proposal showed that manufacturers had succeeded in reducing the vinyl chloride monomer levels in vinyl chloride
(formerly 9 121.2571); 9177.1010
and the migration of vinyl chloride
polymer resin. Before 1975, residual
Acrylic and modified acrylicplastics,
monomer from vinyl chloride'polymer
vinyl chloride monomer levels of 1,000
semirigid and rigid (formerly
containers.
ppm were common. Since then,
9 1212591); 9 177.1200 Cellophane (formerly 9 1212507); 9 177.1210 Closures with sealing gaskets forfood containers (formerly 9 121.2550);
In the Federal Register of August 26,
1974 (39 FR 30830), the agency issued a final rule that prohibited the use of vinyl chloride as a propellant in aerosol
improved manufacturing procedures have lowered the residual vinyl chloride monomer levels by more than five orders of magnitude.
9 177.1630 Polyethylene phthalate
cosmetic products and that required that
Although methods for reducing vinyl
polymers (formerly 9 121.2524);
a manufacturer obtain an approved new chloride monomer levels have varied
9 177.1850 Textryls (formerly
drug application before using vinyl
from company to company, such
9 1212545); 9 177.1950 Vinyl chloride- chloride as a propellant in aerosol drug methods generally have involved
ethylene copolymers (formerly
products. This action was based on.
application of heat and vacuum during
9 1212609); 9 177.1960 Vinyl chloridehexene-1 copolymers (formerly 9 1212623); 9 177.1970 Vinyl chloride-
evidence that inhalation of high concentrations of vinyl chloride resulted in acute toxicity that was manifested by
processing of the resin. Manufacturers have also taken steps to produce small, porous resin particles, which have
lauryU vinyl either copolymers
an array of symptoms, including
facilitated diffusion of the monomer out
(formerly 9 1212608); 9 177.1980 Vinyl chloride-propylene copolymers
unconsciousness, cardiac effects, bone changes, and degenerative changes in
of the resin. / Substantiation of the reduction in
v \
(formerly 9 121.2521); 9 1772250
the brain, liver, and kidneys.
/ vinyl chloride monomer has been
\
Microporous polymericfilters (formerly
As a result of the many comments that provided by reports of residual vinyl
9 1212631); and 9 179.45 Packaging
the agency received on the April 22,1974 chloride monomer levels of 10 ppb in
j
materials used during the irradiation of proposal, in the Federal Register of
vinyl chloride polymer bottles (The
packagedfoods (formerly 9 1212543).
September 3,1975 (40 FR 40529), FDA
Society^of the Plastics Industry, Inc.,
The .renumbering of these sections occurred as part of a recodification that FDA announced in the Federal Register
proposed further restrictions on the use of vinyl chloride polymers in contact with food.
November 12,1982) and an estimated 100 parts per trillion in can coatings > (Union Carbide Co., December 12,1980).
of March 15,1977 (42 FR14302).
Underthe September 1975 proposal,
The Society of the Plastics Industry, - N
On January 4.1973, representatives of: rigid and semirigid vinyl chloride
Inc. (SPI), in a submission (November
Schenley Distillers met with FDA to -
polymers would have been banned from 12,1982) on behalf of the vinyl chloride
sport the results of analyses that
food-contact use because of possibly
polymer manufacturers, informed the
.towed that alcoholic beverages stored unsafe levels of vinyl chloride monomer
in vinyl chloride polymer bottles for
migration, although continued use of
periods of up to 9 months-had levels of.. -s. vinylxhloride polymer waterpipe would
agency "that with respect to vinyl chloride polymer bottles, the industry 'can provide products with residual -
BFG10844
Federal Register / Vol. 51. No. 22 / Monday, February 3, 1986 / Proposed Rules
4179
monomer levels not exceeding 10 ppb by 4, Oxford Press, London. 1976). The
2.4 ppb. while vinyl chloride monomer
weight." The SPI submission further
differential equations expressing these levels in the extract from the 0.28 ppm
stated "the quantity of vinly chloride
laws contain a variable called
sheet averaged 1.6 ppb (Diachenko, et
available to migrate is so low, and the
diffusivity. The form ofjhe differential
al.. Journal of the Association of Official
rate of migration of vinyl chloride from equations derived from Fick's laws
Analytical Chemists. 60:570-575.1977).
vinyl chloride polymer containers made depends on the boundary conditions,
The Ethyl predicts that there will be
with a residual [vinyl chloride monomer] i.e.. monomer concentration inside and migration, albeit below the limits of
content of 10 ppb or less is so slow that outside the bottle wall, and on the
detection by current analytical
the concentration of vinyl chloride in the/ conditions existing at the time of
techniques, from vinyl chloride polymers
contents even after an exaggerated / initiation of diffusion of vinyl chloride
that contain vinyl chloride monomer at
\
shelf-life exposure at moderately elevated temperatures will not exceed
monomer, such as the intitial residual monomer concentation.
the level of less than one ppm. According to the model, as migrant
the safe (0.073 ppb) level."
When applied to the particular
concentration in a polymer is reduced,
To monitor the level of residual vinyl situation of monomer migration from a
the contribution to diffusion from the
chloride monomer in vinyl chloride
bottle, such as vinyl chloride monomer interaction among migrants also
polymers, the agency has developed a
from a vinyl chloride polymer bottle, the decreases. In the limiting case of a
sensitive gas chromatographic method
diffusion equations derived from Fick's single migrant molecule, the only
titled "Head Space Sampling and Gas- Second Law always predict a finite
interaction that will occur is between
Solid Chromatographic Determination
migration of the monomer based on
the migrating monomer and the polymer.
and Confirmation of >1 ppb Vinyl Chloride Residues in Polyvinyl Chloride Food Packaging" (J.L. Dennison, et al..
initial monomer concentration in the bottle wall, provided diffusivity is not zero. Only if diffusivity is zero would no
Even thou'gh diffusivity will be reduced to a finite constant in this case, it will not become zero. Thus, even when the
Journal of the Association of Official Analytical Chemists. 61:813-819.1978). This analytical method has been tested by FDA and by at least one major manufacturer of vinyl chloride polymers and has been found to yield satisfactory analytical results. However, the method has not been tested with all possible
migration be likely. Based on its review of published
experimental results and of theoretical
calculations based on numberous systems. FDA believes that the diffusivity of vinyl chloride monomer in
vinyl chloride polymer will always be greater than zero, and that migration
polymer contains the monomer at very low levels, the presence of the vinyl chloride monomer in food "* * * can be
predicted on the basis of a meaningful projection from reliable data." See Monsanto Co. v. Kennedy. 613 F.2d 947. 955 (D.C. Cir. 1979).
vinyl chloride-based food-contact
will occur whenever residual vinyl t
Therefore, based on the evidence .
articles. FDA invites comments on-the
chloride monomer ({^present in the
before it, FDA concludes that vinyl
applicability of this analytical method
polymer.
chloride polymer will become a :
and wili'CgnsiderJmy-jcojnments ;
In a series of reports dating from
component of food, and that the extent '
. 'received in developing a final rule.
January 17,1975. Ethyl Coil), proposed
to which this will be the case depends,
I1L The Use of Vinyl Chloride Polymers in Food-Contact Articles Will Result in Their Becoming Components of Food
and utilized a diffusion model that it has derived from Fick's Second Law. This
model can be used to predict monomer levels in various food simulants when
at least in part, on the amount of monomer in the polymer. Given these facts and the fact that vinyl chloride monomer has been shown to be a
Section 201(s) of the act defines a
the initial residual vinyl chloride
carcinogen. FDA has decided to regulate
"food additive" as "any substance the
monomer concentration in the bottle
the use of vinyl chloride polymers under
intended use of which results or may
wall and the diffusivity are known.
the act (21 U.S.C. 348) to ensure that the
reasonably be expected to result,
Ethyl Corp. originally applied this
polymer that is marketed does not
directly or indirectly, in its becoming a diffusion model to extraction data
contain unsafe levels of the monomer.
component or otherwise affecting the characteristics of any food (including any substance intended for use in
derived from bottles containing residual vinyl chloride monomer at levels of from 80 to 330 parts per million (ppm). This
IV. Carcinogenic Impurities Approach to Safety Evaluation
producing, manufacturing, packing,
model accurately predicted the level of A. Applicable Legal Standards
processing, preparing, treating, packaging, transporting, or holding food; and including any source of radiation intended for any such use) * *" (21 U.S.C. 321(s)).
FDA finds that vinyl chloride polymers used in food-contact articles meet this definition. Existing theory, supported with data produced by industy and by FDA laboratories., demonstrates that, under normal conditions of use. vinyl chloride monomer will migrate to food from all types of vinyl chloride polymer food-
monomer that migrated into food
simulating solvents.
