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R EREEE iR A DR DRII Provided - . = : +o SMMO Rd TTEECCHHNNIICCAALL RREEPPOORRTT SSUUMMMMAARRYY 5/o1 TO: TECHNICAL COMMUNICATIONS CENTE--R 20126:12 CLOSED PPo<sPOe<rosaFed {(Immnppoorrttaanntt=- IIff rreeppoorrtt 1tss ppurmntte,.d,doonnbbootthh ssklieess ooflppaappeer,r, sseennddttwwoo ccoop#) e | E-- nvir-- onmen-- tal -- Labor-- atory--(EEW-- PC) -- - 21-- -20-0-- 5 SE0P5135441983 Environmental Laboratory (EE&PC) - 21-2W-05 be.. fats. SEP 1 1983 D~T. Num~ 0535 Commercial Chemicals Division 70012600. Commercial Chemicals Division Report Title epor! Number Environmental Aspects of pose t + _ Environmental Aspects of POSF ro %.L. Rohon = Environmental Labortory - 21-26-05 Sept. 1, 1983 R. L. Bohon - Environmental Labortory - 21-2W-05 Period Covered or Date Sept. 1, Employ~ Num~t(s) 1983 8A, Re=iEnvniroe nmenrtal Laboratory = 21-24-05. ase E. A. Reiner - Environmental Laboratory - 21-2W-05 Notetlook Reference 47816 of Pages Including Cove~eet None=SeeEnv. AssessI.ng. #82215 ~ 12 None - See Env. Assess, Inq, #82215 seoumrvh Dea i ance| "OR C ST y Sen SECURITY ~ ~OIpCPonmRpeanpyorCf&onSfu=dmenmt aiorl]y ~ClosedRepor(-O~nSummary (Special Au t horization } I 3MCHEMICAL REGISTRY ~CchaelRckubgoisxt~,lynFeowrcmhCeOmOic2aflos~meeproe~ptoalrl~needw.sUubsesClahnec,~,,.,- uous KEYWORDS: Lo predict the environmental properties of POSE I~_ ~I ,9~.......... a (Pu231685 "and evaluate its environmental Fisk. | Olher Keywords ~URRENT OBJECTIVE: T~hhee oobbjjeeccttiivvee ooff tthhiiss rreeppoorrtt ((wwrriitttteenn iinn OJuul~yy,, 11998822)) ~o pced~c~ the environmental properties of POSE (FH-3168) and evaluate its environmental risk. ~waass feL.o EE TE Sr ET E, eon Ta or GW REPORT ABTRACT: This abs[roc! information is disltibu(e~ by the Technical Commun=calions Center to ale= I 3M'ets ~o Company R&D. It is Company confide~l=al 705 (pertluorooctane sulfonyl fluoride) is not a POS (perfluorooctane sulfonyl fluoride) is not a Sion fcant environmental hazard becavse very little of significant environmental hazard because very little of Eh" 205F manufactured reaches the environment. the POSF manufactured reaches the environment. Looms Lana ee lEinvtiarvoantmeern,t. 1/4OF isthilso,st 1/t2o 1tshediatsmcohsaprhgeerde,witahnd 1/4 is -ee andtil ea, Some of the material which undergo Leis a Cvontually land applied ith this sludge A -Ce {eoeee] aCtErlpeaaeettrmieaTntci.haza0raiinyfrtahotenewaatofsmtoesRpOhSteYrreea5.5tmeenxNtpoecdbtuiecodidnegginraadewaratasittoienowntaenardndvery Lo AA rreevviieeww ooff tthhee mmaannuuffaaccttuurree aanndd pprroocceessssiinngg ooff PPCCSSFF sshhoowwss tthhaatt lleessss tthhaann 22%% oOff tthhaatt ssyynntthheessiizzeedd rreeaacchheess tthhee environment. Of this, 1/2 is discharged with wastewater, 1/4 is lost to the atmosphere, and i/4 is lttarrneedaafttimmleenlntetd.ccoouullSddomebbe-eaofdadsstoohrerbbeemddabtebyryiawwlaassttweehictthrreeaauttnmmdeeennrttgo sslluuddggee and eventually ffrraaccttiioonn ooff tthhee lassneedwweerraeepddpliPPeOOdSSFF wiiitss h aalltsshoois llsiilkkueedllgyye.ttoo Abbee