Document RpG1e1EyV34xL5XqB6M5YjV5a
ee
<
RReevviieeww ooff PPFFOOSS IImmppaaiirrmmeenntt iinn
MMiissssiissssiippppii RRiivveerr
PPooooll 22
Prepared for: Barnes & Thornburg LLP
Chicago, Illinois
On behalf of:
wre Metropolitan Council Environmental Services St. Paul, Minnesota
Prepared by: ENVIRON International Corporation
Irvine, California
econ 10 300Date:
December 16, 2010
Project Number: 20-24193A
EExxhhiibbiitt 2691
State of Minnesota v. 3M Co., Court File No. 27-CV-10-28862
NVi RON
22669911..00000011
STATE_01178225
Review of PFOS Impaiment in Wisisini Rver Pot 2 Review of PFOS Impairment in Mississippi River Pool 2 Prepared for Metcpotian Counc Prepared for Metropolitan Council
CCoonntteennttss
Page
1 Executive Summary
' Page
21 woduction Executive Summary
21
23 RInetvroideuwcatniodnSynthesisof Pool 2 PFOS Data
32
313
3.1
Review of Concentrations of PFOS in Fish Sampled Review and Synthesis of Pool 2 PFOS Data
Review of Concentrations of PFQS in Fish Sampled
iinntthhee
MMPPCCAA
((22001100))
Pool2 study
3
3
311 MPPoColA2 2S0tu1d0y) Study Design
33
3.1.1
551132 3.1.2
MCCMoPoPnncCCceAAentn(2rt2r0aa0t11tii0o0o))nnssSDoatofutfdaPPyAFFDnOOaeSlSsyisgiinninsiFAissphhprOOobbassceehrrvveedd bbyy MMPPCCAA ((22001100))
433 3
323.1.3 RMePvCieAw(o2f01C0o)ncDeanttarAetnoanlyssoisf APpFpOrSoaicnhWar and Surface Sediment Sampled
4
3.2 RientvhieewMoPfCCAonacnednVtriaetsiotnosn oSftuPdFiOesS in Water and Surface Sediment Sampled
5
521 CionntcheentMraPtCiAonasonfd PWFeOstSoninSWtuatdeiersand Surface Sediment
55
322 3.2.1
3.2.2
Spatial Relationships between PFOS in Water Concentrations of PFOS in Water and Surface
Spatial Relationships between PFOS in Water
and Surface Sediment
and Surface
SSeeddiimmeenntt
0to
PPFFOOSS
iinn
FFiisshh
85
8
444 1
CSCotontnsesioidtdeternraeat-tiiSoocnnissenffoocrre
PPRFFeOOviSSewEEnnvviirronomnmeenntatl
Fate
Fate
1"n1
4.1
44234.2
RRSRoetoallleeteeov-ofaofSnf-Sectheededio-imfmSSeceenidnetitnmiicnneeAnARqtqu.euaavatsiteisiccwocFFiaaattteeeodoffPPPFFFOOOSSSo Pool 2 Fish
11
2212
54.3
PsSRcFceiilOeeeSnvnaccIneemc--bpebaaaoissfreeSmddeeAAndltilmtteeienrrnnnPata-otatoiisvlvseeo2cDDieaectceiisdsiioPonnFOMMSaakktioinnPggottoool
Define 2 Fish
Define
aanndd
AAddddrreessss
12
1s
555.121 AMPMlFPPlOCCeSAAmaIMMmvaaepnnaaPaigrgFmeeOmmeSenenMtntatinnRRaePegsoseppomoolenn2snseet ttSootrtthahteeegMMiPePsCCRAAel((a22t00i11v00e))oPPoMoeotl2r2aSoStWutudldTyy.P
1i166o
65.2 CAoltnecrnlautsivieonPsFOS Management Strategies Relative to Metro V~AA/TP
218
76 RCeofnecrleunscioenss
221
7
References
23
List of Tables
List of Tables
Tablet:
Table 1:
Tabe2:
Table 2:
Tabed:
Table 3:
Tabi4e:
Table 4:
Table 5:
Table 5:
Table:
Table 6:
TTaabbllee 77:: Tables:
Table 8:
CCffooonmnceScenectrtnaitotionrsnsao1,tof2,fiPPo3FFnOOaSsSnd4iinn ssuuuprrsffaracceeeassmeedodifimm3eeMnntCt oaatnntddagwweaatGtoerrorvsseaa.mmpplleess oobbttaaiinneedd
Concentrations of PFOS from Sections 1,2, 3 and
Concentrations of PFOS
in4
in
surface seciment and watorsampis upstream of 3M Cottage Grove.
surface sediment and water samples
oobbltaainneedd
ffarrnoodmmWSSeeescctttioCionov4ne4.aaddajacceenntt tfoo 33MM CCoottttaaggee GGrroovvee sshhoorreelilinnee,, eexxccliutdiinngg EEaasstt CCoovvee.
aCCfornonodncmcW eeSneentcrstrtataitCtoiionoonvn4sesd.oooffwPPnFFsOOiSSeaiinnmssouufrrff3aaMcceeCssoeettddaiimgmeeennGttraoanvnded wwaatteerrssaammpplleess oobbttaaiinneedd
fFCFriooisstmhhtabbSgiieoeocaaGtccirocconuuvmem4u.uldalaottwiioonnnstmmreooaddmeell
for Sections 1, 2:3 and of 3M Cottage Grove.
for Sections 1, 2,3 and
4 4
uuppssitrreeaamm
ooff
S3MM
CFiosthtabgieoaGcrcouvmeu.lation mode for Section 4 adjacent o 3M Cotage Grove
shoreline. Fish bioaccumulation model for Section 4 adjacent to 3M Cottage Grove
sFhisohrebliinoea.ccumulation model for Section 4 Section 4 downstream o3fM
CCFFioiosstthhttaabbggiieoeoaaGGccrcrcoouuvvmmeeuu.lalattiioonn
model
model
for Section 4 Section 4 downstream of 3M
applied to estimate PFOS wate crerion at
a
gFiisvhenbciooanccecnutmrautlaiotinonofmPoFdCeSl aipnpsliuerdfatoceessetdimimaetnet.PFOS water criterion at a
Atemate PFOS penn calculations for eto. given concentration of PFOS in surface sediment.
Alternate PFOS permit calculations for Metro.
Canter
i
ENVIRON
22669911..00000022
STATE_01178226
STATE_01178226
TTaabbllee 09:
LLiisstt ooff FFiigguurreess. FFiigguurree 11: : Figure 2:
Figure 2:
FFiigguurree 33:: Figure 4:
Figure 4:
FFiigguurree 5S:: FFiigguurere6:: FFiigguurree 77:: FFiigguurree &8: FFiigguurree 9: FFiigguurree 1100:: FFiigguurree 1111: : FFiigguurree 1122::
Review
Review
of
of
PROS
PFOS
IImmppaarsirommpeeannrtteiidnn
ifMrsisiMseisstiscioppppoilRRtiaivvneerrCPPoooncolcl
!22
Prepared for Metropolitan Council
CCoonncceenntrtraattiioonnss ooff PPFFOOSS iinn eeffffluueenntt ffroomm tthhee MMeeltrroappoolliitaann W Waasstteewwaatteerr TTrreeaattmmeenntt PPllaanntt,, JJuullyy 22001100..
Minnosota
Minnesota
PPoolllluuttiioonn
CCoonntrtrooll
AAggeennccyy
((MMPPGCAA))
MMsisssiissispipppii
RRiivveerr
PPoool 22SoSttuulddyy
Area
AMirenanesota Pollution Control Agency (MPCA) Mississippi River Pool2 Section
1MiFninsehsaontadWPaotlleurtioSnamCpolnetroRleAsguelnscy (MPCA) Mississippi River Pool 2 Section
M1 iFninsehsoatnad PWolaltuetrioSnaCmonptleroRl eAsgueltnscy (PCA) Mississippi River Pool2 Section
22MMiiFFnniinnssehehssaoaotnntaaddWPPWaootlalleltuuerttriiooSSnnaaCmCmoponplnlleertrooRRlleeAsAsugguleelttnnssccyy
(MPCA)
(MPCA)
Mississippi
Mississippi
River
River
Pool
Pool
2
2
Section
Section
3MiFninsehsaontad PWaotlleurtioSnamCpolnetroRleAsguelnscy (MPCA) Mississippi River Pool 2 Section
3MiFninsehsoatnad PWolaltuetrioSnaCmonptleroRl eAsgueltnscy (PCA) Mississippi River Pool2 Section
4 Fish and Minnesota
4 Fish and
Water Sample Results Pollution Control Agency
Water Sample Results
(MPCA)
Mississippi
River
Pool
2
Section
99Fi00ltltheht PPbeyerrcScepenentctiiileeesCCoonncceennttrraattioinosn ooff PPeerrfflluuoorrooooccttaannee SSuullffoonnaattee ((PPFFOOSS)) iinn FFiisshh
ConcenotfrPearftuoircooctnanse Fillet by Species
Concentrations of Perfluorooctane
SSuullffoennaaltee
((PPFFOOSS))
iinn
LLoowweerr
MMiissssiissssiippppii
RCRwivvoeerrnPPocooolle22nSSuuotrrtffaraPcceeearfSStleeuddoiirimmcoeoecnnntttanse Sullonale (PFOS) in Lower Mississippi
River Pool 2 Water Concentrations of Perfluorooctane Sulfonate (PFOS) in Lower Mississippi
CCRoivonecrnePncotroaleti2onnWsotaotferfPrPeaerfrftlluuooirrocoooccnttaansnee SSuullffoonnaaltee ((PPFFOOSS)) iinn LLoowweerr MMiissssiissssiippppii
RRiivveerr PPooooll 22 SSuurrtfaaccee SSeeddiimmeenntt NNeeaarr 33M CCoottttaaggee GGrroovvee
CCoonncceenntrtraattiioonnss ooff PPeerrfflluuoorrocoocctiaannee SSuullffoonnaaltee ((PPFFOOSS)) iinn LLoowweerr MMiissssiissssiippppii
CRRioivvneecrrepPPtoouooalll22MWWoadatetelerrDNNeeseaiargrn33MMforCCtoohttettaaPggee GG2orroovPveeFl.OS Fish Bioaccumulation Model
PFOS Bioaccumulation Model Predictions Compared to Ranges of Observed Conceptual Model Design for the Pool 2 PFOS Fish Bioaccumulation Model
PFOS Bioaccumulation Model Predictions Compared to Ranges of Observed
`AAvveerraaggee PPFFOOSS CCoonncceentnrtraattiioonnss iinn FFiisshh
Gentens
" 22669911..00000033
ENVIRON STATE01178227
STATE_01178227
Review
Review
of
of
PFOS
PFOS
IImmppaaPiirrmmeepenantrteiindn
WfMoirissMsieisstsicipnppioitRRivaivenerrCPoPuoonotcl t22
Prepared for Metropolitan Council
1 EExxeeccuuttiivve Summmmaarryy
tIInnisMMsauaerrccahhnd2200s11u0r0,f,aMMcePPwCCaAAteppruubibnlliiPssohhoeeldd2aaossftttuhuddeyy MiininsvvseeisssttsiigigapapttiiinngRgippveeerrrffl(uuoMorPriiCnnAaa,tteedd20cc10oo)mm.ppooMuuinnndndessso((tPPaF,FCCs)) iinn ifisshh ctDDioseensppcuaeaernrtttammrneaedntnitstoouonfrsffaHHocfeeeaaplweltrthaftl((eMuMroDDrinHoHo)P)cotiisoassnlsueu2eesdoduflaatfhoffeinissahMhteccisoo(snnPisssFsuuOimmpSpp)ptitiiiRoonninfvie((sfrhrree(tMssihtsPswwCuaaeAtte,deror2cd0durr1umu0mme).)n)taaMedddivnviinissneoostrryohyetabbsaatssueedydd. oonn 2cMMoiainnnsncneeiesmnsopotrtataaiatrioPPeondolslloluuonttfiioioptnnseCCCrfollounentoatrrnroooloWl acAAttgageenernencAcscyyut((lfMSoMenPPcaCCtAtieA)o)n,(,P3iinFn0O3rr(eSedss))ppioolnnsntfssioseef,h, icctilmlsaapsssaussiieirffieiededdodcwttauhhtmeeere33sn3.3-t-emmdIinilleienorsstdthterreerettsctctohhuadoodyffd.PProoeosolsl h2tihnaaactstluiiimdmmepppaaaaiirrnirmmueemdenentort,,nicMMitsPPPFCCCOAAleSahhnalaissWmiiitannadtdteiiicrocanaAttencedttd ShttheheaactNttiaotittniiisso3ncc0aoo3lnn(sPdsio)iddlelelirsrtitiannonggftaaimDnnipsaaacppihrppearrdroogaaweccahhEtlettihrhmsaai.ttnaccItnooiuuoollndrddSueuylrltsiitmmtoaeaatmtedeldlyyress Wi((nNWNcPTPluDDPdE)EeS,Sa))wnppheueirmrcmmheiitrtdifcifoosPrchFtthahOereSgMMeelsietmrtiroinottpapootoiloPilinottaalinnn 2CCt.hooeuunNnccaiitlli'ossnMMaeletrPtrooopploluoltiliattanantnDW WiasascsthteaewrwgaaetteeErrliTTmrrieenaaatttmimoeennntSt yPPslltaaennmtt ((MWeettrroo
VWVTP), which discharges into Pool 2.
tOOhnne MbbePhCeaAlfooh(ff2MM0e1ate0rt)roolspptoouildfittyaanannCCdooueunvcnaicllilu,,aEEteNNdVVtIIhRReOOiNnNitiIIannltteperemnraamttiiiotoninanalgl CCaoporprpprooorraaacttihioondni((sEcENuNsVVsIIeRRdOOwNNi)t)hrrMeevvPiieCewAweeddfor
thethe
the
Metro WWTP. MPCA (2010)
Metro WV~I-P.
This study This
review was conducted in ight of MPCA (2010) Pool 2 data, additonal and evaluated the initial permitting approach discussed with MPCA for
review was conducted in light of MPCA (2010) Pool 2 data, additional
eppcuuobbtlloiicncliyyc--oaalvvoaagiiylaa,bbeilenevPPioroooolnl m22enddatatatala,,caahsesmwwieseltlllryaa,ss atthnheed ssrittasaktteea--soosff-et-shhseem--essncctiie,ennccee wwiitthh rreessppeecctt ttoo PPFFOOSS.
ecotoxicology, environmental chemistry, and risk assessment.
AAssaa rreessuulltt ooff tthhee rreevviieeww aanndd aannaalylyssisis,, EENNVVIIRROONN mmaaddee tthhee ffoollloowwiinngg kkeeyy ffiinnddiinnggss::
1. AAhcactttuuaeaxllhiffibisishthsttiiismsspsuauieerPmPeFFnOOtSSisiimSmeppcaatiirirmom4ene,nnttthiiess mlliiommsiittteedddottwoonsSSeiecrctteiioaonnst44uidinny PPsoeocootllio22.n. oTTfhhPeeoooolnnll2yyiaanrretehaae
bMtMhePaPltCCoewAAxth((h2i2be00itl11se00v)i)emlsspttiuuandddiyryi.mc.aetniOOvtvveieseorrfS99ie99mc%pt%iaoionorffm4tte,hhnetehte22a22nm22doffisaisstrhhedssosaawemmvneppsrltlaeerleddaoimirnndSSeseretcusctdtoiiyfoonmnssseagc11tn,,ioi22ntuaaodnnfeddPl33ooaowarler2eer tinhathne
concentration below the level
concentrations
in many ofthe Section 4 fish indicative of impairment and are
in many of the Section 4 fish.
several
orders
of
magnitude
lower
than
2. SlAeodlcoiacmlaeilnizzteeaddndPPFFwaOOtSSerssdooauutrracceefrwwoimitthhMiiPnnCSSAeeccattniiodonnot44heiissr rrpeuebsslppioocnlnyssiaibbvlaleeilffaoobrreiimmrepppaoairirtrsmm,eenants.t.weAAllvvaaaiillaasbbillteeo
`sssSppeeeedcccitimififoiiecncn4PPt FFaarnOOedSSrwffeiiasssthpheorbbnisdioioaabatlcaceccfuurfommoumrultlahaMtetiiPooiCnmnpAmmaoiaodrndemdeieniliotnn.tggh,,eriinnpdduiicbcaalittceelsys
that localized conditions within available reports, as well as site-
that localized conditions within
Section 4 are responsible for the impairment.