FDA also has used sensitive
'
analytical methods to measure the , X'
levels of vinyl chloride monomer in Y
extracts from vinyl chloride polymers,
those methods have shown that,
consistent with Ethyl's model, the levels
of monomer in the extract could be
related to the intitial residual
concentration of the monomer in the
polymer. For example, FDA conducted a
migration study on two lots of
unplasticized polymer sheet One lot
FDA. in its evaluation of the safety of vinyl chloride polymers, reviewed, as it does with all indirect food additives, the safety of both the polymer and its possible impurities (e.g., starting
. materials used to manufacture the. . additive). As stated above, the polymer is likely to contain residual amounts of a carcinogenic compound, vinyl chloride monomer, that is used in the manufacture of the polymer. The level of residual monomer in polymers is an important factor in assessing safety.
contacterticles.
contained 0.44 ppm residual vinyl
Under section 409(c)(3)(A) of the act
The migration of vinyl chloride
chloride monomer and the other 0.28
(21 U.S.C. 348(c)(3)(A)). the so-called
monomer from vinyl chloride polymers ppm. Samples from each lot were
"general safety clause" of the Food
can be described by pick's First and.
extracted with 50 percent ethanol for 19 . Additives Amendment, a food additive
Second Laws of Diffusion, first
days at 49 `C (120 'F). Vinyl chloride
cannot be approved for a particular use
enunciated in 1855 (Crank, J-"The
monomer levels in the extract from the unless the data presented to FDA
- Mathematics of Diffusion," 2d Ed., pp.,2- ^polymer containing 0.44 ppm averaged
establish that the food additive is safe
21155007
BFG10845
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Federal Register / Vol. 51, No. 22 / Monday, February 3, 1988 / Proposed Rules
fv. at use. The concept of safety embodied in this requirement was
explained in the legislative history of the Food Additives Amendment of 1958. "Safely requires proof of a reasonable
certainty that no harm will result from a proposed use of an additive. It does not--and cannot--require proof beyond any possible doubt that no harm will result under any conceivable circumstance." H. Rept. 2284, 85th Cong., 2d Sess. 1 (1958). This definition of safety is incorporated in FDA's food additive regulations [21 CFR 170.3(i)). The Delaney anticancer clause of the Food Additives Amendment of 1958 (section 409(c)(3)(A) of the act (21 U.S.C. 348(c)(3)(A)) provides further that no
food additive can be deemed to be safe if it is found to induce cancer when ingested by man or animal.
In the past. FDA often refused to list a food or color additive that contained or was expected to contain minor amounts of a carcinogenic chemical, even if the additive as a whole had not been shown to cause cancer. As explained below,
however, scientific developments and experience with risk assessment procedures have made it possible for FDA, in appropriate circumstances, to
ove the use of additives that v. ain a carcinogenic chemical.
In the preamble to the final rule permanently listing D&C Green No. 8 published in the Federal Register of April 2,1982 (47 FR 14138), FDA explained the basis for approving the use of a color additive that had not been shown to cause cancer, even though it contains a carcinogenic constituent. Since that decision, FDA has listed, on the same basis, the uses of several color additives that contain carcinogenic impurities, including the use of D&C Green No. 6 for coloring contact lenses (48 FR 13020; March 29,1983) and the use of D&C Green No. 5 (47 FR 24278; June 4,1982) and of D&C Red No. 6 and D&C Red No. 7 (47 FR 57881; December 28,1982) for coloring drugs and cosmetics. (See also the advance notice of proposed rulemaking published in the Federal Register of April 2,1982 (47 FR 14462).)
The appropriateness of FDA's decision to list the uses of these color additives is supported by Scott vrFDA, 728 F.2d 322 (6th Cir. 1984). That case involved a challenge to FDA's decision
to approve the use of D&C Green No. 5,
which contains a carcinogenic chemical but has not itself been shown to cause
;er. Relying heavily on the reasoning .ie agency's decision, the U.S. Court of Appeals for the Sixth Circuit rejected the challenge to FDA's action and affirmed the listing regulation.
The Delaney or anti-cancer clause is not triggered unless the additive as a
whole is found to induce cancer. An additive that has not beeij_shown to . induce cancer but that contains a
carcinogenic impurity is properly evaluated under the general safety clause of the statute, using risk assessment procedures to determine whether there is a reasonable certainty that no harm will result from the
proposed use of the additive. Therefore, because vinyl chloride
polymers, manufactured from the component vinyl chloride monomer, have not been shown to cause cancer, the anticancer clause does not apply. FDA has evaluated the safety of this additive under the general safety clause, using risk assessment procedures to
estimate the upper bound limit of risk presented by the carcinogenic chemical that may be present as an impurity in the additive. This discussion is presented below.
B. Carcinogenicity Data on Vinyl Chloride Monomer
FDA, since the early 1970's, has been monitoring ongoing animal studies that have investigated the toxicity of vinyl chloride monomer. The agency has reviewed four available oral carcinogenicity studies'on vinyl chloride monomer. These four studies are: (1) Cesare Maltoni's vinyl chloride monomer carcinogenicity study (Environmental Health Perspectives, 41:3-29,1981), (2) the chronic oral study performed by Feron et al. {Food and Cosmetic Toxicology, 19:317-333,1981), (3) The British Industrial Biological Research Association (BIBRA), unpublished study (1980) entitled "An Investigation into the Carcinogenic Potential of Vinyl Chloride Monomer when Administered to Rats in the Drinking Water for up to 152 weeks," and (4) CIVO Institute's TNO unpublished study (1983) entitled "Lifespan Oral Carcinogenicity Study of Vinyl Chloride in Rats."
In the Feron et al. study, Wistar rats were fed a diet containing vinyl chloride monomer in vinyl chloride homopolymer powder or were administered vinyl chloride monomer in soybean oil by gavage. The results of this study show that vinyl chloride monomer is a carcinogen in Wistar rats, inducing neoplastic liver cell nodules,
hepatocellular carcinomas, and
angiosarcomas of the liver and the lung. The agency chose this study for computation of the risk for human exposure to vinyl chloride monomer because it was a lifetime (135 to 144 weeks) feeding study, and because the individual animal data were available..
In the Maltoni study vinyl chloride
monomer was administered by various routes (including oral gavage), doses, and schedules of treatment, to animals
of various species, strains, sex, and age. For the oral portion of the study, Sprague-Dawley rats were administered
vinyl chloride monomer in olive oil by gavage for 52 weeks (5 times/week) and kept until spontaneous death (138 weeks). The report contains few details on the experimental design. However, the results of the oral portion of this study suggest that vinyl chloride monomer is an animal carcinogen. The results have not been used for the agency's risk assessment because the treatment lasted only 52 weeks. The data from this experiment were also presented by Maltoni at `The Conference to.Re-evaluate the Toxicology of Vinyl Chloride Monomer, Polyvinyl Chloride and Structural Analogues" held at the National Institutes of Health, Bethesda, MD, March 20 and 21,1980, and were published in Environmental Health Perspectives, 41:3-29,1981.
In the BIBRA study, Wistar rats were administered vinyl chloride monomer as solutions in the drinking water for up to 152 weeks. The results show that vinyl chloride monomer is carcinogenic to Wistar rats, inducing predominantly hepatic hemangiosarcomas.
The latest CIVO Institutes TNO study (1983) is actually a repeated study of Feron et al. (1981), but at lower test levels of vinyl chloride monomer. The earlier study (Feron et al., 1981) had shown that liver neoplasia were found to occur at all dose levels. Therefore, in order to provide ideal experimental data for risk extrapolation, a similar life-span oral carcinogenicity study with vinyl chloride monomer in Wistar rats was
carried out at lower dose levels at the same laboratory. The results of this study essentially confirmed the results observed in the earlier study in that vinyl chloride monomer, at the lower doses, induced only hepatocellular tumors (neoplastic nodules and hepatocellular carcinomas).
Upon reviewing the results of these studies, the agency concluded that vinyl chloride monomer is an animal liver carcinogen via the oral route of exposure.'
An extensive review of the .
toxicological effects of vinyl chloride monomer has also been presented in International Agency for Research on Cancer (IARC) monograph No. 19 (published February 1979), which was prepared by an IARC evaluation group that met in February 1978. The evaluation group concluded that vinyl
BFG10846
Federal Register / Vol. 51, No. 22 / Monday, February 3, 1986 / Proposed Rules
4181
chloride monomer is a carcinogen in
animals (both via inhalation and oral routes) and in humans (inhalation), it found that vinyl chloride monomer is
carcinogenic by the inhalation route to mice, rats, rabbits, hamsters, and humans. The evaluation group also
found that the monomer produces tumors at multiple sites but is most
active in induction of the otherwise rare
hepatic angiosarcomas. IARC summarized the data on vinyl
chloride monomer as follows (1ARC
Monographs, Supplement 1, p. 45,1979);
A. Evidence for Carrirrogenirity to Humans
(Sufficient)
Vinyl chloride causes angiosarcomas of the lirer it has also been associated with tumors of the brain and lung and of the haematopoietic and lymphatic systems in humans. Reports of increased incidence of tumors of the digestive system, urinary tract, and breast (in women) are inadequate to evaluate the carcinogenicity of vinyl chloride for these sites.
