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AR226-0335 VAPOR PRESSURE TEST SUBSTANCE Identity: UN1-E4t6h4y,lpEeFrfOiSuoAr,ooEcttaPnOeSsAu,lfFo-n6am3i0d9e,;ormaFXy-1al2s.o be (1- referred to as hOecpttaandeescualfflouonraom-iNd-ee,th1y,l1-,,2.C2,A3S,3.#4,441,551,5-,560,63,)7.7.8,8,8- 9Re9m%arbkasse:dMoatneriinaflorimsaatiwohnitsuepspolliied.d RbeypoSrptonsstoart'ess rtheaptressaenmtpalteivpeu.ritTyhies lot number was not recorded. M0 MEeTHmOoD00000000 GMeLtPho(dYI:N):OEYCeDs104, Dynamic Method v YReeamrarckosm:pleted: 1998 "TWhheilfeoltleoswtiinngg qtuesotteitfermo, mthteheaitresctonredpeonrstedrewscarsibuessetdheinopnllaycteesotf dweavtieartion: ocuornd(eAnSsclerCobrepcoaruastieoonf)icouwrrmeenlttsicnigenptoiifnictokfntohweletdesgteiatenmd. uTndoerthsetabnedsitngo,f tthaiksednefviraotmiotnheshteosutldrephoarvt)e.no effect on the outcome of this test." (Quote RESULTS V0.a0p4o7,r 0P.r1e4s2s,u0r.e2:38T,haendva0p.o3r95prPeas,surreesspeactti1v0e,ly20b,a2s5e,daonndt3h0eiCncwreearseing Dpreecsosmuproesrietgireosnsi(oynese/qunaot/iaomnb.iguous): Not noted dReecmraerakssi:n.g Tprheesseusrteimcaotnedditviaopnosrdpifrfeesrsbuyre2s0ftoor2t4he%.increasing and conclusions The vapor pressure as determined with the dynamic method was raesgsruemsseidontoeqbueat0i.o1n4.2 Pa at 20C based on the increasing pressure DATA QUALITY 006007 qRuealliiatbyiltietsyt:ingK.iimHioswcehverarn,kitnhge = 2. 99% This study purity may meets not be aclortrheectc,riTtehriea for value ewnaosuagshsidganteadpobiyntNs)M. R which is incomplete. Possible non-linear plot (not REFERENCES SDutluudtyh,coMnNd.ucted at the request of 3M Company by, AScl Corporation, OTHER SStu.bmPaiutlt,erM:inne3sMotCao,m5p5a1n3y3, Environmental Laboratory, P.O. Box 33331, Last changed: 5/16/00 006008 r! EAY. ASSeSuRdeypIoD##054053-0.V0P4R5.0M1 oR NA STUDYTITLE Fx-~ (a . Determinationof Vapor Pressure Curve by Dynamic Method for U1464 (ET POSA) coe DATASTANDARD OECD Guideline 104, "Vapor Pressure Curve, Dynamic Method" as Mike Signorelli Linda Christensen `Phillip Marquis STUDY COMPLETED November 6, 1998 TESTING FACILITY EAnSvcilroCnomrepnotraaltiToens/tiAnSgclD-iDvuilsuitohn : 4444 Airpark Boulevard Duluth, MN 55811-5712 Tel. No. (218) 722-4040 STUDYIDENTIFICATION NUMBERS : AScl Study ID# 5030-045-01* 3M Company Environmental Technology and Safety Services Sponsor Study ID# U1464 stTuhdiysisstkuedpyt roenpofritlecoatntAaSincsI-toDtEalTDof.26 pages. The raw data package (34 pages) supporting this Sponsor Say ID# 14st ! 006009 ) Sh ASAeSlelSuRdepyor1tDI#43S0-3V0P..04R5.a0l1 Page 2 PTroactthiecebersetguolfatmiyonskn(o1)w.ledge, tis study was conducted in accordance with OECD Good Laboratory ASC Study Director ~ Name (signed):. i 8. Namie (typed): i : `SponsorSudy DF rast ; 006010 . AASSeSuRuedpyorItDFAASOS3V0P-0.4R5.I0M1 Page3 STAOTFQE UALIMTYAESSUNRANTCE ps"rTeohfceleesdctuiurodenysoadfanttdahgewueriradewelrdieantveais.euwseTedhdetbyotyctpohenesdAouSfcctalutdhQiiutsassliptteuyrdfyAowsrsemureredafnfocolerloUthwniiestds,ttaoundaydstsauhrreselrtiehsptaeotdrstiainnsdtahaerndafcooclpuleorrwaaittniegng table. ASel "StuTdoyyfIADpuFd5ei0t30f.or045.01 [rbot TT em DateReportMeadstaogSeundenytDirector and | . am [tov| Dwsaimsp| mtiaomee| AScl's Quality Assurance Unit Auditor Name (signed): . W[6l5F Name (ypedy0 AlanMoso0 l 000000 Sponsor Study IDF Udss 006011 .or AAsSeelSuRedpyorItD##054053-0.V0P4.5R.I0M) Pag4e TAOFBCONLTENETS COVERPAGE ett ieteeeheeeeeeeeeeee CERTIFICATIONOF GOODLABORATORY PRACTICE COMPLIANCE ...... .......2 STATEMENTOF QUALITY ASSURANCE ............c.cooouinni.n..3. TABLE OF CONTENTS . oii eet eee eaean 4 10 INTRODUCTION... ..iiittite iia einaieaeaennannnnnn. 