3. nMMoPPtCCsAAu'p'sspopprrrtooeppdoobssyeeddthppeeemrdmiattiat--.bbaaMssueeltddipmmlaeanlniaanggeseemomfeeennvttidrreeensscppeooinnnssdeeicttaootePPtFFhOaOtSSthiinen sPPooooollu2f2oriffisctshhhee:iiss
oaonsbbossstoeescrriuvvaepetddpeodPPrwFFtieOOtdhSSbMiiymemttpprhaaoeiirWrmdWmaeeTtnanPt.t.issMlfiuFmmilitriittpseetldedtttlhoioneelloposcrcaaoollpf ossesooveuuiddrreccMenescsPeCwwiAiitnthhdaiiipnncpaSSrteeeoccattthciioaohntnft44hoecaaunnssddoeusiisrsconnenootostfurthfeace
water discharges and associated with Metro
water discharges and
does not VWVTP.
does not
address PFOS present n sediment, First, the proposed MPCA approach
address PFOS present in sediment,
which accounts for focuses on surface
which accounts for
itthsheeinmmcaojanojsoriirsitttyyenootff wPPiFFthOOSStheeexxMppDoossHuurrfeeistothotfifiisssshh,u,eaaassdviinindsdoiiccraayttelededvebblyyummsoeoddedletiloinngtg.r.igSSgeeercceoonnnvddi,,rotthhneemeaanpptpparrlooaacchh
crcisoeonmnincocecveroirnnnnsss.gi.sttheTTehnhitircrdowd,n,idtiahatdditdodhrnreeeossMfssiDininHmggpfaMMiiserehtmtrretooinstsVW.uWeTVaTPdPvittshhorroroyuugglehhvetthhliisussaaeppdpprtooratorcihgawgcwielhirlll ennnootvtbirbeoenefmeffefeenccttatiivlvee iinn
removing the condition of impairment.
Exccume Executive SSuummmmaarryy
Tors 1 of 53 22669911..00000044
ENVIRON
~NV I RO N
STATE_01178228
STATE_01178228
Review
Review
of
of
PFOS
PFOS
IImmppaaPiirrmmeepenantrteiindn
WfMoirissMsieisstsicipnppioitRRivaivenerrCPoPuoonotcl t22
Prepared for Metropolitan Council
22 IInnttrroodduuccttiioonn
IInn MMaarrcchh 22001100,, tthhee MMiinnnneessoottaa PPoolllluuttiioonn CCoonntrtrooll perfluorinated compounds (PFC) in fish tissue
AAanggdeennsccuyyrf((aMcMePPCCwaAAt))errreeillneeaMasisseesddisaasisspttpuuiddyyRioovffer
Pool
2
ep((MveMarPPlflCuCuaoAAtrei22nd00a11bt0e0y)d.).ccoAAomvmpveaeprrroaaiuggsneeodnccsoon(nPccteFheneCntstrMr)aiatntiniinooenfnissssohootftfaisppDseeeurrpfefliauaurocntrrdomooeosnccutttrafaonanfeceeHsseuuwalllaffotothennraa(ttiMeneD(M(HPP)iFsFsOfOiiSsSss)h)ipiiinpnsisffiiuRssehhivaettidisrvssPisusuoeoeorlwwye2erree
OelleevnvvaeeellluodadfeteertridhivveeebdfdyivttceooosbmbpeeepcappirrreioossttoeeonccftttiifvovieesthhooesffaaaMmoopinnnlneeeedsmmo(eetfaaarlleDsppheeewrpraawwtreeetrmeedkkernccutoomonn)fsseuHuxmmehpiaptblttiiihootenn(dMrraaDatntHee,,a)vaafiesvvrhaaallgtuuieseesPouofFef 22Oa00Sd00vfinnisgsgos//rgugye1
cfOcioosnnnheccceeonontfnrttsrhaauettmiiopfoitnvnieggorsrneepaaaetdtceevirerisstthohoarafynnffittsohhhreePsMMoaoDDmlHHp2.leffidisBshh(afttsriiesesssdshuuoewenaaattddehvvreiissdfooriurrsyymh lc)leeovveneexlslh,,uibmaapinntetddidMMoanDDnaHHdavvssieuusrobbarsgsyee,eqqPPuuoeFoenOlntlSt2y wtiiisassssssu.uueeedd aa
flpliiissrshtoteecdcdeoaeansdsseu""diimmmwpppiattaiihoirrneeiddna"t"deuulvnnispddoeeerrrrym33ifot00br33a((Pds)o)eoodolff2mtt.hhaeenBaCCaglsleeeeaadmnneonW WnatatthateeecrtrfiAiAsocchnt.ts.cfooBBnraasMssueeemtddrpoootipnnoonttlhiiaissadnvffiiinCsndodoiiurnnyngg,.c,iPMlMosPoPClMCAe2A.twroapsolitan
(Metro) WWTP, proceeded with
(Metro) WVVTP,
which discharges to Pool 2. initial permit-based management
which discharges to Pool 2.
actions
for
Metropolitan
Council's
Metropolitan
tOOhnnebMbeePnhCaAlfoo(ff2MM0e1et0rt)roopspotoluildittyaannanCCdooueunvncacilil,u,aEEteNNdVVtIIhRReOOiNNntiIIannlttepeerrnrnmaatitiitootnniaanlgl CCaoporprpprooorraaacttihioondni((sEcENuNsVVsIIeRRdOOwNNi)t)hrrMeevvPiieCewAweeddfor
thethe
the
Metro WWTP. MPCA (2010)
Metro WWTP.
Thisreviewwas conducted in ight of additional publicly-available study and evaluated the initial permitting approach discussed with This review was conducted in light of additional publicly-available
PFOS MPCA
PFOS
for
ccrhheesempmiescistttrrtyyo ddPaaFttaaOSiinn ePPcooootolol x22icssouulrroffgaaycc.eeessneevddiiirmmoenenmntetnaatnnaddl wwcahatetemeirrs,,tarayss,wweaelnllldaassristthkheeassssttaeasttese--mooeffn--ttht.hee--sTscchiieennrcceeemawwiiittnhhder
of this report presents the synopsisof this review, and is organized into the following respect to PFOS ecotoxicology, environmental chemistry, and risk assessment. The
of this report presents the synopsis of this review, and is organized into the following
sections: remainder
sections:
= SSeeccttiioonn 33: RReevviieeww aanndd SSyynntthheessiiss ooff PPooooll 22 PPFFOOSS DDaattaa
+ SSeeccttiioonn 44: CCoonnssiiddeerraattiioonnss ffoorr PPFFOOSS EEnnvviirroonnmmeennttaall FFaattee
+ SSIemecpcttaiioionmne55n:tSScicinieePnnoccoeelb-b2aasseedd AAlltteerrnnaattiivvee DDeecciissiioonn MMaakkiinngg ttoo DDeeffiinnee aanndd AAddddrreessss PPFFOOSS Impairment in Pool 2
+ SSeeccttiioonn 66: CCoonncculussiioonnss + Section 7 References.
Section 7: References
ConcanoftPFrOSa1bsah snuse n themln tx:of his document are exproneansansogaramcs PEGS pr Concentrations of PFS in fish tissue in the main text of this document are expressed on a nanograms PFOS per am wet wight sue bass. gram wet weight tissue basis.
Invoducton Introduction
20159
ENVIRON
2 of 53
ENV i RO N
22669911..00000055
STATE_01178229
STATE_01178229
Review of PEOS ImpPaimeenpien MrsiHsetiosppoRiiavneCPoucnc2 Review of PFOS Impairment in Mississippi River Pool 2 Prepared for Metropolitan Council
33 RReevviieeww aanndd SSyynntthheessiiss ooff PPooooll 22 PPFFOOSS DDaattaa
TTPhohioissl s2s.eecctTtiihoornnerpereepssieemnantrtsyasaerrneevvviiireeowwnmaaennnddtasslyynndtathhteeassisissouoorffcppeuusbblwliieccrlyye--aarvveaalvililaaebbwlleeedPPtFFoOOunSSdeeenrnvsvitirraoonnndmmteehnnettaanlal tdduaartteaaoiifnn
Pool 2. Three primary environmental data sources were reviewed to
aPqFuaOtSicinenevnivrioronnmmeennttal campariments which are potential-relevant PFS in environmental compartments which are potentially-relevant
o mpaifent in the Pool understand the nature of
to impairment in the Pool
22
aquatic environment:
1.
1.
CCoonncceentnrtraattiioonnss ooff PPFFOOSS iinn PPooooll22 fhfish aanndd wwaatteerr mmeeaassuurreedd bbyy MMPPCCAA ((22001100));
22.. CCoonncceentnrtraattiioonnss ooff PPFFOOSS iinn PPooooll 22 sseeddiimmeenntt aanndd wwaatteerr mmeeaassuurreedd bbyy MMPPCCAA ((22000066));; aanndd
33.. GCCorononcvceeentnmrteraaattsiioounnrssedooffbPPyFFWOOeSSstiionnnMMi(is2ss0si0is7ss,siipp2pp0ii08RRi,ivv2ee0rr08ss)ee.ddiimmeenntt aanndd wwaatteerr nneeaarr 33MM CCoottttaaggee Grove measured by Weston (2007, 2008, 2009).
AAlltthhoouugghh tthhee llaabboorraattoorryy aannaalylyttiiccaall tteecchhnniiqquueess ffoorr PPFFCCss dduurriinngg tthhee ttiimmee ppeerriioodd ooff tthheessee ssttuuddiieess. wweerree eevvoollvviinngg aanndd ccuurrrreennttllyy ccoonnttiinnuuee ttoo iimmpprroovvee ((MMaalliinnsskkyy,, 22000099 ;; vvaann LLeeeeuuwweenn eett aal.l,., 22000099)),, iitt
was assumed that concentrationsof PFOS in fish, surface sediment, and water among the was assumed that concentrations of PFOS in fish, surface sediment, and water among the studies were comparable such thata synthesis of the data from these sucies would provide studies were comparable such that a synthesis of the data from these studies would provide insight nto the presence and behavior of PFOS in Pool 2 fish, surface water, and sediment. insight into the presence and behavior of PFOS in Pool 2 fish, surface water, and sediment.
Study 33..11 RReevviieeww ooff CCoonncceennttrraattiioonnss ooff PPFFOOSS iinn FFiisshh SSaammpplleedd iinn tthhee MIVPiPCCAA ((22001100)) PPooooll 22 Study
311 MPCA (2010) Study Design 3.1.1 MPCA (2010) Study Design MPCA divided Pool 2 into four sections of varying length for their investigationof PFOS ifish MPCA divided Pool 2 into four sections of varying lengths for their investigation of PFOS in fish and surface water (Figure 1): Section 1 (3.6 iver mile) is the upper most section, Section 2 and surface water (Figure 1): Section 1 (3.6 river miles) is the upper most section, Section 2 (95 wer mile) receives discharge from Metropoitan Councils Metro WWTP, Section 3 (13.7 (9.5 river miles) receives discharge from Metropolitan Council's Metro VWVTP, Section 3 (13.7
rfiivveerr mmilileess)),, aanndd SSeeccttiioonn 44 ((44..77 rriivveerr mmiilleess)) aatt tthhee lloowweerr eenndd,, wwhhiicchh rreecceeiivveess ddiisscchhaarrggee ffrroomm 33MM''ss CCoottttaaggee GGrroovvee FFaacicliliittyy ((33MM CCoottttaaggee GGrroovvee).). IInn MMaayy 22000099,, MMiinnnneessoottaa DDeeppaarrttmmeenntt ooff NNaattuurraall
Resources (MON), on behalf of MPCA, colected five fish species from all secions: busgil Resources (MDNR), on behalf of MPCA, collected five fish species from all sections: bluegill Sunfish, carp, freshwater Gum, smallmouth bass, and white bass. Foreach species, MONR sunfish, carp, freshwater drum, smallmouth bass, and white bass. For each species, MDNR colic15 fish per section fora taal of 75 fish per section withthe exceptionof lui sunfish collected 15 fish per section for a total of 75 fish per section with the exception of bluegill sunfish in Section 1, where 12 fish were collected (72 fish for Section 1. Inota, 297 fishsamplesware in Section 1, where 12 fish were collected (72 fish for Section 1). In total, 297 fish samples were collected from Pool 2. MONR also colected water samples rom 12 tations (3 diferent collected from Pool 2. MDNR also collected water samples from 12 stations (3 different collection ses wii each section, 3 samples at each ste. Water samples and30ofthe fish collection sites within each section, 3 samples at each site). Water samples and 30 of the fish
ssaammpplleess wweerree ccoonnccuurrrreennttllyy aannaallyyzzeedd bbyy bbootthh tthhee ccoonnttrraacctteedd llaabb aanndd 33MM aass ppaarrttoofftthhee qquuaalilittyy
assurance program. assurance program.
33.11..22 CCoonncceenntrtraattiioonnssooff PPFFOOSS iinn FFiisshh OObbsseerrvveedd bbyy MMPPCCAA ((22001100))
AAvveerraaggee aanndd 9900t"h ppeerrcceenntitillee ccoonncceennttrraattiioonnss2? ooff PPFFOOSS iinn ffiisshh ttiissssuuee wweerree bbeellooww tthhee MMODHH ffiisshh
issue advisory levelof 200 ngg for all speciesoffish in Sections 1, 2and 3 (Figures 2-4). Over tissue advisory level of 200 ng/g for all species of fish in Sections 1, 2 and 3 (Figures 2-4). Over 99% ofthe 222 fish sampled in Sections 1. 2 and 3 were below 200 ng/g Afshin Sections 1 99% of the 222 fish sampled in Sections 1, 2 and 3 were below 200 ng/g. All fish in Sections 1 and 2 were below 200 ng/g. Only two fish samples were in excess of 200 ng n Section 3. and 2 were below 200 ng/g. Only two fish samples were in excess of 200 ng/g in Section 3.
?2 9900t"h ppeerrcceennttiillee vvaalluueess aarree ccoonnsseerrvvaattiivvee ssttaattissttiiccss tthhaatt rreepprreesseenntt tthhee eexxttrreemmee uuppppeerr rraannggeessffoorr eevvaalluuaattiinngg
Copdnamors of FS oh comune ann. an are proviso Secon srzoses oy. Using concentrations of PFOS in fish consumed by anglers, and are provided here for discussion purposes only. Using Co rca loo In cormrton hinan hoa acs arr 14 500 ARTS Hd oy 90th percentile values in consideration of human health risks and/or fish tissue advisories would greatly Crime yas exponen 0 PROS overestimate typical exposures to PFOS.
ReviewandSyrivess Poot 2 PRFevOieSwEnavnidroSnymnetnhteaslisDoaftePool 2
PFOS Environmental Data
sess 3 of 53
~ENN VV Ii R~ OONN
22669911..00000066
STATE_01178230
STATE_01178230
Review of PEOS ImpPaimeenpien MrsiHsetiosppoRiiavneCPoucnc2 Review of PFOS Impairment in Mississippi River Pool 2 Prepared for Metropolitan Council
TTThhheeessseee fttwiwsooh wffiiesshrhewwecerarepetaaurmmeadallebeeaatnnwddeeaanjjuuivvveeenrniillmeeilbbellsuuee8gg3ii3lll.ss5uuannfnfiidsshh83((422,0044whaainncddh22f00a11snniggng/gt,h, erreeosswppeeercctiipvvoeerltlyi))o.n of
S4TS.ehececTttsihioeoennfirs22ahnbbgwuutotewwroeeferrcPeeaFpggOtrruSoorueucpdpoeenbddceewwtniwtittrehhaetSSnieeorccnivttfieooornnmb33lilusseeaasgmml8plp3lls3eeu.ss5nfbbaiyysnhdMMiP8Pn3CCt4hAA,isw((SMhPeiPccCthCiAAofan22llis00s11i30n04))th0aaess2lsso0hwh4ooewnwrgnnpiogiinnrtaiFFoniindgguuotrrhfeee
g049r.0othuTpphpieeenrgrccr.aeennnTtgtiiheleeeoiitsfswP11oF88eO33xSnncggec//eoggdnacssneuucgngegtgrseeassottiftoiinntnghgfeotthr2ha0bat0lutthenheggesiisllgeesfttuwiwsnoohfisiffiihsssshhiunaaertrheaeidsoovuuiStsteloieecrrtryissolnfoeovriresltth3hre4eeptSSoreee2cs0teio4cntnn3to3gns/ligsayamaom0np.pdln9leet%he
3ogofrfdottohuheepnionffitigssh.ch xssTcaahomemepdptwleltodheeieidnnMxcSSDeeeHeccditfiaooinsnnhcsseis11s.,so22fuaathnnaedddv2i33.0s. 0orCCnyoognlntcogceveenf.itnsrthraaDtttaiiisotosannussewoooafufdlPPvdFFisOnOoorSSty riilnenesvffuieislslthhriieinnnpaSrSeeeMscceOttiniHootnnofssins1l1h,y,220.9aa%nndd
o3c(eondinstoshueumnrmpocttpoelitilxooecnncetiaaevdddevvlityihsse3oor5rMyyaDiifcftHtohimifssibsSihSenceteticsditsioouSnneesscat11di,,ov22nissaoannr1,ydd2le33vahhenaald.dd3DbbgeeareetaonnuwaapooddudrdlrrdeseessnpssoaeetrddaretsseseeluppylatarbrianyattaeselelcMyytiDffrooHon)mm.fisSShTeechctetiioodnnat44a
demonstrates a clear (either collectively as
demonstrates a clear
absence of a combined
absence of
impaitment Sections 1,
impairment
ii2nn
Sections 1. 2 and3 ofPool 2 and 3 group or separately by section).