volatilized from waste treatment during aeration and dispersed in the atmosphere. No biodegradation and very little hydrolysis of POSF is expected in wastewater treatment. ---- REAM hr Pua? pacity Accteng 2{ko 28 Tonle Lo5P (ost fo saver Fooew proce 6 fetes _ I3MMCCOONFNIFDIDEENNTTIIAALL Des cotta. Joh haul Exhibit 1292 11229922..00000011 3MMA0AD00119933773388 -_-_-----. A EENNVVIIRROONNMMEENNTTAALL ASPECTS ASPECTS OF OF POSE POSF Zear I. sSuUmMmMeArRyY pPoOsSFF ((ppeerrfflluuoorroooocsttaannee sulfonyl sulfonyl fluoride) 1uoride) is is not not a a ssiiggnniiffiiccaanntt eennvviirroonnmmeennttaall hazard hazard because because very very little little of of the OSP manufactured reaches the environment. the POSF manufactured reaches the environment. PPOoSsFE iiss nnoott aa pprroodduucctt.. IItt is is an an intermediate intermediate used used in in the the manufacture of other fluorochemicals. POSE is made from manufacture 05F (octane of other sulfonyl fflluuoorriodceh)emiicnalesl.ectPrOoScFhemisicmaalde from OfSlFuor(ioncattaene ceslullsf.onylTheflucoerlildep)rodiuncteslecatrerocphuermiifciaeld by fluorinate cells. distillation and theThediscetlilllpartoeduicstsreaarcetedpurtiofifeodrm bya dvviaasrrtiiieelttlyyatooiffonffllauunoodrrooccthhheeemmiidcciaaslltiliilnnattteeerrmmeeidsdiiarateteaescsteaadnndd topprroofddouurccmttssa.. A A rreevviieeww ooff tthhee mmaannuuffaaccttuurree and and processing processing of of POSE POSF shows shows tthhaatt lleessss tthhaann 22%8 ooff that that synthesized synthesized reaches reaches the the eennvviirroonnmmeenntt.. OOff tthhiiss,, 11//22 iiss ddiisscchhaarrggeedd with with Jwaasstteewwaatteerr,, 11//44 iiss lloosstt ttoo tthhee atmosphere, atmosphere, and and 1/4 1/4 is is llaannddffiilllleedd.. SSoommee ooff tthhee mmaatteerriiaall which which undergo undergo ttrreeaattmmeenntt ccoouulldd bbee aaddssoorrbbeedd bbyy wwaassttee treatment treatment sludge sludge aanndd eevveennttuuaallllyy llaanndd applied applied with with this this sludge. sludge. A A ffrraaccttiioonn ooff tthhee sseevweerreedd PPOOSSEF is is also also likely likely to to be be vvoollaattiilliizzeedd ffrroomm wwaassttee ttrreeaattmmeenntt during during aeration aeration and and adt~osppeerrsseedd iinn tthhee aattmmoosspphheerree.. No biodegradation and very No blodegradation and very lLiittttllee hhyyddrroollyyssiiss ooff PPOOSSFT is is expected expected in in wastewater wastewater treatment. treatment. II. EENNVVIIRROONNMMEENNTTAALL ENTRY ENTRY II. AA.. MMaannuuffaaccttuu~rIinn@g. 3M CONFIDENTiAl. 1'1229922..00000022 3MMAA000011993773399 : A A rreevviieeww ooff tthhee mmaannuuffaaccttuurriinngg process process indicates indicates the the PPO0SSFE wwiillll eenntteerr tthhee eennvviirroonnmmeenntt by by 3 3 routes: routes: 1) i) adiiasppoossaall ooff cceellll tars; tars; 2) 2) maintenance maintenance of of cell cell celleeccttrroolliittee ccoommppoossiittiioonn;; and and 3) 3) distillation distillation of of cell cell products. Table 1 shows the maximum estinated pernovdiurcotnsm.entTaalblreele1 assheoswsof thPeOSmFaxfirmoumm measntuif,a~cattuedre