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. FFLLUUOORRIINNEE CCHHEEMMIISSTTRRYY Pr. 5 1. Spon Edited Fluorine Laboratories, The l)~. ,J. 1.1[. Pennsylvania State College, State College, Pennsylvania : VOLUME 1 VOLUME I !950 AACCAADDEEM MIICC PPRREESSSS IINNCC..,, PPUUBBLLIISSHHEERRSS NEEWW YYOORRKK,, NN.. YY.. 33000088..00000011 i | EExxhhiibbiitt 3008 State of Minnesota v, 3M Co,, Court File No, 27-CV-10-28862 STATE 07525275 : al $1 P3B &bo x3 NS ~ ;5 - dl 33000088..00000022 snare sass STATE 07525276 | crn CIIAPTER ! 2 ; Fuorocsons and Thi Production Fluorocarbons and Their Production ]~Y J. II. SIMONS Fluorine Lal~oralorie~, The l)enn,~ylvania ~ate Colh'ge, State Con ])age | tron x Introduction ............................................................ 401 Fluoroca,rbon Nomenclature .............................................. 404 fi uo Ear+y History ........................................................... 406 The ('~+xtalyzed React, ion hetween Fh+<>rit+e a+l+l Car!)<m ....................... 407 Ea i" ~ent History .......................................................... 408 CatMyzed FIuorine and (:ari)(m Reaciim+--.Piiot l'l+mt Study. ................ 409 i Sts hn : Tmji The Electro+hemica~ Process .............................................. Liquid Phase Fhu)rflmtion ................................................. 420 t~ibiiography ........................................................... 422 tin Introduction Tuas ea The fluorocarbons are (leseined to 1)eeome a new and very large domain o em dats sud yb fy of chemistry. They can be expected in the not too distant fl+ture to ee] nn i wtfo nth rival that branch of chemistry catIed organic. As ~heir name implies, Be eh ene oe | they sseennssee attrhheeeyycom aarrpeeouccoonmm dpspooouufnndfdslsu,,oraainnneaalloaogngooduusscattr:booohhnyy;ddrbrooucctaarri~bboonanss,m, owwrieitthhreffsllturuioocrrtiienndee a atoms occupying the positions of hydrogen a~oms in hydrocarbons. SEA fa peof Sls Sew 5 bhi .Chemically, however, the properties of these compounds are so vastly | Chm bore thepropriotho,compre oly different from their hydr~+gen-containing m+alogs that e~+~ircly new and i es different techniques, methods of synthesis, and reactions are necessary. i or, Hydrocarbons and their derivat.ives, i.e., organic chemical compounds, a are extreraely useful for mankind, these uses being chiefly in t.wo impel ns sk fo maki, espe ig i bn rant areas. They are very reactive substances which are particularly Te ne) susceptible toward oxidation. For ~his reason they are extensively used Ta for fuel and for food. Oxidation is without question ++he mest important Gann d or fu o.Ondo to sion themo imprar organic chemical reaction. The other area in which organic compounds aarree uusseeffuull iiss aass mmaatteerriiaallss ocff ccoonnssttrruuccttiioonn ssuucchh aass wwoooodd,, ppaaiinntt,, lluubbrriiccaannttss,, | ffaabbrriiccss,, pplIaassttiiccss,, aanndd rruubbbbeerr.. HHeerree tthhiiss eeaassee ooff ccoommbbuussttiioonn iiss hhiigghhl|yy ce sti wt disadvantagcous. Slow oxidat~ion cau~cu deterioration +~s in paint, dyes, and rubber; and rapid oxidation causes tremendous destruction of rd bers life and property in fires. "40t 33000088..00000033 snasars e STATE 07525277 102 1 sons volo"TThohefe, "ffmluuaootrreoorcciaaarrblboonnosfs asaonnnddstttr.hhueeciitrri(dolener"riiwvca~ot(m;iipvvleeessteu~llp)yppee:fLrrrddeefssrttoiinmneeddthett.oo Tffaillvllag4s1 roosofuflpeceeiirttoihhfoeerrr"~tssnolhoMowor,egrooairrMnirrscaappociifhddecmoooixxnciisaddtla.artutisicooutnb,ni,s,otn3saon"ceii~enso.mtthhpiilsscMLoa:{~rs~reetlaay.. ottf,rtrhmgeeaeyynifsscrhhooocmuuolhdmtihpbbeoeeurgnardv ea~ atu s`Ssuuruebpbjejfeerrcciototrttfootroggormrmaadd'tguhuaiaansllicdddeefcctetheceetrrm.iiooirrcaaatFt,lohiorsmunbthbbsetyy.~sssmllaocomwewes.oorxxeii5atdh'sla(do~t.snii{oo,tbn~,oa,rcgbbt~uue.ttrtniitctahheceloifffmelluupaooonrrtdoo~ccniaadnrr~sbbeioco~lr cacpraraeonntnnfeorocettteeuufdssreeobmffylluutohforirlosouccodaarerrbofbeococanntr. mm baoatnFeteorrriaiaragollhcfffoorsrre~effmoofcoodrd,ro,e:m.aa~nnsd~ddmecssabuuy~lb)scsttta;ea~nrnnidcacelessilnifmmseea~caddtneeddffrraoo~mm< pFFusrlloueu~odoerrcoootcceaadprrbrboboadynnusscfaaelrrudceo:bcc'oyoocmmoaprrplbgeloeatntneeisllsyym~snnr.eoonnof~rrIreggnea~nanidfir,dc(mi, t~wwiohhdneecnnetto~iityI. bcce~ooimm nmgeIesscionttmoospelbbceeettiinendgglayee~iinattgohh~xe( ueca<gose>emnbdmtubsse,utrsitibip!nlr)cleoel,d,uudttcihheneedg fftblahuyoeorroosortccgraaaorrnnbbigsoommnasssc,iaadrrsceh~arvnee:dssMiisslbd,tauiat~sin+oettsn tt(ato),nod1tt.hh)eeseitnaragcoctntciigooonm noxpiooldffei[sceeihhlnyege.~m~+ioaicc~ny~: daguecnitsn, ginacgleundtsi.ng ~he strong acids ~nd l}~ses a.~M strong oxidizing reduci~g t~g(~nts. BoTrnAd BE1nv3~ri g1Iin Team Band Enerffi~'s va wm 1 uC bedma F ( ;1 lh" ! I! C Bond radii vows wma ws wre oo F 63.5 86,4 147.5 1107.0 0.64 Gomi ws mr so m7 ma 090 CI 8(). 4 57.8 52.7 51,0 102.7 66.5 0, I Gr oGlowe Gio Ww ]~r 52.7 ,16. [ 42.9 87~3 54.0 1,1,4 ! G0 re we nia ms 1s I 51.0 42,9 36.2 71,4 45.5 Wows ow? m3 mi wma sa om :It 147.5 102.7 87.3 71 4 103.4 87~3 0.30 C wme ws se ws wa Ges ore C 107.0 66.5 54.0 45.5 87.3 58~6 0.77 wasPPnrrioootr cttooontsthihedeeflrirerssdtt fiidedaeesnnittbiilffeiiccatattoiioocnnreooafftelliiqqmuuoiilddec[lulotlmrerosoccoa',f~rrbcl)oaonrnsbsoiinnn a11n99d3877h((a23l11))o~,ge aahwllaoaodsnneenbeoccetoonnncttopaa~riisnenipiidnancgrgrce.dm~mooarfreneeadsttifhbholaaeunnntdotthhtrrcoereceetb~otce.eaahrrilmb)gooohnnlemcs~e~tlt~[teooismnmsogfppaeecnrradrbmmnoooolnlteeccavuunleldere.y. stCaabClle hNfNaaooldlahhbciiyeggeohhnfeerrapnrmmaeleIe)omtm~gbsrbeeedrlressdantoodoff tftthhoheuiissnexds~peMertoiceetssahnebhcaa~yddfiogfhbbieenm ces~ntealbtiiiiddnleeignntttiyi~ffifnieeoddrd..hniog~TThehhvreeermycocolosemmtcam~ubooll~nae fwpwMeoeiuligagnchhdyttsoccifonoammntpphaoeloouufgnnlyddusoslerdooocfftaoccrabathorrbenbooednnxopmaaesnnciddtnanhhhcaalayloovggoeefennbl.a.esetn.aNNbpooirlwweitpyatt]rhf~oeattrd, hannignuuhdm meeserrtrm oouduuoissleedce,uolwmav. paaarroneeudnffodfolrsrcuceioen~arbbitl.nihyyeibbnfr!ruooccuuhrggeomhheitttwcattboloonttchhodeemomprreeo~M auflininizzdaahsttaliwooins~n ebtthxheata(mtsr,emaap.enrnlaeMylpooagghreyyadzbbaaeernttdwdwoeeuseestnnuadGcnidehhdol,toth~ia babneettdwOxenefleacunneorooiirnrtggeaawnnaiiniscc edccheooemmmmopinp(os~outaulrnnaddctssoemdaannpdd(o2u2ffn)lluduos(orhroaiosctcaaerrMbxbuotoo~nnrvomcccooeammiryppbooohunua~snzxdacdsrosdnceotvruaoeisnnniam Tnngodorm~otohsrac tithhvaaennOsnutthchberrseeteeaitncccwaaerrs~bb,sooinndt cwaamLatso~ommmvs~esrtppryaeertercadmmsoyol(l2ete2occ)uurllateeti~iwwoaentcarrltcoliuzecoexxrttt,orrhceeeamsmreeebl]opyyrnosssptteacarobbtwllie,eersaaa,innnsddiunrgupnrm irseiosnetg aatbissornettdhhseeueyybneswwrtageenirreceesesuaa,tnidtthhawbatoatsnttd~iimemrerea.y.dei~CC(so1yo2nn)tsosisiddrheaeortriwiionnnnggailttnihzh(Te~eatbffhulueennsddeIaa,pm mireoenpintsetaarcltIaiesppsy~r(roo0sppueserreprttriiieestsishna~o bflounodrineeneartgoiemss~anrde bhoelndd mraodrioi (f1i2r)mlsyhotwo nthien cTaarbbloenI,ski~eliesteoansythtaonseaecethtah fluorine atoms are held more firmly to t.he carbon skeleton than are sh 33000088..00000044 STATE 07525278 STATE 07525278 |a FLOROCARIONS AND TIBI PRODUCTION 03 FI,ITOROCARlgONS AND T[tEIR PRODUCTION 403 1 paabbtetoooronnmvmddossurrn~aooddfdfiiiniiaagnn[iyynntddihooeie;tct:~hah{tcee.ecrarrctcbb,lluuoeetntmmeddensoontk.te.lnnooottt.ToTnhhaaee(dlrrieeeonqquuiiah~sstyLeadaclrnnlyyocaaeaeddxxdrdpiib~irtto,eii'neososssnns.a.alilnIffH-aaytIccyhdttedroorrorotggewweethnlnrliiadchaa~hettdootrtmhmahesles |I"" basaeuorrrnraardnnosggtz~ebodm emeitnenwtnge.tedndthooeanntooocmttasrc.cbooommnpApllesectktoeeemlllpyeyltcoceoontvveee~ir~s'xhaaenhnl~ydIodfpprr~oco'chotlateeorccrbttionttnhehseeatcicnoaamrrbbsthoosennuaarttterotoomrmuahnooedrrdittrnhhaageel || | ttccaboataooovrrnebmm bdroossinsnn.bg~azsesr-kktceweeolfletteeooefttooolnounnlohara~teeircoxxnggmieiecssstafft.sootrruuo~nAmt~d(shhle(ece~rorossvmssyyettmm!rrr)maalretineitnhnetcssetr.srih:aci~cccnan~alrddIllb,oorrfessonitppczauuhasblbllklossleee~iilvv'iesseenttterorffuunoaccrtotcaotuuepmrrsrpeaesa.ca.rsseeutntrhAAhtsreloeyceuccoonhfhmmdlolpiooprlnrrmtegiientntaeeeae | n.shciueof~vicbec~rioieennnngdttlslyoyf(ccofroolum miopnprtaiae~ccrtentaeealnnt(vvf)eomelrlocoseppeoefvesseod0rsaat)}s~fcttooreopp:murr'loo:et)toxeenpccottsskbbucooritetchh~ootthnhaeeatcctpaaaprcrabkbrooefnnnrtoaalmtytoomofmuosstrmsaainndddae | mMtmhooeolslebetccouucl~hleedesSms,,ic(wwoairiltthihnrooteuucattrcntaaaittlonttf.sohheerocfesscaaam lmirceelbdo~ttnii)mamcefereooccmurreesaacstxttiipnrnouggcst~uuumnnreddsuuoereinaiiv~nnotttaleevcrrekanaaafllrtotrrmeaepcpukuollsuesiitiosotn~hnsdes,cr. aM aeaintntvvvoeaaeesrnnltrsoscipeei~oeoxx..