Sections 1,2 and 3 of Pool 2.
The data
CChoiongnchceerentn1rtra,attiiooannpssproooffxiPPmFFaOOteSSlyiinn1mm0a1an0nyy1o0o0f ttthhieemfefiissshhhiffgrrohomemr)SStsehccaitnioonnth44oswweeeirrneeSe11 ctttoo2i2onoosrrdd1ee,rr2ssaoonffdmma3a.ggnnAivittueudrdeaege
ctchiooigsnnshccueeeernnat(tdirr.aveait.t,isoioanorpsnypoolrfoef vxPPeilmFFO(OaFSStiegliiyunnr1effo0o5uu)tr.ross1ppT0eeh0cceiiteeiamssveooefsfraffhiisgisghehhccceooorln)lllceteehccntatteenrddatthIinniooSSsneeecocftintiioPoSnnFe44cStieeoxxinnccseewee1h,ddee2iddabnttahhdsees,322. 0010A06v0nneggnr//aggg/ggffeiisshh
wwotifsaassPsuFebbOeealSlodowviwnisttfohhireosyhwffiliseeshvhreettligis(srsFseuuigaeetuaaerdedrvv5itis)sh.ooarrnyyTthcch oeonncafcevsenehtnrrtatariagtsitesioouncne.o.andcFFveooirnsr toaarrlalllytissolppeneevcecoilifeeisPsn,,FS99Oe00cSt"thiippnoeenwrr4cch,eeitnwnethtillebeearsccesooa,nnscc1eie6nnn0ttrrnaagtt/iigoo,nnss
Sections of PFOS
Sections
1,2.2nd 3, in fish were
1, 2 and 3,
all 90 percentie greater than the
all 90th percentile
values were below fish tissue advisory
values were below
the advisory level level in Section 4,
the advisory level
(Figure 6) whereas in
(Figure 6).
eWWilteithvhiainnteSSdeeccctotniioconenn44t,,raddtaaittoaanrrseeovvfiieePwwFOiinSndd.iiccaaOttenelssytth3aa6tt7%titioissfptpohosessssiibballmeepltthheaadtt fooinnslhlyy(aa27ssuuobfbss7ee5t)t ooeffxffciiseshhedeeexxdhiisbtthite 200 ennsiglgem//ivgglaafftriiessdhoh ttctiisohssnasutcueeeofnaatSddrevavcitiisstooionrorsyynsolleef1vv,ePel2.Fl.OaTTnShhd.ee3O,rrenewmmliyahai3inn6ad%dneerarovoofefftrhttahehgeeseffaiicsmsohhnpceeleexxdnhhtiifrbbisaiithteeiddo(2ncc7ooonfoncfc7ee75nn5in)trrgaae/ttxgiioco(ennsesstdoaoefnfddPPatrFFhdOeOSS200 dsdFeiiemvgviuiialaratteriioot5nonoatonfhfda44t44loarfnnggSeg/egrcaaatinnongddnesmmoe1fe,ddvi2aiaalannunedoosff3f66,o55rwSnnitgegh/c/ggi)ai.)n.onaTTv4hheeeirashhghiigegshhucgsosgttnaeacnnseddtnaattrrrhdadattiddoetenvwvioioaaftptii7ooo5pnnussnlagsst/hhgiooow(wnssnntaoiinfnndfttaihhsreehd cwcihhtaahrrittniinn `oSFSnieegeccuttripioeoonnp5u44laawwntedierorleenarossgfaaemmipsrplahelnedwgd:ie:thooonnfaevemappuluoocpephusulllafaototriwiooeSnnreeoocfxftipofiiosnsshh4uwwrfieiitsthhhsiaasmiugglrgraeegraaet0tsllytyttheehallateeotvvtaawtteioesddhpeeoixxpnppuSooleasscutuitorrieenosnttosoofPP1,fFFi2sOhaSSwnaaidtnnh3ddi.n
one population of fish with a much lower exposure similar to that of fish in Sections 1, 2 and 3.
oIIttfssMhheootuurlloddbWbeeTnnooPtteedd(Sttehhcaaittioccnoonn3ccefeninsthtrraagtrtiiooounnpssinoogff,PPsFFhOOoSSwniinnnffiisFshihgaaussrecc4loossdeeoaansso2t21ito0nd77icvraitveeerrimmmipilaleeissrmddeoonwwtnnssttrreeaamm AAcoovfvmeeMbrreaiatnggreoeedVaa)nWnaddVreT990P0bt"he(lSppoeeewrcrcct2ieeo0nnn0ttil3l2eegf/ivvsgaa.hlluugeeIrssotuhffopoerrinMccgDoo,nnHsccheefoninwsithrrnaacttioinoonnnsFssuigmooupffrtePPiFo4O)OnSdScroiiitnnneforfiiitssahihnwde((bibrcyyeastseapppeeipmccliiipeeeassdirootmrroeaaslnlelltc.sstppieeocncisieeossf fcPPiooosomhollcb2o2in,,nesaaduss)moopapplreppiooobnsseeealddodwi1tio0s2ott0hrh0yee.neengnUt/tigsirr.ieenttyIgyf toothfhfeePPMolooooDglliHc22,,tfhittshahhlee PcddoaFanttOaasSuiinmnexpSSepteicooctsntiiuoocrnnressitet11or,,iaf22iwsaahennfrddeo33mapwwapoolupuielalddrdintncoouotltsaetrrrciiggtpigogoieennrrstaaooff dfdhiisyisshpccohchtaoahrrengsgseieusmddetephcctarirtoeenPaassFaeedOssvSiwwsiroitterhhyl.eddaiissUsettsadainnnbcgcyeethMffreeiotomlrmoogtthiWhceeWthddTaiisstPccPhhiFaasrrOgngSoeetepproxoeipisnnop,t,osnuffisirsseihhbtlttoieissfsfissuouhreetfvvhroaaelmluhueieagsshpsscauuorppntpipccoeournrlttatrttrhahpeteoiionntsof oohmffyepaPPosFFtuOhOreSSesdiiisnnctffohiisnashchte((nPiitmFmrOppaataSiiirromrmneeselennotaft)s)PeoodFbbsOsbeeSyrrvvMieeneddftiriisonnh,W ffiisssuWhhrflii-nnaPcSSeeiescwctantiitoooetnnrr,e44.s.apnTTodhhnisissseibdhhliyeypmpfoeootntrhtheteh(sseSiiesshctiiigssihoccnoocnn3of.fn2iir)crm.emenedtdrabbtyyions
measured concentrations of PFOS in fish, surface water, and sediment (Section 3.2).
31.3
3.1.3
MMPPCCAA ((22001100)) DDaattaa AAnnaallyyssiiss AApppprrooaacchh
"tTTeaackkhiinnniggcaiilnnlttyoo iccnoovnanslsiiidddeteroraaattviiooennratthgheee tlloohcceaacttioioonnncoeofnftttfrhhaeitisfoisnhhs ttohhfaatPt FeexxOccSeeeeidnd attlhhleePoMMoDDlHH2 faaiddsvvhiisssooarmryypllleeosvv.eel,, Biittaiisss:ed on
ttthhehoecemhaaonbbgicooeavvnleeleyoddiiunissvsccauuulsisndsisititooofnno,a,rvtethehvereaaleegunneatttirtirheeneg33ce33o-x-mmnpiocillseeeunrltlereeannttggiootthnhPsooFffoOttfShhPeevFirrOiiavvSecerroinnsshshaouolumlulpPlddloionnoolont2t obbffieesfhttirsreshe,aaattmaeesdpdlceaaosssn.caaeBntarsaetdioonns
of PFOS in Pool 2 homogeneous unit
of PFOS in Pool 2
fishfor
fish
are not at evaluating
are not at
steady state. exposure to
steady state.
Thero isa large discrepancy PFOS via consumption of fish, There is a large discrepancy
between values for as concentrations
between values for
ProsEmonous Review and Synthesis of Pool 2
PFOS Environmental Data
4 oeof 53
~eNN YVVi i~RO ONN
22669911..00000077
STATE 01178231 STATE_01178231
Review of PEOS ImpPaimeenpien MrsiHsetiosppoRiiavneCPoucnc2 Review of PFOS Impairment in Mississippi River Pool 2 Prepared for Metropolitan Council
`aaSippmooprrlttieioonanvooeffrttahhgeeesSSeetchctatiitooninn44clffuiisdsheh accloommspapamarpreleeddsttoofroiotmeheralrlffifissohhuriinnSeSSceetccittoiinoosnnossf11,,Po22,o, l332aannaddetthsheekerrewememadaiiinndgdeehrrbooyff44..
oSSoueuitmctlltiipeielorressnoao4fvfeeexrxattgrreeemmseetlhlyyathhiiinggchhluPPdFFeOOaSSll
tissue concentrations samples from all four
tissue concentrations
from a portion of Sections of Pool
from a portion of
the ish obtained from 2 are skewed high by
the fish obtained from
Section 4.
TaTvhheeeraMMgPPeCCbAAy ddsaaptteaaceaasnn,aalldyyssoeenss,a, wwyhhiieicclhdh rcceoopmmrbebsiiennneetddatddiaavtetaavffarrlooummesaalwllliffliishshhwhssiaacmmhppltleeossadffrrroomemsPPsootoohlle22iiminnptaotio2armsseiinnntggllee `caceoovxnenacrcmaeepgrrlnenes,sbtaayhssesssopoPcecoicioaailettese2d,d adwwvoiietthnrhoahttgheeyeieccclooodnnncrsseeuunpmmtrarepatsttiieioononnntaooftfifvrwweifilvrldaefsfluiihssewhhsacctwaearuiutghgdhhwutt hmtthihcrr(hoo2uut2ogg9hhanoodguu/dtgtr;etthhsbeesaPPsthoeoeodololim22n..6pa0FFioromrrsaemnpt les aeiinncxcSaSuemercacptttliieeool,nnystshce11h, ,aPr22,ao,co33tleaa2rnniaddzve4e4h))rauuugmseaedncstoteoonxcepicedoenerstntduritariffteyyiotnPPooofoPoollFr 22fOreSiimsmvhppiawaaiiarrfmtimeseerhnndcttroussnmttsaattuu(um2ss2pb9biyyonnMMg/PaPgc;CCrbAAoasss((2e2t00d11e0o0)n)endd6too0reeessstaynnmoooftptles eaPPocoocoxlul r22a.c.fteoTTlreyhhSiiecsspchataavivrtaeeocrnratae4gg,reeizwerrheeehpprurreemesiasetnenmntaestayxsapboggesrrouoassrness uotoonvvdeePerrrFeeesQsstttSiiimmmvaaaittateeeo.fiosffhMPPcoFForOOneSsSsupeemexxpcppitooifossanuulrryaee,cffroootrrshseaalllathvooefefrePPaonogotoeilrle22ty of cecnogoxn/nccgec)eepnnttttrfhroaaertstiiSeooennvcoaotlfiofunPaPsFF4Oa,OrwSSahininenorffereeiisntsdthmiwwcaaaaytttieebvrreeddoarrfnuummmupnaiindnierSSrmeeecesctnttiiitmoonnaassnted11.,,a22rM,,aoaanrnneoddtsc33poiesims5cpif5a9ic9raannlblggyl/,/gegtho((emmtaaahxxveieimrPmauougmomel oo2ff 113399 a`anSvgveee/cgrrt)aai;oggtneeh4eoo1sff5e22722v4a900lunnengggsl/g/gag. re(AAlmlnteaeomxrtnaiiatnmtedueyimlcy,a,otftitvhh3eee,o6aaf0vv0eeimrrnaapgggaiegeir)m,ccooewnnhncciteecnanhtntrdriaastataiiroloensnonooonfftoPPtcFFocOmOomSSppaaiinrnrafafbrrbeleelssehthowwtaotahttteeehrrePddoPrroouuolmlm2 2iinn aSveecrtiaogneo4fis227490ngn/gg./g (Tmhaexdimatuaminodfi3ca,6te00thnag/ogn),lwyahipcohrtiisoanlosfofnisoht icnoSmepctairaonbl4e etoxhtihbeitPool 2 dcacooovncencurceamengententrrtaao,ttfiiot2ohn2ness9coonfofgnPP/sgFFe.OOqTuSShewwenhchdieiaccsthhaofaainreuedsiiiicnnnaddgtiiectcaahthtetiiavuvetenorooenffplyiirmmeapspaepainoirrtrmmateiloeninntv.te.ofPAAfoisssohlddii2isnsccaSuuvsesescsreteaidodgneiinni4SsSeehexccshttiiisboouinnte55vooafflttuhieisss in dslsueouabbcdusssemeq1q0e:uu2neectn,nottnthbcbeiliooucaasoccinccosuuenmmuqtuluhaleaattntiiacoolennosfffaoaccfPttouooosrrlin((BgB2AAitFFsh))eimaaupnnnaddrierffpieissdrheh asccneoodnnntssanuuteimmvepedptstiPiootononolbccr2eriittaaeedvrriiedoorrnnaeg(s(fesCCeCCfdi)s)htccoataiblslccesuuulpleaarttoiviotaonenlcusstevse inof alhhenuuadmmdasathnnteohhcaeeuaarclrlotteh.nn.tclTTuuhsnhdieeoessnreesthtccaoaonntncdcalillluunssgoiifooofPnnossPoFaalrrO2eeSittseeeccinmhhvnnpiiiraccoaiarlnelllmdyyenffaltlanaawdwleendfd,ae,teeaadsssttthhoeeyybeaarraeeddnnoroettssssuueppdppotoorrttbeeeddbpbyryottthehecetiddvaaettaaof
and the current understanding of PFOS environmental fate.
