Document B84pL3QggogkrqjDxMy1go5qX
PHOTODEGRADATION TI ESTe SUBSo TANCT E SUB 00S0 T0A 0 NCE Identity: PPeFrOflAuoarmoomcotnaniouimc ascailtd,, Aammmmoonniiuumm psaelrtf;lmuaoyroaolcstoanobaeter,efPeFrrOe,d FtoC-as a11m6m,oFnCi-u12m6s,alFtC,-C1A69S,#or38F2C5--12463-.1)(Octanoic acid, pentadecafiuoro
Remarks: wTahes tneostt ssuufbfisctiaenntcley cuhsaerdacwtearsiz"eCd, ltahboeulgedh (c3u5rr8ednptmi/nufgo)rm.atIi'osnpurity . 3in.d5i%caCtse,s iCt7i,saanmdixCtsupreerofflu9o6r.o5a-na1l0o0g%uefecsotmspuobusntdasn.ceThainsdt0es--ting is currently being repeated using current procedures and best
available practices.
Me MeEwThHODO:: e
M(eVtohloudmieg4u3i,deNloi.n1e3f2o-lMloonwdeady:, PJruloyce1d0u,r1e9a7s8)debsyctrhiebeUd.Si.n tEhneviFreodnemreanltaRlegister
Protection Agency.
TGyLpPe((YtNes)t:typNeo): Simulated sunlight Year complete1d97:9
Light Source: General Electric F-40BL fluorescent blacklight
bLeiglhotwS3p0e0cntmr.umSp(encmt)r:alMaenxeorugtypcuhtaartac~t3e6r0iznedmfarnodm e2s9s0e-n6ti0a0llnym.no output
Intensity:
[Wavelength|Watfs Radiated
290 - 300
[8fo=%0T0235 |
[32[ 0-3s 40 Tt |at iso o to ||
[Se0-380 [2310 |
[400-500[2300 |
.
[s00-s00T0340 |
Spectrum of determined.
substance
(max
lambda,
max
epsilon
and
epsilon
295):
Not
The test solution was created by dissolving 140.0 mgofthe test substance in
2.8 liters of distilled water. The resulting solution had a specific activity of 17,320 dpm/mL (0.0078 pCi/ml).
03652
Remarks:
-= TDuersattmioend:i3u0m:daDyisstilled water -- NPoesgiattiivveeCCoonnttrroollss::NNoonnee
(aPLhnSodCt)o3,l0yTzdLaaCty-seA.suatSmoaprmalpdeliseowsgerwraeperhceaolanlndeaclGtyaezdseadCfthuersroiimnragrtaadoigLaritiqaoupnihdyin.Stceirnvtialllsoatfio0n,C1o,u3n,te7,r15, R0 ReEsSUwL0 tTSs 0000000000 TCeomncpeenrtartautrieonCo:f2S2u+b2stCance: 50 mg/L Degradation %: 0% after 30 days tRheismastrukdys.fiEeslsde:nNtioalplhyotthoedesgarmadeaatniaolnysoifstrheestuelstts swuebrsetaobnlcaeiwnaedsfdoerttehcete3d0-idn ay photolyzate sample (no photoproducts formed) as the 0-day sample.
pRraoddiuocctarwbaosnvaolsastaiyliszeadt d0urainndg 3t0hesdtauydsya.lso indicate no significant amount of
c0 oCOnNcClLuUsSI0 iOoNnSs 02000
sNuonlpihghott,odiendgircaadtaitngiotnheprteosdtucstusbswtearnecededtoeecstendotinutnhdisersgtoudpyhoutsoilnygsissi.mulated Submitter: 3M Company, Environmental Laboratory, P.O. Box 33331, St.
Paul, Minnesota, 55133
b0 DaAtTAa0 QQUuALAI0 bTYY 000000000 Reliability: Kimisch ranking 2. Testing meets the criteria for quality testing at
the time it was conducted. However, sample purity was not properly characterized.
RREEFFEERREENCCEESS ~~~00
3M Technical 2S,U1N9L7I9GHT."
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o0 OR THER 00000000
Last changed: 5/24/00
03653
Form arir ica
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TECHNICAL REPORT SUMMARY
TO: TECHNICAL COMMUNICATIONS CENTER ~ 201.20H
{important ~ Ifreportispinta onboth ides ofpaper,sn twocopies t0TCC.)
2x
Commercial Chemicals Division - Agrichemical Project Service to TOSCA FC-143 PHOTOLYSIS STUDY USING SIMULATED SUNLIGHT R. A. PROKOP
3068
9776750202 002.