8 20 TESTMETHODS ..............cccouinianeniiniiiieiiii8i 3.0 TREATMENT OFRESULTS ...............c.coooeieoneiii.i1o0 ' 40 RESULTS ANDDISCUSSION ...................................10 5.0 CONCLUSIONS... ieee eee 1] 6.0 DEVIATIONS FROM APPROVEDTEST PROTOCOL .................... 11 70 REPORTSIGNATURE............c.ccoueieinniensineen1n2 TABLE 1. TABLE 2. Toluene (Reference Item): Boiling Points (T) and Corresponding. Vapor Pressures (p) 2 Toluene (Reference Item): Boiling Points (T) and Corresponding Vapor Pressures (p) at DecreasingPIESSUTE . . oy. vuueneenennnanennnnnnnnn..1.4 TABLE 3. Toluene (Reference Item): Estimated Vapor Pressures (p) at Different Temperatures (T)Determinedfrom EQUation 1 ....................000uen...l.S | TABLE 4. (TTo)luDeenteer(mRienfeedrenfcreomIEteQmU)A: UOENsti2ma.ted+V.a.po.r Pr+e.s.su4revs (ap)rateDnifsfernennt`Tnemnpnernatsur.e1s.6 SponsorSudy IDF U4s4 006012 . Tableof Contents (cont.) AAS501SRuedpyorItD410308350:.V0P4R5o.01 Pag5e TABLES. TABLE. TABLE?7. aRnadnEgEeCo-fLaVbaoproartoPrreysIsnutreerVcaolmupeasrifsoornTToelsuteinneg.PbryogthreamDsyna(4m) ic. M. e..th.o.d.f.r.om..O.E.C.D 17 ERTISPIIOGPSRACS(STUeTsEt Item): + + Bot ilingePoei(nT)stanesdyCocrreespnonading Vapor Pressures(p) at 18 ETPOSA (Test Item): Boiling Points (T) and Corresponding Vapor Pressures a DecreasingPressure emer tt tt tater ett ra aa trasnrranas 19 TABLE 8. DEetTePrOmiSnAed(TfersotmItEeQm)U:AOENsti3ma- t.e.d+V.a.po.r ov uveieenen see Pressures (p) at Different Temperatures mM 20 TABLES. ETPOSA (Test Item): Estimated DeterminedfromEQUAtion 4 . .. V. aoporoPre.susuereesu(np)eaet rDinff.erei nt Teemp. erat.ure.s (2T)0 TABLE 10. ETPOSA (Test Liem): Responsibilities, Signatures, and Initials ofKeyPersonnel Tnvoinlthve Setudyd... .......... Ln ` FIGURE 1. FIGURE 2. FIGURE 3. FIGURE 4. A Representative Plot of Log P (Pa) and 1/T (K) Toluene at Increasing Pressure . 23 A Representative Plot of Log P (Pa) and 1/T (K) Toluene at Decreasing Pressure . 24 PAIERSeSpUrIeCsento ativeo Plot ot f Log P (Pa) eee easel.25 and I/T (K) ET POSA atIncreasing A Representative PlotofLog P (Pa) and 1/T (K) ET POSA at Decreasing Pressure 26 RAW DATAPACKAGE APPENDIX A. APPENDIX B. APPENDIX C. APPENDIX D. Approved Study Protocol #045-VP.P3M and `Amendments Test Item Information Test Item Receipt and Usage Raw Data Sheets # v SpoSudny sD1oUtres 006013 \ AAScSSuRedpyorItD#0#45053:0V-P0.4R5S.0M1 Page 6 STUDY SYNOPSIS "Title: (DeEtTerPmOiSnaAt)ion of Vapor Pressure Curve by Dynamic Method for U1464 Test Method: ~~ Dynamic method as described in' AScl Protocol 045-VP.P3M Key Findings: 1) The estimated vapor pressures Pat 20C; and 0.239 Pa and of the 0.293 test item, ET Pa at 25C. POSA, are 0.142 and 0.176 . StudySponsor Company: 3M Environmental Technology & Safety Services 935 Bush Avenue BStu.ilPdaiunlg, 2M-i3nEn-e0s9ota 55133-3331 Study