B. Evidence of Carcmogenhaty to Aanaab (Sufficient)
Vinyl chloride is carcinogenic to mice, rats, and hamsters after its administration orally or by inhalation, producing tumors at several sites, including angiosarcomas of the liver.
C. Evidence for Activity in Short Term Tests (Sufficient)
Vinyl chloride induces DNA damage in prokaryotes and.in mammalian cells ia vitro. It was mutagenic to Salmonella typhimuriam in the absence of an exogenous metabolic activation system and to Escherichia coil Schizosaccharamyces pombe and Saccharomyces cerevisiae but not to Nevrospora crassa. !t was mutagenic to Drosophila mekmogaster. inducting sexlinked recessive lethal mutations and to hamster cells in vitro. It induced chromosomal aberrations and sister chromatid exchanges in Chinese hamsters exposed ia viva. It did not induce dominant lethal or somatic mutations in mice. Vinyl chloride alkylated the liver DNA of rats treated in vivo. Chromosomal aberrations and sister chromatid exchanges were induced in workers exposed to vinyl chloride. Most such data were obtained when exposure was to levels of 25 ppm. in follow-up studies, in which workers were exposed to levels that had been reduced to 15 ppm or lower, no aberrations or sister chromatid exchanges were reported. Sister chromatid exchange incidence dropped to a normal level shortly after termination of exposure to higher levels. However, the incidence of chromosomal aberrations returned to normal only after two years. (Thus, although sister chromatid exchanges were not observed in some studies, sampling may have occurred after the level returned to nomaLj
Hie 1979 monograph concluded that, while vinyl chloride monomer is an
established animal carcinogen via both inhalation and oral ingestion, its
carcinogenic activity in hnmans has so
far been demonstrated only in workers liters (letter dated August 17.19B3, from
who were.involved in the production,
The Society of the Plastics Industry,
polymerization, and processing
Inc.). If the vinyl chloride monomer
industries and who wgjp exposed to
residual level is 10 ppb, the proposed
high environmental concentrations of
limitation in 177.1975, and if 100
vinyl chloride monomer vapor. Based on percent migration occurs, the predicted
its own review of*the data, FDA concurs vinyl chloride monomer level m the
with this conclusion.
beverage would be 0.65 ppb. The
C. Risk Assessment
resulting vinyl chloride monomer levels in the liquor would be below the
In assessing the risk presented by
detection limits of current analytical
vinyl chloride monomer from the use of vinyl chloride polymers, the agency has used risk assessment procedures that are similar to those that it used in evaluating the risk from the minor carcinogenic impurities that may be present in thecolor additives that FDA discussed above.
The risk evaluation of the carcinogenic constituent has two aspects: (1) Assessment of the probable exposure to the constituent (vinyl chloride monomer) from all the regulated and prior-sanctioned uses of
vinyl chloride polymers, and (2) extrapolation of the risk observed in the animal bioassays to the conditions of
probable exposure to humans.
methods.
The actual migration expected over
the shelf life of liquor is likely to be lower based on experimental migration levels from containers having higher residual monomer levels. For example, when bottles containing 0.9 ppm residual vinyl chloride monomeT were extracted with 50 percent ethanol for 9 months at 72* F, no vinyl chloride monomer could be detected in the solvent at a level of detection of 10 ppb (Ethyl Coip., report dated September 27,
1976). Therefore, if it is bssumed that migration occurs at the level of detection, 5.5 percent of the residual
vinyl chloride monomer migrated. Because diffusivity has been shown by
1. Exposure
\
Ethyl's work to decrease as the residual
The agency has calculated an estimated daily intake for vinyl chloride monomer from known current uses of vinyl chloride polymers as potential well
aradditionaluses takingmtoaccbiiml the fraction of the daily diet that might be packaged'in materials made of vinyl
vinyl chloride monomer is reduced, the percent migration must also decrease. Therefore, 5.5 percent migration of re'siduaTvmyl chloride manomerfrom
bottles containing 10 ppb vinyl chloride ) monomer is an upper limit. If 5.5 percent of tfie available vinyl chloride monomer
chloride polymers. Vinyl chloride monomer exposure may be estimated
migrates from a 1.75-liter bottle having 10 ppb residual vinyl chloride monomer,
using known vinyl chloride monomer
the predicted level of vinyl chloride
residuals in the vinyl chloride homopolymer ot copolymer and
y monomer in the packaged food would be \ft036ppb.
survey data for current production levels
According to available statistics
for these polymers.
("Public Revenues from Alcoholic
The estimated daily intake
Beverages," p. 26,1980/1981, Economics
calculations for vinyl chloride polymers and Statistics Division, Distilled Spirits
are as follows;
Council of the United States, Inc.), per
t. Liquor bottles. Because this use of capita liquor consumption in 1980 was
vinyl-chloride polymers is not permitted 1.98 gallons or about 19 grams peT day.
by current regulations or by a prior
The average vinyl chloride monomer
sanction, there are no available
ingested per person per day from this
marketing data from which die agency
use would be about 0.68 nanogram per
might estimate potential vinyl chloride
day if vinyl chloride monomer migration
monomer exposure from vinyl chloride is 0.036 ppb.
polymer liquor bottles. There are several Exposure may also be estimated using
ways of estimating exposure to vinyl
the U.S. Department of Agriculture
chloride monomer from use of these
(USDA) Nationwide Food Consumption
liquor bottles, each using the conservative assumption that all liquor
Survey, 1977-1978. Of the 37,874 individuals surveyed, those who
will be packaged in these bottles. In
consumed liquor at least once during the
reality, vinyl chloride polymers will
3-day study period consumed an
compete with other materials such as
average of 48 grams per day. The 90th
polyethylene terephthalate end glass, which are currently used for packaging liquor..
percentile intake for users was 98 grams per day. If this latter value is used, vinyl chloride monomer exposure becomes 3.5
A typical vinyl chloride ploymer \ nanograms per day. This number is
liquor bottle will weigh approximately
conservative because users who
105 grams and have a capacity of 1.75
consume liquor less frequently than
BFG10847
41G2
Federal Register / Vol. 51, No. 22 / Monday, February 3, 1986 / Proposed Rules
e in 3 days were not included in the by The Society of the Plastics Industry, of the total daily diet is packaged in
ley. The 1977-1978 Market Research Inc., a typical oil bottle contains 38
vinvlidene chloride-vinyl chloride
Corp. of America (MRCA) survey of
ounces of oil and weighs 70 grams.
copolymers. Using the maximum value
food consumed over a 14-day period
Assuming a migration rate for oil that is of 2.8 percent, the migration level of 0.14
reports an upper 90th percentile level of identical to that for 50 percent alcohol, ppb, and a total dietary intake of 3,000
only 28 grams per day for brandy,
the estimated 90th percentile user intake grams per day, FDA calculates exposure
whiskey, rum, and vodka.
. is 2.5 nanograms per day.
to vinyl chloride monomer from this use
2. Wine bottles. According to the
4. Vinyl chloride homopolymer film. to be 12 nanograms per-day.
Distilled Spirits Council of the United
Vinyl chloride monomer levels in
(ii) Vinyl chloride-vinylidene
States. Inc.. 1980 consumption of wine
plasticized vinyl chloride homopolymer copolymer coatings on fresh citrus fruit.
was approximately the same as that of film are lower than those found in rigid Based on information from a major
liquor. However, the 90th percentile
vinyl chloride polymer. An upper limit of producer of vinyl chloride-vinylidene
users' intake reported by USDA is 232
exposure to vinyl chloride monomer
chloride copolymer (memorandum of
grams per day (USDA Nationwide Food from the Him can be obtained by
telephone conversation, M. Flood, FDA,
Consumption Survey. 1977-1978). If aU assuming that all of the vinyl chloride
and J. Cobler. Dow Chemical Co.,
this wine contained vinyl chloride
monomer in the film migrates into food. September 30 and October 3,1983), FDA
monomer at a level of 0.036 ppb (based /For example, a film with a thickness of 1 has determined that this copolymer is no
on the Ethyl Corp. 50 percent ethanol / mil (0.0025 centimeter), a density of 1.20 ^Monger used as a coating on fresh citrus
extraction experiments referred to
grams per cubic centimeter, and a vinyl ^ fruit. Therefore, the agency is proposing
above), ingestion of vinyl chloride
chloride monomer residual of5 ppb r to revoke the regulation permitting this
monomer would be 8.4 nanograms per-^ would yield a maximum level in food of / use and is not including any
day. This number is even more
\ 0.010 ppb, if 1 square inch of film
J contribution of vinyl chloride monomer
conservative than that calculated for Contacts 10 grams of food--FDA's usual from this use in its calculation of the
liquor because water does not extract
assumption; Analyses of plasticized film estimated daily intake.
vinyl chloride monomer as well as
for vinyl chloride monomer have<-
6. Other uses. FDA has only included
alcohol and migration into a beverage generally shown residual vinyl chloride the primary probable contributors in
containing 14 percent or less alcohol
monomer levels of less than 5 ppb
estimating the daily intake of vinyl
should be lower than migration into
(Dennison, et e\,, Journal of the
chloride monomer. It has not included
beverages containing 50 percent alcohoL- Association of OfficialAnalytical
other food-contact uses of vinyl chloride
Furthermore, as with liquor, the
Chemists. 61:4:813-819.1978). The
homopolymers and copolymers because
assumption that all wine will be
assumption of 100 percent migration is
they contribute such a small amount of
packaged in vinyl chloride polymer
likely to be an exaggeration even for use vinyl chloride monomer to the diet that,
'ties is highly conservative. (The
with fatty foods such as meat and
in view of the conservatisms used in
responding MRCA 14-day survey,
poultry, which would extract vinyl
estimating exposure from the primary
gives a level of 78 grams per day for the 1 chloride monomer to a greater extent
contributors, they can be disregarded.