J. W. TODD
43953
Agrichenical Request 994
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cutoom/pRoasdiitoigornaphy
aavsi-rCohnrmoemnattograph
ayhgoertrao/plChyhysriosmato- SEtITorAS5STCRAoCTm. (Fp25r0G250 ori)This sn formation +dbamdb 3 ToeSomeonesrons So
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b2Iy0rrtdaahdyiisant-irloeansyuelortf-ecdahroi5n0matnpopomgdreaatpqeyuc/etroeauddsicpsahouolttuootgiproranopdhuoycf,tsFaCn-odn143baynafloyrsis
lsciohgurhrotcmeattooprgsoridamupuchleyadtoef300dnaetrnumirvaaaltndizseuldnolnigsgaehmrtp.lweasv.elenTgheth iurlrtardaiyaitoigioaenst
ten ve
03654
-
--FC-=143=/PH1OTO2LYS3IS / SSTTUPUDDYHUUSSO IINGTSSIIOMMUULL LAATYED SSSUUNNTLLIGSHHTT
INTRODUCTION
wIaty isingtoenetrhealleynviarcoknnmoewnltedgiendvatrhiatousmadneugfraecetsureadndchbyemivcaarlisousmayme.afnisn.d
their Once
in the action
environment of sunlight
they may be (Crosby and
destroyed or chemically altered by the Li, 1969). This study investigated the
Possible photodegradation of FC-143 simulated sunlight (Kohler, 1965).
in distilled water on exposure to This study was conducted essentially
as recommended by the Environmental Proection Agency (Federal Register),
EXPERIMENTAL
1. sample Materials FC-143 1s the ammonium salt of perfluorooctanoic acid. CF, 5C00NH,
isomTheersmaajndorotchoemrponheonmtoloigssthaelsostarraeighptr-ecsehnati.n C; but some branched chain FC-143 Water Solution:
A 50 pom 140.0 mg of
FsCo-l1u4t3ioninof2.8FCl-i1t4e3r-s1Cof (d3i5s8tidlplme/dug)watwears. preThpearerdesublytidnigssolving
solution had a specific activity of 17,320 dpu/ml (0.0078/uC/n1).
2. Analysis Instruments/Materials Liquid Scintillation Counter (LSC) Nuclear-Chicago Mark I
Rotary Evaporator Biichi Rotovapor R
Kuderna-Danish Concentrator
R10eflmlux ccoonlcuemnntrator Heated water bath
tube
--
KKoonntteess
NNoo..
KK--356790205510
03655
:
-2- :
`Thin-Layer Chromatography (TLC) plates M1EstRCKdevSeilloicpaingGelsol60venFt-2-5e4t,hyl0.a25cetmantet/hmiectkhnaensosl/awnadte2r0, x7250/15c/m10size 2nd developing solvent-methyl ethyl ketone/chloroform/acetic acid, 55/30/15
X-Ray Fila KODAK NS-2T, 8 x 10 inch size
Gas Chromatography System (GC) GCoalsumCnhromatograph =- 26H0e%wftleDCt1t/8-20P0aicnksaiordldicsoMtnoaedi/enlll0es%5s84B0sEtNeTeOlNEpa34ck| eodn with CCoalrurminertgeamsperature --AA8rN0gAoKCnR/OmMfeotrAhBa4Snem(,i1n0u90t5/e/1510promgersha)med to 180 at 5C/min. DSIeantmjepeclctetoiroinnjepcarttion --- eo1nlpelcctorvliuoamnn,1c0ap1pt8lu0reCm,icr3o0s0yrCinge .
DIAZALD
DIAZALD is Aldrich Chemical Company's roso-p-toluenesulfonanide. It is used to
trade name for N-methyl-Nonitprepare diazomethane, an
analytical reactant chemical.
Diazomethane solution - Alcohol Free.
Diazomethane (DAM) was corresponding methyl ester
used just
to convert acidified FC-143 into its prior to gas chromatographic analysis.
C7F1sQO0H + CN, ------ cP coocn, + ow, 1
(FC-143 acid) (DAM)
(FC-143 methyl
ester)
The DAM product
reagent used must be free of alcohols or the desired reaction will not form or will degrade after it has formed. The
alcohol-free DAM was prepared essentially as recommended by Aldrich:
A solvent mixture consisting of 35 ml of 2-(2-ethoxyethosy)-ethanol
and 20 ml potassium
of diethyl ether was added to a hydrozide dissolved in 10 ml of
solution of 6 grams of water. This mixture was
C03656
"de :
placed in a 100 ml long-necked distilling flask fitted with dropping funnel, an efficient condenser and a water bath at
a
70C. As the distillation of the ether started a solution of
21.5 g of DIAZALD in about 200 ml of ether was added through
the dropping solution was
funnel over about 20 minutes. The etheral DAM collected in a 250-ml Erlenmeyer flask cooled in
an ice sealed
bath. with a
The flask contents were transferred into a TEFLON-lined cap and stored in a freezer.
bottle,
3. Irradiation
illuThsetraptreedpariantiFviegurpehot1.oreaThcetorlamupsedemp(lCoryoesdbywaasndaTaGnegn,era1l969E)lec1tsric
F-40BL fluorescent and essentially no
black light with output below 300
maximum output at about 360 nm nm (Table I, General Electric Co.).