~~nppoomio(ssnnr.ieecaaddtatth!ecceeraaxxerfrppalu.boco)ooostsrinneeooddnca:~sabltt)rototo)b~mmfno,(,clsnsasa:~rosostrr)foiioffnnntro~amttrrehcshecceesoffuuibbeecasadl(hdc~ssstkk.;.arsusipicdTTdr~eoohuhtereaeeenncscctttooriirnmamvanveppnocaaccelccvo~taeiintnffailiutttnuhtohogaerorciitnknWWheoaa~Mtlaaitdttdotheoehmenmner TTreraaehnreettaveeteaaloolAlolflfupoo~orrtrwz~teeoeaacdicdcnaLtirooit~eor.b"hnnoeffanaiivsfsvsioougghrr(rr)eeaeerddoavatcetbbally~yyyh'elrr)tatehoerhdncdtesursur~ccmofneeofooddrdddmyeeyinvvsnaaeeamsmnnmuoicnwcuichdsnasd.d.aaeenrrdpTTccrhohosoukntuneidssdnciiisttitoitiivofoccennaasshnnciowwnbbhaoheeteceirntterreregruuollarsfyeyic~ahtsasci~tiatdaioteott.eenhnddses tthhaet"Aram~soudttohyh~nee'oucMfmlaoiurrcohoarooclncalsaryrhhbaoaovnnnesds haamenno~ddrrtettshheoseifirrsdddtieaearmrniitvvoaanttsdiitvvr~eeunsscdtaaurrsreekailbbnloosyttehhtfommrhucuihcncehhomcimmecoroaorlrseehassitttdtaaeat.lcicke tthhearnmaondaylmo~gomuiscaolrlgyanaincdcommoproeunrdessi,stiatnctanstrbuecetuxrpaelcltyedtothcahtemnoitcaolnalyttaccakn amm ~ohrsoatsno,t maoo~ffcalIgtoohh~meeaoissuttnrsruuboccu~tttt'~~uraraenelssiscooocmffoamoonrrpggyoaanuncimioccmlscpc,hhoeieutmmnicdisassintrrnyyboetbbeeefxepddauseuipcpbltlleiiecdcaaitttneheddoartgiinnannottithhcee0cnffhllyleuomocriraoson--- foctrfayyrabecogaanrnnedabboteem erooabbintnt~uadimbnnb~ecetddrauaIssosofstcm taaobabmlnlpeeyossucuuonbbmdsstsita)aonni~cncemestsd.h.sonfT~olhFtuhifoiesrwaowiscliiablllrlbeppoeeinnrrmmdoioirttmgtaathhnieeincccctrrhheeeaaamtntiioioisnnn- | ooottTtfrhh~rgaguaataetanhngtiaaecr$rr~e0eccehh~ etpepmham aiarrnst~ittusrtmorfyflyu.lnbr.u~eonrr'poTToroccohafhas~eerce.lbon)nnootmnnuulm ms)oaabybnunseendtdrredmsooppsffaairnrcctotfoothmmooecprrplggooafaaulsunnuninioifdccdrysosicbbnaete~gr,hcchbaoaoattim).mnnedewwsisdillaolleermnnrbbooaaoerrnimngmppioorrtnuuheogssppa~,aanwrrieessildnodol "Tm ppcrrouhoomcTbbephaahorbbeusllreno~yednnstaaohorrttaetohtb,baddeteiioffdss~ffaaeoertrtriienessponnfftrcacaeececpstssteeoornrbbrymteye.itt.wtswyeecseeotnnmepmflfhslem utoeorrlfooycccaaalrnarbasbosloinnofgycocinuoogsmmpspaotonurudnundcdastsruraaarnnineddgnstinoohgrreggaatwnniioilccl dfGcuoooomm mrapoagcionnaosus.~-xdbosCnCthoowemimflptlpodonouountnndodbstse pvceceorormnnytita~saitinnca(bii)nln~eggnpblectt~tch~haecculysggearronoofauulpptoiihgnneogguresRRasd-tOyr-nOfcHHoturrmewwashhteienirreoetohnfeRRtHwFii.css HTCfH fllaouuHommoow IrerrooOoveoccveTaaaerrrrr,babb,rooothehnnniissswtddaiiioolsbsllm mccneaooaoiuubitnnnunbttteeebbrnrvnubbo~etaatrllyaCaiinssnsRcctaenneObddooNlttebbyybiionnertt(hh:CaeooeInrrsLfgfgaeaaOacnntFotiif.ccttthh.haacceththAeresR Remmiia--~msditis(yOrtl)ryFfFay.or.~sii'ssimtCssCauttF~tFaai0.bbtalinlOOeeoFoFniifnnmHaattannhFhyddee. ieCimvs~ee~k:noitssn.atOowfTo~~oonf'irroan~mr((ioCoetCsrFsFstotat:g)aaae~Nbm nmNIlieLtint.nI_rIee.)iss~flta~u(Cn]ol.odoortttim ~hhmdooeppCu)uogogFuahhau~r(eHnoodnnsdIqeeouosofifffrtllttuehCuhooeeIrsrtotttaoycaycOabppalrFeerbesb.soosRnRnuANNbccFFsoos:t~mimmapapanionaolcaudduernnRRddsieni~tooNNuftfaFFhtftei~((ohhddfisnseleurtrtmioyyvvrpapaoayee-:- Ctcpivaevirresbosooxnin.odfe,dd~ootCrmmFoa:agi0ienn0nCKbbtr,uuift,th~ht~ua:rnksldknenno)oownw~ennrcofqiirun~tiht)eeoor~esgx'gtapaanlnbioilcsceivseccuhhbeiemnsmstiatsianstbtcrrieyyl.si.tyinDDoiftimmhdeeeit~mhfhleiuftooohrrryyyo!lI- peroxid~ CF~OOCFa, has none of the expi~ive instabiliW of dimethyl peroxide- ,Similarly higher' oxidized types of other kinds witl be found 33000088..00000055 STATE 07525270 STATE 07525279 } a > J2 | Ba 5 as XD [N:N 5sh $Tie ~~ IN 80 | || | | --_-- 454 am. si ostrabclreo isn tthae Mbuoroasbon domain that do ot exis in the 88 hm oh ol cn rT do Lang o(Fan5c0e Uh xinplistsivienf ld oFflucohriomciasrtbeoynofNotmreenmcelndaotuusre*magnitude 34% acncx5yp,,niJousnt, be1gbin nnwineg ttoo pbo nrecoagnisesdo,nc1e00r3 0on0te%' ao{arueniolnloaubntomidmeepddoi,annict.umbberWrasonomeieo,lf bcaehngeuaimlpepiorfoipnmrisehaetueossaoeru1m,|04080M9g raemmsisitesandcthopenrtesiejnltueuecidtcieodsnesoofpfistnoeammtoesos.tuhmebrTobhrresaonEmcnhgelnoicfsehcshseyamsnitdsetmrUyofSE"TOS6L0 peesuse saddled woiftthihnesrttyiesamteanmdooffenaormmeoomnfen1ctalatureaaae careahuteionveao4nttiohnece.FFIWOAe] Uona thoeiynfeluloearbolcterbnoonsswuaraenssd,tihffoerwteehlefadiiflluaotrjuotscthaifrsnbioinmese.intfoTanhacidyso,pit Lig a8 7OBFy nor derivatives of hydrocari bons, a vs aming Which eaten 10 requiing al Tee ides compounds of an of ink clement. clement 0 5 Must ve SL Pi ioofdip bydride? Ty quarts peroxysitane? 18 DOT Cy mTluea,n,0 isne iTnocsaochons perfiosr Throos4ters Sa emtheconasnnwitl mthbeeyhusmoorrosecanruvbmogenrseoaund snthpatnhieirtgdheoreihvyadr2 tcoeiatvTMreoscaWrbCo0.efeh Tareree Morscurbons to ho unwarranted status i20* Aavx tmehisgenboE o 681l0 rcf s thos esshhnespnsodisncviSsionED02C2oo8l530` IR o eptr nl mei or ie per TES heist wh wok end conti 5 (CnatorFnsLeaiC, itOhn,Mn,netn 0PWI1a,TOf2ot0s4todh (fsaCoarLIefNuEo,rao1mcaiwr.iebgonhntiTpbreoironna ex,eiddaeusntd(heeCrFAOEY4Cp8Aa 33000088..00000066 STSTAATTEE 0077552255228800 | J} PRODUCTION 405 | Tht np i opront.hanTmoere deesingntatihones | 2m Sshesynsl caChtoiniomna.tShia otmhWohtefn ptshouppscteoansmcepaoisscalcsloendotamiannesasiydmeglblne2- 56 55 Tcl a ans rrange, when th fist. Ho sociated fluorocarbon ovaicdiodiwsprodpeernttieesd ,wi tih 43t2hHe BEAR,E 2 eiHnhertifrtomiosntruoctourarl trseasoonso. f pImrmoedpirateelcy htahertmeamreof bSodbeor: 234] eenn4ektihnerg, buht tiho higphlryo. pefefircienst.hocwheedmitshtesmeedsasrintger4sJEPOE0 AF] KopeUpmsteasi30ursew1maeynewtedls.byne tHheydamrcatoimcoeanrs.b"oenthneAarsm"ethstehcaatMrurboyorobscaadrrlbyeom ns cackoEng L,LSe JA iogmTativmes Semone: oT f hoydkra ocarbontshtwoileebecevoernry,maoinsgUlh8ere%BwserdSrnLrgC | | teagorpeMMayoAlrtraens hyedrlolcarcbonodgersivativale nwhoomheanosien BELL(hh 5W9E] Gkgy YIer. necessity of a distinctive uorocarbon noOmemnEclNaGtuRrEeC7E 6|| Snughsr3e0mppharatsihzyedbryoccaorbnosnisd.eraAtiosnimopflmeiexseadmp(lPeesi LtFBUC UpEyoy 20|| Nlt1sivWoehigcerheaitnehrg is CiFtes.C or y CHFCAFEoEf vMaori&en te BtuorroShout reson for the nest of 8 systemof EEL 47|| SligHa S0Ofthhyidrrpdcearrihvaotnisveiss tahse aimseppaorartetocfaaSISBnCUPEcEAeS GSECGa,notps 4|) gSnfaoetstieailiny1the xTanmger ladhantvely en Tuoi anor ormgmanic iicnnohorrecmoinsttcornfyus:ion drone 6 sTuHliS MFOEHL or fmeson 28] iit i3t1espsurstnganntdy diestiqnct,nomeinvdcelsaitr 0158 ELS50 oaws 77|| NIees tWeerlilacl nn syastchmseandhdeovideees i80 P52 OPTEPLTivoed 5] nigh us oie of the besuttol seats Eg rcarbons 7| 52 PMaagoyenylgiun hgeinicnoWgrapsoprpalteaecceroidn btemhfeoradeevtmtihhdceiesicioarnsssPOgfcA\KisCLliOighPngtlaEyLnoabnopi),reisTrhee 7 Naoyy 5emicpaoilntmedamgutfothtahtesafmowe sntraumcteure$:2 CESEEY qucpnlieraatcetd- Minor hydrocarbons. This objection I 33000088..00000077 STATE 7525281 STATE 07525281 -- 5:: :. : Tr 106 22m. sons itinnhgge tnthhaeemesssyy.llllaabbTllheeisttoos""yfsfotorer.m"" ha"TsThhibisseeaanllssoporggorrpceo~a's~te,l[dyy (iim1m9p)p,rrooavvneedss atthhleethssooouuugnnhddioinbnggge: ctttihoooemmnessnsapt~mooonediisti.nwwgelTerryheeisrrbeseeqyeq~snueteestmsa,etdd,oh,pt.~tnnseoodnbneeeefnhhoaarpssrotbbpheeoieessnne<btrreoe(coc1eik9ivv--)e,emdde~..tmhdfTTohM hiristashnosseuyygssht(teeCmomFhQ~h--e. correspondingly been tu:h)ptcd mpeetrhofsoirdyel(C(FCF)y--,)--tcet.hforune. methforyl (CF~--)-..,-ethforane (C.F--etbforene (C.F) methfogs for this book---mcthfor~ne (C~F~)---.cthforcrm (C~F~)-~methfo~ peroxide (CF~)~O~, Early Early HHiissttoorryy the CCthhieemmmeisisMttossihhsaacvvaeen bbieeseeonnlaitinentdteerreteshstet.cedcdliiernametthnhete ggarrneedaatt reactivity of have known reactivity of fluorine fron its power 0 fluorir~e fror.~ SgitghaineninttihinigmgmsecceaalMrfrbbooofinnossaauaccnneedoouiutssshoalssatuutbbecsdsattaratnbnhocceeensscala~nemdroeooonortmmgaan~Lticedcmmpphse~eurbrva~sctttuuakrrnneecoeoowsrrnbcbeaeilluto~ogwwh'p.towfMierper a1o fAcslauhuoanorrriaihncnietem.e.rsiezlHHfaetefioom munaandoddfee tteehhffeffaoostrerttcsswaatarosboiivsnsoaolgl~aaumtteeed;tthhtoeehregpprarrenooiddwcuuaccssttussabnoosftfaettnrhhrceeoersrreeoaacfccatotuiivogoennhr,,t 1bbf1uiur0ttehiie cvtthihhoeealreanbbctoo,tiiellriiininzggiatinppoooon:iinnsottufroop~ffrbicssmmieenetgwthh~ftfoshorarwatann~peegu..uree; AAmtshseetrhttehfheeowssreeaasnerr~eemaWaccaettsiriorononnorssttfaapfrrreeo.evpeaeerrxxett1drr~ee0wm m~neetl:~s sv11ti90ou22dl66eine((dt88,).).im~orisSSe.utnLbobsi~nesetqsequunuerspeninrtvitles]lyyiny.gttihm~eP]mrrreoetadapccuuttciirtooesnnmfbbereettothwsmfsoeeertaannhnectf~uhuwoiograrhisi~-nnteeeomaat~pnxpeddrreacctpaauarrrrbbeeoo.dnn.rueww anate~si. sG{titiaouolnndliebbdeedttewwmneetoeeirnnfeeftdlliunuoote(rr1~ii7un)see.ivaaennlyTdd.hewwsooPeorudowdehcur]amcertvsccf,ootfarnu]onmdii~nt tt2:~hoehhabarehrddigCaghFl-sat,sessmStTpuiuebkbr,eeatwWuOoreerruee ppaaarrm- i`itninwaddileegifyfhiitnn;iiidtteneendcctioofininhedddeeenansv(sa1ayt7tee)p. lbbeooTsiilahinnnegtgses-mw5e~l0e5lr0~iengttfooofulu-ni22dd(0)btooCCilibwnwegiittohhCvFevvr~aa,0rryySiicinnFoggtn,tm maComolOileenzcc;auutl~ieaadxrr wwiwineittiehhgdhHHtiFCFaaFnand,nddaCLHhaSe~FiaS,FviFeya~.n.pdleTTaohsthaheeenrtaauusctmtohhemoolprrlissonugssnttatadlttuseeidu~tp,hbhaoa(tti0littnhChgiiassoFllvi,iqequruaii0dld~tphpcrorooounbgbathaabbm nllyoyinsccauoobtnn~--- stsmattuaiasnnnteccdeehssaCwwv~eeeFrr~bee,eiieGssnoacFlliasnat,eesaddmnaoodlrrloiidadtheemnenotrtiuiftnciieoteddms.. pbmeOOcmbabvudvissioeouuuospfslltyytohecettiChh,fl~foFoor~rw~:am,bnoaeeilltaahinnnoddgugppporhri0onpnPtfosfoo;rsranaunnbdee.