90th percentile user.)
than other nonalcoholic foods.
An example of these uses includes vinyl
X Oil bottles. There are vinyl chloride' Currently, food packaged in
chloride copolymers used as coatings,
polymer vegetable oil bottles on the
plasticized film is estimated to be about where heat treatment of the coating
market and. although the number of
5 percent of the diet. Industry
after application would reduce vinyl
these bottles is small, there are
projections indicate that this percentage choride monomer in the coating to levels
indications that the number will
may rise to about 7.5 percent in 5 years. not measurable by current analytical
increase. In contrast to the consumption FDA used the latter value in computing technology. Additionally, uses of vinyl
pattern for liquor and wine, fats and oils its estimates.
chloride in articles such as water pipe or
are consumed by almost the entire
Considering migration, fraction of the filters can be disregarded. These articles
population. In 1978, salad and cooking
diet-packaged in film (7.5 percent), and a have a long service life, come into
oil consumption (including oils used in total dietary intake of 3,000 grams per .. contact with extremely large amounts of
commercial salad dressings) averaged
day, FDA estimates exposure to vinyl
water and other food, and will contain
22M pounds per person per year ("Fats- : chloride monomer from the use of vinyl- small amounts of vinyl chloride
and.Oils Situation," USDA. May 1980) or chloride homopolymer film to be 2.2
monomer. Therefore, FDA believes that
28 grams per day per capita. For food. nanograms per day ("Guidelines for
these uses will not contribute any
items with broad consumption patterns, Estimating Exposure to Indirect Food
measurable amounts of vinyl chloride
the 90th percentile users' intake is
Additives," FDA, June 1981).
monomer when used in accordance with
generally about two times the per capita
5. Vinyl chloride-vinylidene chloride the proposed regulations. -
intake and yields an estimated 58 grams . copolymers--(i) Films. Although the use
To obtain an estimate of the upper
per .day for 90th percentile users of salad of this type of film with food is more
limit vinyl chloride monomer exposure
and cooking oil. (The MRCA 90th
limited than the use of vinyl chloride
from all food-contact uses of vinyl
percentile level for retail salad and
homopolymer films, residual vinyl
x chloride polymers, FDA has summed the
cooking oils is a much lower 5.2 grams
chloride monomer jevels are higher than upper limit exposures from each of the
per day.)
those encountered in vinyl chloride
primary contributors to the exposure.
Experimental results demonstrate that homopolymer films. If the vinyl chloride \ FDA considers it unlikely that a high
the migration rate of vinyl chloride
monomer residual is 50 ppb, a level th?f- user of vinyl chloride polymer food-
monomer,from a rigid vinyl chloride .
FDA believes is the lowest level ^ ` contact products would be exposed at :
polymer bottle into, a vegetable oil
achievable with current technology, a'
maximum levels of vinyl chloride
approximates the migration rate into 50 ' calculation similar to that for,
- monomer from each use. Because it is --
-cent alcohol. (See, e.g., extraction homopolymer film yields a level of 0.14 most unlikely that a 90th percentile wine
ults reported by Ethyl Corp. in the. '. ppb-in food from 10O^ercent migration. consumer is also a 90th percentile liquor
April 1975 issue of "Modern
Information submitted-by industry:
consumer, particularly on a lifetime -
Packaging.") From Information supplied indicates that 1.5 percent to 2.8 percent ; basis, these two exposure estimates are
BFG10848
Federal Register / Vol. 51, No. 22 / Monday, February 3, 1986 / Proposed Rules
4183
not added together, instead, FDA is
sanctions discovered since publication V. Proposed Regulations
using the higher value for wine in the vinyl chloride monomer cumulative calculation. FDA conservatively
of that proposal. As discussed above, the use of a
substance is excluded from the
A. Currently Regulated Polymers In order to provide for the safe use of
estimates that the lifetime-averaged individual exposure to vinyl chloride monomer from the probable food-
definition of "food additive" m section
201{s) of the act if that use is in accordance with a "sanction or approval
vinyl chloride polymers currently
regulated under Title 21 of the Code of Federal Regulations, FDA is proposing
contacl use of vinyl chloride polymer* will not exceedj^jonograms per day.
granted prior to the enactment of the Food Additives Amendment Section
the following: 1. In 5 172.210 Coatings cm fresh citrus
2. Extrapolation of Risk
181.5 of FDA's regulations (21 CFR 181-5)
provides that a prior sanction exists
The agency used a quantitative risk
only for specific uses of a substance; be
assessment procedure (linear
at the levels required for the technical
proportional model) to extrapolate from effects and in the food categories for
the dose in the animal experiment to the which there is explicit approval As a
very low doses of possible human exposure. This procedure is not likely to underestimate the actual risk from very
low doses. In fact, the estimate of the risk is most likely exaggerated because the extrapolation models used are designed to estimate the maximum possible risk consistent with the data. For this reason, the estimate can be used with confidence to determine to a reasonable certainty whether any harm
will result from the use of vinyl chloride polymers,
FDA has used data from a carcinogenicity bioassay in which vinyl chloride monomer was administered in the diet of rats to estimate the upper
result, some uses of a substance may be food additive uses while other uses may be prior sanctioned. Indeed. FDA regulations list uses of a number of
substances, including vinyl chloride polymers, in each category.
The 1975 proposal listed several priorsanctioned uses of vinyl chloride polymers and requested that firms holding other valid prior sanctions for these polymers forward them to FDA for inclusion in the final regulation. There were no submissions in response to that - request
Subsequently. FDA reviewed its files on all firms that were known to be
level of human risk from exposure to
manufacturing vinyl chloride polymers
this impurity from the proposed use of
for use in food-contact articles before
vinyl chloride polymers (Feron et al.
the effective date of the Food Additives
study and memorandum dated May 27, Amendment.to the acL This review
1984, from Cancer Assessment
revealed the following additional prior
Committee to V. Anand. FDA).
sanctions:
f FDA has calculated that the
"\ 1. Letter to Firestone Plastics Co.,
1 individual lifetime risk of cancer from / Poitstown. PA, dated April 20,1951,
exposure to vinyl chloride monomer at S permitting the use of vinyl chloride
[^25 nanograms per day fa 1pm than.1 in If)] resins as films for food packaging.
million. Because of numerous
2. Letter to Firestone Plastics Co-
conservatisms in the exposure estimate, Pottstown, PA, dated October 5.1956.
lifetime-averaged individual exposure is Permitting the use of rigid polyvinyl
expected to be substantially less than 25 chloride (homopolymer) sheet for
nanograms per day. Thus, the agency
packaging poultry.
concludes that there is a reasonable
3. Letter to Firestone Plastics Co-
certainty of no harm from the exposure Pottstown, PA dated February ZL. 1957.
to vinyl chloride monomer that may
permitting the use of vinyl chloride and
result from the use of vinyl chloride
vinyl chloride-acetate resins for "food
polymers in food packaging complying wrapping purposes.*'
with the vinyl chloride monomer
4. Letter to Borden Co- Santa
limitations set forth in this document.
Barabara. CA dated August 15,1957.
These limitations on residual vinyl
Permitting the use of vinyl chloride
chloride monomer ate necessary to
polymers as tubing for food-contact use.
ensure that the present and future
FDA is proposing to establish $ 181.37
exposure to vinyl chloride monomer In to cover those uses of these vinyl
the daily diet remains within the limits chloride polymers for which
used to conclude that vinyl chloride
documentation of the prior sanctions is
polymers may be used safely.
available. FDA's review of its files for
V. Prior sanctions
all known pre-1958 manufacturers failed to locate any documentation of a prior
fruit, FDA is proposing to delete the use of vinyl chloride-vinylidene chloride copolymer, and the adjuvants used in its production, as components of coatings on fresh citrus fruit The only known manufacturer of this copolymer reported to FDA that the material has not been used to coat fresh citrus fruit For many years, and that there are no plan* to market the product for this use in the
future. Deletion of the additive vinyl chloride-vinylidene chloride copolymer in this regulatoin will also result in the
deletion of polyethylene glycol, polyvinyl-pyrrolidone. potassium persulfate, propylene glycol alginate, and sodium decylbenzene sulfonate from S 172.210. because Che only use of these adjuvants permitted by this regulation is in vinyl chloride-vinylidene chloride coplymere. The deletion of these adjuvants has no effect on their status in other food additive regulations.