Representative: Dr. Rich Purdy | Ecotoxicologist Phone: (612) 778-5379 | Fax: (612) 778-6176 : Testitem Trade Name: ET POSA. Lot/Batch Number: FCI2 from John Eberlin 3/12/98. `Sponsor Study Identification Number: U1464 Molecular Formula: CyF;,SO,NCH,CH; . Chemical Abstract Service Registry#/Code#: TradeSecret Physical Description: White waxy solid Percent Purity (% Representative. active ingredient): 99% Based on information supplied by Sponsor's Sponsor Study IDF Utd 006014 . Stability Data: Stable at room temperature. Storage Conditions: Room temperature in darkness. ASAeSlelSuRedpyorItDJ4O5403S0-.V0P45R.O0M1 Page 7 Company: ASC Study Director: `Phone: Fax: EAnSveilroCnomrepnotraaltiToens/tAiSncgl-DDiuvlisuitohn (AScl) 4444 Airpark Bivd Duluth, Minnesota 55811-5712 Linda Christensen (218) 722-4040 @18) 7222592 ReferenceItem `Trade Name: Toluene. LovBatch Number: 8608KTMH. CAS Registry#/Code#: 108-88-3. Percent Purity: 99.9%. Source: Mallinckrodt. Date Container Opened: 4/3/98. Study Initiation Date: 3/30/98. `Experimental Dates : N DVeatpeorrmiPnraestsiuorne.of 413198 4/8/98 . LocationRawData and FinalReport Certified copies completed, after will be which, archived a testing facility for the Sponsor will be contacted ftiovedeyteearrmsinferofmurtthheerdadtiseptohsietsiotnudoyfiasll records. SponsorStudy IDK 14s 006015 .: ASAeSlelSRuedporItD44054053-0V-P04R5I0M1 Page 8 1.0 INTRODUCTION hCahzeamridcs.al Tshubestaasnsceesssmiennttroodfuceendviirnotonmtehnetaelnvfiartoenamnedntefpfreecsteontf tpohteesnetisaulbsdtiasnpcoessalisanrdequriereendtrbyy various governmental agencies. pressure of a substance. In this Accordingly, one of the experiment, the test item tests is to determine the vapor boiling point is determined at a desired pressure and then vapor pressure and boiling point are correlated. `The vapor pressure oaf indicates the probability substance is an environmentally relevant property because (1) of phase transition, volatilization (liquid/gas) or sublimation it : (solid/gas), behavior of of a chemical, chemicals, (3) (2) it helps substantiate predictions chemical vapor pressure and water regarding solubility the environmental allow for the calculation of chemical volatility `whether photochemically induced from an aqueous degradation can solution, and be determined (4) in it is useful in deciding the homogenous gas phase or in an absorbed phase (OECD 1993). 2.0 TESTMETHODS 2.1 Glassware. All glassware employed were cleaned before use by performing the following: n "Washed in hot detergent water and rinsed three times with warm tap water. 2) Immersed in 10% HNO, acid bath and then rinsed with deionized water. 3 Rinsed three times each with acetone followed by hexane. All glassware identification. used were labeled with the relevant information required for proper 22 Testitem. Thetest item, were received at AScl on ET POSA, March 27, material safety 1998. The test data item sheets, was in and one gcelratsisfibcoattteleofanadnalwyassis isttoermedisatdersocroimbetdemeaprelriaetruirne in darkness this report. as In received. this test, All relevant information about 13.39 g of test item was used. the test 2.3 ReifnfeorremnactieoInteabmo.utRtehaegerneftegrrenacdee toluene was used item is described as a reference chemical. earlier in this report. In All this relevant test, 35 ml of : reference chemical was used. 2.4 TestApparatus. The test system consisted of: n 5-L Ballast bulb to vary pressure in double-neck distillation flask. Sponsor Study IDK 1464 006016 ` AASSecSuRedpyorItD #O5A0S3-0V0P.4R5.O0M1 Page 9 2) Closed-tube mercury manometer to measure pressure. 