Tthheroutgehmpefrlaetxuirbelewapslasctoinctrotlulbeidngawtra2p2pe+d2aCroubnyd ctihreculraetaicntgiontacphawmabteerr.
Air was passed through the photolysis solution at 10 ml/min for
oxygenation and mixing. The trap consisted of a
The exit port was connected to a 6 x 3/4 in. glass tube containing
vapor first
trap. XAD-2
resin and then charcoal. The photolyzate was sampled after irradiation
intervals of 0, 1, 3, 7, 15 and the reactor drain port and were
30 days. The samples were removed refrigerated until analyzed.
through
4. Radiocarbon Recovery The photolyzate samples were assayed for radiocarbon by LSC to
determine radiocarbon recovery as a function of irradiation time. aSnidmil0a-rdayressualmtpslesweraereobptraeisneendtedforinalTlablseasmplIeIs.and ReIIsIu,ltsresfpoercttihveel3y0.
. IP nvesh tigao tiont foropro byd TLC-u Autoc radit ogras phy
100-Al0i1qduotbsefoorfe thTeLC 3a0naalnydsi0s-.dayFiprhsottoalyz1a0t0e-smlwearleiquroetducoefdeaicnh voslaummpele was
concentrated to about 5 ml using a rotary 40-50C water bath, 50 ml of acetonitrile
vacuum evaporator was added and the
with a rotovac'ing
continued to just dryness (Acetonitrile was added to expeditiously re-
move remaining water as an azeotrope and of radiocarbon). The sample solids were
thereby minimize possible loss dissolved in 3 ml of methanol and
03657
.
"tm
quantitatively transferred into a Kuderna-Danish concentrator tube with two additional 3-ml washings. Reflux tubes were attached and the concentrator tubes were immersed in a 65-74C water bath. The tube contents were concentrated.to exactly 1 ml.
of
410.0 pl aliquot of each sample concentrate (equivalent the original photolyzate solution) was transferred onto a
to 1.0 ml TLC plate
using first
a 10 with
yl microsyringe. Each plate was developed ethyl acetate/methanol/water (75/15/10) and
two-dimensionally, then with methyl
ethyl ketone/chloroforn/acetic acid (55/30/15). The air-dried
TLC plates were then radioautographed. Figures 2 and 3 are pictures of
the 30 and 0-day:radioautographs, respectively.
Various component spots and areas on each TLC plate were quantitated
for radiocarbon by carefully scraping the silica gel from the plates and
LSC. The results are presented in Tables II and III. 6. Investigation for Photoproducts by Gas Chromatography
Perfluorocarboxylic salts as FC-143 are not directly analyzable by gas chromatography but can be analyzed if acidified and methylated with DAM. The 30 and 0-day photolyzate samples were analyzed by this method (34 Central Research Laboratory). The procedure used is summarized below:
Four ml of photolyzate solution was pipetted into a 4-dram vial and acidified with 0.4 ml of concentrated hydrochloric acid. The resulting samples acids were quantitatively extracted with two 2-ml portions of diethyl ether. The ether extracts were combined in a calibrated 10'ml centrifuge tube. One ml of DAM solution was added and the sample allowed to react for 15 minutes. Excess DAM was then removed by purging the tube contents with a nitrogen jet until the yellow DAM color was almost gone. The sample solution was then diluted to exactly 5 ml with diethyl ether, and analyzed immediately to minimize possible degradation due to any instability of the sample derivative. The chromatograms for the 30 and 0-day photolyzate samples are presented in Figure 4.
C03658
..
-5-
However several less obvious parameters are important: The DAM soultion should be freshly prepared, preferably the same day it is used. Several injections of sample may be necessary to passivate the column before accurate and repeatable results are obtained.