2. In 175.105 Adhesives, FDA is proposing to establish a limit on residual vinyl chloride monomer of 5 ppb by weight of the vinyl chloride homo- or copolymer component of the adhesive. 3. In 175300 Resinous andpolymeric coatings, for the vinyl chloride homo- or copolymer component of the coatings. FDA is proposing to establish a limit on residual vinyl chloride monomer of 5 ppb by weight.
4.1175,320 Resinous andpolymeric coatings forpolyolefin films. FDA is proposing to establish a limit on residual vinyl chloride monomer of S ppb by weight of the vinyl chloride copolymer component of the olefin polymer coating.
5. 178.170 Components ofpaper and paperboard in contact with aqueous and fattyfoods. FDA is proposing to establish a limit on residual vinyl chloride monomer of5 ppb by weight of the listed vinyl chloride copolymer components of the paper and paperboard.
8. In 5 176.180 Components ofpaper and paperboard in contact with dry foods, FDA Is proposing to establish a limit on residual vinyl chloride monomer
The agency is proposing to establish a sanction for a rigid or semirigid vinyl
of 5 ppb by weight of the vinyl chloride
listing of all known prior sanctions for
chloride polymer bottle. The only
homo- of copolymer component
the use of vinyl chloride polymers in
documented prior sanctions for rigid )C 7. In 5 177.1010.Acrylic and modified
packaging materials. These prior
vinyl chloride polymer that the agency acrylic plastics, semirigid and rigid,
sanctions include those listed in the 1975 found were for waterpipe and poultry
FDA i< proposing to establish a limit on
proposal, as well as additional prior
packaging trays.
residue! vinyl chloride monomer of 5
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Federal Register / Vol. 51, No. 22 / Monday, February 3, 1986 / Proposed Rules
b by weight of the vinyl chloride
provides for the use of those vinyl
copolymers as a component of coatings
jolymer component.
chloride polymers that are not covered of fresh citrus fruit.
8. In 5 177.1200 Cellophane, FDA is
by a valid prior sanction or by existing
Following publication of the 1975 ~
proposing to establish a limit on residual regulations.
proposal, the Environmental Protection
vinyl chloride monomer of 5 ppb by
This regulation proposes various
Agency (EPA), under authority of the
weight of the vinyl chloride homo- or ' specifications, including^ residual vinyl 1974 Safe Drinking Water Act. executed
copolymer components.
chloride monomer limit of 10 ppb by
a memorandum of understanding (MOU)
9. In 1177.1210Closures with sealing weight of the vinyl chloride polymer.
with FDA (see 44 FR 42775; July 20,
gaskets for food containers, FDA is proposing to establish a limit on residual vinyl chloride monomer of 5 ppb by
weight of the vinyl chloride copolymer component.
10. In 177.1630 Polyethylene phthalate polymers, FDA is proposing to establish a limit on residual vinyl chloride monomer of 5 ppb by weight of the vinyl chloride copolymer component
11. In 177.1850 Textryls, FDA is proposing to establish a limit on residual vinyl chloride monomer of 5 ppb by weight of the vinyl chloride copolymer component
12. In 177.1950 Vinyl chlorideethylene copolymers, FDA is proposing to establish a limit on residual vinyl chloride monomer of 10 ppb by weight of the vinyl chloride copolymer component.
13. In 177.1960 Vinyl chloride- . hexene-1 copolymers, FDA is proposing to establish a limit on residual vinyl
chloride monomer of 10 ppb by weight the vinyl chloride copolymer .
.omponent 14. In 177.1970 Vinyl chloride-lauryl
vinyl ether copolymers, FDA is proposing to establish a limit on residual vinyl chloride monomer of 10 ppb by
weight of the vinyl chloride copolymer component
15. In 177.1980 Vinyl chloridepropylene copolymers, FDA is proposing to establish a limit on residual vinyl
chloride monomer of 10 ppb by weight of the vinyl chloride copolymer component
C. Prior-sanctioned Polymers
FDA is proposing new 181.37 Vinyl chloride homo- and copolymer resins, which sets forth all known prior sanctions for vinyl chloride homo- and copolymers and sets forth limits on residual vinyl chloride monomer in these polymers based on what FDA has determined the manufactuers are capable of achieving. The specific ; proposed limits, expressed by weight of the vinyl chloride homo- or copolymer component, are as follows:
1. In vinyl chloride homo- or copolymer films and coatings, except as noted below, FDA proposes to limit residual vinyl chloride monomer to 5 ppb by weight of the vinyl chloride homo- or copolymer component.
2. In vinyl chloride-vmylidene chloride films, FDA proposes to limit residual vinyl chloride monomer to 50 ppb by weight of the vinyl chloride copolymer ; component.
3. In vinyl chloride polymer waterpipe, FDA proposes to limit residual vinyl chloride' monomer to 50 ppb by weight of the vinyl chloride homopolymer component.
4. In plasticized vinyl chloride for use as flexible tubing and as gaskets and bottle or jar liners, FDA proposes to . limit residual vinyl chloride monomer to 5 ppb by weight of the vinyl chloride polymer components.
5. For rigid vinyl chloride polymer sheet, FDA proposes to limit residual vinyl chloride monomer to 10 ppb by
1979). That MOU established an
agreement between EPA and FDA with
regard to the control of direct and
indirect additives in drinking water.
According to that MOU, FDA has the
regulatory responsibility with respect to
water, and substances in water, used in
food and food processing, as well as
regulatory responsibility for bottled
drinking water under the act. The MOU
also gives primary regulatory
responsibility to EPA for direct and
indirect additives in municipal drinking
water under the Safe Drinking Water
Act. the Toxic Substances Control Act*
and the Federal. Insecticide. Fungicide
and Rodenticide Act. Therefore. FDA
has deferred to EPA to prescribe
conditions for the safe use of vinyl
chloride polymer pipe in municipal .
water systems.
~
The agency has carefully considered
the potential envoronmental effects of.
this action and has concluded that the
. action will not have a significant impact
on the human environment and that an
environmental impact statement is not
required. The agency's finding of no
significant impact and the evidence
supporting that finding, contained in an
environmental assessment, may be seen
in the Dockets Management Branch
(address above) between 9 a.m. and 4
p.m., Monday through Friday. This
action was considered under FDA's final
rule implementing the National
Environmental Policy Act (21 CFR Part
25) that was published in the Federal
16. In 177.2250 Filters, microporous weight of the vinyl chloride polymer
Register of April 26.1985 (50 FR 16636, .
polymeric, FDA is proposing to establish component.
effective July 25,1985). .
a limit on residual vinyl chloride monomer of 50 ppb by weight of the
VI. Conclusions
FDA welcomes the submission of any data bearing on the issues and
vinyl chloride homo- or copolymer
Based on available toxicity data, the conclusions contained in the finding of
component -
i agency's exposure calculations, and its
no significant impact and the
17. In 179.45 Packaging materials for estimates of the risk from the
environmental assessment. FDA would
use during the irradiation of
carcinogenic constituent, vinyl chloride particularly like any additional
prepackagedfoods, FDA is proposing to monomer, in the polymer when the .
information on the environmental fate
establish a limit on residual vinyl
polymer complies with the
(eg~per5isTencg)"oF3I(2-ethylhexyl) .
chloride monomer of 5 ppb by weight of specifications that the agency is-
phthalate, di(2-ethylhexyl) adipate, and
the vinyl chloride copolymer component. proposing, FDA tentatively concludes
expoxidized soybean oil in terrestrial ...
B. Polymers Not Previously Regulated
that the use of vinyl chloride polymers . arid benthic environments, and any as food-contact materials, as described additional information on the effects .
In Part 177, FDA is also proposing to above Is safe. The agency is, therefore, (acute, subacute, and chronic) of these
establish new. 177.1975 Vinylchloride proposing to amend the food additive
chemicals on representative organisms
polymer resins, rigid and semirigid, to. regulations and to adopt new
from those environriients. FDA would . /
provide for the safe use of rigid and
regulations to provide for the safe use of also like.additional information on "' /
emirigid vinyl chloride.polymers that
vinyl chloride polymers. The agency is whether vinyl chloride polymers
>j
ave beenmarketed based on the belief . also proposing to delete from the current contribute to the emission of .