3) 100-m double-neck distillation flask. 4. Cinentthiegdriasdteiltlahteironmofmleatske.r, + 0.2C, with one hole rubber stopper to fit 5) Reflux condenser. 0) Heating element. : 7 Vacuum pump. 8) Aspirator. 9 Boiling stones. 10) Nitrogen cylinder. 25 DandertefeererncemoitfieVmnaspwaoarstPraesisfsooulrlneo.ws:The procedure to determine the vapor pressures of test n Pthliarcdedthtehfelaistkemvoilnudmoeu,blaen-dneacdkdedidsttihlrleaetiotno flask four at a volume about boiling stones. one- I) Flanged test system together and in the system was adjusted using purged it vacuum. with nitrogen. The pressure 3) Heated that is, the item gradually until when a constant boiling temperature temperature equilibrium was found. was reached, 4 At @n this point, C). recorded total pressure (in mm Hg) and boiling point T 5) Fnoerwattotlaelasptrefsisveurdeisffaenrdentbopirleisnsguproeisn,tisnwcrheeanseedqupirleisbsruiraewaenrde rreecaocrhdeedd. . 6 To obtain the second set pressure was lowered. of data, recorded total pressure and boiling point as the Sponsor SudyY IDI Lass 006017 . ASAeSlelSuRedpyorItDJ40540S-3V0P-.04R5O0M1 Page 10 3.0 TREATOFMRE ESN ULT TS F`mourlteiapclyhindgattaheseotbwsietrhvetdestmialnldimreetfeerremnecrecuirteymsp,retsostuarlepwreistshur1e33w.a3.s converted to Pa unit by Similarly, the boiling `opfoitnotta(lT)prwesassurceon(vPear)tevds.to(I/TK) bfyroamddtihnegi2n7d3iv.i1d5uatlodtahteaosbestserwveerderCegbroeislsiendg tpooidnetv.elTohpethleog `ivtaepmorweprreessduerteercmuirnveeds aftor1e0acCh, i2t0em.C,V2a5poCr,parnedss3ur0esCfoursitnhge atpepstroiptreimataendlintehaerrreefgerreenscsei.on `equations. 4.0 RESANU DDIL SCUT SSIS ON RefeItreme:Tnolcueene The and observed data obtained for 2, respectively for toluene. iTnchreeacsailncgulaantdeddercergeraessisinogntchuerpvreesssfurroematrheesphlootwtnedincuTravbelse,s 1 Figures 1 and 2, are: Increasing pressure: logp = 1027-1994 IT) (1) r=-099,n=5 Decreasing pressure: : logp = 10352023 (IFT) (2) r=-099,n=5 `eTshteimtawtoeddvataaposrelpsraersesusriemsilaatr1a0n,d20h,av2e5,coarrnedla3t0ionCcaoreeffliicsiteendtsingrTeaabtleerst3haann0d.4995f.or tThheetwo toluene data sels. dynamic method Table 5 lists the range of vapor from interlaboratory comparisons pressure (4). values determined by the : The toluene vapor pressures interlaboratory comparisons. determined from equation 1 are within The values determined from equation the ranges listed for 2 are slightly lower the at 10 and 20C. established The vapor pressure for in the protocol (2.93.1 toluene at 20C (2.8 X X 10 Pa). The vapor 10 Pa) pressure is lower than the criterion for toluene at 10C `(p1ro.bXl6em1o0ccuPrar)edis wliotwherthtehasnysttheemcarsitterhieopnrsetsastuerdeiwnarsefdeecrreenacs4eed.