33.22 RMRePevvCiieAewwaoonfdf CCWooennsccetenontntrraSatttiiuoodninsesosoff PPFFOOSS iinn W Waatteerr aanndd SSuurrffaaccee SSeeddiimmeenntt SSaammpplleedd iinn tthhee MPCA and Weston Studies
33.22.11 CCoonncceenntrtraattiioonnssooff PPFFOOSS iinn WWaatteerr aanndd SSuurrffaaccee SSeeddiimmeenntt
Although fish sampling locations in the MPCA (2010) study are not sufficiently precise to
Aaeevnvltadahlllouuouaratgtseehettdfhihiseemheccnsootrar,rrmeedlplaaalttitniiaogoncnooloolfclfcaecoctointoncencdesenbtniynrtraMatthtPiieooCnnMAssPooaCffnAPPdFF(W2OOe0SsS1t0iion)nnsffitisiushnhddywwiiciaatthrtheeccntoonohnctacesencuntoftrnfriacactetieiinootnnnrtslsaytooipffornePPscFFiosOOfeSSPtoiFinnOwwSaattieenrr
wwaaranaetdtee/lroirkraaelsnnyedddtsshimeeeddesiniommtu,eerndcntaet taaaollfooctnnohggleletthchhiteeegdhnnoocbrroytthnhMeecrrePnnnCtssAhihoaoartreneiidloiinonnWeafseooPsfftFSoSenOeccStitniiiodonnincSa44etce((taaitddhojjanaatcc4ceenofnitntshctt.ooen33CtMorManctCCieooonntttsttraaaoggtfeeiPoGGFnrrsOoovvSoefe))in
CaPPorFFetOtlaiSSkgeeiilnnyGPPtrhoooeoovllse22oFussarucucrirelffataocycfee(thFsseeeiddghiiuimgmrheee7nnscttoaaannnncddden8ww)ta.raattateAirorvneaasrrreeaogrfreeePllaacFtotOiinvvcSeeellynyintllroSoawweticaaotnninoddsnuiu4nnnisfififusoorhrrmf.macCuuepposssnettcrdreeieanmamtermanototifofantthnhsedeo33fMM
wwCraeaostttpeetearrcgtsseiaavmmGelprpylo)leevasesrccFeooal1lcll1eie0lcict.ttye2edd(oFrnnidgeaeuarrrrsettsohhfe7em33aaMnMgdnCCi8oto)t.utttdaaAeggveeheirGGgarhrgoeoervveecthossanhhnocoretreenhloltiirnsaneeetiou((1np10s0stnnirngge/s/aggumr*3f(aaa0c.nne7ddns88ge88ldginnmgagle/nLLndt4*4,,a.n5dnolL
rrrpeeaetssstpppeeeercncci:ttviievvtleehylley)y.))c, oaaanrssceessn1hhttroooawwt2nniooiinnrndsFFeiiringgsuusorreeefdssmim77aegaanntnnidtaud8n8d.d.e wTThahhitgeeehreuuprpupptpheesarrtnrrraetahnanomggseeoessfouo3fpfMtsthhteCreeoatvvmtaaalluug(ee0ess.G7aarnllossgvoo/egrree(affSnlleeedcccttt4i.tho5hinisssng1/,L,
2,3:3nd pattern:
2, 3 and
a poron of 4) range the concentrations in
a portion of 4) range
from < 0.251013 ng/g and < sediment and water upstream
from < 0.25 to 1.3 ng/g and <
510 10 of 3M
5 to 10
ngIL, respectively, wherezs Cottage Grove (Sections 1,
ng/L, respectively, whereas
Concentrators of FOS in uk sedmertin hi mai text fis cocument rs expressed ona nanograms PEOS Concentrations of PFOS in bulk sediment in the main text of this document are expressed on a nanograms PFOS Bam Gy wot sediment basis per gram dry weight sediment basis. Concaoif t0aSmtWAoTEnR nthe rain txt of thi documentar expressed on a nanograms FOS por Concentrations of PFS in WATER in the main text of this document are expressed on a nanograms PFS per Tio wor bai liter water basis
ProsEmonous Review and Synthesis of Pool 2
PFOS Environmental Data
ses 5 of 53
~eNN YVVi i~RO ONN
22669911..00000088
STATE_01178232
STATE_01178232
Review of PEOS Impraampeantien MoriestieopnoRainveCPonoes2 Review of PFOS Impairment in Mississippi River Pool 2 Prepared for Metropolitan Council
ccnoogn/ncgceeanntntrdraat5tii3oo0nnssniLinn,sseercdeisimpmeeecntntitvaaelnnydd.
water
water
along
along
the
the
3M
3M
Caltage
Cottage
Grove
Grove
shoreline
shoreline
are
are
as
as
high
high
as
as
220
220
ng/g and 530 ng/L, respectively.
3TThhMeeCccooot--tllaoogcceaattGiioornnovoofef
hhiiinggdhhicccaootnnecsceensnitgtrrnaaitftiiioocnannsst
oolffo
cPPaFFl OOcoSSn
tiinin
bssuuutrriffoaanccsee
ossfeePddiFimmOeeSnntttoaannPddoowwlaa2t.teerrSiinon iSSeecactntiidoonn
4
4
with
with
Q3gsreMrovoeuuCrnnaoddltwwtaaoartgtdeeeerrrGasairtoo33fvMeMmaiCCngodnotiitctttaaaugtgedeeesGGshriirgoognvvhieeefircaaatrrheneatccnlooocncnotatnaalcmmceioninntnaarttratieetbdiduotwwnioisitnthhosbPPosFFfeOrOPvSSFedttoSoincctoooPnnoPcceooenont2ltrr2asa.tutirioSfonanoscsilestthhsaaaetntddaairmeeenuutpp 0to
asainennvddsuewwbrasaattletaeornr.rt.diaeTTlrshhdeeeotfW Waimelesasatgtnoondnnitucssodttunuedcdihlieeuigssdhe((eW dWretetshhsatattoonngncr22oo00nu00nc77ed,,nw22tar00at00te8i8or,,ni2s2s00ao00b99ps)a)etccrhhvhwaearadrayacicniftoeerPrroiiPzzoeFelddO2StthshueetrrfssaappncasateptioiaasrlletrdrteeiomssooPeloluunotttliioo2nn.
wffinraootsmmeurb33siMMtnacnCCrtoeoiaatttlsaaedggeseetuaGGbilrsraotoanvvndeet(c(iFFoaiinlggcuu(lrrrueeedslseatd99ivaatehnnatddot g1s100ra)o).m.ulnCCodoosnwncccaeoentletnlrrteraicastttieiaoodnnpissantoouhffpwsPPatFFyrOOefoaSSrmiiPnanFrssOeuuarSrsffaaticrcnaeeSnsseseecptddoiiirmomtnetesonntt1P,aao2nno,ddl 2
wcaaonnanddtcee44rn))tinaartctartaaeippaoppsnrresooxxsiiniummbPaaostotteealllnyy2tittashhlueleyrfmm(aireciddelpapostoiievinnedttitaamoleloonsnntaggmcttophhnleeecse33nMMctorCalCletooitctottteanadgsgeeiinnGGcrurroopevvsasetereessa1hhmoor2reea7ilrinenneae.gs. iAAn(ttFSihthegiiucssrtieollosoncc9saa)tt1iioa,onnn2,,d, 3
CccboooontnnchcceeefnnntattrrraaactttieiiooonnnssssediiinnnimPPPeooonoootlll a222nsssduuurrrwfffaaaacccteeeewwsaaeartdeteeimrsrleiiennnvcctarrteceeoaadnsseceferttnooomtr11at77th2i2io.s.n55psnnogigrnl/tcLLrpe((rFaFoisigcgeeuuerrtoedei211n070g).).ndgoCC/wgoonnn(scFcieienrgtneurtarraeamtstiio9on)nssaniinnd
ab((eneoaathassrttwsewuaaarrrfocdaf))cuesanllcosooennndggtirmttohhleeelne33tdMMagnrCCdooouwttnttaadatgwgeeaertGaGerrrreoomvveoeelevsvsehahomtoreeredenliltifnnreoef.mr. omTTthhhbiisisesnpaaeorraeientaaht wpw3raaoMssceCnneoootdttetienaddggbbedyyGoW Wrweonevsssetttrooennnatmo((22P00o00o77l)) 2aass
and representas significant environmental pathway of 3M Cotiage Grove an area of uncontrolled groundwater movement from beneath 3M Cottage
and represents a significant environmental pathway of 3M Cottage Grove
PFOS [0 Pool 2. Grove into Pool
PFOS to Pool 2.
2
T`TChhoeevepprareenssdeenSneccceetooifofneell4eevvoaafttePeoddolccoo2nnccreeenntvtreraaattliaioosnnsssioogfnfiPPfiFFcOaOnSSt eiinnnvssieerddoiinmmmeeennntttaaalnnpddawwtahatwteearrynnoeefaa3rrMhtheeConnteetxxauugsse ooGffroEEavasestt
CCPPoFFotvOteaSSgaettnoodGPPrSooooeovlclet22i.om. naAAy4MMhoPafPvCPCeoAAorle((2l220e0r00ae6s6v)e)edssaattluspudpdayryoseexissgittnmiimaimftiaacetatleenyddt5tet0hhn,aav0tti0rooo0vvneIemrbrseaaynepptaaeelrrriipoooadfdthPoowFff Cassseeytvvoeeorfraa3PllModdoeelCcco2aa,tddtwaeeigsst,e,h3GrMercoevnet
3eCessMottti'itmamagaEteateesssGt r((Coccoiivrrvecceaam22(aa00y00s86mh)a)alvooleffw33ra,e,5t5lee00ar00sbbIeobsddsiy/yyaeoepanaprrr'~3o..MximFFpoorarroteepelxexyara5mymp0tpl,h0leea0,t,0ccrooIabnnisccn/eyesnenttatrorraaPtotioifooonPnlsFs2Coo)fsfaPPrtoeFFOuOPpSoSofiilonn25ww,,awa5tt0ieet0hrr hiriniengcheenrt
tt3PhhMFaanO'nsSaaEvviaeensrrstaauCggreeofvaccecooenn(scaceeesndnmiitrrmaaaeltliniowotnniassnteii3nrnb'wwosadatyteEeraorsnuutpp3CssMtotrrvepeearaommapreooefrftuyM3pMthtaoCCta1old,tttr6aaa0gig0neestGGitromroeovPsveoe.ho.ilgAA2hl)elssraoo,tr,ehcceouonnpncactevoenent5rrtr,aa6agt0tieio0onnhssigoohffer
cccPoooFnnnctceiSennntuitrnerasastttuiiooornfnbasseceiinan ssseeuucdrreiffmapaccteeeanctssieeinddfii3ommrMee3'nsntMtEuuCappossstttttrCraeegoaaevmmeGoorafofrev33eMMu'psCCtoNootPttt1Daa,Eg6gSee0:0GGprtreiomorvvmeeei.s.ttheEEigdaahssdtetirCCstcohohvavaeenrghhaeaavsssefrbbareegoemeennthaaenndd
cppPololaaonnnltittn'2ssuw(weWasaesssttotteeowbwnae,attaee2rr0re0ttrc7ree)eapatttmamceelnnett
and cooing water system, with iret discharge to Section for 3M Cottage Grove's NPDES-permitted discharges from
and cooling water system, with direct discharge to Section
4 ofthe
4 of
Pool 2 (Weston, 2007).
dTTohhweeniisnntfflruleueeannmcceesaoomf p33fMlMe CCcoootltlttaeacggteeioGGnrrsootvvateeioPPnFsOOoSSr sssuooruufrraccceeess saaeppdppieemaaerrnsstttaoneedxxtwteeanntdderttooinaatPtloleeoalass2tt,tthlheoecffaaatrrettdhheesstt
adaupopppswprtrnoorsxxetiiarmmemaaatfmterelolysyma11Lm..o55pclmmkeiilalceenossdlleddDcootauwionmnnssNitsrrtueaeamtaimombneoosffr2fttohh(reetshnnueeerdfxxaouucwssenoossffteErEdaeiamsastmteCnCbtoooavuvneenddaaawnnrddayttteohhfreePinoMMioPislsossio2i)ssl.ss2ii,ppApploisicaRRamitivvpeeeldrre,,
just
just
CccuoooplnlsllceteerccenttateermddataaftirtooaanmslloooLccfoaactPtiikoFonnaOnaSadpppipDnrroaowxmaxitimmeNaratuteamelnlybyde11rs,,e525d00(i00tmheffeeeneedttto9ddw-oo2nww2snntrtsseittamrremeeasambhmioogoufhfnettdhrhaeetrhynnaeeonxxfauuPvssoeoeerxlxahh2gii)ebb.iiuttAepedsdstarmeapmle
Scccoaoonmnncpcceelennetnrsttrraaactttoiiioloolnnnesssc,,toeaafdnnPddnFiiOntnhddSeiicciianamttewmesseadteeeillearetvvaaeanttdveeiddcsielnleiedtvviymeeolltsesnhootffe9PP-23FF2OMOStSiCmoeeetxxtsttaeehgnnieddgiihGnnerggrobbvtheeeayynsoohnnoadrdveeltthirhaneeeg.ccelluuuAsspvtteseertrrreooafafgmeWWeessttoonn
C`scoGaonomncwcepnenlsentistrrraaacttaoiimololnenosscftooe3ffdMPPinCFFoOOtthSSteaiiginmnessmGuurerrffodaavicaceetee(ssaveepicddpiiirnmmoitexeyinnmtotafaattnnehlddeyww31aMa.tt5eeCrmroissetaatsamm)gppelwleeeGssrreoccvoo4ell.lei9scchnttegoe/drdeglmmianuuneccd.hh2Aff7avarrenttohrhlaeeLgrr,e
approximately 7 imes higher han downstream of 3M Cottage Grove
approximately 7 times higher than
average values (approximately
average values
observed 1.5 miles)
observed
upstream of 3M Cottage Grove were 4.9 ng/g and 27 ng/L,
upstream of 3M Cottage Grove
+ CIlnccsoantnaosnt'shboesseadmeonavpresmuggeWsteed MPeEtG WcWhTaPmscdcutetad or 12 Rye Sicharge, sinough he 5 In contrast, the same report suggested Metro VVWTP accounted for 123 Ibs/year discharge, although the calculation is based on extremely limited PFC chemistry data.
ProEs mmerson Review and Synthesis of Pool 2
PFOS Environmental Data
o6oorf 53
~ENN VV Ii R~ OONN
22669911.00000099
STATE_01178233
STATE_01178233
Revi of PROS impFarorsttend MloritsesigvorCPo2u0nc2 Review of PFOS Impairment in Mississippi River Pool 2 Prepared for Metropolitan Council
(Figures 7and 8). Concentrations of PFOS in surface sediment just upsiream of Lock and Dam (Figures 7 and 8). Concentrations of PFOS in surface sediment just upstream of Lock and Dam Number 2 (Figure 7) range from 0.610 2 ng, Sigh higher than the range of values for Number 2 (Figure 7) range from 0.6 to 2.6 ng/g, slightly higher than the range of values for
ssaammpplleess uuppssttrreeaamm ooff CCoottttaaggee GGrroovvee ((<< 00..2255 ttoo 11..33 nngg//gg).). CCoonncceenntrtraattiioonnss iinn wwaatteerraarree sslliigghhttllyy eelleevvaatteedd aass wweellll,, aass sshhoowwnn bbyy aa ssaammppllee rreeppoorrttiinngg aa ccoonncceennttrraattiioonn ooff 1100 nngg//LL. ((FFiigguurree 88)) iinn tthhee. MMPPCCAA ((22001100)) ssttuuddyy.. TThhee rreemmaaiinniinngg ffiivvee ssaammpplleess hhaadd hhiigghheerr ddeetteeccttiioonn lliimmiittss ((5500 nngg//LL),), yyiieellddiinngg
inconcusive results inconclusive results.
ChCoeonnchceiengtnhrtracatotinioocnnesnstoorfaftPPiFFonOsSSofiinnPwwFaaOlteeSrriaannnsddedssieemddeiimnmteennattnidinndwdiacitacetrae otthhbaastterMMveeettdrrooinWWSVTeVcTtPiPoniis4.nnootCtorrneecsseppnootnnrsasititbiiloeensffo.orr
the high concentrations of PFOS in sediment and water observed in Section 4. Concentrations
iinn wwaatteerr 22--77 mmiilleess ddoowwnnssttrreeaamm ooff MMeettrroo WVWWVTTPP rraannggee ffrroomm 88 ttoo 1100 nnggtL((FFiigguurree44),), wwhhiicchh iiss.
sshshuuiuifggggfhhgigeeceerirssettntthssthaatttnnhohaarrrtteeesssMMuuuelleltttttsrsrnoouuaW pWpsssWtTtriregTePahPamtomeoroolrfefaavMMnnaeotoettitthrhoroenoeorrooffssfoot<<uuhe5r5rcccnneeoggnoo//cfLLfePPn((FFtFFriiOOggauSuStrrieeommssnaa2o2yyfaabbPnneeFddrrOe33e)S)ll.e.eaianTTsshihiPninissgog lppPPaaFF2tttOtwOeeaSSrrtnnemmroo.afarfsesrsseTsuhsalaiutstltstas.siarragahttete ceseluoleefnvvfciaacetiteiinoontnntrotoafoftriPPeoFFsonOuOfslSSt PiniiFnnaOPPSsoooloiigllnh22wtwaweatlaetetvreearrftuiaaorpptnphpeeoerafadrtrhsosewttnoocsobbineerceleloaonccmtaarlalaiiztrizeoeedndbtetooolfotiPhw'FissdOptpoSreotcriitntiooonPnnooofomfl iPP2ootwoolal(t<22e,5,rn.2ao5slTLh.isisnlight cuPuoppFnppOeceSrer nSScteorecancttctiiioeoonnnntsr44a,o,tfaaiPssonFsssOhhoSoobwwsinnnerwiinvnaeFFtdeiiggr2uu-furr7eertmh5i)e).l.resdTTodhhwoeewsnsnesestrcdteaaiatteamaaiimnanddroeiifccabMatteeeetloraawottteeWdnneuuTtaeatctPiitooionnntoooflflimtethhviteeslSs(<lbiige5hgltonhlywg/eetLllheeeinvvaatteedd addPeteFtetOeenccSuttaiioctononendlmicmvieitinttth((r<a<st55itoagnnnsg)/cLo.e)b.sdeToTrhwhvunuesssd,t, r2tthe-h7eaemmdd,aailateaasssiindundomdiwiiccnanagtsettritttehhcaaaomttmPpPorRFfiOOMsSSeedtrrraeoelleoVearaWssteVeoddTnPffrrootfoommtlheMMeveeewtltasrrtoobeWWerloW sTwaTmPtPphlees bearing detectable concentrations of PFOS. The orofdmagenitrude higher concentration of attenuated with distance downstream, assuming it comprised a portion of the water samples
bearing detectable concentrations of PFOS. The order of magnitude higher concentration of
Figure 10) are not atinbutabl to Vielro WWTP. PPFFOOSS iinn wwaatteerr oobbsseerrvveedd iinn mmiiddddllee aanndd lloowweerr ppoorrttiioonnss ooff SSeeccttiioonn 44 ((ee..gg..,, aass hhiigghh aass 553300 nngg//LL.,
Figure 10) are not attributable to Metro WVVTP.