/
that they are covered for food use by a food additive regula lions the use of
' polychlorinated dibenzo^j-dioxins and
valid prior sanction: This regulation.'
vinyl chloride-vinylidene chloride
; polychlorinated dibenzoftwans from
BFG10850
Federal Register / Vol. 51, No. 22 / Monday, February 3, . 1906 / Proposed Rules
4185
municipal solid waste incinerators. FDA 21 CFR Part 176
Substances
Limitations
wi! 1 reexamine its conclusionsJLnew
informatfonFiecomes available suggesting that this action will have significant environmental impact.
Food additives, Food packaging. 21 CFR Part 177 --
Polymers. Homopoiymera
tod copolymers
The agency has prepared an
Food additives. Food packaging.
Of the tollowing monomers:
assessment concerning the economic impact of the proposed rule. The cost
expected to arise from any final rule based on this proposed rule is the cost of reducing residual vinyl chloride
21 CFR Part 179
Food additives. Food packaging. Radiation protection.
Vinyl chloride___ Residual vinyl chloride monomer content
determined in the finished adhesives. using the method tfescnbed in 9 177.1975(c) of this chapter, shafl not exceed S parts per brition by weight of the vmyj chloride homo-^jy .CPtfQfrgtflr
monomer to acceptable levels in foodcontact articles containing vinyl
21 CFR Partial
component
~
r't /. ?-_______ ___
chloride. FDA has found that since 1975- . Food ingredients. Food packaging.
e ':* * * *
most vinyl chloride polymer resin
manufacturers and manufacturers of food-contact articles containing vinyl
chloride have made the changes in their manfuacturing processes that are necessary to produce vinyl chloride polymers that comply with this regulation. Therefore, this regulation should not produce any new................
developmental costs for manufacturers. The agency notes, however, that the improved methods of manufacturing vinyl chloride polymers are more expensive than those that were in use
Therefore, under the Federal Food, Drug, and Cosmetic Act and under authority delegated to the Commissioner' of Food arid Drugs, it is proposed that . Parts 172,175,176,177,179, and 181 be amended as follows: .
PART 172--FOOD ADDITIVES PERMITTED FOR DIRECT ADDITION TO FOOD FOR HUMAN CONSUMPTION
1. The authority citation for 21 CFR Part 172 continues to read as follows:
5. In 175.300 by adding new paragraph (i) to read as follows:
175.300 Resinous and polymeric coatings.
a*
.
(i) Residual vinyl chloride monomer content determined in the finished
coatings, using the method described in 8 177.1975(c) of this chapter, shall not exceed 5 parts per billion bv weight of
the vinyl chloride home- or copolymer component!
before 1975. The agency estimates that , these new methods cost about $2.9
million more annually than their predecessors.
Authority: Secs. 201(s). 409, 72 stat. 17841788 as amended (21 U.S.C. 321(a). 348); 21 CFR 5.10.
FDA, in accordance with the '
. 2. In $ 172.210 by removing and ;
Regulatory Flexibility Act. has
; reserving paragraph (b)(3) and by
considered the effect that this proposal revising the introductory text of -
would have on small entities including paragraph (b)(4) to read as follows:'
6. In 175.320 by redesignating
paragraph (c) as paragraph (c)(1) and by
adding new paragraph (c)(2) to read as
follows:
-
175.320 Resinous and polymeric ; coastings for polyolefin films
. * * *
small businesses and certifies in accordance with section 605(b) of the Regulatory Flexibility Act that no
- $ 17Z210 Coatings on fresh citrus fruit **.* *'** *
significant economic impact on a substantial number of small entities will result from this action. A copy of the assessment supporting these
determinations may be seen in the Dockets Management Branch (address above).
(b)* *"* , (3) [Reserved]
(4) In lieu of the components listed in paragraph (b)(2) of this section, the . following rosin derivatives and either or both of the listed adjuvants:
Interested persons may. on or before April 4,1986, submit to the Dockets
(2) For coatings formulated with a vinyl chloride homo- or copolymer listed in paragraph (b)(3) of this section, residual vinyl chloride monomer content, determined in the finished matings, using the method described in
8 177.1975(c) of this chapter, shall not exceed 5 parts per billion by weight of the vinyl chlpride.copolymer cempgaent.
J A.
f
Management Branch (address above) written comments regarding this proposal. Two copies of any comments ' are to be submitted, except that t
PART 175--INDIRECT FOOD ADDITIVES: ADHESIVES AND COMPONENTS OF COATINGS
PART 176--INDIRECT FOOD : ADDITIVES: PAPER AND
PAPERBOARD COMPONENTS
individuals may submit one copy. :
. 3. The authority citation for 21 CFR
Comments are to be identified with the docket number found in brackets in the
-
Part 175 continues to read as follows:
-7.The-authority-citation for 21 GFR......... - Part 176 continues to read as follows:
heading of this document. Received comments may be seen in the office above between 9 a.m. and 4 p.m.,' Monday through Friday.' .
List of Subjects
Authority: Secs. 201(s), 409,72 Stat 1784-
1788 as amended (21 U.S.C. 321(s), 348): 21
CFR 5.10.
'.
4. In 8 175.105 (c) (5) by revising the item "Vinyl chloride" to read as follows:
Authority: Secs. 201(s), 409. 72 Stat. 1784-
1788 as amended (21 U.S.C. 321(s), 348); 21 '
CFR 5,10.
'- - 1 ; " "
\2 >V .
8. In 8 176.170(b)(2) in the table by adding limitations to the items "vinyl \ p/0
21 CFR Part 172
Food additive.s. ..
21 CFR Part 175
;
;
5 175.105
Adhesives.''' -
chloride copolymers,'' "Vinyl chloride- '/
vinyl acetate hydroxyl-modified
'
copolymers," "Vinyl chlbride-vinylfw ,;
acetate hydroxyl-modified copolymers. }=*
reacted with trimellitic anhydride." and
Adhesives, Food additives, Food .. packaging. . . v :. ...
"Vinylidene chloride copolymers" to r
>read a#follows:-
....
BFG10851
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4186
Federal Register / Vol. 51, No. 22 / Monday, February 3, 1986 / Proposed Rules
76.170 Components of paper and ^perboard In contact with aqueous and fatty foods. *****
(b) * * ` (2) * * * ,
Usi ol substances
Limitations
Vinyl chloride copolymers
Vinyl chloridevmyl acetate hydroxylmodified copolymers.
Vmyl chloridevinyl acetate hydroxyimodffied copolymers racted with trimeftitic anhydride.
Vnybdene . chloride copolymers
For paper or paperboard in. the finishedform in which it is to contact food, residual vinyl chloride monomer, de termined by the method described in
177.1975(c) ol this chapter, shall not
exceed S parts per Mbon by weight ol the vinyl chloride copolymer compo-am
Do.
Do.
ft .
9. In 9 176.180(b)(2) by revising the item "Vinyl chloride" to read as follows:
9 176.180 Components of paper and paperboard In contact with dry foods. '
ft ft _ ft
(b) * * * (2) * *
a -
List o< substances
Urntebom
Polymers:' Hompoiymert and copolymers of the tolowing
monomers.
Vmyl chloride.____ . For paper or paperboard in the finished term in which it is to contact food, residual vinyl chloride monomer, de termined by the method described in 1177.1975(c) of this chapter, shel no! exceed 5 parts per Mtion by weight of the vinyl chtorittohomo- or copolymer
* $ -
* * ft ft ` *
PART 177--INDIRECT FOOD , ADDITIVES: POLYMERS
10. -The authority citation for 21 CFR Part 177 continues to read as follows:
Authority: Secs. 201(s). 409. 72 Slat. 1784- '
1788 as amended (21 U.S.G. 321(a), 348): 21,
GFR5.10.
_.
11. In 9 177.1010 by revising the
introductory tests of paragraph (a) (2). and (4) to read as-follows: -
177.1010 Acrylic and modified acrylic plastics, semirigid and rigid.
****
(a)* * *
(2) Copolymers produced by
copolymerization of one or more of the monomers listed in paragraph (a)(1) of this section with one or more of ihe
following monomers, provided that for any articles that contain a vinyl chloride
polymer, residual vinyl chloride
monomer, tbe be determined in the finished form in which the articles are to
contact food, using the method described in 177.1975(c), shall not exceed 5 parts per billion by weight-ofthe-vinyVehloride-copolymer^omponenU.
ft* ' ft '
ft ft
(4) Polymers identified in paragraph
(a) (1), (2), and (3] of this section are mixed together and/or with the following polymers, provided that no
chemical reactions, other than addition reactions, occur when they are mixed: provided further that for any polymers that include a vinyl chloride homo* or copolymer, residual vinyl chloride monomer, to be determined in the finished food-contact artirln using the method described in 177.1975(c), shall not exceed 5 parts per billion by weight of the vinyl chloride homo- or copolymer component'
* '* * * *
12. In 9 177.1200(c) in the table by removing the item "Polyvinyl chloride,"
by revising the items "Polyvinyl stearate," "Vinyl acetate-vinyl chloride copolymer resins," "Vinyl acetate-vinyl chloride-maleic acid copolymer resins," "Vinylidene chloride copolymerized with * * *," and "Vinylidene chloridemethacrylic decyloctyl copolymer," and by adding new item "Vinyl chloride homopolymer" to read as follows:
9177.1200 Cellophane*. * * * ft
(c) * * *
Usl of substances
limitations
Vinylidene chloride copoly-
merized with one or more ol the following: Acrylic acid, acrykyviriie, butyl ac rylate. butyl methacrylate, ethyl acrylate. 2-eihyfhe*yt
acrylate. 2-ethyfriexyt meth acrylate. etbyt methacry late, itaconic acid, methacryfic sod. methyl acrylate, methyl methacrylate, propyl acrylate, propyl methacry late. v*nyl chloride.