eansvsiumrionngmenatnalannruealleaspersodoufctiPoOnSF1f,r0o0m0,m0a0n0uflabcstuorfe POSE assuming an annual production 1,000,000 ibs of POSF per year. per year. rable 1 - Environmental Release of POSF Prom Manufacture Table 1 - Environmental Release of POSF From Manufacture Process Causing Release Process Causin@ Release PPOOSSFE RReelleeaassee (1bs/ye) (ibs/yr) RReemmoovviinngg ttaarrss from from cells cells trc<ea45satm((tteoontww)aasstteewwaatteerraUcnpdreosEseSbhfaerrladEmd treatment) dong Cell electrolite maintenance <<22000000 ((ttoo llaannddffiillll)) Cell electrolite maintenance CCeellll pprroodduucctt aistillation distillation <<990000 ((ttoo landfill) landfill) 7500 (to wastewater <7500 (to wastewater treatment) treatment) <<22550000 ((ttoo aattmmoosspphheerree)) TToottaall rreelleeaassee +% rreelleeaassee < 13,000 a. 24- wu. pr o5l2H0(a8 i1.. Disposal of Cell mars Disposal of Cell Tars MHiijshh mmoolleeccuullaarr vweeiigghhtt tarry tarry materials materials that that accumulate in the electrochemical fluorination accceelcllulsmsulaaarrteeewwaaissnhheetddhe fferrloomemctttrhhoeechcceeemllillcssalbbyyfhlhiuiggohhrinpparrteeissossnuurree wwaatteerr ssttrreeaammss aanndd sewered. sewered. Additional tars are Additional tars are sseevweerreedd aafftteerr rreemmoovvaall by by bubbling bubbling steam steam through through tthhee cceellllss iinn vwaatteerr ffiilllleedd boil-vats. boil-vats. Finally, Finally, 3M CONFiDEHTIAL 11229922..00000033 MA00199740 3MA00193740 < 32 TL ttaarrss wwhhiicchh ffaallll ooffff tthhee cceellllss iinn tthhee hhoouussiinngg . nits (co11 totes) are severed, oF landilled units (cell .bodies) are sewered, or landfilled when Laxge volumes axe present. when large volumes are present. . Cleaning of the cells is done spprosinately once Celveearnyin6gwoefekst,heancdellasppriosxdionnaetelayppr1o0x0i-m20a0telLybsonocfe , etvaesryav6eweSeikssp,oseadndatapeparcohximcalteealniyng1.00-T20a0zoIbasveof ctsartsinaatreesditsopocsoendtaiatn e1a-c2h1 cFloesaPn.ingB.asedTarosn ahries cessttiimsaatteed <5toIcbsontoafinF051F-2%entPOeSrF.theBaesnevdixoonnmethnits eCshtriomuastteth<5isIbrsouotfe PeOvSeFryen6tewreskthse (e4n5virIoonsm/yeensts) atnharoutghhe mtahijsorirotuyteofevtehriys v6ouwledeks0 {<t4o5vaIbsst/eyveaatre)r~ wreatnent. and the majority of this would go to wastewater treatment. 2. Hofntenance of Cell Blectrolits composition 2. Maintenance of Cell Electrolite Composition o second manufacturing process routs of 103s Aresseuclotnsd fmeaonnufmaacitnutreinnagnceproocfestsheroeulteectorfoliltoess wrietsuhlitns thferomcelmlaai.ntenTaynpciecaolfly 2,the500 bs of electrolite wciltehcitnroitiheteceilslsv.ihiTzyapuincalflryom2,t5h0e0cieblslsof3 tines epsAleeperrpcrtwowreexoeeilkkmiattaaenenddlyiddsii6wss0itk8tiihliodlifreodaatwhnittsoofwrrroeeimccsoohvvtaeehzerrancHHFPe..lmlaster2iatlimes | (0) is rervenes Approximately 60% toof tthehiscewllist.hdraTwhne mraetmeirnidaelr | "(hHFi)ch isconrtetauirnneadpprtooxithmeatceellyls2.0 POThSe? isremainder | which contain approximately 2% POSF is Jose to Tanafitied because of this cell llaannddffiilllleedd.. AApppprrooxxiimmaatteellyy 22,,000000 ilbbss ooff FFOOSSPF ppeerr | year is landfilled because of this cell maintenance process. 