AAslalttmhhpooluueggshhassleesddoiimimneednintctatdteaattahaaatrreeclmmeovorarteeeldliimmliiotteveded,s, ccooofnnPcceFenOnttrSraatitiinooSnnessctoofifoPPnFF4OOsSSuriinfnaPPcoeooolsle22dissmuuerrnffataccaeeesseenddoiitmmeenntt
asastaettimdribibpumulteetaansbtbialevelsiaottotihnMMeedetisctrreaoottteWWintTVhga{PIot-u.Pet.leofvLItWasitsWedppToolsePsssviieebbfllslfeeloutthefhnaaPtttFsMMOueeSsttprriooennPPSdFFeeOcdOtSSisonoccloo4nnssttrcuiiborbfunautteceaesisntstiooengdtthhiPmeeFePPOnFSFt,OaSSraesiinnnwoePPtlooloolals22
ttshhheoeewdeippmvaaererrttni,tttiaoovnniiaicnnotggnhceooeffnstPPertFFatlOOtiniSSgonfforrrouoamtmdoifMMeW enetttWrroowToWVPuAlVeNdVfTTfblPuPeeeeonfbftffsllsueuueresvnnpettdett,onodswseeeidddhiimsmseoenelitndd.tsm. ecIfnof tnthstainseinawwirneeegrrseetPooFMccOecculSuro,rrriWiannsggW.,wTePll as
1eehx0xohhowicibebicvituteiirnnrg,gbaecccoocnanocucnesecnentetrnsraaturttasiiotpoinonessnndttghehraadattdsraioereenltsggwrrweeoaoaututleedlrrdbtthtehaeaonnndbsssfeeeocdrvdiimemedepen,ontwstssiitdhdnooeswwenandsrstimterreoereaanmtmth.n.eeMTTaehhrtieisrssotwwMWooueuWltldrTdoPbbVeeVdeeWixxsTppcPeehcactrteegdde
htppoooeiinontoc.tu.ctufAAarlllssblooeb,,ceaPPcuRFasuOOesSSesurrtesehlpleeeeahansisdegeedhddeisinnstottchlhoiedenscwweawantotteerurraldtcciootoellunnusmdmnontfowwPodoFueuOiplddSostteiitennnndseutfraoofreappcraaetrrotwtitaitihotoenenrMttowoeosstureeoldddiiWmmoVeecnVcntuTtssrPccidlnlooistsscheeherrattrooge
eatehrffefefluuoleeounnctttfaia-trlvielvedbererncmmatiihuxxeisinnelggotwhzzeoeonrneheo.i.grhtTTeohhsneet connofeenaSacrereeecsntstittrosasnuutir3orff,naasc1ce1eo-fss1eeP3ddFmiiOmmieSeensntitndssosaauwmmrnpfpsalliceeressewddaoaomowtwenfnrsswMttarroeteuatalomdmWooocfWfcMMTuerePtitrnr(oot2hVWeIWNVT]PP
are located in the
ffaarrtthheesstt uuppssttrreeaamm
lower portion of
ssaammpplleess sshhoowwnn
SinecFtiiogunre3,7)1. 1-C1o3ncmeinletsradtoiownnsstirnetahmesoefsMaemtprloeWs WarTePlo(w2er
in Figure 7). Concentrations in these samples are lower
((<<
0gtt0hrh..e2ae2d55uuiappeanpnnpdtede0rpr0.rpp.e5o5osrretnntiinggoot//nnggi))nooftftthhSShaaeeennsccessttiaoaismmnaopmnp44lpleeulusseppsssffatarr(rreett0haha.eemm3rr0ddoofoof1ww.336nMMnsNsttCCgrroeoe)tatattmamatoghgaeoeftfGGwMMroeroeoutvtvlreredo.o. W sWTTuWWhhpTeeplPr-roPe,er,siatswwhhnncioiooccnhhcccoolwwnunecescerireneeontncrtcroatoaltaltlliietoeocncnMtteeedtdriionn
VWgMerA~atVFdrIIio-ePPnWtiissTparaePsssoeoruunerrtcpcienreetooshrreenccstaaeueusdssaaaatmtiisvvpieeglenffisaafcci(ttc0ooa.rnr3tiintnsooSSu1eer.6ccctteinoigtnoo/g4n4s)eiitmdhmipapmataiewirnrmmoteuennltnd.tt.shuiTTsphhapaaroettrast,is,a, ciicffoonPPncFFecOnlOutSSsriaorrteneilloetenhaasassteienddMteffhritoeroomm
Mubuppeepcpteraeorur sVppeooWrrstVtiiooTomnnPeoorfeaf tpSStreeeeccnstuteiiaoontnntieo44dnwwoawoousuuliglldddnbibbfieeecaeleensxstsspseottchuhtaarecnndeccbtoooennctsceweenednteitrmrnaatettiinhootennsissneiitnlnhoittcshhaeteairooleonwasw.,eercroAppdnoodctrietiiinoootnnnroaaoftlifoySS.neesctchtitneiootonnhvee33rall
because some attenuation would be expected between these locations. Additionally, the overall
rllr(oaFoawniwnggeegureerortteofhhf9aaa)anln,lllwttohofhietefcthcchhoeoennacllcroeoeewnwntaeetrrsrraaSStiteiiegococnhtntsisioaooonsnff233PP2aFaF0nnOOddnSSguui.ippnnppsseeeeIrrtddSSsiimemecnecetontntiitootvnnaaaldd44ijjdaasscctaaeoemmnnaptptllitteeoossothh((ea<<e 00.332t5.MhMt2e5CCeotoxootttttr11aa.e.g66gmeeennlggGGy//rgrghoo))iivvgiseeshmmsshhuuooccrrhehelliinnee
(Figure 9), which are as high as 220 ng/g. It is not valid to attribute the extremely high
ProsEmonous Review and Synthesis of Pool 2
PFOS Environmental Data
r7e of 53
ENVIRON ~ N V i ~ O N
22669911..00001100
STATE 01178234 STATE_01178234
Review of PEOS Impraampeantien MoriestieopnoRainveCPonoes2 Review of PFOS Impairment in Mississippi River Pool 2 Prepared for Metropolitan Council
concentrations in the 3M Cottage Grove shoreline sediment 0 Metro WWTP since hese sediments exhibit concentrations that are much higher thn sediments loser to Metro WWTP. concentrations in the 3M Cottage Grove shoreline sediment to Metro WVVi-P since these
sediments exhibit concentrations that are much higher than sediments closer to Metro WWl-P.
AAMdeddtdriitotiooWnnaWalllTy,,Ptthhiee
rrraeafnniggeeecotofifvccooofntnchceeentnrrtraaatntigiooenonssfcoofofnPPcFFenOOtSSraiitnniPoPonoosollof22
PsseFedcOimmSeeinnnttseoodbbsisemerervvneetddthddaootwwmnnassyitrrebeaeamr
of
of
acaMotttenrrctibrbeuountttVaarWbbaltlVeeiTottPnoo oiaasfmmbr0ebi.fie8elen4ntct,(t,i0vnn.eo5o8non)-f-ppgtoho/ieinngttraiwwnnaagstteeeedrrosisfhmhceeeonddtnPPcfeFFrnOoOtmrSSastsstioooounurrsrmccweoeasfs.t.PerFMMOcPPoSCCleiAAncisoooebbndsseiemprrovveneendddtstaahinnantaathmvveeearryaaggbeee ((SSDD))
cMM(ioMinnnPncnCeeeaAnpa-otpCrloairltsaiis/on/SnSet.to.&fPP0Haa.eu8unl4lnmme(e0set.,5trr8oo2)p0p1oon0llg)itt./aganniTnaahrrseeeeasad,,eimwwsiiettthonhrtssmfaarwommamptpleliirsnntgpogorlmlnoodccwsaaattitrioeoenrncsseciowwvlelieithcanitnitottnohherepomPPnotodooelslr22infwwtrhaaotetmeerrasshwheieddde
vcv(MaoarnrPicieeeCttnyyAtr-ooCafftriiiannonddnueussst&utrrfiifaaHillecaainennnnddtesnon,oo2nrnev0-sni1nuc0ldut)u.sistnTtrrthiiahlelesssaeoocuuscrrtuoccmereumsslwaaatnaniddtoenriinnpoddfoiiccnPaadRttseeOrPPSeFFciOeOniSSvseeiicssaippmsrreteeonssrtemenanwttt aciinntoenssrcttfoaorornrmtmmawwtaaaittoweenrirdsaaetatsaa
`chiSoiggenchhctieaaonssntraa4apptpspiorernoomspxsiilmumeafasftictae(ile<lyyn0t11.t--2o225r1nneg0gls/gu1g.l.6t iTTnnhhgtu/uhsgse),, aatthcrheceeucscmioomnuniclclaeaentrintottrnroaattotihifoaonPtnssFoObtthshSeeerillnovowewsdeeerdriniSSmetececetntiitosotannot 33rcmoaawnnnacddteeuUnrpptrpppaeoetirnrodns as
Sseedcitmioennt4, siandmipcaletisng(<th0a.t25PFtoO1S.6inntgi/gs)laorceatsiiomn irlaerprtoestehnattsobPsFeOrvSedasisnocthieatsetdorwmiwhawtaetreprosnhded
sources. sediment,
sources.
indicating
that
PFOS
in
this
location
represents
PFOS
associated
with
watershed
4IIn,n aaPdFcdOiotSionndatttooatthnheesaahbbssaeennndcceewaooftfeMMreetitnrrdooiVcWaVWtWeTsTPMPecctoornonttrWriibWbuuTttiioPonnssdottoeostthhneeotiimmcppaaauiisrmmeeeinnmtpt acoibbrssmeeerrnvvteeddiniintnhSSeeeccttiioonn d4nn,ieesaaPcrrFueeOssststSeffidisdshahintaaaSnneiddnctwwfiiasaothnteear3rn.ss1daa.1mwmpa2pltnlieidnnrggsinhllodoociccwaaantttiioeionsnnssFMi22egu0ttorroe77V4m,mWiicVleeoIs-snPcddedoonowwtenrnssasLttnrrioeeotanacmmaofuoosPffeFMMieOemrStrpooaIniWVrfAmWiVseVThnTPttP.hi.insAAtahssreea ad((SSniseedcccutstiiseoosdnneid33m))einnaatrrSeeuebbnceetkilolnoonwowu3ll.nee1vv.d1eeullssaenaaodsssssolohacccoiikaawttoneefddisnwwaimFittpihhglueiimrsmep)pa4aai,irrrcmmeoeelnntnec.tae. rnCyCtroaobntneicocleneonsnwitroreaafvtiPieooFnnlOssroSoefqfinuwwiafartiseteedhrrtt(h(o88iscttaooaur11se00ea nnggilLL)) ealnedvasteeddimcoenncte(nutnrkatnioownns odfuePFtoOSlacikn fishof samples) are clearly below levels required to cause
elevated concentrations of PFOS in fish.
322 3.2.2 SFSpipasathtiiaall RReellaattiioonnsshhiippss bbeettwweeeenn PPFFOOSS iinn WWaatteerr aanndd SSuurrffaaccee SSeeddiimmeenntt ttoo PPFFOOSS iinn
ElevateFdicsohncentrations of PFOS in sediment and water in portion of Section 4 are likely to
SrrEeeelsedsuvitlamtteieinnndtacahhoniingdgchhweeeanrrttrlleoaorctciaaionllniiztszehedoedsfeeePxxFapprOooessSauusrrineeexsoopeffldaPPiimFFnOOehSnSitgtthaooenrffdiisschhwo..nactQQeenurutaairnilalitataaittpoivvoneesrtlyyioo,,fnhhPioigFgfhhOSeeSerrcccitnooionnanccepe4nontratrtrraiaeottniiloiokonnfessltynhinteo
`SsSSueeerdccfittmaiiocoenenns44teafidinssihdhmewssnaaatmmtpealprneledsins.w.tahtTTeehhsreeecassopprmeaartatieisaasllpeoccxnoop-d-laooviccnicctuuhhrrirgrtehheneneccroeebcsoooefnfrceevlelaeentvvitaraoattneteidodtnhccsaoonnocccfoeenPncntFetrOrnaattStriioaoitnnnissoanoopsffoPoPrftFFioPOOnFSSoOiifSnnthien
tspphouoerrrtftsaiiotocnnuedoosyffeSSdeeimcctteiiononnt
4 fish are and water
4 fish are
an order of correspond
an order of
magnitude higher than the majority of fish sampled in with the observation that concentrations of PFOS in a
magnitude higher than the majority of fish sampled in
the study.
TeTihhtheeerss.ppaa1t)tiiaafllisaahnncddaussgtaahtttsisiitcincaSalel cpptaaittottenerrsnn1oo,ff2ffiiasshnh,dss3eeddairimmeeelnntot,w,eaarnnbddewwcaaatuteesrrePPtFFheOOiSSspddaaatttiaaalccaaannngbbeeeseexoxfppllmaaoiinvneeeddmebbyynt e((ihnihtohSomeemcree:tir1roaa)nnnfsiggseeh1s,s)c)2adduaoogndnhnoot3ttiniiinnnScccelllucuuddtdieeoenaassrroeem1aa,ess2ofoifafsnheedllteeh3vvaaatattremeeddalyoPPwFFheOaOrvSSebeeebxcxoappeouonsssueuerrxteehpeoiinnisreSSsedepccafttotiiioaoSnnlecr44at;;niooogrnre22s4)),offbfiisusmhth occvaaeuumgghhettnt CScinootnSnucceyeecnsnttietrocranattistiiooon1nsn,.ss2ooafEfinPPtdhFFe3OOrSSipnochhslsuaaidvvbeeeildsdtyeoe.cmcrroeeeraafaissseechdodmthffboaoillntlolamowtwiaiinoyngng,httahihveeeiprrobsmmesoieovbnvleeeem.mxeepnFnototsretodetxththaoempSllleeeessc,sstiocconoounnr4tt,aaombmfiutihnnt aattfeeiddve Sssstttmuuuadddliiyeesshseoffciimstshiehonssrsppa.eenccgiEieeeisssth,,(ef~frrr3epe0ssoh--hswwsSaiab0ttie0elirtrymdre, rtuouemrmr,sa,';cbboiluMumeeigbgniiisnlll,asstuui1onn9fnf9ii,s5s;ihhs,,Ppssaomrmsraa,slillbl2mm0leo0o.u2ut;tFhhJobobranaesesxsssamaaannnpdddlec,cSatafurorappurrthh,oaafv2v0teeh08err)ee;lfliaavtteiivveellyy snnPemeFaaaOrrlllSlyyhasaolollmufireisschhreasssnaawgimmetpsphlile(en~ddt3hww0aitit-thhsii9tnn0u0deeyaamccshehectetooirffsottn2h.h;eeMMFMionPPrnCCse,AAx1a((9m229l0051e1;00,)P) assrtitruu,dde2yyx0tss0ree2ecc;mttJeiioolonynnsseuswwileeakrrneeedlyeliSkglteuiylvyaereetn,xxt2pph0ooe0sss8eep)dda;ttliooel ssSPcecFcaatlleieSsosnsaaos4ssusioroncccceiilaasuttdeweeddisthwwtiinhittehhthsttahthrteeestaatcubbhdoooyvvfeesSeeeecsscttttiioiimnmoaan. tte2eFsscoortthnhetatxataittmnhhieepnlgmme,otohvivteeeismMmeeeetnxnrttotrerrWmaanWnegglTyeePuoonffdtlthiihkseeclyhffiiasgsrhhigvsseeaanlmmotpchplaeleetoddsnp,iianntial
Section 4 includes the stretch of Section 2 containing the Metro VWVTP discharge location,
ProsEmonous Review and Synthesis of Pool 2
PFOS Environmental Data
ses 8 of 53
~ENN VV Ii R~ OONN
22669911..00001111
STATE_01178235
STATE_01178235
Review of PEOS Impraampeantien MoriestieopnoRainveCPonoes2 Review of PFOS Impairment in Mississippi River Pool 2 Prepared for Metropolitan Council
approximately 26,000meters (approxmately 16 miles) upstream. Concentrations of PFOS in
approximately 24,000 meters (approximately 16 miles) upstream. Concentrations of PFOS in
2mo0s1t0)fisshtreyflescetciloocnasl. PFOS exposures on a spatial scale much smaller than that of the MPCA most fish reflect local PFOS exposures on a spatial scale much smaller than that of the MPCA
(2010) study sections.