RESULTS No photodegradation of FC-143 was detected in this study. Essentially the same analysis results were obtained for the 30-day photolyzate sample (no photoproducts formed) as the 0-day sample. The 30 and 0-day photolyzates had similar radiocarbon assays (Tables II and III) so no significant amount of radiocarbon was volatilized during the photolysis and so the contents of the vapor trap were not analyzed. Radiocarbon recoveries after sample concentration were good for the 30-day photolyzate (99%) but less desirable for the 0-day sample dure to physical loss (86%). A repeat concentration of the 0-day sample was not done since it is important only as a TLC reference. Similar TLC-radiocautographs were obtained indicating no change in composition of the 30-day sample compared to the O-day sample (Figures 2 and 3). Quantitative measurement of radiocarbon in various TLC spots and background areas show similar radiocarbon distribution and good recovery for the 30-day sample (Tables IT and III). Similar gas chromatograms were obtained further confirming the same composition of the 30 and 0-day samples (Figure 4).
J. W. Todd
03659
.
6
REFERENCES
Crosby, D1.2G:.321a-nd363Li,inM.Deg1r96a9d.atioHnerboifciHdeerbiPchiodteosd,ecoKemapronseiyt,ionP,.C.Chaanpdter Kaufman, D.D. (ed), Marcel Dekker Inc. New York, 394 p.
Crosby, D.G. and Tang, C.S., J. Agric. Food Chem., 17, 1041.(1969). Federal Register, Volume 43. No. 132-Monday, July 10, 1978. General Electric Company, Lamp Division, Cleveland, OH .44112. Koller, L.R. 1965. Ultraviolet Radiation, 2nd Ed. Wiley, New York.
2 p.
3M Central Research Laboratory, Analytical Request A-70732.
03660
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inter
.
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7
Ni
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aro
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2
2
03661
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=
Table I - Spectral Energy Distribution for a GE F4OBL Black Lignt Sulp
davelengen
Watts Ragiated
290 - 300 310 - 320 320 = 340
340 - 360
360 - 380
380 - 400 400 - 500 500 - 600
0.090 0.235 1.400
1.920 _~ Maximus intensity
an A% about 360 ne
1.680 2.300 | 0.340
~
gr
03662
:
-9-
! Table II - aRnaddiToLcCarbPolnatereSccorvaepriendgsin (3F0I-GDUaRyE P2)hotolyzate Solution
Sample Solution Dft/ol Relative %
Ares
TLC Plate Scrapings Description DPMiper ml) % Recovery
17,320 [lod
1 Fe-143
16,643
97
2
3
origin. |
"Background
66
288
0.4
17
Total 16,997
99.1
* 1Th'emlaomfounttheoofri1g%iCnarladipohaocttoilvyziattyeonsoltuhteiopnl.ate is equivalent to
Table III - aRnaddiToLcCarbPolnatereSccorvearpeidngsin `0F-IDGaUyREPh3o)toyzate Solution
Sample Solution DP/l Relative %
Area
TLC Plate Scrapings Description DPM(per ml)* Recovery
16,643 [10g
1 Fe-143
14,493
84
2 origin.
3
3 "Background"
222
0.2 1.3
Total 14,758
85.5
* 1Themlaomofunttheofori4gcinarladipchaocttoilvyziattyeonsoltuhteiopnl.ate is equivalent to
es
03663
.
-10-
Figure 2 - 3P0hoDtaoygraFpCh-14o3f TPLhCotoRlaydziaotaeutograph
--_
|
| 8aa
|
052 --
setarance sanpies 50 pg FC-143-14c
7,300 dpm, jot photolyz.
NN@ Fe-143
origin
Background
(A11 areas less spots 1 and 2)
DS-1 = 7D5e/v1e5l/o1p0ing Solvent #1, ethyl acetate/methanol Mater, DS-2 = aDceivde,lop5i5n/g30/S1o5lvent #2, methyl ethyl ketone/chloroform/acetic
03664
.
-1-
Fgiure 3 - 0P-hDoatyogrFaCp-h143ofPThLoCtolRyazdaitceautograph
--_--
052 ----y
|
i
R5e0feprgenFcCe-14S3a-m1pl4eCs
i|
> 1o7t,30p0hotdoplmyzed
27
|
||
NQ@ Fe-143
|--
@ origin
@ Background (R11 area less spots 1 and 2)
DS-1 = D75e/v1e5l/o3p0ing Solvent 1, ethyl acetate/methanol/water, DS-2 = Developing Solvent #2, methyl ethyl ketone/chloroform/acetic
acid, 55/30/15
03665
Figure 4 - Gas Chromatogram of Derivatized Photolyzate Samples
:
e
~
, if
o8 tevontion Tine tn Minutes ----p 2a
2
: sii
)
Retention Tine fn Minutes -- 3
=