- fm tUhuheuoersdootdcohoararrvbm meounubssset,tenhhwaahjvvuieecshmccooamamlrleeeaffmrorodoomomurlnssetosossmm.beeecssauuFtbu~bsrssetttiahotneufcrtteehewoohott"hhrelekorrwt~(h1bh6aoa)nnilittnehhgxeepphmmoieinenneattdsiti;ooantnneh~dde cffflrorueneoqtqruauoececntnaccrwyybiotoonhffs,vcviai~oorlvblebeoninntc..th eeaxxrAppellooWssohiidoiootnnressleettshrsht.ya~tttalFoolccucicrunutrehremwwrahhteweenrnoirakffllluuo(io1xrr6iinfn)eoereimixssepdbblarriotonhuueaggdthhtththaiinsen mctthoohetenhtaccfcoootrmm,appnoweosi.itslit~tiioocnnaHrCbCooFcFn.a..nosTTAfehhiitwsshhemmiatvateieteerclririeaaynllsctoeeaxxlolppfilnlooteddheeemsscaooxtennplriohhaseeliaaotitnsiinsnfggoonrttmlooyeggdivivveteerhyacc~hhsiimsehaffmlllyly~ Hqm quuueaoantrhntifitniotteiriaee1nss0c.foofofr~mppcrrcCoo,mddFuusccebtteolfccooowtuhulel2dd8v0ibbo,eeleanboocobbevttseaoiifnn2eeL5ddh0.e. eaxAAnpcdcltotiisbvvieeeolnosccwaaorrsnbbolooymnneveatarddeysmsoopsrermbbraeesldd-l dfttuluourroeserssitnhaaeebboo~rtvv)eeeafcot44rim55o00n~CpeeFrxxoppcbleleooelssodiiwoownniss2t8hr0roeeuss,utulaltetb..xopvloeO(s)nin2loln8yy.0aatt;rWovvideetrrhbyyeglohhriwaiggphhhsiotttmeeememapdpteseeromraratpptutueirrroeeanss- dbppruorooreccnseeiteenhddgess urnbbedeeallecoortwiwo7n044022p00.r%o:,,ceAeeexxdppplrlwooossiditiuhoocnnotssutfbbreeeoxttmwpwleeoteeshnnieone24.x20p(}l~W osaaiitvnnhedd gd77er0a0c0p0o~hm,,pitoeaasnniaddtdisonnonoorpttffhirroeaentee aabisvuenarrnnainig~)egiylyuthlgniiqudsneicirddo7maa(}ptt0o~rrot.ooiomomAnt.tpeem rmopApdexeurrcaanttteuuifrrrtoeehmeixrs a~tbhssue~stufucmomxreepaddInoettsooivn[boemordC(ae~cn.Foy~Fm0hpiooogrrhsaaeiSttri-ollbeneoa~fs~lttiant0ogt aTivqeuriadgefutohriosccaorbmopnosshi6aodn.elAbseenneiithsoelratbedu,tfothriasnessnsomrpatniyonhligsheexrc-ubsdabfilneg, liquid fluorocarbons had yet been isolated, this assumption is excusable, iid 33000088..00000088 STATE 07525282 STATE 07525282 PRO 407 as it was not then known ~h~t tlm.sc were nonoily liquids of low viscosity i aanndd ttlhmatt bbuutfffoorraannec lb)ooiilleedd tb)eelhomw' rroooomm tteemmppeerraattuurree,. Ethgorane was firs~ ~)bi;aincd frown the uncata~yzed reaction between fluorine and carbon (17). This substance was obtained by the electrolysis of acefforic acid in aqueous solution (26) and also by the passage | ooff mmeetthhffoorr~annce aanndd ddiifflluuoorrCoMchdloorroommeettbhaannee tthhrroouugghh aann eelleeccttrriicc aarrce ((1155,, 2277)).. Ethforene was Mso first (~bgained in Otis manner. The Catalyzed Reaction between Fluorine and Carbon A fortunate accident onal)led the re~ction between fluorine and carbon ~o be eonduet.ed witlmm; expl[~sions a~ a ~emperature sufficient,ly low so th~ [~ mixt.ure of liquid fluorocarbons was obtMncd (21). This enabled the iso]~t,i on of l)roI)foran e, l:)u t.foran e, pen t,forane, and hexforane. The quantities ot)Lained from the first, set of exp(~riments were insufficient for precise dei,ermim.tt-ion of physical properties. It. was fouled that | mmeerrccuurryy wwaass ta~ ggoooodd cca~ttaal.lyysstt ffoorr tt,hhec rreeaaccttiioonn aanndd eennaabblleedd iitt, ttoo pprroocceeeedd smoothly wit;hour explosions mM with the forlm~tion of significant proportions of fluorocarbons hoiliug higher than methforane. The first use of the catMyst occurred when :m amMgamated copper Lnbe was inadvertently used for the tenet,ion. It was later found that ~ small amaunt of ~ny mereury compound added t.o the carbon served as catMyst (22). The products of the reaction on separation showed 54.5% forane, 12.6% ethforane, 8.2% propforane, i,wo bufforane frac6ons of 55..33aanndd 11..33%%,. 55..55%% ccyy.,cclliicc CL'ri,FI~y~,,, 44..44%% ccyycclliicc CC~oFy~,, 11,.33%% CC~iFyFuy,, 55..55%% ooff a mixtur~ boiling 25~ to 95, and 1.5 % of a mixt.ure boiling 95 to 160. ~e originM isolation and identification of s~able fluorocarbons con- taining four and more carbon ,~tomz per molecule ilnmediaLely ~rongly indicated that, m~ entire new field of cI~emistry would eventually result we rn as further studies were made. cation gs follows: 'I?hi~ was expressed lit the original publi- "The substances a.re colorless and either odorless or very nc~rly I~OI They B FES on ER very stable chemically. Many of the tubes contMning these were seeded off while an ~ppreciable pressure o[ the vapor existed inside. No t.racc of etching or carbonization couId be observed in the Pyrex glass scal~ which tnt~s~ have been at least 700% The different fractions wcrc tested for unm~ura~ion with 1)romi~e in carbon ~$rgchloride mlution~ and no deeolorization could be observed. The formation of stable compounds of carbon ~md fluorine containing more ~haa three carbon atoms per molecule indic~tes ~he possibility of the synthesis of a largo number of ~imilar compounds provided that methods can be discovered. Such com- mands should be of considerable interest, both theoretically and as u~ful subs~nces. To indicate the relatively low attract.rive fore~ botweon the molecules nf t,h~se compounds, a grapI~ is shown in the figure. The molecular weight is plot~d against the boiling polnL On the same graph are represex~tcd the iner~ ga~s~ the hydrocar- 33000088..00000099 NE STATE 07525283 ws ir 0 a wen ---- im ve cures wheres he hymen saree bn very ith whey The the iner~ g~ cur,'e, whereas t.hc l,ydroc ~r)m curve is very much higher. i ws on 5 pe or rn eo fluorocarbons a.pproach the inert, gases in propecties more closely than ~y .; --wo Foliar! "4' . , on i i a o pr to :: Eiom [fen i ETE) . is wa wm 800 4OO -- l~Ioleeu|ar weigll~. i. .-Simos an Hock compara of forest subABE, :Fzu. l,--8imons and Block eompa,rison of fhmPorarbons and other substances, Recent History Recent History Other meth of obtaining Maoocarons soon followed. Fs O~her methods of obl,aining fluoroearbot~s soon followed. ~rede~- agen and Cadenbach (3 controlled Teackone between clement hffluauogorerininneeaaannntidd lCliiqaquduiieddnbhhayycddhrroocc(aa5rr)bboocnnossntbbryyollttehhdee bbreeenneaefcfiticicoiiaanlls geometry l:)eLween ge.omet.ry ooeffflfeiimnneeemaetasrhy ccooppppeerr ssecrreeeenniinngg.. NNoo fflluuoorrooccaarrbboonnss wweerree pprroodduucceedd,, bbuutt ccoommpplleexx rots contin nll ereontng of urine ere bined: 300 Calfee, and Bigelow (8) employed the products containing a small percenta.ge Calfee, and Bigelow (9) employed the same idca of fluorine same ide~z for the partial were obtained. for the partial replace. :~/ii!!er, replace- nent of th chloro. of heachlorocthane. with uorne fn th Yap" ment of the chlorine of hexachloroethane with ftuorine in the vapor pphhaassee.. EEmmppllooyyiinngg tthhee ssaammee tteecchhnniiqquuee YYoouunngg,, FFuukkuuhhaarraa,, aanndd BBiiggeellooww ((2288)) fflluuoorriinnaatteedd eetthhaannee aanndd oobbtt~aaiinnecdd ssoommee eett]hfffoorraannee.. ITtt wwaass nnoott uuna~titil! FFuukkuuhhaarraa aannddBBiiggeellooww((66))tt,rriieedd bbeennzzeennee tthheaftt tLhhiiss tteecchhnniiqquuee yyiieellddeedd hhiigghheerr mmoolleeccuullaarr wweeiigg]h~tt fflluuoorrooecaa~rrbboonnss.. CCaaddyy aanndd aassssoocciiaatteess ((22)) iimmpprroovveedd tthhiiss tteecchhnniiqquuee bbyy ssiillvveerr ppllaattiinngg tthhee ccooppppeerr ggaauuzzee ttoo pprroovviiddee aa ecaattaallyyttiCic, ssuurrffaaccee iinn aaddddiittiioonn t~oo tthhee aaddvvaannttaaggeess ooff ggceoommeetLrryy pprroovviiddeedd pprreevviioouussbly" 33000088..00001100 sare orsasass STATE 07525284 FLUGROCAKIONS AND THEI PRODUCTION 00 AND TIIEIH, ---- | amaenntddhommda.addee Rtthuhfeefpp(rr1oo5dd)uucactntiidoonnRuooffffssappeneccdiiffAiicscctfhluueoorrroo(c1c4aa)rrbbsoohnnosswemmdoorrtoeheffeepaarsseiipbballereabbtiyyontthhoiisfs cmoeb~alhtoidc. flRuuorffid(e13f) r:oromd Rc.o~bdYulatnodusA~flcuhoerrid(e14)anshdowMeudortihnee.preFpiasrhae~rimatnodf Jconebnacltkicnerfl(u8o)riudseedfritomin tchoebsaylnttoh~essisfluofms'iudlefur~nf(l.u!orfildueosr.ineR. uffFiasnhderKeaiadm cJ((1ha1l88eo))arciuukdssenee.dedriiVC(t3oi)nbnaulttshtheeiederrieteflpi)lnlluaaoctrc:lei~emdemeeseny~itatsthooaffcsceiphhsloIooworferiirnnnfueeulflwwtwiiOtff~hulouffrolluiruinoodarreitisnni.eengii~nRauccgfaaefrrnbbatoonnndaKtnteedettriramai--s crhedlourckelde. toCeoohbaalltitcoustlufolruiodreideis in~ tphoewreerafcutlionf.luori1natiisngreoasgiednistedanbduciks trteoeomdpttulhhcoeeeydcceoodbtboaatlhltticiiseocbtssaettiacathottenouishbqyyufelcuelwloeoirmitmdheeennhttiyaandrryrytohicfella~uroorrbreiioannnece.st.ioannFF.doowwplIrlteeerrpiasaarnnerddedo~axlssaisdoroigeczeiieaadq~tueeassbnat((c4i1k))- | etimespolofyfeudorthocisartbeocnhsn.iquGeowodityhiehlyddsroocfasrpbeocnifsicanpdropdurecptsaraerdo lparrgoeduqcueadnbtiy- | htthihaieissss obppferroefolcncueeossrrs.oe. cpaorrAAbtnnoeoodntls.hh.beeyrr (hiiPn)naotterderkreyssitateiinlnnddggs omamsfesetsotphhceioocadditfeicsooffp(rpp1(1rr)o)do.ddnuucctcsFiinrnaggorcmfflpuucroohorrldooouccrcaaoerrfdbbooorbmnny,ss oC!C~fFFu,st~hCCibI1seHHemnaiitsserrmmeiapaado.lderety,,eideuulssdiibsnnygginLtPah~aueerdkiSStwwiaaoarnnrtdtsstoarreescasatco(ht:cftiiioo~ornfne.,e.nsc, AA(stmltat)hlh.elerrmamFamarlool umddnoetccscoohmmolpofporsooisfciottiriomoomnn, | poppforoouutphnnfiddsorm CCe~anaF)tFea,ri((e~ffiyilrressy~ltoieb~rluepdptosofrro~itnreeud,::n]l~e(,ttl(oolaitnbIi)oedcnecctxy~o.c)clmleooptpohorrfuooonpprfdefoonsrreaao,nnfseem,t, habbeluluftt~omnnromoouwwulnatss.hshHooo(wwfCnnFa:ttc)ooo.mCbbl~ee p(wroitphf~r=eneex)t, ecnydci!nogb(~tfofor1~4m).c, ~Tmhdesce()mcpoomupro~udsndosf fci~acn fobremuchlaloHri(nCaFt~e)d~Ct1o r(wepilthacextheexhteynddrionggentoato1m4;). an'dl'htehsecn bcyomexphoauunsdtsivecaanrdbveigcohrlooursinfaut;oerdinsto- || replace ~hc hydrogen ~!.omi ~m(l tlwn hy exhaustive ~a(t vigorous fluorina- r tion, o the c chlora ine rmeplaeced dwitih flduorine. Straight chain and certain tion, the chlorine replnc,~d wil;h, fluorine. Straight chain and certain bcyyci"AMiAicnnlfoolltetuhhroeerarroncdiiannrttabeesorrseenossscttiiicnanatggnesmmbe(ee1t0tho)hi.b~stddainEooleff deppmrrbeooynddtuutahccriiiysnnggpflauffttohutrm.oirnroeoccraaerrabbcootnnssswiiissthrreeappoocrrottemed-d pblyetM elyillhearlaongdenaatsseodcoialetfeisn (i1n0t).he cpoleutpelliynghailnogacdndai~tcidonolteofir~eimnovthael llEoiiqflqueuum iinddsepapnthhtuaaarssrayeetaaifltotuntlooorbwiwnyetteaedmrmedppiaotceritrssoatntwuurorifeethftoolaucoccraaoiutnmseee.