(1.T7o-1.g8etXth1e0t3olPuae)n.e tAo boil as the pressure was `whether this would decreased, more have affected the boiling chips temperature were added and pressure to the item. It measurements. is not clear SponsorStudyIDF L464 006018 ASAeSlelStRuedpyorItD44O540S3-0V-P0.4R5O0M1 Page 11 pTrhoeviedxepedraitmaenctoamlpadreasbiglne ptoretsheanttreedphoertreedfoinr both increasing and decreasing pressures. dreefteerremnicnein4g. vTaphoerrpergersessusrieoncucruvrevsesaaprpeealrisnetaor for TI estteETmPO:SA The and 7o,bsreerspveecdtidvaetlay.obtTahienecdalfcourlaitnecdreraesgirnegssainodn dceucrrveeassifnrgomthtehperepslsoutreed are shown curves of in log Tables p vs 6 (UT), Figures 3 and 4 are: . Increasing pressure: rlo=g -p 0=9192,.6n4-=39554 (1/T) 3) Decreasing pressure: rlo=pg-0= 9127.4n5-=35871 (IIT) @) `The estimated vapor pressures at 10, 20, 25, and 30C are listed in Tables 8 and 9 for the cteosntdiittieomn.s dTihfeferesbtyim2a0tetdov2a4poprerpcreensts.ures for the increasing and decreasing pressure 5.0 CONCLUSIONS a`cTchuerpatlea,cesmteenatdyoftetmhpeertahteurrmeommeetaesrurienmtehnetsa.ppaTrhaetusplparcoevmeednttoofbethpeivtohtearlmionmeesttearblfiosrhitnhge test aiptpermowxiamsatdieflfyeroennet tihnacnh tahbaotvoeftthhee bruebfbelrienngceteisttemi.temThine tthheecromlolmeecttieorn wfalasskp.lacTehde thermometer for the reference item was placed in the neck of the collection flask. Based 25C, on the increasing pressure and 30C were 0.047 Pa, regression 0.142 Pa, equation, 0.239 Pa, tahnedv0a.p3o9r5prPeas,surreesspeactti1ve0lyC., 20C, 6.0 DEVFRI OMAA PPRT OVEDI TESO TPRN OTOS COL "The deviation which occurred while conducting this study is: ny `Wbheiclaueseteostfilngowtesmtelittienmg, ptohienatirofcotnhedetnessteritweam.s used in place of water condenser `SponsorStudy IDF U1464 006019 AASSeelSuRdepyor1tD44O5A0S3-0V-P0R45I0M1 Page 12 `To no etfhfeecbtesotnotfheouorutcucrormeentosfcitehnistitfeisct.knowledge and understanding, this deviation should have 7.0 REPORTSIGNATURE Name (signed). Name (typed):Linda Christensen : (1/6/98 _ : TReasbploens1i0b.ilities, signatures, initials, and names of key personn. el involved in this study are in 80 REFERENCES 1 Organization for Economic Cooperation and Development (OECD), 1993. OECD Guidelines for Testing of Chemicals. OECD Publication Information Center, `Washington, DC. 2) Shoemaker, D.P. and C.W. Garland. 1962. Experiments in Physical chemistry. McGraw-HillBook Co., pp. 162-163. 3) EOrngvainrioznamteinont DfoirreEctcoornaotem,icChCeomoipcearlastiGornoaunpdaDnedveMlaonpamgeenmten(tOECCoDm)m,itt1e9e97.. OECD NSeurmiebseorn1.PriOncEipClDesPorfinGcoipoldesLoabnorGaotoodryLaPbraocrtaitcoeryanPdraCcotimcpel.iance Monitoring. `SponsorSwdy IDF 146s 006020 v . AAseSeSuRedpyorItDRFS53V0P0.45R.O01M Page 13 TABLE." PTroelsuseunrees(R(epf)eartenIcnecrIetaesmi)n:g PBroeislsiunrge.Points (T) and Corresponding Vapor [=n[vo [owe|70|row [ren | |Mewsitows - [ oOwbsrereveid TTemopemratmurne --1 C o | T |e e se m T|w eno|e n wss]|[_oomoms|s| o [ oom oomn Te e5s0 ||woone ee |oaowwon || Sponsor SudyIDI U14es 006021 : AScl Report #045-VP.RIM Page 14 `TABLE 2. PTroelsuseunrees(R(ep)feartenDceecrIetaesmi)n:g BPorielsisnugrePoints (T) and Corresponding Vapor [ [=r [ emT T [vo or1e wo m n [we]| ||[ [ e wT wsee [Tm n eaoome wnT [wasmone | |e e wweeeenes ||oooomo wween]|| L 2 1 ew 1Ser| 0 | suis |oom | rer 008022 . ASAeSlelSuRedpyorItDK4O540S3:0V.P04R5O.0M1 Page 15 TABLE3. T`Toelmupeenreat(uRreefser(eTn)ceDeItteerm)m:ineEsdtfirmaotmeEdqVuaatpioornP1ressures (p) at Different to } woo [| VeorPeemeen | [ VeVappoorrPPrresosurme (GmamHigl) ) | [ oxwe | Spontor Sudy IDJ U1des 006023 . ASAeSlelSuRdepyorItD44054053-0V-P0.4R50a1M Page 16 [e eee TT ree TABLE 4. `TToelmupeenreat(uRreefser(eTn)ceDeItteerm)m:ineEsdtfirmoatmeEdqVuaatpioornP2ressures (p) at Different `Sponsor Study IDF tds 006! 