3. biseitiaion of coll prosuets 3. Distillation of Cell Products he tira rout of 205P anvirommantal entry in atThe tthheircdolirouptreodoufctsPOSdFisetnivlilraotnimoenntsatlep.entrFyOSFIsis aptuctihieedcelplripsraordiulcytsbydiastsiilnlgalteiopnlatsteep. POSF is psuiroieftiieidatiporni,marbiulsy sboymea insinEgrlaectpiloantaetly distillation, but some is fractionally 3M CORFIDERTIAL 11229922..00000044 -- 3MA00193741 C-- e ---------------- - oo oo -~ ddiissttiilllleedd.. MMaatteerriiaallss ddiissttiilllliinngg aatt hhiigghheerr oorr - lloowweerr tteemmppeerraattuurreess ccoonnttaaiinn ssoommee PPOOSSFF,, bbuutt tthhiiss is consumed in the manufacture of other is consumed in the manufacture of other _ pprroodduuccttss.. = TThhrreeee ppeerrcceenntt ooff tthhee cceellll pprroodduuccttss rreemmaaiinn aass Ss bboottttoommss aafftteerr ddiissttiillllaattiioonn.. TThheessee ccoonnssiisstt mostly of very high boiling materials and have mostly of very high boiling materials and have lliitcttllee PPOOSSFE ((pprroobbaabbllyy <<33%8)).. AAssssuummiinngg tthhee mmaannuuffaaccttuurree ooff 11,,000000,,000000 ilbbss ooff cceellll pprroodduuccttss,, <<990000 i1bbsn ooff PPOOSSFE ppeerr yyeeaarr wwoouulldd bbee llaannddffiilllleedd Wwiitthh tthheessee bboottttoomnss.. DDuurriinngg adiissttiillllaattiioonn 00..55--11%% ooff PPOOSSFE iiss lloosstt ttoo vvoollaattiilliizzaattiioonn.. BBaasseedd oonn eessttiimmaatteess tthhaatt tthhee ssccrruubbbbeerrss aarree 7755%% eeffffiicciieenntt,, 11220000--22550000 Ilbbss//yyeeaarr wWoouulldd bbee lloosstt ttoo tthhee aattmmoosspphheerree aanndd 33880000--77550000 1Ibbss//yyrr wwoouulldd bbee adiisscchhaarrggeedd wwiitthh ssccrruubbbbeerr wwaatteerr ttoo tthhee wwaasstteewwaatteerr ttrreeaattmmeenntt ssyysstteemm aass aa rreessuulltt ooff tthhee daiissttiillllaattiioonn pprroocceessss.. 3. uUssaaggee VVeerryy lliittttllee PPOOSSFF iiss wwaasstteedd aass aa rreessuulltt ooff iittss uussee iinn tthhee ssyynntthheessiiss ooff ootthheerr fflluuoorroocchheemniiccaallss.. PPOOSSFE iiss tthhee Rost expensive component in these synthesis | most expensive component in these synthesis rreeaaccttiioonnss,, aanndd bbeeccaauussee ooff tthhiiss ccoosstt,, iitt iiss rreeaacctteedd | With excesses of other reactants. Also, tests are with excesses of other reactants. Also, tests are ffrreeqquueennttllyy mmaaddee ttoo mmaaxkee ssuurree tthhee PFOOSSFF iiss ccoommpplleetteellyy consumed. It can be assumed that less than .5 of consumed. It can be assumed that less than .5% of PPOOSSFE i1sa lloosstt iinn uussaaggee.. 