Do.
Vinyl chloride homopolymer___As the basic polymer. For the finished cellophane base sheet intended to contact lood. residual vinyl
chloride monomer, deter mined in the fcnahed sheet using the'medwd -besS&d in } 177.1975(c).
shad not exceed 5 parts per brifion by weight ol vinyl chloride homo- or co polymer Component
Vinylidene chloride- metha- As the basic polymer, cryfic decyiodyl copofymer.
.see*
13. In 9 177.1210(b)(5) by revising the item "Vinyl chloride-vinyl stearate copolymer" to read as follows:
9177.1210 Closures with sealing gaskets for food containers.
(b) * * * (5) * * *
lilt of aubstenoea
Limitations (expressed as percent of
wsighf of cteaure-sealing gasfcef composition)
Vinyl colond*-
vinyl stearate copolymer.
Heaidud vinyl chloride monomer, deter-
mined In fte finished closures with seaRng gaiAett, using the method de scribed m f 177.1975(c). she! not exceed S pens par Mho* by weight of the viwyt chloride copotymor-compo-
14. In 9 177.1630(e)(4)(iii) by revising the item "Vinyl chloride" to read as follows:
9 177.1630 Polyethylene phthatate polymers. * * * **
LM ct substance*
Limiuaon*
Polyvinyl alaaralaA* tha baaic potymar.
ae
e a
Vinyl eoetste-wnyt chtoridr copobpnaf ravin*.
Vinyl acetate-vinyl chloride maleic add copotynw resins.
As fee-basic pofymec. For tie finished ceHoohene_ b--e sheet tmended to
' confect food, residual vinyl chloride monomer, deter mined by the milhorf de scribed in f F77,197S<C). sheN not exceed 5 parts per bitton by weight of the vinyl chloride copolymer
component
Do.
)
(e) * * *
(4)*** (iii) * * *
Vinylidene chloride copolymerized with one or more of the following: ...
* ftft. . ft ' ; ft
Vinyl chloride. Residual vinyl chloride monomer, determined in the finished ' copolymercoating, using the method described in 9 177.1975(c), shall not exceed 5 parts per billion by weight of-the-vinyl chloride copolymer-component.:
Federal Register / Vol. 51, No. 22 / Monday. February 3, 1986 / Proposed Rules
4187
15. In 177.1850 by revising paragraph 177.1975 . Vinyl chloride polyer resins,
(c)(2) to read as follows:
rigid and semirigid.
177.1980 Vinyl chloride-propylene copolymers.
177.1850 Textryls. *
(c) * * *
Substances
Limitations
(2) Ftoryts prepared from vinyl cMonde* vmyt acetate copolymer.
As the basic copolymer. For texlryts containing vinyl chloride-vinyl acetate copolymer, residual vinyl chloride monomer, determined in the finished
food-contact article^ by trie method described~ih jTTV. 1975(c). shall not exceed 5 parts per WMon by weight oF tbe-vinyt^cbtonde copolymer-compo-
-went--* * * * * * * * *
16. In 177.1950 by adding new paragraph (c](l)(iii) to read as follows: -
177.1950 Vinyl chloride-ethylene copolymers.
* ft
(c) ' * *
(1) * * * (iii) Residual vinyl chloride monomer, determined in the finishedLfgod-contact article, using the method described in : ~ 177.1975(c), shall not exceed 10 parts per billion by weight of the-vmyl cUoride^polymer-component ; ' . .* ' * * *
17. In 177.1960 by adding new paragraph (b)(l)(iii) to read as follows:
Vinyl chloride polynjers may be safely used as articles or components of articles intended for use in contact with food subject to the"provisions of this section.
(a) Identity. Vinyl chloride polymer resins consist of (1) homopolymer resins
produced by polymerization of vinyl chloride, which has the molecular formula G,H>C1 (CAS Reg. No. 75-01-4).
Vinyl chloride polymer resins (molecular formula (G-HjCl),,: Cas Reg. No. 900286-2) have a maximum volatility of not
over 3 percent when heated for 1 hour at 105 C (22l*F) and an inherent viscosity of at least 0.35 When determined by ASTM method D1243-79, "Standard Method of Test for Dilute Solution Viscosity of Vinyl Chloride Polymers" (Method A), which is incorporated by reference. Copies are available from the American Society for Testing Materials, 1916 Race St, Philadelphia, PA 19103, or may be examined at the Office of the Federal Register, 1100 L St,, NW.. Washington. DC 20408; and (2) copolymer resins produced by the copolymerization of vinyl chloride with other monomeric polymeric substances.
(b) Conditions of use. Vinyl chloride polymers identified in this section may be used alone or admixed with polymer modifiers identified in accordance with the following prescribed conditions:
(iii) Residual vinyl chloride monomer, determined in the finished Jpod-cgn.ta.ct article, using the method described in 177.1975(c). shall not exceed 10 parts per billion by weight eHhe~vtnyl chlnride-eepdymer-component.
21. In 177.2250 by redesignating existing paragraphs {e). (f). and (g). as paragraphs (f), (g) and (h). respectively, and by adding new paragraph (e) to read as follows:
177.2250 Filters, microporous polymeric.
ft ft ft
(e) Residual vinyl chloride monomer, determined in the finished microporous . .polymeric filters, using the method described in 177.1975(c). shall not exceed 50 parts per billion by weight of-- the vinyl chloride-honTe--orcopdymer component.
ft ft ft ft ft
PART 179--IRRADIATION IN THE PRODUCTION PROCESSING, AND HANDLING OF FOOD
22. The authority citation for 21 CFR Part 179 continues to read as follows:
Authority: Secs. 201(s). 409,72 Stat 17841788 as amended (21 U.S.C. 321 (s). 348); 21 CFR 5.10.
177.1960 Vinyl chloride-hexene-1 copolymers.
ft ft ft
(1) No chemical reactions, other than addition reactions, occur among the vinyl chloride polymers and the
23. In 179.45 (b)(9) and (c)(2)(iv) by adding a new sentence at the end of each paragraph to read as follows:
(b) * *
modifying polymers present in the manufacture of the finished food-contact article. -
179.45 Packaging materials tor use during the Irradiation of prepackaged
foods.
(iii) Residual vinyl chloride monomer,
(c) Limitations. The finished food-
ft ft ft 'ft '
determined in the finished food-contact article, using the method described in 177.1975(c), shall not exceed 10 parts per billion by weight of-the-vinyl .chloride-copolymer component. * ft* ft ' ft
contact articles, semirigid and rigid, for single or repeated use, shall not contain residual vinyl chloride monomer levels in excess of 10 parts per billion by weight of-the-vinyl chloride polymer
(b) * * * . (9) * * * For vinylidene chloridevinyl copolymer films identified in this paragraph residual vinyl chloride monomer in the finished food-contact
' 18. In 177.1970 by adding new paragraph (c)(l)(iii) to read as follows:
article, determined using the method
method of analysis titled7"Headspace \ described in 177.1975(c) of this
Sampling and Gas-Solid
. \ chapter, shall not exceed 5 parts per
177.1970 Vinyl chloride-lauryl vinyl ether copolymers.
*
ft ft
/fchromatographic Determination and \
\/ Confirmation of > 1 ppb Vinyl Chloride
I Residues in Polyvinyl Chloride Food
Packaging," which is incorporated by
billion by weight of the vinyl chloride copolymer component.
ft ft ft ft *
(c)- *
reference. Copies are available from the
(c) * * *
(IP
Division of Food and Color Additives,
(iii) Residual vinyl chloride monomer, ' Center for Food Safety and Applied determined in the finished food-contact Nutrition (HFF-330), Food and Drug
article, using the method descrlbecTliP Administration, 200 C St. SW.,
. 177.1975, shall not exceed 10 parts per Washington, DC 20204, or available for
billion by weight of-the-vinyl-chloride copolymer-component. .
inspection at the Office of the Federal \ Register, 1100 L St. NW,, Washington.
/
* . ft
MJC20408.