- AAacdonnduipiitnlniittnoeengrreeisstnttoiinanogdgtdheeietxxriaaommnpprpltoloeeduriiesestmtst~oh:veeCaFaaldd,dodCifitltuiio--nonnCsaFootfCuf rlffall--utuioCoorrFaiinnCebeIyt~--oaaCdCCFdFFiCtOCiIIoI=n~CisCoFfFCobfCLltu.aIoi.nriendIIe.nn. DDlaiedeqcdcuhiihltdiloooprnrihinnaatsaotetiioofonnltuhoyyeriirieenlldpadtereioddodnu(C'c.oFFtf,yzs~t--h-CCCisFFFd-.-s-i-CCoClFIeF-f---:i.C~n::,:CF:fCCFuF,io-~,r-,CocbbFauuCtrtaaIbf-foo-onCrrsddFiiseeeunCncce.1h. isOnobftauirntehder. usOCnoyfusrtahnedr lCiaqsuFidg pwhearsee ofblutaoirninead..tion of this dlolefin~ flttoroearbons such as GaF~ and G,~F:~ were obtained. Catalyzed Fluorine and Carbon Reaction--Pilot Plant Study Inmopucrion theTTChhoeel,AAgrFFe,a,ccctaiatotanallyywzzieetddh rrhcey~adtccrttioiIooc~Nnxa't'rIb~bb.eeOoitDnwasUveeGeweTnneIOrffeNlluudooerriivnneeelaaonnpdde hhtyyoddrhrooigcchaarrbfboiocnnisseaannncddy | ddtRhueuerlriainCtngigo,vFett~hlhyeerhpepieaegrcrhiitoiooyddine11lw99ds44i2t2oh--f44oh55nyeaadnnrsdodpeccu~airrrfeebicoddaneelssslccyrwrdiiebebsreeeiddrdeffdeuusvllllueyybloseeplttsesaedenwwclhtemoecrrahcenigiinhnbetthehofiibfssitcbabioieoonnokecky.d. | wcRwioeitmtlhhabtittihnhveeeemmdl.y.hhyidgAArhsosygbbeiooentlt,dhhstooohfffeito;hhmneeeassexespippcrmrcoouiccfmeiecssassyteeilssyeluuddsseeebsiacerseleeedmm desenuontnbtasaftrrilytyuuofftrleliuuncooearrniiinnsebeoettnooolbyrretea5ppil0lnaa%cece,de: aawcssoamrhhtaabliliffmneeoodffputthirhmypedorffsolluegusooerrncii~onnseettshggooeweeessmrei.i,nnrmxttoioomttuhvhmieetaffylooirraemmlndaadLtbisipoaoensnceidoofffic(hIm~ypydrfdorlrudooouggcrecitnunseffwllieusuroooerriindduleeyr..ge5n0FFt%oloyrr, nweaerdteimd,e apnudrpotsheessecopsrtoscwesesreesnowte.rveitaslelaencdtesdpeocviefirc pthreodcuacttaslwyzeerde urregscetnitolyn needed, and these processes were select.ed over the catMyzcd reaction 33000088..00001111 SSTTAATTEE 0077552255228855 | atw0esn Muon and casbon. Pthi-- s Itt proces al the fluorine Bila between fluorine and carbon. In this latter process all tl~e fluorine ity wa nto uorcarbons, ut tho rest porcentag s methforane for its way into tluoroc:wbm~s, but the ]argesl. p(~rcent.agc is mt~thforane for hich there wan Hilo wartime we, As al the forocarbons Show which there was li{,tle wartime ttse. As all t.he [luoroc~rbons show pprroommiissiinngg ppeeaaeceett.iimmee uusseess,, eevveenn ttoo ssoommee aapppI)lIiiccaattii(>onnss ffoorr mmeetthhffoorraannee,, t~hee ealysol rewton ebweon Torne and arbor has been studied 18 catalyzed rcactlon between fluorine and carbon has been studied sate deal. on this proses requis uch os cquipment than other greater despoil. As Otis process requires much lcus equipment than other eth of making fluorocarbon am us th rocot study shows only HG methods of making fluorocarbons and as !;lie recen~ s~udy shows only 34~ methiorune, bt lle promise of soonomic wlvantages over other proc me~tfforane, it offers pro~nisc of economic ~(lw~t~t~ges over other proc- eesssseess.. AAss t~hhiiss ppiil!oott ppltaannttssttuuddyyooff ttihfifss pprr~o)cceessss iiss nnoott, eellsseewwhheerree rreeppoorrtte~d,, tie given hor in ome dotail.+ i~ is given here in some detail.* In Fi. 2 i shown dhe retTinevmsea. The charge of carbon, and Fig. 2 is shown the re,Let.ion vessel. catalyst were pues upon the ron tas. The ume wae supplicd cata]yst were pl.'~(..ed upon the iron tray. The charge of carbon and The fluorine was supplied etronan oY Proc if revit LOD Whi zm e [FlinT t prom{t4 wl ATL fae aa 4 [Fim sa Es ~ - O~y ice-Al~o~ol EE In S~tles ~it~ EmL e IGn\d I] - DO~t Flosk Hoo~in~ COil I ~Le~seo. End~ r~"high ~ EsENO V~EW ~fe= Nichrome oitisd~v~ded of ~hich con ~e he,ted Fie. 2 Appar sm i the mre ental reaton neon rion and F]~;. 2,~Apparatus us~] i~ tim mervm'y c~t.a,lyzed rt~udJon beLweml ~hlor~n~ and from a 50-70 ampere generator, and operation was continuous except oe from a 50-70 ampere generator, and ot)eratAon was continuous except for replacement of arb. As the reartion zone proceeded through the ~placement of carbon. As the reu(~6on zone proceeded fl~rough the Vee in relatively narrow region sarin at the fuorne entrance; is vessel in ~ rel~tiveiy m~rrow region sl~rtinH at the fluorine entrance, its presen toand the far end of th tube ould be detested by the hero: presence tow:~rd the far en.d of ~he tube could be detected by the cherm+ Couples. Time fo rochargo i indicated by the vention sone reaching couples. Time for recharge is indicated by the reaction zone reaching the fur nd of the charge Fach eharge const of 350 , of Nort the far end of the charge. Each charge consisted of 250 g. of Nari~ +The argc section for Tauro profusion, wes conducted i he * The large.scale reaction for Ihmrocarbon prodm~ion was conducted in the rts oft Moneta Sito avd. Bening Compose he wire laboratories of the Minnesota Mb,ing and Manufactm'ing Company. The ~na rd nest wet od Dr: 1. ron te ors Alo fions and ident~ifications were made by ISr. W. It. Pea.rlsm~ in G~e 8ut.hor's laboratorY iro omen oft boreenon empay under the sponsors]tip of the above-mentloned coral)any. 33000088..00001122 STATE 07525286 STATE 07525286 SO m :FI,UOROCARI~ONS AND THEII. PI{OD~JCTION 411 carbon mised with 5% of mereuric fuoide, Th tempera of he c~rbon mixed with 5~ of mercuric fluoride. The temperature of the eacion val vas held ete 350 an 35 reaction vessel w~s heM be~ween 350 and 385. Ahough muscu was uae ss the sualyt fn tis preparation, i hs Although mercury was used as the catalyst in this preparation, it has 1 be Tou tha other subancs hv eatrytic offers on tis ection: b~n found that other sul)stances have catalytic effec~s on this reaction. Alumina, antimony, and itn a cxmples of sch cals, bt. hey Aluminum, antimony, and iron arc examples of such catalysts, but they aarree iinnffeerriioorr ttoo mmeerrccuurryy uunnddeerr tthhee ccoonnddiittiioonnss hhecrrce eemmppllooyyeedd.. OOtthheerr ibetanes havo dorimental alc. Soliam bromide appears 0 pro substances have detrimental effects. Sodium bromide ~ppe~rs to proTote the merce producion of (OF) mote the increased production |I Fuomers ------ A total of 19 kg. of fluoro(;arl)ons was produced. Separations were made chilly by disiltion, bat Faction] cryetafcon wos employed made chiefly by distilbLtion, but fract,iomd crystallizarJon was employed To anv sents. Pannocbons wv axvntiondly mt ah sper in same eases. Fluor~)carbons are except.ionally easy and satisfactory subetance tn distil, Their extremely low sacs fendon and ih substances to dis~ill. Their extremely low surface tension and high | density, coupled with u viscosity of the sume onde as hydrocarbons of density, coupled with a viscosity of the same order as hydrocarbons of | TABLE 1 TABLE II | Putin Prt rom the cy Cate Retin f Frise nd Coon Pa~tern of Products from the Mcvcury Catalyzed Reaction of Ftuorb~ and Carbon | olf eC Wig 5, CRS1 Bo liug r~mgc, C W~:i~ht. % {~trbol; ,,~torfls per molecule fm wn Below - 10(l ETE -100 (,o -75 Me ono -75 to -~0 Sew 8a --36 to +5 Huh o3 oo @ +5 to 42 Gey @ 42 to 57 seEo3 6 57t.o 80 Sum too 80 to li6 dm ob 6 i10 ~) !20 main by on 120 t,9 148 mim bh Gre 148 (,o 19'd wim ba Gre t95 (,o 239 Sh 6 Cite Solid at 25 34 16 14 8 8 8 3 1,0 0,6 0.9 0.4 0.3 O. 2 C, C,, C~ C~ C~ C~ (~ (t~, ~md higl:cr 1 the samo bofing range, enable satisfactory se of columns of high fi the same boiling range, enable satisfactory use of columns of high effiney with remarkably I throughput. Comme wer wid heving ciency with remarkably large through-put. Columns were used h~ving boafr mn. packed 16, with yn. ssinlas tel hls a. ake a bore of 9 m~n. packed 16 in. with -~k in. stainless st~el helices at tM~e-off tesof 25, pr hour ith 50 to 1 ia aio, The primary dilation xates of 2 g. per haur with 50 t,o I reflux ratio. The primely distillation Felted in the separation of produces contin the umber of carbon resulted in the separation of products according to the number of carbon Soma upto und inching Co. Fractions Cd apand each contained atoms up to and including C~0. Fractions C~ and upw~rd each contained 1 umbof omeensrandmitre of eye and ele compounds. The a number o[ i~omcrs and mixtures of cyclic and acyclic compounds. The Pater of product shown in Tablo 1 pattern of products is shown in TM)le II. 3300088..00001133 State orsasas STATE 07525287 i] a ons 412 ,J. II. SI~.I()NS H13Y + FE [100003 nEReE 2g, $:3)% Prin E3RER RE EFPiE[aBt (rr gBnEzEeRnR I8R $885i1254%,ph|[zmFazeada2En sminse adndn qen i1 HH 1giaaBRazdaasiiienneeg. Bi). 3m 1 "| Bil |i cscomnonnee fi | & | erereanzeles! 1] 3) 135 |4|sasaasgnenninn i 5|4 sass3sussscesasns lo = i3 EiE.E gz? |25121e3hg 8 88 A AA Iy,e 8| L8aapRjpiiNciizEamaiezasz Seizing ||isiasaisisisrsi2s2di8i0Sidn | li 33000088..00001144 srare_ors2szss STATE 07525288 wr | A caretl sdsillation was md ofl Fron. The C.F faction A c~reful redistilh~tion wa,s nmde ()f ~dl fracLions. The (J~F~,, was fone pol by acon ysl, ad faction evel w~8 further pm-itie~l by f,'act,i,mal cryst:dlizal,ion, ~md fr~(~t,i()md | tio compined with itlaion, separated wn omer evel om- lization combined with (list,illati~m separated two is~)rneri(: cyclic | pon of th orm C.F T-- he material CoP prota velo pounds of tl~e forrnul~ C~,F~. Tim materbd (',r,F.~ is probably cyclo- }| 8--AliH1fle | Sureegl [EO i f e +t fl || |: pl{ ul| | | : = lil HH i ml | SETH | Fie 8. Apparatan oth demon of pee dit of ih ols wh es f;'I(~. 3.