33MM CCOONHFFIiDDEr'NflTTIIAALL 1'1229922..00000055 MA00199742 3MA00193742 ee J Pose is transported by pipeline within the plant. POSF hese pis ipterlainnsepsortaevde bcyleapniepdelibnye pwuirtghiingn tthheemplwaintth. Nz. These "hich pfioprecleisnePsOSaFretoclreeatnuerdn btyo ptuhergitnagnkthoeFm rweiatchtorNs2,. As a which refsourlcte,s PnOoSFPOtSoE riestunronrmatlolythelosttankfroorm within reactors. As a plant result, no POSF transportation. is Lniotrtmlaell(y<5l)ostPOSfEromis wisthhiipnped opflfantthetrapnlsapnotrtsaittieo.n. AlmLoistttleall(<5i%s) sPhOiSpFpedis isnhisptpeeedl oafcfunstheinpeldantwitshiteb.lowA-lnmoolsdtedalplolyisethsyhliepnpee,d ainndstmeoeslt drums lined is sent vo Mw'isth Cbhleomwol-imtoeldepdlanpto.lyetDhuyeletnoe,itsandlomvost Visiscsoesnittyt,o 3PMO'SsE Cchanemobleitneeaprllayntc.ompDlueeteltoy ritesmovleodw viscosity, POSF from the drums. caTnhebePOnSeEarrleymaicnoimnpgletienlytheremdorvuemds from (app the drums. roximately 0.T28h)e PiOsSFnorremmaalilnyindgestirnoytehde dwriutmhs the (approximately 0.2%) is norma!ly destroyed with the = ddrruummss iinn tthhee CChheemmoolliittee IInncciinneerraattoorr.. ` IIIIII.. EENNVVIIRROONNMMEENNTTAALL FFAATTEE A. PPeerrssiisstteennccee Under strongly basic conditions (pH >10) POSE will Under redct sttorofnogrlmy tbhaesisculcfoonndiictiaocnisd s(aplH t.>10) POSF will react to form the sulfonic acid salt. odor son mere sw t Rf - S- F + KOH -----.-~ Rf SO3-K+ + HF At neutral pi this reaction is very slow. For Aetxamnpeluet,ralPOpSHE tchainsbereasctteiaomndiisstvielrlyedsloorw.storFeodr for eexxatmepnldee,d PpOeSrFiodcsan ibne tsheteapmredsiesncteilloefdvoarterstowrietdhouftor edxetteencdteadbleperdieogdrsadaitniotnh.e prNeesveenrcteheloefssw,atetrhewithout podertfelcutoarbolseuldefgornaicdataicoind. anNdevietrsthsealletsss,viltlhebe the _ peevrefnltuuosr)oshuyldfroonliycsisacipdroadnudctsitsofsaRlOtSFs,wialllthobeughthethe 3MM CCOONNFFIIDDEENNTTIIAALl eventual ,..c11c0 hofydrsoolsyrsimsayprbeoduwcetesks,ofmoPnOStFh,s, alotrhoeuvgehn tyheears halflife of DOSF may be weeks, months, or even years 11229922..00000066 amacoreares 3MA00193743 bbee lLoonnggeesstt uunnddeerr aacciiddiicc ccoonnddiittiioonnss.. Siosearadation is not expected to ose with ROSE. BLiaobdoergartaodraytitoenstiinsg no~thowesxpencotebdiodteoaozacdcautriownithof POiStFs. Lsaulbfoornaitcoryacitdeshtiyndgro:lbyoswes pnroodbuicotd.egraTdhaistiolnackofofits bsiuoldfeognricadaabciildithyydrioslypsreesdicptreodducsti.nceThaills lack of biodegradability is predicted since all 1 ppeerrfflluuoorroocchheemmiiccaallss aarree rreessiisstteenntt ttoo bbiioo~deeggrraaddaattiioonn.. B. MMoobbiilliittyy N%oo ddiirreecctt mmeeaassuurreemmeennttss ooff tthhee eennvviirroonnmmeennttaall mmoobbiilliittyy of POSE have been made. Tough estinates however can obfe mPaOdSeF hbaavseedboenenimtasdep.hysiRcoaulghcheesmtiicmaaltesprohpoewretviecrs can b(erambatdee 21b.ased on its physical chemical properties (Table 2). Table 2 - Physical Chemical Properties of 0ST Table 2 - Physical Chemical Properties of POSF : 2.5 an tg at 250 o VVaappoorr pprreessssuurree 11..66 mmmm HHgg aatt 2200ocC 2.5 mm Hg at 25oc rolecutar weight soz Molecular weight 502 soiiing Boiling rraannggee 1s4-ass0c 154-155oc Specific aravity Specific gravity feat of vaporization Heat of vaporization Lox 1.838 20.3 eal/a 20.3 cal/g Solubility fn water Solubility in water very lows Very low* "fo actual measurements of water solubility have b*eNeoracstaudae.l meIatsuirsemkennotwsn otfo bweatevrerysollouvbilaindtyishave