IPInnFccOoonSntrtreaasxstp,to, swwuhhriietteeinbbaawshsisstmmeaabyaysmmsoocvvoeeulaadssbeafardreaarsi4v4e00dfriifvveoerrmmmimilloeersse((Mtohroagrngaanon,n,e22s000t06u6)d,)y, ssseuucggtggieoesnsttaiincngrgottshhsaattthe 33-
mmbPiaFillseOssSlleeexnnehggxittbphhiotoosfhuf rePPeoolooinellaw2s2.t.hviTTtaehrhieebaatddisaaostntaacaoccnuoolrrdrrmoobobbesootrrdaaecttoreeimvtptehaidisrsafrphbooyimtpihotmeythsoaeirsmseios,t,nhagaassntccohoonnnefccoeseunrtntutsrdrataytutiidsooyenncsssteiooocftnfiPPoaFnFcsOrOo(SSsFsiiingthuwwrehehis3itt3ee-
2S2b.e-a66c)st.)s.ioeTTnxhshheeiibsddiotiifnftfhefyerreetlnwenocca-eesfotiilnvnda,tthrhieiaentdlilooionwcwaeetassintntdgaamannddoelshhaititggcihhoveemesstpat amaarovvaeuebrrniaaltiggtyeoefacchmooonnocmcneoegngntettrhrnaaetetiifloooynnussrinaasttmmuhodoenyneggsxeptthchoeetsioussnrttuseuddo(yyFf iwghuirtees
csbbeoaacsnstsscioettnonostPPrisFFaOOtoinSSolyoininnftswPPPoooo-FofloOl l22Sd..,
iinIInnndfccricooeasmmthpinpwagaartiriaessroornedn,l,rauttthhimvee(ddSaieifmfcfeteoirruoeennnn2tcce)aofbbihsaeott1wmw5eeomeegnneetntshheeitlyollowoinwewreethssttethaaaenvvxeeptrrohaasaggueeorfe
of white
tre
`camaovovenserctraeagsgneeetrnaccsotoeinoncfnceosernntoatrfnraayPttiiFooofQnntSiihnneinSSseefpcrceettcsiiioohennws44a.s.teaAAmr pdsslriiuemmmdpplble(eySaaeMvvcPeetirCroaaAngg;ii2nn)hggoiswoofef1va5aelllrti.mPPooeotoshllel22ovwwwhiehiritttetehabbonaafssttsshhiammstaaaokpkfepethsrsoettahhceeh
tmrreheomamsnaatitisnnhessonsuusenneccinflioecaratrrahneggriyivvSeoeenfnctitthhiheoaatntsscpc,ooensnccuiceegensgntestrsraatatmitiinopognnlesstdhooafblfyPPaFMFpOOoPsSSCsiAiibnn;lwwehhohlwiiotceteavlbbeiaarzs,sessdthieiennlevSSveaeaclcittdteiiiodtoynnPo44Ff OwtwheSeisrreeeaxpsspitpoillrlsouhhariicggehhheerr
within Section 4 couldbo elevating concentrations in a porion of te Section 4 white bass. than those in other Sections, suggesting that a possible localized elevated PFQS exposure
within Section 4 could be elevating concentrations in a portion of the Section 4 white bass.
FlFoiicssahhl mmfioosvhveepmmoepeunnitattiisiovvnaasroriiafabblileneeraaennsddt.ssiittFeeo--ssrppeeecxciafifimiccp,,leaa,nnddaiisstbbueedsysttcqqouunaadnnutitcifftiieeeddd ibbnyyMiiinnsddsioviuiddruuiaalsltssrtteuuaddmiieesssbooynnFttuhhreek
l((mo11c99ai55l77of)l)isrrrhmeeeovvpeerosaaeplleueddldauttrtihohiaanntgtsaaaoppfpppriernorotxiexoirimdmeoasaftt.teeallFyypophhrraaloelffxxaioommffaaaptlsseeaa,lmmyapplsyleeteuadpproyoppcuIuolflaanatdtmiiouoincnnteioofdmf u11in11m MffarrneiesnsssuhhoawwulaartimteesorrtvrrdeeraumumemmnstmmboyrovavFeneugddnek11o00f
fm10r0ielemsmshiiwlloeasrstemiirssodaarerssussdumuummrwieenoddguffadoorpbPePooroioeoo)xdl p22oofffsrraeeepdssphhtrwwooaamxttioeemrrraerdteruhulmyam,na, oyiten5isaercc.sootnnIufccdaeyeiimvvseaaincbbtillmeieouttnhmhoaatvataananssauuuabbolsnstemtaa-nonytvteiieaaamlr ppeioonmrrttteiioroapnnnegroofiefodof
fsbsriiuennrsccdheeewtnthhaoetefllrePednnFrgguOttmhhSoowaffcottchhuueldmussbttlueuaddteyyexdSspeeoiccnstteoiiodonnnetssoSaaemrrceeotiraaeoppnptphrwroaooxnxuiilmmodanatecteerlsolyytsus44dySttoeosce11tc44itoimmonniiilensosevseiinr3elsaenntoggnihthe..-fyiseTThahhmuruistsig,m,rffaeiistshephdeboroaiodddyy
obFFinuisserhhdescctnooulldoleeyfccPtsteeeFdcdOtiiiSnnonaaac(ssacttsuuudmdhyyyuplssaoeettcecnttdeiiosoininnzwwoeondoueuallddbSoerrveceetppiorrfeenossrweewnnohttiutPPldeFFcbOOarosSSss)see.xxSppUeooncssdtuuioerrenre cchlioonsnneddshiiytatiposoonnttsshheefftrroifiocsmmahlmmmsoocirgereernaatttrhehiadaonn..
cocinoontnnehcceseetnnuacttdrtryauatasiotleniwcsohtoiniootfsnfePP(baFFasOOshsSSydpiiannottfafhiissseehhts)wwiz,oeoeudulvlddeanbbboeeveteehxxfepporeereccwtwteheaddistettaoobabsbiseensguu)l.nneiifUfaoornrrmedmaeaaromfmthosoislnnegghvyatthptheeoedthssPtetuuFtdidcOyyaSlsseesecccxtetpiinooosannurssrioe((,a.ass
wawinisittsthhhuiienmnpaootcnniteeuoanoolffowftthhhaeeithessottubumdadosyygsssedeecnacttotiiaouosnnsesst..)e,xWWepivoitteshhnureeiefxxppthuoonessirtuuerr(eewanaaadsvveeparrraaascggintiinigncggleeaaoaccfrrreaooavssessorfllaaaegrrilgegneevgrrasaaterardeemaapsPsl,,FetOtshhSeefrMeMoxmPPpCmCooAsAruere
ttashhtsaausnnduymooonnpfeeti2oss9ntt7uuoddffyyisassheehsccoattmiimooponnlg))eewwsnooeduuoolludedbssbeenesoxustpuposppsupouporprerottreeutddnbtihbtyiy(satthnhhydeepopddtaratahtaace.st.iicseHHoodowwufeeveaevvtreeo.rr,tahtgtehhineeegxortosbrbaueumsmsetptllMMeysPPeCfeCrvoAAaml((e22md00o110r0e))
concentratioonfs PFOS in Section study of 297 fish samples does not
concentrations of PFOS in Section
4 sh, as stated n Figures support this hypothesis due to
4 fish, as illustrated in Figures
26the
2-6.
extremely
elevated
AAMPmmCroAree(ll2iik0ke1ell0yy)eesxxtppulldaaynnaastteiiocotnnioffonorsr tt(hhfeeldadriisgscecrrheepopamanneccryyanaagmmeoosnnggarcceooannsccseeunnmttreradati)otnilsoeonsofsfinPPtFFhOOSStiimnn ffisisschhalaaemmsoofnnogrg tthhee eMPPlFFPeOOvCaSSAteuu(dp2pt0Ptaa1Fkk0eOe)Saasnnteuddxdpyeeollsiismmeuicirnnteaiaottcniiooosnnnd(iiiifnntliaifoishrngh.se. ishIIosssmitimteiklinkeraaeltnlyyegdetthhsdaautatrrPPienFFgaOOsmSSsouvaamcececcmuduem)mnultuilelaas0tte.einddtehbbseyysftfiiismcshoheniitnsnacaamannilenaasarrteefeoaadrwwiitthh `aeararleeecavca.au.mteuFFdlooarrPteeeFxxOPaamFSmpOlpeSelxe.p,tooffisiscushohrneeecxxecnppotoonrssdaeeittddiiootntnoossaaimsnnueeeclllihemevvhiaanittageethdededrPPtdFFhuOOarSSinngtpphoomioinnsotetvssneoomuuorertccnheeetrtwwoisitthahuiidlnneysSSsseeecccctottiinoootnnnasm,44 iwwnbouaotutu,ellddudpon amPmcoFocvOvuiiSnmngguctltoaoontceooettPhnhetFrrrOassSieecocttnotiisoocnnisons,n,scwewedooniuutmlrleaddnttieeo,llniimwsmaiitnmneaaurtt,ceehaPPnhFFdigOOhdSSieetrff.rtoohmTmahnitsistshustouiesemeettoionscmmoaaltaiheinnetftraoarisinnteulssdittymeeiasandedatyycitisosotntnaaisttsee, sibwuutiptthhp, ouolropwtwoeenedrr bbmPyyoFvaaeSbbdiiocotaoaoccnlccceuuemamnuntulraalwattaitoiitoonennsr ss(inttMuuasddteyyidiniinmn effetiisnsahht,,wwwh2hae0et0rer3eer),.ffiaissnhhRdewwsdeueierlretta.seeTixxnhppdiosioscsteaimtedeedttootshPcPaaFFtlOeOtShS-feohc-rcoaoennlttimtaaimimniainfntoaiaorltneePddiFswwOsaaSuttpeepr,,orthhteeednn
moved to clean water (Martin et al., 2003). Results indicated that the half-life for PFOS
ProsEmonous Review and Synthesis of Pool 2
PFOS Environmental Data
oe 9 of 53
~ENN VV Ii R~ OONN
22669911..00001122
STATE_01178236
STATE_01178236
Review of POS ImpaFrmaepnatreidn iosMiestocppeRaanrCPooulnc2 Review of PFOS Impairment in Mississippi River Pool 2 Prepared for Metropolitan Council
2mm0e0ea3as8s)uu.rreeddAcwwcaoasrsdaaipnppgprrtoooxxitimmhaeattseetlluyyd22y--r33ewwsueeleetkk,ssco((1n13c3eddntaaryyasstiffooorrnsccaairrncciaassshss
aanndd 2200 would d
ddaayyss ffoorr ecrease
vliveerr,; MMaarrttiinn eettaall.,, to rsach steady
Se2stxt0aap0ttoe3esau(()rdd.eeesccA.rrceecaaAosslriitdnnhiggnoguoogrrthoiitnnhtcchirreeseaashssytiuipnndoggyt))hrwweeisisttihuhsiilntnse,naafacfbeoelnwwecwsewenaeeterckakostsniosuuinpdpseoorinnnatmmfiisooohvnviiwonnroggu(vtlo0d aaedrreaeecararrssefaiywwssiihetthmtoddoiivfrffeeeeamrreecenhnntttsPPsteFFa(O0d.SSy..
1emmoixlilpeeelsosi)cs,)i,utrtitethsrree.eqqouAubiilsrrteheessrovuttehghdehe ppptharreitesstseehernyncpcoeoeftgohofrefeasaaissstooyeuunirrfaccfbeeelerooesffneeatllecceovovnaancttseeeindddterPPraaFFttOOiiooSSnnseefoxxbrppevootesswurueyrreeefnattroSofeiffsciisthshihmowwnio4ittvhheiianmnndSeSenetctchstteiio(oenn.g44.,
ctrroeeommenalcaiiciannitnddtteehraretooofifboPPsonooeosforlvlPe22.dF. OpIIttSappttgrreororevvnaiidtdoeeefrssgtraahedaadndtilty2io0dnn0iafflnejjruguessn)ttiitffiwcicocoaaunttilciodoennnbttthrhaaaltttiiomiimnimtspepdabaietrimotrwaemenneetann(rti.eS.eae.,cnffteiiisoashnhr eet4xhxihahsinibbldiietiitnhvngegatd
ecceoxoxnppntoocasesmuunirrtnreeaatsstioooeunudrrsccseeeo,c,ftaPaissoFnOccsooSonnfcgceePrneontaotrrltaaet2tr.iiotohnnassniinn2f0fiis0shhnttgiis/sgss)uuewe owwououludllddbeddeelicmcrrieeteaadsseetoaassantthhaeereffiaisshhnemmaiigrgrrthaatitseeettoloellveeassstse. d
contaminated sections of Pool 2.
RFe7v0i8ewaEnndaSymietelssOcsftaPo 2 Review and Synthesis of Pool 2
PFOS Environmental Data
Tosa 10 of 53 22669911..00001133
~eNN YVVi i~RO ONN STATE 01178237
STATE_0].178237
Review
Review
of
of
PFOS
PFOS
IImmppaaPiirrmmeepenantrteiindn
WfMoirissMsieisstsicipnppioitRRivaivenerrCPoPuoonotcl t22
Prepared for Metropolitan Council
44 CCoonnssiiddeerraattiioonnss ffoorr PPFFOOSS EEnnvviirroonnmmeennttaall FFaattee
a"TTnhhdiississneeccclttuiiodoennspparrneessaeepnnptltssicaaatssittoaantteeo--fooqff-u-tathnhetei--stscactiieievnnecceefarrteeevvaiienewdw bffooirroaPPcFFcOOumSSulbbaeethhiaaovnviioomrrodiinnelaaiqqnuugaatttiioccueenccdooessryyssstttaeenmmdssthe
exposureoffish and includes an
exposure of fish
to PFOS In application
to PFOS in
Pool 2. of quantitative
Pool 2.
fate
and
bioaccumulation
modeling
to
understand
the
4"4T.11he beSShtaatvtieoa-rofott-fthhPeeeFS-SOc-ciSieoeannncfcdeeoRRtheeevvriiePewFwCs doss not follow the general sciertificparadig for the
`cTchchheoeemmmipbicoecauahlnladbvbseieohhararaovevifiohoPryrFdooOrrroSffpaahattoeenbdioocffo,bbthiisoeotararcocPnccgFuulmCmyusuaatldattotirieavvceseteonodrorggttaaofnonoililrccogwccaonotimmhcpepocougaunerndnbdseos.nra. ilnMMsoscoseisedttnibbtmiifieoiconaatpcccaacurnaumddmuiulglilampaitidvtfsoeewritthhein
`aquatic organisms after release to aquatic environments. compounds are hydrophobic, strongly attracted to organic
aquatic organisms after release to aquatic environments.