--Apl)a, ratu~ for Lh[~ (lc|e, rmi]i;L|,ion of proper ~(msity (d higl~ moh,~ular wei~hL fhmroi~arbons. entfoane and he remainder of the, materia is roa mixturoef pentforane and the remainder of the G:; material is ])roba~bly a mixtu re or" omar acyelie mem. The properties of he carbon fraction isomeric acyctic isomers. The pl'ope,rtie,s of the six-carbon fr~ction indicate the presenes of at Tse thee ndvial compounds. Two indicate the presence ceyyeclliicc ccoommppoouunnddss aanndd of a|; least a~ mmiixxttuurree ooff three, aaccyycclliicc iinsdoimveirdsuawlerceosmeppaoruantedds.. isomers were scp~l'atcd. TOwneo One 33000088..00001155 State o7szsass STATE 07525289 an 52m sons eacyynecdlliicccoccmoopmmaprpoiosuuonnndd wiissitiidhdeennattiipffirieeeddvi~uo'~sus scelyyyce'llooobhhteeaxsiffonover~damnceeobIm,yypoiitt,ussnhhdiigghh(8)mm.eellttOiinnngge pprooeiilnnat-t catt,iniavvrdeeblloyycnoppmfuurrpraeeacrtaaiicscoyoyncnclliwiccwas~CCt,shmul~s'~l~egppaffrrrraeaacvcbttilioioeoun,nslwawyla~tsoshbSsoLeueaplg)iaahnrrea~cdtmoen~dc,td.o,imnlbmuupototu; msIt;lhhMyee rrte0eass5~kt)e,oonff rOtthehnefeereeaiircggethhliatvt.e-- iccinnaadrdrbeebxoxonndduufmrnraii~tnneeggrtiioddaaiilss~wiitllahlaaesttr~iueioonnnisseiipantnaddrieli~.ec~laa)msltet~e,ddoanaai.trto~.hlleeoey:au~essglttih, cff~ciawvonen, dLccooiommmnpmelo)uoubsuinl-ndyedsy.stea.lkiceITncnnortetmhhfpereaoncuitnin~der.-e "; TacTanhhrdeebosbbniiix-ccmycyc~acltrlieibccroian(C.7ty~aFFtyth~q6oermiiess ippsbrry:ee~s,scuulom emmaaspa~bab,lrlymyismato~ n%cc~o~wmcmilqptie.hom:utmmn dddprowewnviieittohhhusiff-lucuysyseecddrliecprrioicnnroggtm ssedoopffocufonimvd-e. rpapinoonduugnnwsddiixt((h77c)).ta.hrbreoTTenhhmeee~tt,mmhOoflonnoSnoro-ybc-)cyyygerelcohioucempsccp,oo~m amrsipsptooonuuhnna"dds.viUtii,hhssemm:ptoropsosttpr,corvlHtiikkioeec.llssyyloyfaatrssheiiipxsxo-c-rmtomeemedmm pbobeurener~dd ~ aharsisinggggihievwvreie-n~nh;hoppithrlreernevvgeiiomomauutsseelliyr,yhifa(m(l77).f).f.l g1rAtA,.nnmwapiissun,dda~livsvsM ioitdl,tul]ma~llwsicctt,hoohemmlpppiorqonuuupinndeddrft;riwwcaacsatssoifossnteehsppi:abs~orrciaalottieemnddgpffborrouootnmmhd > hiimgmheedri-abtoeilliynghimg:hde,reriaMnd. loIwterw.as aItssnldiedtwerilm,hinleiqduMmolfer:cuu,,l.ta,ironswebiogihlitngofb5o8th0 - cimormreesdpioantedlsy thoigChoerl~smdanlodwienr,dicaltt~essdetth,eevmcohmmpdoumn,,dlectuohuc"onwsiesitghotfotf hree .- ffncluaotsspreehrddetshsspeiionxxen-.-mdmseemmt.MbobaeetCrreee,r~ddiIa?rrl~iinnwgagissntdhaarrrbir~noamdinlicggi~eonfddgl:cpa~somnia[~n;luhtolesoggsocouh,umsosvU~temoo 2utl~4mhh0ecthhCtyyoddwrarcoosoccnsaasorrilbsbitoodnnoaftbbert,ehnonzroeo~me- :. ntrt~eaoempomphmeptr,ehatretaenutm.reupe.rec.r. aMtuTTt~rhhteeeeriapparrrleoowppgeeitirr,~vhte,iincbessoiioolniffngccTooapmbmolpipenoolu;u1sn1n1~d.d]ssma~vSmnetdtla2n4ffrd0r:~a0aec(rt't,,diiowonmnassesabbsnoooisliilldiinonfgagtdaarebbotoooevvrmee. rmoionmingterpnrpoeprearLtime'sc w~e,'reeguivseend ienxcTepatblefor111m.oleSctu;:lmarda.wrdeigmhtesansaboofvede4~0r0~. mining properties were used except; for n:ohw.ular sFhoorwtnhisinaFnige.w3donsity balance was designed (23), a For this a new densit.y bahmce was designe~:t (25), a diagram weights diagram aoobff owwvhehiicc4 hh.~i.s shown in Fig. 3. `The The EElleeccttrroocchheemmiiccaall PPrroocceessss ((2200)) . Intiovverion I NTI~OD UCT1ON "To produce fluorocarbons without the necessity of generating ole sm mterenanTtttaeoadrwyptrhffolaludtutoolfrreiliCnnueeofrhhlouaacsosarrhboboecoeoannnrsbaaoconm mnsat~jajwooirnirtihoonbobgjujeetmccotttriihvveeee tffnhrreoaocmnmestttshhhirteeyeettioicmfmaeorgbiiettonnwwearaaassttoiddnmeegsm moDonen.r- mAmsto.Porlalese~cceuudallneetd.tlwwt~ehererfoeluCosso~troaaPbcblaleerpbroaoacnnnesddssciieonnsnttteeaMrrreeenssitteniinxgnaggmmpssoluurebbesbsttl~;aohmfnacneeeexsscl.~.ehlrleAAecnlitcrt,~hhtrooebuucogghnhhnoalbbtoooogm ttyhhs a~tnhhdee AaaarrmgeeoFucc,naatappnsaadbbloleetfheoeofqfCuppiorrpFoom~ddeunupctcri,ionncggoespsm emerasaanntayyerdeddeeeusxsniiadrrmeaabbrpllleeevsepprorryoof ddecuuxaccrctetessf,l,ulelttnhhtceeotyy,nvtvrrrheoenqlqouuilaiorrnegedylhaa~xrregg,ee attchhm oeedrroueeruffenoosrtrseef,,aovqqfuueiiett,qbeeeueieepnxxmppdeeeennnsv~siiivsveeoe.dp, etraoAAl~reenndduuum mucbenbedegrerrreooaffvtleccyrhhyertomhcnieaeicraaealmflllouyyulnvvtcee,o~rngyotfrosskekli~ll~Ielfmnuudell nptraory. fuorine cedures fluorine general, required in the production have been devised to reduce required in l,he production these procedures involve the of the ~reatly of t.he fft,iihnneiissahhmeeddouffluluutoororoofcceaarlrbebomonn.e.ntaTrny replacement of hydrogen atoms on ghhcheyylnddoerrroroiaccnlaae,rrtbwbhoioetnnshsse bbpMyyurooddcriiierrndeeeucctrteaccsshhlilcnooarvrniionnlaabvltee)iioortnnhe,,aedt[i~rhle}emypnbn~arrcceeecpmpollymea,npcctle~eimmsoeehfnnetht;dyoodfwfriaoatssghemmntuuhcaec~hhooSmowffastrhtes `rcrceehoaaluoccpttrliiioinonneng ooworrrHtt,chhhheelfolthtrnmaidlnvooeiggnreeeonnm~eeosxxvcacc:hhltaansnntggbeeepe,wwraiein~tadhhdihlhfyiyynddaarlrclooeyggoeer~nnenppfllllvaiusocohrereimidddeeen,,wtitt~ohhfheenntthhppeeeerrrehhsaapipsds.uaal cccthhoillumooeprrsliiinnnweegasaaonnrtddhcehhhlsyyoaddrtirrnuooreggaeerteninmonwwoivoittfahhldsoeeluelleebepmlm,eeetn~nbtntoaadntrTfydlnsM tfllwuuliyootrrihrinenepte.hh. ~ecceTTlmhheieimssne~nlltauo,ssf~ta~ssnhttedeepprfeossriotdmhnei~-s times was ~he sat,uragion of double bonds wi~h ~he elemen~ and for this odd 33000088..00001166 SSTTAATTEE 0077552255220900 a -- FLUOROCARIONS AND THEIR PRODUCTION a5 415 lacaslstetmssettneetppforrrceaatgghcee~nirtt,sspssrueu(p.c4ah~raautssioAgn,gkFw,,~e,rCo(?oosFFo~,m,et,a'rinomddesBBrruFysz,e,dwwihhniisccthheadrreeqqofuuiitrreheded ctthlhe-e esemelneemnmtutecinitthtsseeflleoffl..remtehAAnelltilrattrhphyereesspheeaarlmmaoe.e~gte,ihhnamonad, ssswtooehffreeppdrriseoroppcnaeatlrre.~attitfmiiuoooennrsirrnuceaqsqteuuiidiorrneeinwtts]ih~tteeehaggdteehnnooeefrrcaatlthteiieomoennenlteoo.-ff aTTtshhhooemuosounenclhloyyfeaalceddhmlvvoaaernnnittnta~aeggreiyen,,shtww:e~hMaliodccghhoefnmmfa:la.s~uyoytrhinnenooett(flibborroceepaatnnfalaoauddforvtvriaahntnaaetttaainoggeneecewiisnnsiatmmhrya~tnmheyeyleeccmlaaeessnmeetsse,a,nriitys. hthhaaello"ouFggsheeeen.n..ooflecchtlororicnheeminisc(a)le~dproofctelsnsorpinreodfuocrepsarfgluoof rthoceanrebcoenssdairryecetlleymeinnho~nrye ssH~tueeopprTihnw weei.it~ehhloeoIuct~ttrodtcothhchesemee(imhmcipapsllloobpyyyrmmoecernenesttp;slaopocrrreomdttehuhneectesggoeeftnnleuehroryaardtotiircoooanngrbenoooffnswaaidnntyiyhrecdfellteeluymmoereiinnnn~teaao~ron:Vyne tooCtrorugngoatanarnilcncitc.,e. ccwhhieetImm htiicdlcaioaqlelusissduuObbhstsyittstd~arnnboccygeeessnraddpiiflsslnssu(ooo~lrlevivmedeedednm~iinan dollfeiiqquhuciiyodddndrhhouyygcddterrinoongggweennwitihfftllhuufoolsurrooiidmrdieeem~oe~lrr oinn ctTgrooeolnnlyeyttrateaec.t.t ewtTIihtttheoocplpileeqerrumaaiettdenetssh.yMadt, rTopplogotyetedennrntotfiiglaauellonssirisccdoogennessmniidedaerednrae~atbbeclldoyynsbdbieeumllcuootlwiwtnagttnlhm cwaottiutshnnloeysccoecwsmssieaeta~hr:dyyetcthoeTgfuuClnuneoudondmoereperro.rraoacrctccataeoormrnbbnetdoodnhinnitett;;siioc.oblbnneuussmttTeoohaanffissLs~cettemlhlhlIaeeikIrrooyeeeppdseeriirsosrpaagotntnsieiooosoninnb,rr,ileeseaattehgchv~teeeeiinrroroeeeynnraicisbbstoeeemnndttwpoowaseehcnnemteenneefcddlttlthh~loeoenfsfsdceeeossseieuttgwppswnale,ooyrraapwpttiirrnionotgghdduuccctcheettllessll esiotmsM Mopga~g~ennrntY,ymeonFoortrsgsku-~almnfiuiTccr,hssiasuurbbemsst~ntaafolnn~tctc~eeossnp,,loyspspsia~borrllt~euiibccvluueellraayrirnllycyloimqtthuhpiooadssceeht ycccdeoorilnnottgdaaeeiisnnniiigninnggo. rioodxxeyyggbeeunnt,, nltthhieetrroosSugoogellhunu~,tiitoohonerns~ses.uaalfsrrueoorl,uhht~iiiggroehhnllsnyyowtcciootonnhnddluyuscuctsiitotinnalgugb.lb.ele cPPilanaesscssltiaaqrggoueediedsoohffaynad~dnnrogaeeetlleeaccsttfurrliiuictcoarbicclduuyernrl~boounnwttt DdtphoeortrtoeieunvntagtithiaiadvlsseOs~rseeosusrelultbsesoostluhiit.nnimtatSl~hsoeem~vppei~r~'ohooddrutsgwcuat.nitit.iiaoocbnnlceoooffmelpMefolucuutoornrorododcsceaasrrsbbuaoocnnnhdss saooatrr hsfMyuluduiorotarroobocccla~yarurb'lbboooonwnns daaLrreaeerlioovlnn~ylltiyy.vcevovsneedrroyuyrcsstlbliiiogngfghhhtt.llsyyolsSsuootolhimuofblnedlsee.oriig~nT~:hhhmeyyisdederrocooggmmaeetnnpeorff~illumauloodsrrsiiddceesaunooc,rhhddoaoowsennhvooeyttrd,ffrooorbcrmeemrbcuoesnceeds iiitnrnniegtt~hhuleenlyepprrocooroCcneeidSnsuoSsrcgbbtaiyynnig~tc,hhseeowlhssuiiimtmciophpnlleeswi. leelxxTppperehdodeivsieeienndtetmocoafoftne~adruddiacddltiisinnvggciatssnyoo.,mmheeowmmae~tvteeerrrii,a)lb,,eeeiiuOtsh~eecdrr ~rganic or inorganic, which will provide conductivity. Grn, Tremiaus ap Proceouns AND ~Pt~,O CI,3DU R E senTTfhhleeuoccreieldlllesssaaurrceehceaoosnnscsttoxrpuupec~teeerddooroiffraaonnnyy. m meetTtahalelr~nemottisrreeoaanddliyillyyonaattett~ca,.ocekkmeepddarbbtyymhheyynddtrroos-o- gen fheethe ccfeelllulleloctbrbrioododddeeyyss.usseecrrhvvIee~tsss cm,cnaeocnrpreeplbleyyer auopssrara~itrovvenoesfs.sseetllhTeffhooerrcraettthhheiesodssoeoon.lluluyttiiTooonhnnoeaannccddolemaactpssrauourpdtppm epsooern~rmtoffssootorr Gtcathnnooodedpnnpeveeaanelrnnei,nooceidtednorenteorstSldl.yy.eniscaa.kCrCreeelaa.tItaathh,.rroolr'edd~Aate~mennnssgogede/ccdde)aaesnnaasst:a)tbar)aareeet~ccooouooffsmmfupaaaptalllahmlcmceyo~tossctpnptaiaactaacchknknkeoylyd,wweicci.bttoohhunntdTdaauuhl!oc$ctettetehoormeenrrarlaetsstciimuutnnerccggothhadcclesaa~sssstthhsmiooirhrddooooee~nnwss,,t cpiEorviopemnp.eei.rs,.e.. or SBBneooiptctahhkrealhht.iyyoddnrArooonggfoeedfnnlesuaaonn~rddroccgaguraasssbueeooaonluulfssyroppnmrriooctddkhuueeccl,htt.sysbdursetosccgaoaep~pneheeirtthahmrcrocoeuoutgamglhphsliasshhggoeaawdss eebarrfyeittsiedhl~iee~mnna.ceodes.le~lr.drrd~SthheppV~aprronnaoolrcctttaheehatddeeigouueeernsrlleeeecoscscsf~atsurnrfuocolucllrhyhoya{trn;uaioigsocscecasscoroouonbllpnduoudettntieinsooonsnnfbsaratoo~atimnniuoo(dttnnthaassrretteorrvhiioddpyplrrppdi~aiisrinnioagndgge.ee.eddpneffLLnrirosidioqmqiamuunciigt~cddhohoeemppnrrbbpoocoolddiiots'uunthccodoe~tmidmss 