beesetli,mamtaeded. toItbe isinkntohewnsatnoeb~ranvgeeryaslowtha~tndofisnect eEsltuiomraotcehdentteoalbeliiqnuitdhse s(a1m-e10rapnpmg)e. as (tChaaltcuolfatiionnerst fclounofriormcihnegmictahlislivqeuriydslow(i-sio0lupbpiml)i.ty a(rCealactutlaacthioends in confirming this very low solubility are attached in an appendix.) aM CONFIDENTIAL |----------"-""" 11229922..00000077 aurea 3MA00193744 : I---------------- 7 TThheessee pphhyyssiiccaall cchheemmiiccaall properties propertie3 suggest suggest that that vJoollaattiilliizzeedd PPOOSSFE wwoouulldd tteenndd ttoo stay stay in in the the aattmmoosspphheerree,, aanndd wwoouulldd not not be be removed removed at at a a ssiiggnniiffiiccaanntt rraattee bbyy rain rain or or depositio(n1.) deposition.(1) POSE POSF would also tend to move from water into sediments or would also tend tthhee aattmmoosspphheerree,, taondmowvoeuldfrotmenwdatteorbeintiommsoebdiilemenitns and would tend to be immobile in or ssooiill.. w. EEFrFeEeCcTTSs No actual environmental effects data exists on POSE. No actual Bbaasseedd oonn ttehhenevillriiommniimtteeenddtattlooxxeiifccfooellcootggsyy ddaattaa data eaxnidstosuronexPpOeSrFi.ences and our experiences with other non-water soluble perfluorochenicals, no with other non-water ssiiggnniiffiiccaanntt ttooxxiicciittyy stoolutbelrerepsetrrfilaulorpolcahnetmsicoarlsa,qunaotic to terrestrial plants or aquatic oorrggaanniissmmss iiss eexxppeecctteedd.. While the material could While the material could bbiiccecoonncceennttrraattee,, tthhiiss iiss uunnlliikkeellyy to to be be of of significance significance since so little POSE enters the environment. since so little POSF enters the environment. i 33MM CCOONHFFIIiD)EEHRTTItPA,LL 1122922..00000088 MA0199745 3MA00193745 eee : 3 AAppppeennddiixx -- CCaallccuullaatteedd SSoolluubblliittyy ooff PPOOSSFF TThhee ffoolllloowwiinngg sshhoowwss hhooww tthhee solubility solubility of of POSE POSF (CgP17S0F) (CsF17SOF) ccaann bbee ccaallccuullaatteedd ffrroomm tthhee measured measured solubility solubility of of CCsaFFI177S5O027NN((CCHH2aCCHH33))CCHH2CCHHZ2OOHH ((EEtthhyyll FFOOSSEE Alcohol). Alcohol). TThhee ssttrruuccttuurree aaccttiivviittyy rreellaattiioonnsshhiippss uusseedd here, here, hovever, however, may may nnoott bbee vvaalliidd ffoorr uussee wwiitthh ppeerrfflluuoorroocchheenmiiccaall like llke POSE. POSF. The The pprroobbaabbllee rreeaassoonn ffoorr tthhiiss iiss that that perfluorochemicals perfluorochemicals are are both both hhyyddrroopphhoobbiicc aanndd oolleeoopphhoobbiicc.. An example of this problem is An example of this problem is wwoorekk ddoonnee wwiitthh ttrrii--ppeerrfflluuoorroohheexxyyllaamniinnee wwhhiicchh revealed revealed a a 5 5 oorrddeerr ooff mmaaggnniittuuddee ddiissccrreeppaannccyy between between the the measured measured ppaarrttiittiioonn ccooeeffffiicciieenntt ((KKooyw)) aanndd that that calculated calculated from from its its wwaatteerr ssoolluubbiilliittyy ooff 00..7766 ma/l. mg/l. Its calculated Koy was 1.25 Its calculated Kow was 1.25 x X 110066 wwhhiillee iittss measured measured Koy KOW was was 1.1 I.I