The behavior of these compounds carbon in sediment and lipids within
The behavior of these compounds
ohhcaatssanbboeelee-nnwanntuuemmrerpeiarcircatalillloyynppcrroeeeddfiifccittceeiddenbbtyy(Kmmoouod:deelGlsosbrraeeslly,yiinn1gg98oo3nn; aaAmpphhayytssiiaccanaldl ccGhhoeebmmaisicc,aall20pp0rr3oo;ppeerGrtotyybakknnsooewwtnnaaa.ss tthhee
a22o0d0c0v0t3aa3)nn.).otla-FFwgooearrtoeaafrtllapahrareggreeteixtiipposrrntooippcnooogrrettpiifoafoinrcnaieoodfnfitmgm(moKoddo(euwersr;innGngooorrKbggaaoasnnu,iicc11c09coo9pm3mrp;epdoAoiurcunntndocdsths,ae,nmssidccciiGaeenlnottbifissaatttssse, aas2nnu0ddc0h3pp;toohlGlaicctoyybemnmavasaikkereeotrrnassml.e,(tanatkkaeel
risks can be more efficiently and effectively managed (Muir and Howard, 2006). advantage of the existing paradigm (using Kow) to predict chemical fate such that
risks can be more efficiently and effectively managed (Muir and Howard, 2006).
environmental
Kon values for PFCs are difficult to measure because they possess surfactant properties that
interfere with the measurement of Ko, making evaluation Kow values for PFCs are difficult to measure because they
interfere with the measurement of Kow, making evaluation
wih the existing paradigm not possess surfactant properties
with the existing paradigm not
that
ffieneaamsseiibabllseeur((TiTnooglllssPeeFttCaasll..,in1199e99n44v;i; rGGoinieemsseyyntaaannlddsKKaaamnnpnnlaaensn,,a22n00d002t2).h).e nCCaoobuuiplpltleeyddtowwfiuittlhhtthheeevaiinlniutaiaaltleaanfnaaatlelyy,ttiitcchaaell ddiifffiiccuulttyy
bioaccumulate potential of these compounds went largely untested untl the early 20005, in measuring PFCs in environmental samples and the inability to fully evaluate fate, the
bioaccumulative potential of these compounds went largely untested until the early 2000s,
wwhheenn
cffiioeenlddcerrneetssreeaaatrriccohhnsrreeevxveecaaalleeedddintthhgaattthmmoasaennyyinooaffbttihoheteicccooemmnpvpiooruuonnnddmsesnwwtaeelrreemeppdrreiessaeesnntutciinhn oosrrsggwaaanntiisesrmm,sssoaaillt, and
sediment (Giesy and Kannan, 2001). PFCs were s00n found tobehavedifferently than concentrations exceeding those in abiotic environmental media such as water, soil, and
sediment (Giesy and Kannan, 2001). PFCs were soon found to behave differently than
mmoosstt
b(briioaotaahcceccruutmmhuaulnalatltiiivpvieedsoo)rrgginaanoniriccgaccnooimmsppmosouun(ndCdsos,n,daaessr ttehhteeayyl,wwe2er0r0ee8)ff.oouuCnnoddntttoroobbleelessdttrrlooannbggolrlyyataaottrttyrraaeccxttepededrttioompeprnrootttseeiinnss
confirmed that chemical fate (and bioaccumuiation) of (rather than lipids) in organisms (Conder et al., 2008).
confirmed that chemical fate (and bioaccumulation) of
PFCs could not be predicted using Controlled laboratory experiments
PFCs could not be predicted using
tthhee
`gMgaeernnteeirrnaalleKtKaolo.uwb-2ba0as0s3ee5dd).aapppTprhrooraaoccuhhgeehssseuuvsseeerddalffoofrrieotldthheeerxrpbbeiriooiaamcceccnuutmsmu,ulPalatFtiiOvveeSccwhhaeesmmidicceaatllessrm((MMianarertdtiinntoeettaall., 220000333a;;
cMbboiioanoacratecicnncctuuermmtautaulill.aao,tnt2ees0tti0oon3wccbaoo)t.nneccreTenhn(trtCroraoautntgiidohoennrssseetiivnnaelttr.iiasslss2ufui0eee0ldss8ee)evvxeerpraealrl imoorreddneertrsss,
of magnitude higher than PFOS was determined to
of magnitude higher than
concentrations in water (Conder et al., 2008).
AAPsFsCeesnn,vviitrrhooennmemxeeinsntttaialnlgccKhhoeemwmi-isbstatssseaadnnddapttopoxxriioccaooclloohggiiisssttnssotaadddaaiprpettctoolrryccarrpeepaaltiteecaaablnne,eewwneppcaaersrasaiddtiigagtmminttgoo huuanntddeetrrhssettaanndd
understanding of PFOS fate be built fom scratch using data from empirical field and PFCs, the existing Kow-based approach is not directly applicable, necessitating that the
understanding of PFOS fate be built "from scratch" using data from empirical field and
elIanabbvooirrraaottnoomrreyynsstttauulddicieehssemaainnsddtrnnyeewawynl-ydd-dteoerxriiivvceeodldogmmyoodiedsleosls.n.yDDjeuessstppibitteeegiiitfnssniuunssgeeftfooorrussneedveverersraatllandddeeccPaadFdeeOssS,, tcthhheeemffiiieeclldadlooff
fate, bioaccumulation, and sources to watersheds. environmental chemistry end toxicology is only just
fate, bioaccumulation, and sources to watersheds.
Nakayama et al. 2010)i the May 27, 2010 beginning to understand PFOS chemical
Nakayama et el. (2010) in the May 27, 2010
iilsistsslueueeisoofkf ntthhoeewneennavvbiirorouontnmmseeonuntrtaaclel scc,hheefmamties,isttraryyndjjootuurrmnaaanllsEEpnnovovriiftrrootnnhmmeeenPntFtaaCllsSSiccniietenhnecceeen&&viTTreeocnchmhnennootll,ooggmyyasskttiaanttegeddit""vvveeerrryyy
dificult to prioritize human exposure routes and assess potential risks." little is known about sources, fate, and transport of the PFCs in the environment,
difficult to prioritize human exposure routes and assess potential risks."
making
it
very
AAPssFiidOdeeSffirrsoomtmhattthheaecllcaaeccpkktoaofbfalaebbaaanssailiccytssiccciaieelnntlitiaffbiiccorppaaatrroaarddyiigpgmemr,,faorppmrraiimnmcaaerryyapiisspssruuoeeacilihmmiiilntiignngga uulnenvddeeelrrcsstotaamnnpddaiirnnaggbloofef to tt(PhhvFaaattnooSLffaioosotthuthheewarretmmnaaoacjtcjooaerrlpcc,thah2ebem0lmei0ic;caaanllMassaolyloftificcncaokolnyncl,aceeb2rro0nn0ra8hh)toa.arssyTbbpheeeeeernnfiomaarimtttttaaaeiindnnceenedd auoopnnlpmlyyrooibinanfctethhfhiieenregdppaaassstttluettdvwiweeoolscttopoormitthohprrreaetereoatyybheelieaasrrmtsso e
(van Leeuwen et al., 2009; Malinsky, 2009). The limited number of field studies prior to this time
Considerations fo PEOS Envicomental Fale
Considerations for PFOS Environmental Fate
110153
11 of 53
ENVIRON
ENV i ~O N
22669911..00001144
STATE_01178238
STATE_01178238
Review of PEOS ImpPaimeenpien MrsiHsetiosppoRiiavneCPoucnc2 Review of PFOS Impairment in Mississippi River Pool 2 Prepared for Metropolitan Council
aaRrreeeceidnfifftfcicfuuileltltdttoostiiunndtteieerrpsprraeetrteaanfneddw,ccoowmmiptpaharoerne,l,ymmaaakhkiainnnggdutthlheeoddfeesvvteeuldloiopepsmmeoennnttPooFfffOfaaStteefatththeeeooarrnyydeesxxottrureremmceeelslyyinddiirfffiiivcceuurllstt.
a2aR0nne1dd0c)ess.nttrtreAfeaiseammldwssist((thBBueedtcchiekekseecrruateertettiaanflegl.,w,e,22d00wg00eit88haoaf;;onmBBlaeyesccatkkeeshrcraieneetndttfaaiulfl.li,co22fi00ss00st8u8u0ebds;;i,eZZstuuhsosehnhsiiePeoFpttaOaapllS.e,,rf22sa00t0oe08f8;ta;ennNNdaaasikkosaaueyyracaamemssaamieneattnraaiyvll.e,,(rosr
e2mmn0oovr1rie0er)))o. qnqumAueeessnsttwtiaiiootlhnnlsstehvttehehlaacsnnurtttathhitneehgyyererreetdsshgooaelnlvvoeeg,f,aimaannnoiddnsgtmmsaacadninveyyanntooifcfficetthdhieseusssnuttdeuuesddr,iiseetthssaenaasdrreeienpffgoaocpcoufeussrcseehddeomfmmtieoconrarleerafooiasnnteeuuanmnsdedecemrhrsasattnnaaiynnsdd(moiisnnr.gg
aeFFbonoirvroiteerioxxcnaaemmmnpevplnileert,,aolnnnmlooeennvneeetlasoolffrcttahohtehmesespereatrsshtttauumnddeiingeetasssinee(ixxneaa.g.mm,aiinndseeveadqqniuucmaaeenndntttiatu,ainticidavvereebrsorrtneea,llnaadttsiioiunorngnfssahhociifpepcsswhabbeteemettwriwc,eeaeelannnfadPPteFaFqmOOuSSaetcisshcooauunrriccseemss,s,.
organisms. abiotic environmental
organisms.
compartments
(e.g.,
sediment,
carbon,
surface
water),
and
aquatic
4A4..2c2onsRRisootlleeeontoffnSaSreerdaditiimmveeennitstbiinengAAinqqnuuiaantgtiicctoFFeaamtteeeroogffePPfFFoOOmSSthe avaiable field and laboratory studies
Aassqeeucddaoiitmnmiseceinsnotttreigssnatnaaninnsamiirmsrma.pptoiovrrCettoaainnnstttbreeeonnlgvveiinidrrnoolinnnammgbeoentrontatataeollmrycceoosrmmgtpuepadafirrerottsmmmehenatnhtvteeninadlfvulouaeceinulnacmcbieilnnenggtfiettehdhldeethaaaacnctcdcuuPlmmaFubOuioalSartatiiitooonnarytootfsfrtaPPucdFFtieOOedsSS:toiinn
OoaorCrqggu,aaanndtiiricccyoccwaaregrribabgonohnintsm(((OHOsiCC.g))gCiiinnonsnaateqqrtuoualaallte,tiidcc2lss0aee0b6ddo)ii.rmmaeetnoAntrhtsysr,,eswwtnuisidtthhieetppsaaalh.rrtai(ttvi2ooe0nn0d9cco)occeeuoffbmfisiceieienerntvnetetdssd toomhffauaatcppPhpphrFroioxgxSihimmeairsattOeaelCtltyyra44pc00at0e0rdtLLiot/okkngg
cOcsooeCedef,ifffimdicceriiyneetnnwttaessnig((dahappstppe(rHrdooiixgxmiigemminanattsteeplelyoyt ra11l.00w,xxa2thh0eii0grg6hhf)ee.rrro))Amtthhhfraiaeennlndstthchoeaaltttloaoelbbc.sts(eee2drr0vv0see9eddd) ibbomyybeHsnHietgirggvigneiidnnTssomekteuyatcola.hlB.ah((yi22.g00h00eR66re))sOuuuCslsitinnspggacrlteitaiorlny
document that organic carbon in sediments has a significant capacity to adsorb sediment and sediment pore water from field collected sediment in Tokyo Bay.
document that organic carbon in sediments has a significant capacity to adsorb
PFOS. Results
PFS.
clearly
`SSSeiimdmippmlleeenrrteelliaattiaioonknseshhyiipspssoubbreecttewweaeneednnloccroonnscicenerkniftrroaarttiPiooFnnsOs SooffiPPn FaOqOuSSatiiinncwwsaaytsteetrermaasnn.ddBsseeecddkiimemreennotttaaal.lssoo(2cc0oo0nn8ff)iirrmm tthhaatt osoPbiebgsdsheeimerrrvveeetnddhtaittnshhaacatotnkccceooeynnnccsteeronanutttrrricaaoettniiosaonnnissdn /osoofufrrPPsfFiFancOOkeSSfwoirinanPessFuuOrriffnSaactchieenessaReeqoddlutiiamemtreiecRnnitstvywwesereterr(meeGesaar.ppmppaBrrnooeyxxc)iikmm,eaarattneeeldtlyyaLl22.i00n(2t(t0o2004481000))ttiimmeess hrr(eTeigappihoowrerattrnee)tddh. accnooOnntccchoeeennntrcrtertaanutttiidrooaenntisssoniihnnsassvineeeddsiriumemrpefeoannrcttteewwdweermareetuec11r h66in-22ht56ihgetthimemRreeoasstteihhroiisRgg.hhiveeerCrrottnh(hGcaaenennrtwwmraaaatttneeiyrro)i,innntsahtnhiendesLNNeiadnainn(mm2me0een1ntn0)wRRieivvreeerr Coo(Tbabassnieeewrrsavvneei)dnd. tttonOoetbbhNeeeeraatnnnsetuaarvdiveaeienrrsadasggheea(ovoKfefa22re2d20p0iottrieitmetmdaeelssm,hhu2iig0cg1hhh0ee)hr.rigtthhhaSaeunnrrttfrhhaaaatctioteosofw.fawwtCaeaorttneaecrinerinndnt22rsa11utrimmofaanajcsjoeorirsnellasadkkeieedmssie,m,nrretiivnvdeetorrwtss,a,eraaenndd 2cccoaorlnllleeaevclcesttaeelidndtutuhhappetsstatNrrveeeeaatrmmha,e,grelnnaeencaaodrrn,s,caea(Knnntdwdraadddtooiiwwjoknnnessstttirranele.as,amem2d0ioo1mff0ett)nhh.tee Sa33ruMMerfafCCcwooeottttcwaarggadeeteerGGrsrraooonfvvdeemsaffuagarncifiilalittctyyuediisneneSS(d1eeim0cc0ttei-oni2nto0d4n04atootiaffmPPeosoo)oll 2hfmiiagrgsehhvseeerbraattlhshtaiahtstaootaffwlawoavnaetetre,earrgsee((MdPciPoCmCneAcnA,et,na22st00rsa00ot66ico;;inaWWsteeseintsdotsoPnen,Fd, Oi2m2S00e00ni77n;t;aaW Wqreeuesastttwtiooocnn,s,oyr22ds00et00r8e8s;m;soWWfiesmeslstaitokgoennnl,y,itu2f2do000e0b99e)(.)1.a00sOOi-ng2nn0iaa0fitttcooiatmtaanltel s) omppvooarertsrtiislooonnboaookfsefidtsthhieaenlotttoonettearal,ml ssPPoeFFfdOOimeSSneviinnirt-aaoagqnsumuseaaonttcitcciaaslstyeymssdtateenPmmaFsgs,Oe,Smaaenninnddta.eeqssuppaeetcciciaalsllyyysiitnen mPPoosoolils22l,,ikaaennlyddtoccaabnnennooattsbbigeenificant
overlooked in terms of environmental management.