0f the cell. Voltages c~n range up to ~l)out 8 volts depending on condi- ke 33000088..00001177 STATE 07525291 STATE 07525291 aones, onsions pesw te m ewe avd lt, Tho shment tions, but most s~tuations operate at between 5 and 6 volts. The current Es densities are usu~d]y in the order of 0.02 amp. per square centimeter. pant wi pore bap eo hk reg I~ is impor~mt theft cell potentials be kep~ below Vh~ nece~~ for he semen of Hin. the potent ind v0 tot he lms ~he generation of fluorine. If the potentiM is r~dsed so that the element iiss pprroodduvccecdd,, eexxtteennssiivvee ccoorrrroossiioonn ooff t~hhee eelleeccttrrooddeess ooccccuurrss,, ssoommee fflluuoor~inee fig fetepriipede dain. escapes ~md can be detected in the exit g~s, minor or even m~or xpl~ Tae won, an doable dogmpontan of the wre miata sions occur, ~ad undesirable decomposition of ~he organic m~te~ rreessuultltss.. FFlul oroucao rbor~asro aerene nootta ssa~tr tiissffb aacettoo orriiln lyypprsro~- Dr duced under these comlit;ions~ iho "ho wae or np of the sell has 11 todo The size or sb~pc of the cell has little to do OJTJETEG with the proven. The tre. oxpriments used wi~h ~he process. The firs~ experiments LITTES cin i diameter an 6m, igh. +A present (:ells i in. in diameter trod 6 in. high. At present. GEIR R0 mat io rms JFRUO TL --@ sair2e0s0s0u-cam h pu.s ctehlolsies cinarroypienrgat3i,on5.0, I1n00te,rm aneddi2a0t0e saimzpe.s saurcehaalssoOamt sperecs~evnrtyinbegin5g, 5e0m,pl1o0y0e, da.nd Any ~mp. are also n~ present being employed. fusion smn tcmpen~ture of operation is satisfactory at which frig bmn i413 the elecLrolytic solution ~mains liquid. ~or Demin agnor a voy sma labort~tory purposes it has been convenient to hhoolldd ~t,hhee cceellllss aatt oorr nneeaarr 00CC ssoo tthhaatt ~ann iiccee bbaatthh @ ccaann bbee uusseedd.. AAtL ~thhiiss tteemmppeerraattuurree lloossssooffhhyyddrro~- prog dreciuman wpgdako gen fluoride by v~poriz~LioI1 is not serious for Emme Tormp AeREsS labor~ory operations. Higher temperatures patents ah rapier be nsed particularly if the cell is held under or Vato agate wh vs PTD pressure. Various means c~n be used to retu~ som Sudo Bau 40 to wrk picme vaporized hydrogen fluoride to the cell such fropimaiiprhndy oo low temperature stripping condensel~ on ~he gas ] @ oi ar wath or spon th id of slg exit line, with or without the aid of solvents. LE RElyvid Ndi 8 A great variety of raw maberials can be tat Hoh. Hara ato Wonstbonn Sen: Fro. 4.--Etcctrochemic~d ployed. Exumples ~re: hydrocarbons, oxygen- eeA t hts thR or adA tem:N AEA 5R8 process laboratory ceil. containing organic compounds such as eerboxTl.i :~cids, alcohols, ethel,% and estem, ni~rogen~on- og amped uve era Se Smesol ASAE: raining compounds such as ~mines, und m~ny other classes of Tie dun hate ty, famosa Wnpoms SPORES The products obtuined include fluorocarbons, fluorocarbon hydride, Ein eT A.4 fluorocarbon chlorides, fluorocarbon oxides, fluorocarbon nitrides, fluor~ pg carbon carboxylic acid fluorides, etc. et osf she ements of harps sw tain Some degradation of the carbon structure of fl~e organic raw material an wings dina wo dn om Sonim of SRE: occurs with some substances and under some conditions of operation. Cash Gigi rodent om mors Frm BoroOE ES C~rbon dioxide is produced in some cases from oxygen-containing ma~ it wt soir oven Ore opmLS riis as well es OF~ and sometimes even CO. From nitrogen-containS antes Fs it soem product, There soo some pE OF substances NF~ is sometimes a product. There is also some spli*tlng of Se apr siti bo Torn ios Sontag Foros sensRS the carbon structure to form products containing fewer carbon atoms tthhaann ~thhee rr~aww m maateterriiaall,, aalltthhoouugghh' uussuuaallllyy tthhee ggrreeaatteess~t ~ammoouunntt ooff pprroodduucctt 33000088..00001188 stareorszszs2 STATE 07525292 A -- wr FLUOROCARBONS AN~ T~I~IR PRODUCTION conta the same number of carbon atoms. A varity of products i contains the same number of carbon atoms. A variety of products is rained Tron. the mm. wore mars Fo amples obtained from the same source material. For example, a carboxylic SAAT COM cam ive the MagroeSFacronbtionnng th tne momen acid R--CO~H can give the fluorocarbon oF containing the s~me number atom atoms conten wih lh amonof mah or of carbon atoms as contained in R, with small amounts of smaller fluoroaban melee, Toros hydrides such se S11 4nd ss tho sd carbon molecules, fluorocarbon hydrides such as ~H, and also the acid Tuoide SCO. Tesmons marl tre pred i th cl in some fluoride COF. Resinous materials are p~'odueed in the cells in some | Gu mot in othr. The ems materia sully, conan cases but not in othea~. These resinous materials usually contain | Fd io i Ituorine sometimes up to 50 or 60 %. Cons. Dass CELL cody in pies of 3. rom pipe Tre el bot and ces pst | AA ssmmaallll fflluuoorrooccaarrbboonn cceellll ffoorr llaabboorraattmorTy uussee iiss sshhoowwnn iinn FFiigg.. 44.. TThhee cell body is a piece of 3-in. iron pipe. The cell body and a central post i [ i: | i / | g || Fab. Bech rocss--30 amp cl FI(~. 5.--Electrochemical process--50 amp. cell. eer un th cathode. Tho ane i linia lec of nickel het serve as the cathode. The anode is a cylindrical piece of nickel sheeting haa ongaittdpriovidne iraclaltonof ld osih on ele with a longitudinal slit to provide circulation of liquid for the region inside he amen Tig. 5.2 shown photograph of 60-mp cl and in the anode. :In Fig. 5 is shown a photograph of a 50-amp. celt and in | Tig 0 600m. cel. The ue tht sepration of snd and enthode Fig. 6a 2000-amp. cell. The fact that sept.ration of anode and cathode omprements a no ncmars, mbined ithte fc hat here small | veloemctproardte~a`cecoonrrrtrososisisoionnn~o,tmmnaaekkceeessssiaittrypp,ooscssosiimbbllbeeitntooedccwoonnistshttrrtuuhccett faancdt. and tuhsaetvtehreyreciosmspmaacltl use very compact 33000088..00001199 sare os2s208 STATE 07525293 --- ns 2m. sos ala41it8teslfaokimanonfggvuebmoethnmet.oofdasn bamiJg.vhIaItv. do,SlhIuMemOerNSfociacnniopngeyeoifn tihtiunesreparmvoienvmgidTdeoul4 Ror dey between and 30 1. of produ Ega TNRRE o =d hi [ :! 1 A = ee Fd5 airyA -- [ag cd 3 oa&t!elae, os : y a) l"l(i. 0.--.F, lcct.ro:;licnlh~l~l l)rocess,,--21:)00 amp. cell. Tn typical nbrstoy operation i artic ac, 11 bg. of th In a typic~fi la.b~)r~t~ory Ol)er~.Lion using ,~cet.i(: forane and 8 of Ruoroform wero produced, A surren deny of 0.0 forane and 8 of fluoroform were pr()duce.d. A curr[~nt density of 0.04 ami 7 sae commer wa nd voltages bron 60 and 2 amp. per square ceniJmetcr was used al, voltages between (i.0 and 7.5. Th it gn amos for 1 07%, C00 10%, OF, 235%, CFs 7.15, The exit g~s analyzed for lI~ 117%, C()~ 16~, OF~ Cat 5.0%, CF, 13%, and OFT and higher-end 0355 ClOtH 5.6%, CF~H~ 1.3%, an(1 CFIIa a~d hlgherJ)oiling products 0.3% Propionic aid gave 1 kg. of etorune in preparation whieh wed Propionic acid ~vc I0 kg. of cthforane in cto dnt of D8 ap po ars cenimetos a3 vokagts bowees current density of 0.04 amp. per squt~re c(~ntitncter at volt.ages betwee~ 55 and 70. The sas sin analyse Ty 70%, COs 11%, OF, 20% 5.5 a~d 7.0. The gas stream ant~lyaed I[~ 79%~ (~',Oa 11%, ()Yi 2.6% CF,00%, CF 34%, CIT 09%, and Cat 01, CF~ 0.9%, C~Y0 5.4%, CF~It 0.9%, a~d C,aF411: 0.1%, ther oie and itogen sonia organic compounds function Ot,her o~ygcn ~n(1 nit.rogen-conC~fining organic compounds function in manner mot. cal differnt. Tho employment of hydrocarbon in ~ manner no~ gre~tly different. The employment o~ a hydrocarbo~ or the nivel nonable sistance in he proces an unexprciod or other relai;ivcly nonsoh.d)le subst:~cc in the process is an unexpected aration of the techni, A t3pial operation wing octane proced variation of ~he technique. A typical operation using och~ne produc~ 33000088..00002200 STATE 07525294 STATE 07525294 _ -------- ao419 a -- oetforane as the major pro(bier. The origimd cell charge was 160 g. octan55e0,g. HF, and 10g. 11:0. Water and hydrogen fluoride were n-octane, 550 g. IIF, and ~[) g. II~(.). W~tcr aod hydrogen fluoride were pe di Sy ~ded periodically as tim experhnent, I)r~gressed, the hydrogen fluoride ti ng love ad te toro oie set Toe t,o m~i~ain t.he liquid level :mtt the water to provide conductivity. The A AAI total of Omse additions ~unmmted to 440 g. of hydrogen fluoride ~n(1 60 g. er ns of water for the l)aSst~ge of 47.3 faradays. There was produced 560 liters es eamicmnd 0. rom this 315, Chorpdoran, md ot gas no{ condensed at - 70~C. From this 54 g. of CF~, methforane, and re tons, war strom mE i. Boon soe 27 g. of C=F,, eChforane, were condensed in liquid air. In lhw-Iee traps BL rein Sp 1~ g. of product was collected during tim experiment, and 14 g. by passRI AA ing dry ~ir through 0m cell ~t il,s conclusion. The distribution of proden Tata TV. Seve imams me wat oh. acts is shown in Table IV. ()t.her *ubstances besides water used to pro- Z TTAA]B~LLIE,', IIVV Ie ---- Distribution of Products froth Octane Uaing Electr~:.hemical Process Fre ve ar ow C Wt,, g, Mol. wt. FEF osws i74s a o Few iPWfeEGZhi eoETonn:n- iiB l Env e oo2 m ne oneu mama Toe ow 3 Tos 221-292 285-303 303-331 330 335 io py34t 374 79.1, 77.4 440-444 (b.p. 102-103) 78.6 Vide condietivity in the production of octforane from octane were vide cor,dtictivitsy in the production of oetforane from octane were ry metoh,artot~ ~eetic ~mid, !