x x 101. I0I. TThhee wwaatteerr ssoolluubbiilliittyy ooff EEtthhyyll FFOOSSEE Alcohol Alcohol has has been been measured measured 22 ttiimmeess wwiitthh tthhee ffoolllloowwiinngg results: results: 0.05 mg/l and 0.16 0.05 mg/l and 0.16 mmgg//ll.. TThhee aavveerraaggee vvaalluuee ooff 00..11 mmgg//ll wwiillll be be used used in in this this ccaallccuullaattiioonn.. TThhiiss iiss eeqquuiivvaalleenntt ttoo a a molar molar solubility solubility (S) (S) ooff 00..1188 uu mmoolleess//ll.. Using the regression equation of Using the regression equation of BBaanneerrjjeeee eett aall..((22)) aanndd iittss mmeellttiinngg ppooiinntt of of approximately approximately 4455o0Cc,, oonnse ccaann ccaallccuullaattee tthhee lloogg ooccttaannooll wwaatteerr partition partition ccooeeffffiicciieenntt ((lloogg KKoowy)) ffoorr EEtthhyyll FFOOSSEE AAllccoohhooll.. l1o0g9 KKoouw == 66..55 -- 00..8899 lloogg S -= 00..001155 (Mx) l1o0gg KKooww == 66..55 =- 00..8899 ((--..7744)) =- 00..001155 ((4455)) Jog Kow = 7.2 Mm CONFIDENTIAL | 11229922..00000099 MA0019746 3MA00193746 -- ss costticients, (3) one can calculate the log Koy for (POSP) coefficients, (3) one can calculate the log Kow for (POSF) from the 10g Koy of Ethyl FOSE Alcohol from the log KOW of Ethyl FOSE Alcohol - s05 = pose R - SO2F = POSF R --- SONA, SO2"~Ci(ACHCH2H2C2CCHHH2330N == BEtehhy)l FPOOSSEE AAllcccooohhhooo!ll he fragnent constant for ~S02F (sone) When attached to Tahreomaftriacgsmenits c0o.3n0s.tantItsforfra-gSn0e2nFt (cfoSnO2sFt)antwhetno aanttaaclhiepdhattioc is aromatics is 0.30. Its fragment constant to an aliphatic is nnoott lliisstteedd ((33)) bbuutt aalliipphhaattiicc ffrraaggmmeenntt ccoonnssttaannttss ffoorr ffrraaggmneennttss wwiitthhoouutt ccaarrbboonn oorr hhyyddrrooggeenn aarree aallwvaayyss lloowweerr.. OOnn aann aavveerraaggee tthheeyy aarree lloowweerr bbyy ..8877.. TThhiiss ccaallccuullaattiioonn aassssuummeess that the aliphatic fragaent constant for-s0zF is 0.30-0.87 = that the aliphatic fragment constant for-SO2F is 0.30-0.87 = -"00..5577.. he xaqnent. constant for ~s0pn< Sz, 00 is calculated The fragment constant for -SO2N~/CCHH22_CCH~2-OH is calculated frroomn tthhee ssuumm ooff iittss ffrraaggmmeenntt ccoonnssttaannttss I{ff)) aanndd bbiinnddiinngg aanndd bbrraanncchhiinngg afaccttoorrss ((FF)) aass ffoolllloowwss.. hThee ffaaccttoorr ffoorr SSOO2NN == hhaass oonnllyy bbeeeenn mmeeaassuurreedd ffoorr aarroommaattiiccss aacssons-2t2.a.00n99t.. foArAggaaaiilnniphttahhtiisiscsccaallasccuull(aa-tt2ii.oo0nn8 a-assss0uu.mm87ee)ss =tthhee~2.ff9rr6aaggmm=eennfttsopNe constant for aliphatics as (-2.09 - 0.87) = -2.96 = fSO2N= hThee bboonnddiinngg ffaaccttoorr FFBp iiss ccaallccuullaatteedd bbyy mmuullttiippllyyiinngg tthhee nnuummbbeerr ooff bboonngdss,, nnoott ccoouunnttiinngg tthhoossee ffrroomm hhyyddrrooggeenn oorr wwiitthhiinn fErraaggmneennttss,, mmiinnuuss 11 ((nn--i1 == 44)) ttiimneess tthhee bboorndd ffaaccttoorr.. HHeerree,, aass ddeessccrriibbeedd iinn tthhee mmeetthhoodd,, aa bboonndd ffaaccttoorr ooff --00..2200 iiss uusseedd ssiinnccee 33 hhyyddrroopphhoobbiicc cchhaaiinnss rraaddiiaattee ffrroomm aa tteettrraahheeddrraall aattoomm ((tthhae NN)y.. TThheerreeffoorree FFBp == 44((--00..2200)) == --..8800.. AAnnootthheerr ffaaccttoorr ffoorr bbrraanncchhiinngg FFpB;r iiss ccaallccuullaatteedd bbyy mmuullttiippllyyiinngg tthhee nnuummbbeerr ooff bbrraanncchheess ttiimneess --00..1133.. 