' ;
--------- --
(2J*** (iv) * * * For vinyl chloride-vinyl acetate copolymer film identified in this
paragraph residual vinyl chloride .
monomer in the finished food-contact article, determined using the method described in 177.1975(c) of this chapter, shall not exceed 5 parts per billion by weight of the vinyl chloride
19. By adding a new 177.1975 to read
20. In 1177.1960 by adding new
copolymer component.
as follows:
paragraph (c)(l)(iii) to read as follows:
21155015
BFG10853
4188
Federal Register / Vol. 51. No. 22 / Monday, February 3, 1986 / Proposed Rules
. .,,RT 181--PRIOR-SANCTIONED
(3) Waterpipe. Vinyl chloride polymer
FOOD INGREDIENTS
waterpipe used for carrying water inside
24. The authority citation for 21 CFR Part 181 is revised to read as follows:
a food-processing plant. (4) Flexible tubing. Plasticized vinyl
chloride homopolymer flexible tubing 1
Authority: Secs. 201(s), 402. 409. 701. 52
ranging in internal diameter front's to 4 /
StaL 1046-1047 as amended, 1055-1056 as amended, 72 Stat. 1784-1788 as amended (21 U.S.C. 321 (s), 342. 348. 371); 21 CFR 5.10.
inches for transporting food. ^ (5) Gaskets and bottle orjar liners.
Vinyl chloride MjToTymeriresin 7
25. By adding new 5 181.37 to read as compositions colrtaTmng up to 80 percent
follows:
basic resin for use in contact with food.
181.37 Vinyl chloride homo- and copolymer resins.
(a) Identity. Vinyl chloride homopolymers consist of basic resins produced by the polymerization of vinyl chloride monomer (molecular formula CiHaCl; CAS Reg. No. 75-01--4). Vinyl chloride homopolymer resins (molecular formula (CjHaCl) CAS Reg. No. 9002-
88-2) have maximum volatility of not over 3 percent when heated for 1 hour at 105* C (221 *F) and an inherent viscosity of not less than 0.35 when determined by ASTM Method D1243-79, "Standard
(6) Rigid sheet. Vinyl chloride-vinyl acetate copolymers as basic resin in containers made from polymeric rigid
sheet for packaging poultry only. (b) Limitations. (1) Residual vinyl
chloride monomer, determined in the finished food-contact article described in paragraph (a) (1) (i). (ii), (iv) and (2) of this section, using the method described
in paragraph (c) of this section, shall not exceed 5 parts per billionjjy weight of the vinyl chloride homoi'copoiymer component.
(2) For vinyl chloride-vinylidene chloride copolymer film described in
Method of Test for Dilute Solution Viscosity of Vinyl Chloride Polymers"' (Method A), which is incorporated by reference. Copies are available from the American Society for Testing Materials,
paragraph (a)(l)(iii) of this section, residual vinyl chloride monomer, determined in the finished food-contact article using the method described in paragraph (c) of this section, shall not
"'16 Race St,, Philadelphia, PA 19103, or exceed 50 parts per billion by weight of
;y be examined at the Office of the
the vinyl copolymer component.
rederal Register, 1100 L St. NW.,
(3) For vinyl chloride polymer
Washington. DC 20408. Vinyl chloride
waterpipe described in paragraph (a)(3)
copolymer resins are the polymers
of this section, residual vinyl chloride
produced by the copolymerization of
monomer, determined in the finished
vinyl chloride monomer with other
waterpipe using the method described in
monomeric or polymeric substances.
paragraph (c) of this section, shall not
Vinyl chloride homopolymers and
exceed 50 parts per billion by weight of
copolymers may be safely used as
vinyl chloride homoploymer component.
follows:
(4) For plasticized vinyl chloride
(-1) Films, (i) Vinyl chloride polymers polymer for use as flexible tubing and as
for use in plasticized film in contact with gaskets and bottle or jar liners made
food.
from vinyl chloride resin compositions
(ii) Vinyl chloride-butadiene-
(i described in paragraph (a) (4) and (5) of
acrylonitrile copolymer for use in ,i
this section, respectively, residual vinyl
plasticized film in contact with f
chloride monomer determined in the
oleomargarine.
finished food-contact article, using the
(iii) Vinyl chloride-vinylidene chloride method described in paragraph (c) of
copolymer for use in plasticized film in this section, shall not exceed 5 parts per
contact with food.
billion by weight of the vinyl chloride '
(iv) Vinyl chloride-vinyl acetate
polymer component
copolymer for use in plasticized film in
(5) For rigid vinyl chloride-vinyl
contact with food.
^*1^" acetate resin sheet described in
(2) Coatings. (i)Vinyl chloridejfor use paragraph (a)(6) of this section. residual
as a can enamel.
vinyl chloride monomer, determined in
(ii) Vinyl chloride-vinyl acetate
the finished food-contact article using
copolymer for use as a can enamel. (iii) Vinyl chloride-butadiene-
the method described in paragraph (c) of this section, shall not exceed 10 parts
acrylonitrile resin for use as a
per billion by weight of the vinyl
component of conveyor belts intended ,chloride copolymer component
for use with freshJjuits, vegetables, and ' (c) Analytical method. The residual
fish and as a component of coatings for - . concentration of vinyl chloride monomer
per and paperboard in contact with
in food-contact articles shall be
V
.eat and lari
.
(iv) Vinyl chloride-vinylidene chloride.
determined by using.the method of analysis titled, "Headspace Sampling
copolymer for use as a liner, i^., coating. and Gas-Solid Chromatographic
for steel pipe.
. , Determination and Confirmation of
'
ppb Vinyl Chloride Residues in Polyvinyl Chloride Food Packaging," which is incorporated by reference. Copies are available from the Division of Food and Color Additives (HFF-330), Center for Food Safety and Applied Nutrition. Food and Drug Administration. 200 C St. SW., Washington, DC 20204, or may be examined at the Office of the Federal Register, 1100 L St. NW., Washington, DC 20408.
Dated: January 27,1986. Frank E. Young, Commissioner ofFood and Drugs. (FR Doc. 88-2235 Filed 1-31-88; 8:45 amj
BILLING COOE 4100-01-M
21 CFR Part 880
[Docket No. 85N-0285]
General Hospital and Personal Use Devices; Premarket Approval of the Infant Radiant Warmer
Correction
In FR Doc. 86-832, beginning on page 1910 in the issue of Wednesday, January 15,1988, make the following corrections:
1. On page 1910, second column, first complete paragraph, second line, "21 U.S.C. 231(f)" should have read "21 U.S.C 351(f)".
2. On page 1911, third column, last line "Wn" should have read "Wu".
BILLING COOE 15OS-01-N
DEPARTMENT OF THE INTERIOR %
Office, of Surface Mining Reclamation and Enforcement
30 CFR Part 93S
Reopening and Extension of Public Comment Period on a Proposed Amendment to the Ohio Permanent Regulatory Program
agency: Office of Surface Mining Reclamation and Enforcement (OSMRE), Interior. action: Reopening and extension of public comment period.
summary: By letter dated November 6. 1984, Ohio submitted a program amendment consisting of a revision to rule 1501:13-14-03 concerning civil penalties. OSMRE published a notice in the Federal Register on December 12, 1984, announcing receipt of the amendment and inviting public comment on the adequacy of the proposed amendment (49 FR 48324).
21155016
BFG10854
Section 175.105 175.300 175.320 176.170
176.180 177.1010 177.1200 177.1210 177.1630 177.1850 177.1950 177.1960 177.1970 -177.1975 177.1980 177.2250 179.45
RVCM 5 ppb 5 ppb 5 ppb 5 ppb
5 ppb
5 ppb 5 ppb 5 ppb 5 ppb 5 ppb 10 ppb 10 ppb 10 ppb 10 ppb 10 ppb 10 ppb 5 ppb
Subject
Adhesive
Resinous and polymeric coatings (can)
Resinous and polymeric coatings for polyolefin films
Components of paper and paperboard in contact with aqueous and fatty foods
Components of paper and paperboard in contact with dry food
Acrylic and modified acrylic plastics
Cellophane
Closures with sealing gaskets
Polyethylene phthalate polymers
Textryls (Fibryls)
Vinyl chloride-ethylene copolymers
Vinyl chloride-hexene-1 copolymers
Vinyl chloride-lauryl vinyl-ether copolymers
Vinyl chloride/polymer resins, rigid and semi-rigid
' Vinyl chloride-propylene copolymers
Microporous polymeric filters
Packaging materials for use during the irradiation of prepackaged foods (films)
BFG10855
Ol
Section 181.37
RVCM
5 ppb 50 ppb 5 ppb 10 ppb
2
Subject
Vinyl chloride homo- and copolymer resins
films and coatings (but 50 ppb for vinyl chlor ide-vinyl.idene chloride)
Waterpipe inside food-processing plant
Plasticized applications (flexible tubing, gaskets, bottle or jar liners)
Rigid vinyl chloride-vinyl acetate sheet
BFG10856
*3
$
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