~yri(line~ sodium fluoride, ammonia, and mercuric ide : eyanide- ES ts Sf Jo ob Ale astern C~rbOxylie uci(ls lb-.C()~I[ or their anhydrides give in general the a , fluorocarbon cent:fining gt~e same number of earbtm rAoms per molecule Ime ~ the hydrocarbon ra(tica[ R, l.hc same fluorocarbon with one hydrogen ne ~tom ~l-I fluoroc~trbons of few carbon M.orns per molecule, some di and or iigriiighelgnt mea ed tfi hydrogen compounds, carbon dioxide, some oxygen difluoride, and i the compund ~COF where ~ is tim fluorocarbon radical eon~sponding he OT eohol ROI five anes of uarcurbos with 4h ret to It. ~lcohols ROll give t~ range of tluorocarbons with the largest a mg quantity N)peering in the h'action in which the ~nolecule has fl~e same tar of carbon atoms us R, some distribution of lower molecular number of carbon atoms as R, some distrihufion of lower molecular rather and illo out rts bor nh weight fluorocarbons and a smaller amount in larger molecular weight ran sone hrihogeeontaiing compo. Fibers ROR eompouods and some hydrogen-containing compounds. Ethers R0R~ | 33000088..00002211 stareo7s2s205 STATE 07525295 `| 20 2m. savons 420 J. 13". SIMON'S aggniivvdee ccFhhi.ieeffllyySi~t,mlh~ice;laffrlluluyoo,rr~to,chcaearrlt)bteomrntiooaxxryiiddaeem&@ine0(~s ~#KIlbiuVnttIazN~lJssoogittivhmee tffhllueuoofrrloouccoaarrrobbcooannrb=~ o:n aannimnittidrrniide@deesss'FI.&~N8'H~S/,i6"m"gN iilNavrelaaycss,hiwwie,ehfelellllytaetsrtht1eih.a.Ie~freyfl~ulhaoolmrtr}otoi'cnocacearasrb.roblR~noo.nuI&{lss'IFUS~F'FaN,n,dK~i'FwNFeF,,.L~h$etFrf[.l?u. oroPPcrraiimrmbaeorrn.: amines I{.N].[~ give chiefly l,he lhloroe:trlmn ~l; trod NFa. LLiiqquuiidd PPhhaassee FFlluuoorriinnaattiioonn comlFpil;oleeummnedensntta~brryyymffelluau,onfrisinnoeefhhsaae.ssvebbreeaeelnntsesuucchccnceiesqssusfefuusl,lllyyanccdaauursseeepddl0Ia~co errmeeeaacncttt wwoifi~thhhyoodrrrgogg~aeni:. bmcbeoyytmafflpllluouiouocrrniifdnnlseeuobrhhyiaadssemsebbs,eemueecsnnhoafaasccseecA(vog,memhrpsapllliiass~nhhedeecddhCto:dbbkqyy.~emms,eeT~athrmnoedssrerooeffparlaehh,ciieggh~hhoenewreronvtvveaaorllf,eehnnvycceeedrryotgyfpme.y eCemxxoeaat~mmyappllelilevcesesfnloouffwoairaitdhlleiisqlquiusqiiududcihdpphh~rraesasasAecegtIfau.l,no'u~tros~irhmni~sadttLCiisoooonnFdarr-.eelaaqccTtlu.ihlio,emnd.r.esuarrTTfe~haimceheouurwsseeeaecvotoeiffro,AnA.vEgeFFr=:yMoafensvc oot(~ffhoeftt"hhameeeetvasseluunlccicccewessisfstfliftuuulollriqiffduluueiosdorriiarnnertaae~lt(,iai:tooc,anncnssot.mswwpiilsittihhashsceeoiidl0tidhmwe-lrrii(tlcehttllie(egImmaessenuentortfuaaasrrcyyeretfIlamlucupotolarroniiSntnisoee.n.ooFr S~w woIii~tmth[. orrCereluagaeaccnttmiiioeocntn;ss~cdollhmimcapvvofeeluunobbdreeieeddnneissccsaooorlnnevddeuuadccctctieenoddma pwwlliiiitstq,huhhieddggasaowssleeiv0ooe~uuntss,g,ff~llusueHooorryuiidnsnreeo~gvaaeaddncmmtiafitntltttueseo.ddridttSeooohraaex:, bombfeegeeaanncneuuietssoeeepddohmeffoonlr)roonUtthehniisdstoppduuidrsripspfooolslsvieeoe,,rdoaaainnncddeataaonnlpiqheeuexxMnaaommnspepollle(ev21eoo)nf.ft.iittssTHhuusisyeesdriissosoglt~vehheneentfff,llluuuoaoolrrriitdinnheao~tuiiogorhr aioinnnfeedrarttefeotttoroorpttehhhaeeecnt~aoicconttniieosonnti,,n~ooffdwheciflielecummhoeernaontctaiaaed~reiTyttoypffllhiuuseoodnrriiionnsneeue,,lvii(ssa2na~4tmn)a. geeexxoTttnurh'seei,msmeiesltloyyclvaa~enccniniddto,iitccabssle~oolhluvvoseeuenngdttt oaFFunlltuudootrfruiilnnryeer(iil~siaqcaaultliissodoonpsvvheeia]rr~syyewssrhlleiiiagcgchhhtttiallyoycnisssdooiultlynuulbbelilsseesdiitinshgeiitttd;o,,vra5sgon0aln.tt~ihhtcagatetr;ouiit;tse,iissibaddicififmcfsfiiimccnuutoleltttxabtttooernceamrtlryy rdodieiullautuctttI,,eeiroussnlooylwluiulilttqliiouotnindakaa1enn)hddp~lsattcchheeereaafftcllulut;ooihorreiinnng8eeasuii-nssllieaaqdsdusmmiidli,t{]mbt,toeeouddrngvdv~aeemrrriyyyc.rssellolouLwwiclltqyyau..nitdiOOsftlifnhlumeoerrrxwwoticrisaseeermbotenhl:e) aairnerreaewc~ahtibdiosscnooh:aw~hvivaylliadli{rla~aobtb]gl;leeee;n;phbhwiuus.tte,reaaaptss,ltahhhcyyeedddgrroaobsggy-eelninfqluutfloiludruoionbrreiiod,dueeandiissaorpplyrur.otoiddouunLccieeoqddfuiabbdnyy~ouaalrlollgraroneeiaaccrts~iouonbn.~: stsintth,aaewnnocthneeigcaihinnnilc~lliiysqqduuubriiosddgtaeIMnnlucueoio.srroorcecaapArrlbalbeotoehnndoubbgbeehyccofoflmmluueeoosrsriinnaaececi,iiddaiimccosowwrlheuhseetoinnolnuffbllulouefeorraiiinnnneeloirrrqeeguaaiaccdnttisfsclwuwsoiuirttbol~h.. ccH~aaharreibboodornngpahttniahitscaaennsuriiebnnssethhatinyyoddcnrerso.oggweeiAlnnlttffbhlleuouoouerrxgiichddeeep,f,tliuttoohhnreaeiln.essooillsuubChmihilloliiolrt;eryyisnoiiessl-uscsb~toliienllltianlTioonlwwiiqnugaainndsddolvttrerunutl:y stsluiuaqecn}uhc~iaduaaspsshcahceslaaeorrlrb)riooenannactOitto.ceentntrrsa:amncxdhvhlihloflnrlb'iuidedoeereixnooacrrteipoddtnliioffdnlfuuaueodor.rotododiCicrchehhahhlc))torriroinoomnmesee-cttohohfaanntntaheeeinggsiiniovvlgeevseonssltivim~m(unu1lt)l.- stIToanolnveaaeoddndutdissit,tiicohoannlonrdttihmheet~htsseiootmlluurbbeaiaillnciitLdtiyyofnloouffotrfIaillnkuueaoostrriiionnpneeladiicssueetlooatwwto riitennhaectLthh.liecoqssnucesidtfol-lufgooartrhsiienneeis--nocctloeovrnnefttnM aactie~n(iiin.na)gg. sBBoiilggveeLelilnoqotw,uwsi,hd}amassnpthippaoositiehnnettcer(detraeocoantuctiit;.o.inosn t, akes have place at tim liquid-gas considerable advantages iaterfaee of economy, dsspepeseciciLrifatiiiqbccluiietitdyy,,topaahfnnaiddnsdessicirmmoepnapldcliili;ctciioiittonyynssoohfffaovrooeppqeerurc:~aoit{nd;isiooidnnpheraaaasnnbeddlefccloauonodntrvtirranooanllt;t;iaogaanenn.sdd oTiir~theeiisscsohhonili~ogvh~helnIyyyt, dhmmieuugsshistrtasbbboelleeubrreietslosliistslfy,tiananfnd$otrcotoiotn,dtt.ihhitiee:istaahmccoistu;iiloofdonnrbooeIffiqeaeullekge~lomnoepednnhttasaaosrrleyyvetnfftltuuu.ooorrfriioinnnraeeotinbboguunatt.nisschhToosuhuullebddssthhoaaanlvvcveeeesns,at aahhnynigdddhroi~sttgoesl~unhhhooifuullil~tud.doyrcidfdiofetlrmhweitirr,thbbito~eeusthbb.aoassbuiielccdcooobrmrei~sna~hhgomguoaflcoliddddic]hsm.oalvvvece1naat, hccfa~oasqprmabocceri~gettnayynfiffcooourr na~dbbsstooharrbtb,~innaBgt hydrogen fluoride without becoming acidic. It. ]m-S been found that at 33000088..00002222 SSTTAATTEE 0077552255229066 |a FLUOROCAHONS AND THEIR PRODUCTION 2 Hloiwghetremtpeemrpaetruarteusrespy2r-idliunoeroppyosrsiedsisnees dlolcs tlhiekseewidseesi(r2e3d). quaFlliutoireisneanhdasat 4hVveei~grsThyoelccrvooenntnessitm iddeape,p'e~rpardaab~rtlheueznrtessloosylluu2btl-)i1oil1~ifuito,ty)yr~m'ouup!pt)yhrte1i,t~ot)pina~y(rbd~i)oodduui(ttn,,eeoos-nnpeIee~rkfmmelowoulolieersei0odff(e2sff3.llu)u.oorrTiinhFneeeluttcooooriomonnnpeeeohummanosodllsee Saao~ro~elsuorrblveelesesiri~ssittt~naanantitp.t.p:t.~~o)Ircnttnhhat.eedlyda~itc.t((t~)iiioifo(~nnn~rmtoohffethyttehhaepebysecroi~lrdeebimm~evcene-ntprt,,yeraaflnlnauddrogreooirrdaggem~asmno.iuiccnTtccshooemmopcfpooohmuuynndpddrossougnaaedrrnese sfflouuloouFrrbliiluddeooeriinwwiniteitthh.oowuuattIsnhbeefatcol~douoinm{mdi,iitnnnggtao~a(cc,ahiibdedisyicca.~rbd)ssomrboovtehrlyyl~arngde amounts of completely hydrogen in Tiuid 5ppyyr~gFiuddlsiuiueno~oeruiniwsetitphhrwoaadauppscppta~fsr~.reucn~ntdtTrrh~~ee-a~c(:tr:tri.ei}ooa~nncstobibrbuointt,smmwwii~itxt)hohtlu;hnnr]ooey ceb:vvueik'ctdldacenmnccecoeemdooapffrlektththeeeilnypprcriooonlddouurlccitqtaiiuonoinddn iVo~fiicsstgctoaauasrSseeouaasssshopttwhrheoeeddurrcteet~ha.csact,tti+i+oinTnn happedrrdooricceteaeieceodtdn.eiedodt.no, mpyFFi:riimintad+uli]rneessheeaepp(a~acr:ro~aanmttsiieoiodnnde~rroaokfbfleittnhhemecoorruleeoanarcctttaiinooodnnf DAm ~efwilruxoirotduoirrnopeepy.rysrihido(Wilwihnneeecdnhhf,:at]umdhie[:b[)(tie,nee+nm+apdffeoo(rlrriammt.teieuoddrn..etoof'Tl'h+pt~eyherrerieedpiwwyna:re~issdaaaitnssce(a+) mdaarusre+idis,eneisngiddduutdecheeoofafam2d2-m-oaaiummsnisi~nnioooo+-nf enpoafnnydtdRfrlluiuydaaooiarnrddiiam~~n.orrcelkkewwWc~abb.u~srirsldooehahwwneernnlldcdthssoaaooemttll,iip(dd---.lc4mess40cep(p)<pb+C~aeC~,rrtn:,a~w~tttuehtheree(eedd+nrreefhf)r'lwfwouomaatomhssriettnnnhhooepeeyaeellHnvvioiqdidudduiiepe~idndyne.rcc. ieedduooiTTfrnfhihesnaiippgssspspusaacotohrrhlleeeidndun~s+tii~spsrrdyeeamar~appiiccpspdttsaiiiaioroonrnn-ne- PDepenerrtrlffyeiluad~oorr~iidod0eelemtCCisd~e:Nt~I:tr,oNTc'l0oCsm+C.,pleaxTTnhh1dee)cttsswhooe[llr:iieeddn wIddlaiuisss+aa)prapipnpecce:oa~~nrrmseeiddddeparayassrbildtthehineeeetvtesoeumlmcupthepire+oar~nsatotpuufyrrreeihdvewaiantas.es TfaTulhhloeoerwippderredo,oddtuWuoacc~srtisfeoooffutonttdhh(ee)t~oCrreab,tceroatnfi2ido-t)nlnu,t,horeii.o.repe..,y, rwibI:)~deesittnwwacee.ecconnnsppiyy(lrreiirddaiibnnIeee and pyridine evolution of and pyridiae per- per- | pflyuroiA"rNdiseidnee~8,,--fwMliuutaooscrraofonopouyybnrerdiidduitisonnecedbeaiisss2-mmffolouriroqeeruoidprreeypssrhiiisdsattsianaennet;.sot~loovendetleemfmeorenntttahaerryyclefflmluueoonrrtiinnaeet ttthheaamnn- TTppaeyenrrrgaaiedttuiu~orrfeee~,s~iaat~t1c0awwnhChibitcceohhursffoe~ldouuoomrariistnnece~mlprricee(~laruccaittdt;ssuprw~heviaitts2ihxelppsuyoycrlrrviioddepiinynntreei.f.doirnIItenhneattbehhsleeeomr~tbeeeenmmdptpeft~erltrauaottrumirn~ee rP Cc~~omm gpeoplleeottfee]laY-ypIpOiiannreCa~nmmtotoourunerntaotc~sstmioooaffn.toocnnmeepTmmheoiroaslltee~mrooieffxt2fMulu-urfooter~riiosnnrheeoop~twy)ooeridoodnnineneocooffeavb22is-ldofuleruonbroceoredoppyofyrfluiroirdderiiiannnceee- * iIwtirti)tanhtuw wnoohtbe.e~onnfpphhtaeheriaaestte~erdderaecuudtn,notitiroilllnon:av~. aCstTecmmhfpoipseucrnrmagdttl,xuutrtromee 'beooeffshdI1oi53fw0u0eodOrConpwyworaaisesdviirrndeeeeaa.nccchheeeAddoL..f r~TTo'ehoahcmee- r~Tpeerm aomcdpptueiecorr~naa.ttuuorrfeTethhffelil~suslooorrll'ieiunnateccitoiiins(sma:r~bebwsmso~aomrirbbnecefddoducbbnlyydear22t,-o-ffbllubuu(oettrroaodsppiyfytlrruhiioeddriiqnonuepeaynwwrtiidiittithh~ycnn.ooof daaAipp~sppoa~rlrorveeoennmdtt rfHhieeaoaorcmrtioni~oleeant-iiinmocenrrTeewhaaaessseosddoliiu~tlteibboaeernccyaarememlmeleoawvvii-inssb(ecr~dooouwusncs.l.evai.rsW