024 oe ' Fe ASel Report #045-VP.RIM Page 17 CeTerme] TABLE 5. Range of Vapor Pressure Values for Toluene by the Dynamic Method from `OECD and EEC-Laboratory Intercomparison Testing Programs "@ ry 006025 . A156uRyopar HoSsE RoM Page 18 TABLE 6. ET POSA (Test Item): Boiling points (T) and Corresponding Vapor Pressures (p) at Rising Pressure ormTToem] [ome T ooTipo | reo [ vom | wen | fm LmTe me [ee | ewan | || | [o vT ow woew Te|ws|ws |weowr | wween || eweoss | oom | | |oomoann || Spoor Sy IDF Utes 006026 mi Page 19 TABLE 7. ET POSA (Test Item): Boiling points (T) and Corresponding Vapor Pressures (p) at Decreasing Pressure [~ owObe envedn Pree [O "Obr servei d Tempeo rature n]1 [o " s | mame [[| [ e wae ww[ s |[w wwo oo[|e [aewsse[ i|||oooommm || 1 C Ts oToow oemw | wonee | wwness |oowwnn|] reer i 006027 ASAeSlelStRuedpyorItD44O5I0S30V-P0.4R5O0M1 Page 20 TABLES. TEeTmpPeOrSatAur(eTses(tTI)teDme)t:erEmsitniemdatferdomVaEpqouartPiroenss3ures (p) at Different t -- o T I o E--E -- [ -- Va Pop e ano i r Equatio3n -- Log Pa = 12.64:3954 (11) `Example Calaulation : Log Pa = 12.64-3954 (1/T) 10C = 283.15 Log Pa = 12.64-3956 (1283.15) Log Pa = 12.64-13.9643 . Log Pa = 1.3263 . Pa = lav Log (1.3243) Pam 0.007 For mmHg = 0153..350=04.367X 107 `Sponsor Study IDF U1464 : 006028 . SAllSuRedpyorIt1#0540350p04R530M1 Page 21 TABLES. = ETeTmPpeOrSatAur(eTses(tTI)tDeme)t:erEmsitniemdatferdomVaEpqouartPiroenss4ures (7) at Differeat IT VaporPoss mi) s T m e e e ] | vem exe Equuion 4 = Log Pa = 12.45.3871 (1m) Sponsor Study DW Usa 006029 .- : Pepper AScl Report #045-VP RIM Page 22 TABLE 10. ET POSA (Test Item): Responsibilities, Signatures, and Initials ofKey Personnel Involved in the Study [ows|imeis | een][ia| [ows visonTootspier | 7770] vont msm oui poepot riers _|JZFZ e | | 2A JF Gf | [rutonenss [voonrommies |Ftp770 | iv v `SponsorStudyIDF U1464 006030 . AstSnTsEvRn Page23 Figure 1. A Representative Plot of Log p (Pa) and 1/T (K) for Toluene at Increasing Pressure 425 4.20 4.15 4.10 405 =4.00 S395 3.90 385 3.80 375 | 000300 000305 000310 000315 000320 000325 0.00330 8 1T(K) : Se sy 00 vie . . STa R Figure 2. A Representative Plot of Log p (Pa) and 1/T (K) for Toluene at | Decreasing Pressure j 4.40 | 4.30 & 4.20 3=2d4.10 4.00 3.90 X " 3.80 g 0.00295 & i-- 0.00300 0.00305 0.00310 IT (K) 0.00315 0.00320 0.00325 JJsepreorsyrei Pages Figure 3. A Representative Plot of Log p (Pa) and 1/T (K) for ET POSA at Increasing Pressure 4.15 410 > 405 Q 4.00 a 305 < 83% 385 . 3.80 375 370 g 0002140 0.002160 0.002180 0.002200 0.002220 0.002240 0.002260 g " IT, K { P-- . fsorherotosaimri Page26 Figure 4. A Representative Plot of Log p (Pa) and 1/T (K) for ET POSA at Decreasing Pressure 420 | 4.15 4.10 4.05 T& 4.00 38S 395 3.90 3.85 3.80 @ 375 8 0.00214 2g ; mn st08vyi # 0.00216 . , : 0.00218 0.0022 170) 0.00222 . 3 0.00224