3M CORFFiDEETXTEIAL 3M ~f~.~~'~ The Erament constant for-S0;N(CHZCH3)CHICH;0H Ls thus The fragment constant for-SO2N(CH2CH3)CH2CH2OH is thus 1~229922..0000~100 amco16a747 3MA00193747 : | 70 fIfcCuHy3 ++ 33fcCH,2 + + EsopNe fSO2N= + + ff-oOnH + + FFpB ++ FFBorr = = 0.89 0.89 + + 33((00..6666)) -- 22..9966 - = 11..6644 =- ..8800 -- ..1133 -= 2-2..6666 The log Koy for POSE is then calculated as: The log Kow for POSF is then calculated as: !10ogg KKoowu == lloogg KKoowy ffoorr EEtthhyyll FFOOSSEE AAllccoohhooll -- fSO52N(0CH, 2CCHHN2))CC(HH2CCCHHo2H0OHH ++ f5S0O527F L10ogg KKooww == 77..22 -= ((-<22..6666}) ++ ((<-00..5577)) l1o0g9 KKoouw == 99..2299 TThhee ssoolluubbiilliittyy ooff PPOOSSFF ccaann bbee ccaallccuullaatteedd bbyy uussiinngg tthhee rreeggrreessssiioonn eeqquuaattiioonn ooff BBaanneerrjjeeee eett aall.. ((22)) lloogg S == 77..33 -- 11..1122 lloogg KKooww =- 00..017 (MP) SSiinnccee POOSSEF iiss aa lliiqquuiidd,, 2255o9cC iiss uusseedd iinnsstteeaadd ooff tthhee aaccttuuaall mmeellttiinngg ppooiinntt.. == 77..33 -= 11.1122 ({99..2299)) -- 00..002177 ((2255)) lloogg Ss == --33..55 SS == ..00000033 uu mmoolleess/[ll SS == .1155 uugg//lL TThhiiss iiss aann eexxttrreemmeellyy llooww wwaatteerr ssoolluubbiilliittyy.. Due Due to to the the llaacckk ooff eexxppeerriieennccee iinn aappppllyyiinngg tthheessee mmeetthhooddss ttoo ppeerrfflluuoorroocchheenmiiccaallss aanndd tthhee nnuummbbeerr ooff aassssuummppttiioonnss mmaaddee tthhee rreelliiaabbiilliittyy ooff tthhiiss ccaallccuullaattiioonn iiss lloovw.. TThhee ccaallccuullaattiioonn,, hhoowweevveerr,, ddooeess ccoonnffiirrmm tthhee llooww ssoolluubbiilliittyy ooff PPOOSSEF.. 3M 11229922..00001111 aMAOD103748 3MA00193748 -- ee -- ee-- e ------ i" RReErFeERReEnNCcEeSs 1. CCcuuppiitttt,, LLaarrrryy TT.. Fate of Toxic and Hazardous Yaterials Fate of Tozic and Hazardous Materials iinn tthhee AAiirr EEnnvviirroonnmmeenntt.. EPA 600/3-80-084, Augast EPA 600/3-80-084, August ((11998800)),, NNTTIISS PBBO-221948. ~PB80-221948. 2. RReeff:: BBaanneerrjjeeee,, SS..,, YYaallkkoowwsskkyy,, S. S. H., H., and and Valvani, Valvani, S. S. CC..|y wWaatteerr SSoolluubbiilliittyy aanndd Octanol-ater 0ctanol-Water Partition Partition CCooeeffffiicciieennttss ooff OOrrggaanniiccss.. Limitations of the Limitations of the SSoolluubbiilliittyy--PPaarrttiittiioonn CCooeeffffiicciieenntt Correlation. Correlation. EEnnvviirroonnmmeennttaall SScciieennccee aanndd TTeecchhnnoollooggyy Vol. Vol. 14(10) 14(10) 2. p. 11222277--11222299 ((11998800)).. 3. Hansch, C. and A. Leo, Substitutent Constants for Hansch, C. Correlation and A. Analy Leo, sis in SuCbhsetmiitsuttreyntanCdonBsitolaongtys, foJro h n WCiolrreeylatiSoonns,Ana1l9y7s9i.s in Chemistry and Biology, John Wiley & Sons, 1979. 3M CONFIDENaTIAL 1122922..00001122 MA0019749 3MA00193749