W,chboheuuesnnt ~lssisaaqtttuuuhirredaattqwiiomhoninmcwwhtiastbys aaeoppfppcdrriooaa~aaogccmlthhvaeeeesddds,, iTaitthtaaeanAvasbpptaooppotUla~~,r~vrieiongn---nto33trl0l0wyoy~uaCCss.lc"caoyonncswlsIeIiiitt~sstssutth'eettyd;dopoet~ylar:ldlccoihhdwiffiileel-nuffbueollo,ryyrroiiawnnceeoonofftccvoooinp22snthcf-tefeouenlnuountosro.tnorlewwopi,qapyausysrairidnfifddodowiiuanunncheenedicptheittporcoebafrebbcufcleeiouadrmo44.ir77eid% d%eae,1.,.0glaalia~nbsIdd-st crereraoaatmcthTeegphhddeoedeuiionov(uuddi]sgissineenoeerfooooffrfufrrsolo2l2miymf-qfluiwppuiuoodooitrttrhaapooshsppspaysyiyrsiurrieum kidmdtiMlinnuiinoeoeocddr,iiiooddanrreeta:tcs~saiLiimnmomodndipillhrr~raceeerrnaaaocccnnntttiieecittdrd,orono~gwwsgmcieitpndtnhhr--a(oc:~ssvoo:ooicn~dtddtktieiaa~usiuim~anmaciinninhhdggyy.eddxroorcororIesggxtliaaeidlndnnieibtei.cc,-. ocmeoepamaunap~obouofnfldccesoonfntoatrrrsoosllliillqsiintunagigdnct~ehpheehianrrseeetashccfettliiuooponnrrssoimdooudffcitecoillneoemnmreeeona~fctttaaifrorlyynssoffrlloupucoroaorrriivnnbieeod.n.ess. II~1tmIwwteiixllwlcielbbIloleenbo~ef ee0endsiidner~abtleleaasstsisttawnocedififneret,nbtc. ways. In production tohfe foluneo,roictarwbiollnsb. e Iu~sewdilal sbe used in ~ least two different ways. I~ fi~e one~ it will be used as a 33000088..00002233 STATE 07525207 STATE 07525297 2 2m snvoxs ssoollvveenn~t ffoorr aa il!qquuiidd pphhaassce rree.aaectt.iioo~nt bbeett.wweeeenn fflltumorrii~nee aanndd aann oorrggaanniicc cor Tppohouuennrdde..sultIIninngttlh~seoeluootttihhoeenrr,,wiiilttl, twwihilelltn ssbeeerrvvueesed~t.ooto(dtiimssissoxol[vwveeitha:~ aqqnuuaoanrntgtiaittnyyicoocffoffmluupooorruiinsn uuTnnhddeeerrreccsouonlntttirrnoogllllseeoddlucctooionndndiitwtiioiollnnssthffeoonrr fuorination reactions. })e used t.o mix wit.h a.n fluorhmt,i~m re~et, lons. organic compous 211 . CBBaiigdgceylh,oowwG~,.TLLLA.A,.G. ro((s1199e44,37))..A. BIBI,IOG liA 1'I1 CVhsen.Barcbee,r, 4E0.,5J1., Chem. h'c.v.~'. 40~ 51~ Y Wager, Lu Lu,and Shekdon, 2.) 2. 3. (FC(!19a9i4d47y7s),.).h2Ge,.IIanrnt[n&d.,d, EEGJngrug.o.essCCncit,c~eehAm.o.. 3r~WV9,9.,.,, 220I9~0(0a.1.r9b2e0r),. t'L J., Burger, L. I,, and Shcldon~ ager. Chom. 43,510. 4.3. 4. Fisher, J., aml F. or,Ka1pe,r, Fowler, R. I)., JJBB.~uuer8rnf,fcooakrl:ndnd,e,LriW ,W.tW. a.1Bn,,t(,l111[1.9I,2",9TI)(T.i19aa1mm7iZ)ill..ttm~o.n~~,,,IflncJJdw.... MMC.B,ub.g,Jc.m,rI.,tC,h4e2SSm,ww.e8ee3tet09t,,,. 2RI{9..2GG.,.~, Webe 55... FFCFrr.ueoEddk(.c~,uunlK~ahnaggsXeapennc,r,,r,aaKKJn...~,ad~an.~nDddiacnCCkdaaoddwIee,,inntalt)1n.tau~c~,Ah].b,I. G(L(.1(91491((,)111.0793)30..)1.J)..InddFBn.ee.rtE.'C.nh86g77e.~,mC99.2h25eS8m,o..c. ~63,229720.2. 7.6. 7. Fukulmra, Gernoss,eA,. Gross% A. VVNa..,n, d~aamnnDdddaCCmBai.iadgodcynyl,a,,wG(~L.1 . L.A. (ig.il). 1.(0101207).). Co t[, (1947). mlIp~t,d../.. EFArannmgg.,.. CCC1hhh8eee5mm,m.. . 1,333g904o~,0t. 36.65~ 367. 2792. 0.8. 9. Lebenu, P., and I)amiens, tl. (1926). Compt. M9i5l.ler, WT, Calle, J. 1, ad Bigelow1,. A. Miller~ W. T., Calfiw, J. 1)., and I~ige!ow, L.A. (1037). rez~d. 185, (1937). J. Am. 1340. J. Ant. CChheemm..Soe. 10. 10. OMMiTillll.esr,, W W.n. dTT,, EJJner,.., IEC;h',vhehrennfefe3el9hd,lm,, 4tI0.{.1..LL,., Phelan,1. Phela.n, J. M.,Probes, M., Prolwr, M., M., and and Rood, Reed, 8.1 1.11. PPQ(1a9Dar4k.7,r)JJ..k. I0,)FI..na, ddBB.EeeEnnnngnnfi.fin. gnCC,ghl~A,Ae4.mm..,F.,3.3,89,DD,3oo54ww10.1nn.iinng,gF,F.. 1,B., Lawes, 4. Lnucius, J. and F., :rod Mellaraess, MelIarne~% R.( 12. 12. PPP(1raa9eul4sli7i,n)n.gHg,haIL1cn..ad,. Eng. Chem. 39~ 354. (N1.8Y1.0). The Nate (I9,t0). The Nature of of the the Chemical (iht~mical Bond. l/lind. Comell Universi Cornel! Universit 11H83i.. Prcss, RRuaff];, Ruff~ 00Ol.,t.haa(c(n11ad94,22A5N8s))...cYh7.eZ.r. ,aannogce(w.1.02CC9h)h.eemm.. 744.11,~a7r733s58.. lg. Chen. 183, 197 11110554.].. Ruff, RRautf,, lh~ff~ O., 00.)()., ~aaBnnnrdddetBABsrrcs~hcttnhsaeeceirl,mdhenEeric.,diedr0(~e,1r90O2,.a.9n)d. Z. anorfl, atlgcm. (~'hem.. (1F03e3r).t, 7F.. an(o1r03.0)a.lle2n.. (1033). Z. on,rg, nllffem. a1CC8nhh5oe~erm..1.29271a1.l00g,o, m!1.7738.C.hes 16. 17. Ruff, O., aRamf., 0, $17, 1. ]~rv~schneidor, and Keim, R. O., ~tnd (1030). ]Omrt, 1;'. (193.1). Z.a.norff. 7. anry. alge. Che. 198, 20, t1117898]...SiRRRmuuuolffffn,,,s0OO,...,,3ana1nn1ddd KKKeec(iii1mmm0,1,,8)IRRC... C(((h11te999m3331.01).))..ng.Z7Z... anorg, allgem. Naorwg2.8,alg19e1.7 anorg, altgem. Chen. Cbem. Chem. 201,192, 201, 245249. 2221100.9... SSSSiiimmomooonnnnss,,,sJ1JJ,]..11[1].1[,.-a, naann(d1dd94ccB8ooo)--c.wwkoor,CrkkeLhreesTrms,... Enff. Ncwn (11000307).). (1049). TTJ2rm6.a~nwAe1m.'.3.1EF7elC.eth~reqowr'.cokcobSenom... S~8o'8oc,c.. 13948~07,,.4477.. 21. 220.22. Simons, J. SSiimmoonnss,, Shnons, J. [t., and 1111,aanndd [.1., ~u~d BBHBle]looorcccmkkka~,, nL1I,.,..PDPP.... (1937). (193A0n).. (1939). ChJ.JI.o..nAAA.mmmS...oCCC,hhheeeNnmm.o.. w,SSSoooccY.t..o6~ 6r11k~,, m221e904e660t227i..ng, 1047 22220043.... Simons, J. SSiimmoon,,J. Silnons, J. [I., 11,,I], PaaaonnndddaeIHHb[eceorrrm mm rWa,.aannn,,,1,D D DFa..FF,n.d. W(A(iH1m9li4..t9,3(.)3.~Wc_mJJA....AASmm:.(c.1.,9CC3Nh8h)eec.nmw.. YSSAooncra.okl.8665Cc,h22em0.0.6143. 0,08 227025. 26. TSSSwhwiraoearr(rtmntsst~s,o, nJFF,... X.(1V,.Bur,uAl,. I[., Pcarlson, W. (1934). Bull. cdHaTl.~r,,.a~aaenndss~cd.iW. SAAilccaehtaalmdeds,.iW rrnoogyye..A.r,B.Ble1lyg0(.11.922001~,8)7(7.518332.3.A)u.al. Chem. J. Am. Cher 252.7.YST8ooohuc.on, rg65n,85to,,Dn331u,177.N37.. V., Burg~ A. ]~.~ a~d Schlesir~ger, il. 8,FukabaNr.aan,d Bigelow, LA. I. (t933). (1940), J. J. Am. Chem. S, 28. aY2,**1~1m7g,, DeW. S, Fukuhara, N., and Bigclow, I,. A. (19,10), J. Am. 6~, 1171. 33000088..00002244 STATE 07525208 STATE 07525298 carn 13 Fluorocarbons Their Properties and Wartime Development Fluorocarbons.....--Their Properties and Wartime Development [ ns mmc | Paring l~h~or'ine LLaabboorra~tdoorri@es~,, T7'hhe~ Pennsionin St Cage, BY T. ,L BII.[CE l'~:u~.~yh~m i~ Sh~.& Colh~rje, t3htdee Cale, (hd!e~.te, Pans Fe~rnsgl~a'tda Comins ( !O NT EN'rS raePa~e || Ttataiont..s. Firat Foes } 5= [ntr0duetion ........................................................... l'he C~ttdytic Fluorlm~tlon l'rot'ess ....................................... 424 | ti vr Pee ar l~he Metzllie Fhmride Praces~ ............................................ 426 Te Chemie Pert of rosin La ~he Chemi~d Propcrl,k~s of Fhm~'oc~r}~ons ................................... 431 Tt Fie Tropes of Foca, i l'h~ Physlcul l'r()pertics (d Fhmroc~u'b(ms .................................. 436 | Higmohy i ::llbtiography ............................................................ 459 | Introduction Introduetior~ | rior to 1087 he any defi on Barons ves. OF and Prior tx~ 1937 the oMy deIinit,ely kno~v~ fluoroca.rbons were CF.~ Gg in that. year and more extensively in 1930 the preparation and ~tt~; in ~hat year and ~nore extensively in 1939 t.he preparation | pein of Hid Muorocarbons vere disclose by Simons and Bock Pr0pe~.0es of liquid flu~roc~rl)ons were disclosed by Simons and Block 8[8)11.). SSiimnc~ee tl~hheenn aa ttrreemmeennddoouuss eexxlp.)a~nmssiioonn ii~n ~thhee ffiieelldd ooff fflluuoorrooccaarrbboonnss | haassooccccuurrrreedd dduuee ttoo at~ ccoonnssiiddtewraabbllee eexxtteennt.~. ttoo wwo.orrkk oonn pprroobbileemmss ccoonncceerrnneedd ih he separation of uranium isotopes. Tn July, 1640, the posit With the separation of uraMum isotopes. In July, 1940, ~he possibili(:y Fin fworocarbons a sealants an conlants and in athe applications 'd using flm)mcarbons ~s seal~mts ~md cool~.mts arm in other ~pplic~tions linet contact with uranium hexafluoride wis suggested by J. ~ dir~c~ contact wit,h uranium hexafluorlde was suggested by J. H. Sno ll materials which had boen tested previoudy were found to bo ;5imons; all ma~eriM.s which ]md been tested previously were ~ouild tO be waitablo since they react with the corrosive uranium hesafloride, 1a December of ansuitable sit~ce In December of that ~hcy flint same year a reacted wit,t~ same yct~r a 22t-h-ceecc.. sample corrosive sample oouffralliinqqiuuuiimdd fluorocarbon, hexafluoride. !tuoroc~rbon, i tally llof the material availble, was sent by Simons o Dr. H. C. ~%tualty all of the materiM ~vMlable, was sent by Simo~s to 1)r. H. UIirn0yy aatt, CCoolluummbbiiaa UUnnivievresristiyty. .TeTse~sst'ss m maaddee oenn tthhiiss ssmmaallll aammoouunntt ooff M~anl~eireiriga]l ss~hoowweedd tthhaatt ii~t hhaadd tthhee ddeessiirreedd pprrooppeerrttiieess ((2288)),, aanndd tthhee pprroobblleemm len became ane of nding stable methids of propasing forocarbons | Wathen ~)a a llbaaer~cgeeamsscoeamloee.n. e Because of the secrcey surrounding all phases of atomic of finding sui~abt~ methods of prepz~ring fluorocarbons Because of ~he searecy surrounding all plmses of a~omic 2my research at. that. ime, fuorocarhons acquired the coe name ~Iergy research at th:~ time, fluorocarbons :~cqui~d the code name "Jay Safl this code mmo was dived, of cour, from the given "J~'8 Stuff"; O~is code name was derived, of course, from tl~e given 50' the person creating and supplying the frst liquid Muorosarbon ~ta~e of the person creating and supplying t}ac first liquid fluorocarbon "~apalpelses,, JJ.. HH.. SSiimmoonns.s. OOuutt ooff tthhee iinntteennssiivvee sseeaarrcchh ffoorr ssuuiittMab)lIee mmeetthhooddss ooff pprreeppaarriinngg fluoro- "~'baeobonnss wwhhiicchh ecnnssuucedd sseevveerraall pprroocceesssseess wweerree ddeevveellooppeedd.. TThhee ttwwoo | which were extensively investigated for large-scale production aetl~8 which were extensively iuw~stigatcd h)r large-scale production ~ is423 33000088..00002255 STATE 07525290 STATE 07525299