4A4..3s3igniRRfeielclaeenvvtaapnnaccteehwooaffySSefeoddrsiimemdeeinnmtte-aansstssoaosccsiioaacttieeaddtePPdFFOOPSFStOtoSo tPPooooeolnlt22erFFaiiqssuhhalic food webs is via
AbbLaiiosboaioagcrcnaccituufiommcruauylnalasttttpiiuooadnntiheiiwnsn abhbyeaenvfntoethrhicisccoeniidnnfivmvieemerrettneedtb-barrtasahattseteosssceittahdhtaaietmtdeaanrrPteeF.ccOaoosSnsnosstcouuimmeaeentdedtedrbbPyyaFqffiuOissahShtiaacbnnifddooaooocdttchhwueemreruboolsrraggtiaasennsviiissaimmnsbs.e. nthic
aiiLln,navvbee2orr0ttre0ae7bbt)orr.aarytteeIsssn,t,utiwdhtieiethhsfieaahlda.BBviieooctotcaan-o-sSSnueefmidrdpmiitmmeieedonnnttthoAAafcctPccsuFuemmOduiSlumalaeitntiniootb-nneansFtFsahaocicccttoioairrntev((BdeBrSStPAAeFbFFOr))aStooeffbs11iob..2ay222cbcggeu,,nmtOOhuCCilav(/gotHer(isoHugisinggfgibiinesnhsnstmheeatitcy
oabbrlee.,'qaa2unn0a0niimi7mpl)p.oaorirItvtnaaentnhtiteneevxxfeieppstloodiss,guuacrrtoeeinoppnsaasuttmrhhewwpgataayiory.dn. inoAAglflttPhthoiFousOuggeShhxpiffnioeeslbldduernssettthuupiddcaiiteeiinssvvahheyaar.tvveeebwrnnoaoototetfsyyeetbtthyaaetbttmeeeonmmstphtpiitvceeooddrmommpuerescechhfhaiesnanhinssimistvtiaicecy
saoaoqrquuuqraaucitaeiccnotffifotoaoPotddiFvewwOeSeinbbfvossettsfuuitsdidhgii,eaestsaiosccnoomsnnaddrneuuygccotateefrdddtintthogoe ddtbhaaeitntseetehhhixaacpvvofeeissubbhrooestthahpmannpotolhtteweedddayittnh,haattwtthoossseeoeddfiismttmhueeednnimtteissosseaatxcpppoorotmeteesnpntsriteeiaadhlllleyynmmsaivajejoorr
elevated concentrations of source of PFOS to fish, as
elevated concentrations of
PFOS compared to other species many of the benthic fish sampled
PFOS compared to other species
(Martin in those
(Martin
et al, 2004; Houde studies expressed
et al., 2004; Houde
eett aall.,,
Considerations fo PEOS Envicomental Fale
Considerations for PFOS Environmental Fate
120153
12of53
ENVIRON
ENV i ~0 N
22669911..00001155
STATE 01178239 STATE_01178239
Review
Review
of
of
PROS
PFOS
IImmppaarsirommpeeannrtteiidnn
ifMrsisiMseisstiscioppppoilRRtiaivvneerrCPPoooncolcl
!22
Prepared for Metropolitan Council
22000088).). IItt sshhoouuldd bbee nnootteedd tthhaatt eexxppoossuruerttoeo bbeenntthhiicc ffiisshh ffrroomm sseeddiimmeenntt ppoorreewwaatteerr ((vviiaa aabbssoorrppttiioonn dduurriinngg ccoonnttaacctt wwiitthh sseeddiimmeenntt)) aanndd iinnggeessttiioonn ooff sseeddiimmeenntt--aassssoocciiaatteedd ppllaannttss mmaayyaallssoobbee aa ssoouurrccee ooff bbeenntthhiicc PPFFOOSS eexxppoossuurree,, aalltthhoouugghh tthheessee eexxppoossuurree mmeecchhaanniissmmss hhaavvee nnoott yyeett bbeeeenn eevvaalluuaatteedd..
f"TiTsooh,qquuEaanNntVititItaaRttiiOvvNeellyydeiinvnvveeelssottpiigegaadtteae ttbhhieeoappcoocttueenmntutiliaaalltiiimomnppoomrrottadanenccleetoooffexsspeelddiciimimtelenyntat--aacsssscooccoiifaauottreentddhtPPeFFaQOcSScuttmooulPPaootooillo22n of
sedment-associated PFOS through the consumption of invertebrates ving fish, ENVIRON developed a bioaccumulation model to explicitly account for
sediment-associated PFOS through the consumption of invertebrates living
in PFOS- the accumulation
in PFOS-
of
ccoonnttaammiinnaatteedd sseeddiimmeenntt. TThhee mmooddeell aassssuummeess PPFFOOSS iiss aaccccuummuullaatteedd bbyy ffiisshh vviiaattwwoo eexxppoossuurree
ppPaaFttOhhwwSaayiysnss((eFFdiigigumurereent111b1)y):: a11b))saoarSSpeteiddoiinmmeiennnttot EEbxexnpptoohssiuucrrieenvPPeaarttthhewwbraaayytetthshaattthabbteegagirinnesstwwhieittnhhctthohenesaauccmccueumdmulubalyattfiiioosnnh toohffat
`aPacFccOcuuSmmuuilnlaastteeedPPimFFOeOnSSt
via distary absorption; and 2) a Water Column Exposure Pathway that by absorption into benthic invertebrates that are then consumed by fish
via dietary absorption; and 2) a Water Column Exposure Pathway that
that
ccoommpprriisseess tthhee ddiirreecctt aabbssoorrppttiioonn ooff PPFFOSS iinnttoo tthhee ffiisshh aaccrroossss tthhee bbooddyy wwaallll ((iinncclluuddiinngg ggiillls).).
`TThhee mmooddeell mmaakkeessththeefofolllloowwiinngg pprriimmaarryy aassssuummptpitioonnss::
+ CCoonncceentnrtraattiioonnss ooff PPFFOOSS iinn wwaatteerr aanndd ssuurrffaaccee sseeddiimmeenntt aarree aatt sstteeaaddyy ssttaattee oonn aa llooccaalliizzeedd Ssccaallee aanndd tthhaatt ccoonncceennttrraattiioonnss iinn wwaatteerr aanndd sseeddiimmeenntt aarree iinnddeeppeennddeenntt ooff oonnee aannootthheer.r.
+ FFiisshh ddiieettss aarree ddeerriivveedd ffrroomm eeppiibbeenntthhiicc aanndd//oorr bbeenntthhiicc iinnvveerrtteebbrraatteess tthhaatt aabbssoorrbb oorr iinnggeesstt PPFFOOSS ffrroomm sseeddiimmeennttoorrsseeddiimmeenntt ppoorreewwataeter.r.
+ BBiiooaaccccuummuulalattiioonn ccoonnssttaannttss ddeerriivveedd ffrroomm llaabboorraattoorryy ddaattaa ffrroomm wwaatteerr--oonnllyy aanndd ffoooodd--oonnllyy `seeexxdppioomsseuunrrteessarttooe ffaiispshph,l,iaacnnabddlfefrrotomomPddoaaotltaa2ffrrooormmgallnaaibbsoomrraasttoaorrnyydeecxxoppnodoisstuuirorenesss.ooff bbeenntthhiicc iinnvveerrtteebbrraatteess ttoo
sediment are applicable to Pool 2 organisms and conditions.
+ FFiisshh aarree rreessttrriicctteedd ttootthhee aarreeaa mmooddeelleedd iinn eeaacchh ooff tthhee tthhrreeee mmooddeelliinngg sscceennaarriiooss aannddl/oorr tthhee. aaccccuummuulalattiioonn kkiinneettiiccss ffoorr PPFFOOSS iinn ffiisshh aarree ssuucchh tthhaatt ccoonncceennttrraattiioonnss ooff PPFFOOSS iinn ffiisshh wwoouulldd cccohhnaacnneggneetraaanntiddornreesaaoccfhhPssFtteeOaaSddyyinsststaaettdeeimwwehhneetnn, wmmaotovevirinn,gganttodo/aaornneseuwwrflloaoccceaattsiioeonndieemxxhehinibbtiittiiinnnvggerddtiieffbfferearreteennstt.
concentrations of PFOS in sediment, water, and/or surface sediment invertebrates.
+ W Waatteerr aanndd ssuurrffaaccee sseeddiimmeenntt ddaattaa oobbttaaiinneedd ffrroomm tthhee vvaarriioouuss ssttuuddiieess ((ssaammpplleess ccoolllleecctteedd 22000055--22000099)) aapppprrooxxiimmaattee PPFFOOSS eexxppoossuurree ccoonnddiittiioonnss ttoo ffiisshh aatt tthhee ttiimmee ooff ffiisshh ssaammppilinngg ((22000099)) iinn tthhee MMPPCCAA ((22001100)) ssttuuddyy..
MMooddeell iinnppuuttss iinncclluuddeedd ttwwoo ssiittee--ssppeecciiffiicc PPooooll 22 ppaarraammeetteerrss tthhaatt wweerree vvaarriieedd aammoonngg llooccaalliizzeedd
``eaexvxpeporosasguuerreecoaanrrceeeaansstriinantPPioooonollo22f:P11F)) OaaSvveeirrnaaggseeurccfooancnceceewnanittreraart.tiioonCnooonffcePPnFFtOOraSStiiinnonsssuurorfffaacPceeFOsseeSddiiimmneesnnetdt;;iaamnennddt22)a) nd
sasuuvrerffraaaccgeeewwacatotenercrwewenetrrraeetiooobnbttaaoiifnnPeedFdOffrrSoommin aasvvuaariifllaaacbbelleewMMaFtPeCCr.AACaaonnnddcW WeenestrstatootinnonsssttuuoddifieePss.F. OTTShheein mmsoeodddeiemll eiinnnpptuuattnaadllssoo
iibnneccclluaududesesse aaOnnCaawssassusummneeoddt maaevvaeersraauggreeedccooinnnccteehnnettrrsaatttuiidooinnesoofffOOroCCm wiinnhissucurhrffaPaccFeeOssSeedddiiammteaennwtte((r00e..00o11btggaiOOnCeC/dg/.g,, Tssheeiddsiimmeenntt))
`abasesscsuaumumseeedd
OvvaCalluuweeaisiss
commonly used not measured in
commonly used
tttohoeddeesrrtiuivvdeeiessseeddfriiommmeennwtthbbiceehnnccPhhFmmOaarSrkkdssaaatannddwmmeoroeddeoelbl tbbaiiionoaeaccdcc.uummTuhulilasattiioonn
(i(NnNlOOaAnAdAA,w,a22t00e00r88s),),ofaatnnhdde iiUssnwwiitittehhdttShhteeatrraeasnngg(eeUSoofEf PvvaaAll,uuee1ss98((030..)0011 ttoo 00..1100)) ggeenneerraallllyy oobbsseerrvveedd ffoorr sseeddiimmeenntt iinn
inland waters of the United States (USEPA, 1993).
`TThhrreeee mmooddeelliinnggsscceennaarriioosswweerree iinnvveessttiiggaatteedd ffoorr llooccaalliizzeedd sseeccttiioonnssooff PPooooll22 aaccccoorrddiinngg ttoo PPFFOOSS sseeddiimmeenntt aanndd wwaatteerr ssaammppllee ggrroouuppiinnggss bbyy aarreeaa aass ssuummmmarairizzeedd iinn FFiigguurreess 77 aanndd 88,, wwiitthh rraaww ddaattaa ssuummmmaarriizzeedd iinn TTaabblleess 11,,22 aanndd 33:
Considerations for PFOS Envicnmerta Fate
Considerations for PFOS Environmental Fate
130153
13of53
22669911..00001166
ENVIRON
ENV i ~O N
STATE01178240
STATE_01178240
Review of PEOS ImpPaimeenpien MrsiHsetiosppoRiiavneCPoucnc2 Review of PFOS Impairment in Mississippi River Pool 2 Prepared for Metropolitan Council
1. UrUepppssrtterrseeeanamtms ooafrfe33aMMs CCofootPttotaaoglgee2GGtrhroaotvvaeere((TTnaaobbtlleeke11l)):y: TtTohhbeeeUUippmsspttarreceatamemdoofdifr33eMcMtlCCyoofttrttoaamggeePGGFrOrooSvveeadssjccaeecnneaanrtriioo
tl1roeo0cp33arMtMeisoCCenono#ttts1ttaaa(ggraeeepapGGsrrrooooxvvfiee.mP.aotoDDelalay2ttaarthiwwvaeeetrrraeemrieoolbbenlto8aat4iin7nlie)ekddeplyrffroootcommsbePPecoiooinomlgl p22taoffcrttooehmmde ndtthohirreeetcffhiti-rlssysttofuMMrotPPhmCCtrAAPaFnwwsaeatScteterarodfssjaaawmmcaptepelnlreet
sdsloeaactmmaepctpiltoleeinossn#cc1moolil(lleatecpc(tpte5erd0odxnbbigmyy/LaWW;teeeaslspyttpoorrinnovxe((ir22m00ma00ti77lee))l8ytthh4raa7itt)veddpreerpmpoiiicccletteecc8doo1in6nn.cgc7ee)nt.nottrrtaaThthteiiioosnnnossarrtooehffa-sPPioFFnuOcOtlhSSudtrbbeaseenllMosowePwcCttthhAoeef swtautdeyr
Sections detection
Sections
1.2,limit
1, 2,
3, Metfo WWTP in Section 2, (50 ng/L; approximately river
3, Metro VVW]-P in Section 2,
andmile
and
the upper 25% of 818.7). This area
the upper 25% of
Section 4 includes MPCA
Section 4.
study
2. 3r3eMMprCCeosotettntaatgsgeeanGGraroorevvaee oSSfhhPooorroeelllii2nneeth((aTtTaarbbellfeel22e)):c: TTthhhee3e3lMevaCCtooetdtttaacggoeencGGernrtoorvvaeetiSSohhnoosrreoelfliinPneeFOssccSeennianarrsiiouorface
sosrebeeptddariiemimsneeeenndntttfsaarnnaoddnm wwaPaorateoteaelr2rooofb(bPSsseoeecorrtvlvie2eoddnthii4nan)tPPfroroeooofllmle22ctthsaaeddtjshjaaaeccmeeepnnllettevttsaootce33odMlecCCcootonletcttdeaangoguteertasGGtiriorodonveveseo.f.otfDDhPeaaFttGOaaMSwveCeinroretestuargfaece
GtoGhrbreootavv3ieneMeWWdCeoesftrstottmaCCgooePvvoGeeorlooou2uvtteif(aaSlEllelacs((attaioppCnpporr4oovx)xeiifmmrooauamtttefelatlyyhleir(ivavsepeaorrmmrmcipxllieileemsa88ct11oe88ll.l.ye55)c)rtieotvoderssoamauimmtlpseplidle8ee1ss7.occ5foo)lt.lhlleeeccTt3theeMiddsoCoauurottetsstaiaiddgeeeooff
timihnneecctllue3udrMdseessnCtaaoonnttataahgrreeeeaanGvdderreior.cevlecIlttlEsyyhaaaosddutjjlCaadccoeevbnneett otn0ouotf33feaMMdll tCC(haooaptttptaatrggoheeexiemGGnrtaroiotvreveeley,a, rreeievxxaetteerdnnmoddeiiilnsneggn8oaa1tpp7pap.r5pro)op.xxeiiaTmmrhaatitsteoelalybyree22a0000
accmoonenntatteraaremmsaiiinnndaatoottweetnddhsewwtirrittiehvheaPPrm.FFoOIft SStshhrreoeeumllaladtitivvbdeeepttonoooouutifpeps3dnsttMrttreheaaCamtomtthaaterareegeaaensstGirbbreeeocacvaareeuuaassseeddoccieoossnncccnueesonnstlterardaapttpaiooebnnaossrveaatorr(eebFiehhgiigughrheeessstt9iinn
aanndar1e0)a. doItwsnhsoturledamalsoof btheenmotidedpotihnattotfh3eMcoCncoetntatgraetiGornovofe PaFs OdSisciun ssseeddimaebnotvaen(dFiwgautreers 9
scasoaannmdmcpep1lnl0eet)ssr. aootIbtbitostaanhiisonnuefeoldddr fftarrohlsoemomseEbEaesascsntetnoaaatennridddostW Wh,eaesatssttthCiCetowocvvaoeesnsscuwewnencelrtrreeeaatrnniooowntthuuoesstfeehPddeFrttOooMSddPeeiCnrriiAvsveee(dtt2hih0mee1e0aan)vvteesarranaamdggpeelweadtefrish
irectly fom these concentrations for
directly from these
areas these
areas
and whether scenarios, as
and whether
fish can move it was unclear
fish can move
freely fom whether M
freely from
the river ino these coves PCA (2010) sampled fish
the river into these coves.
3. DsDcooewwnnanrssittorrereaeapmmreoosfefn33tMMs aCCnootatttraaeggaeeofGGrFroooovvlee2((TTtaahabbtlleede33)m).:onTTshhieeraDDtooewswnPnsFtrsOelaSmriomeofpfa3a3cmMMtsCCtohotattttaamggaeeyGGbrreoovvee
GasascrssesooonvccaeiiraaiaottneedrddleopwwririettthhsheeddnooatwswrnenaassnsttrraeaeradeamjamaottcrrfaeaPnnnoststopopolo3r2rtMt toohCffaoPPttFFtdaOeOgmSSeoiGinnnrsosstvreeeadd.tieimmseDenaPnttFtaaannwSdderiwmweaaptotaebecrtrtasffirronthomemadt33fmMrWoamCCyooPbtotettoaalggee2
((G(SSarepeocpcvtrteiioooxanninm44da))t/oessrlaaytmmhpvepleleearssremccaioosllllelaeedc8ct1jtea7edc.de2dd)noottwwtoonnsss3aitMrmrepeaClameomsttooacffgottlehhleeeGc33rtoMe1vdeCCU.opotstDtttaaarggteaeeawmGGoerrfrooetvvheeoebEEtaPaasoisntotelCCd2oovfvdreoeamoomuuPttafoalollll 2
(approximately (approximately
(approximately
riverriver
river
milmile
mile
816)817.2)
816).
to
samples
collected
upstream
of
the
Pool
2
dam
FmFiaissthhhePPmFFatOOiSScabbliioooaapcceccruuamtmuiulonalasttiirooennqummiorodededelloccaaullscceuulltaahttieioontnhssreffooerriaanllplluttthhrrpeeaeerassmcceeentnaearrrisioosts,o, diinencrcliluuvddeiintnggheaaltlllotal
`ccmoSoanencdtcheieenmntmetrnraatatttiEiicooxannpl oooosfpfuePPrrFFeaOtOiPoSSantsiinhnwrffeaiisqsyhhufiaaroennrdddthtttoehheetuhsppveeeerretccheseecnnettthanaraggereeeioooisfnf pttahuhreetepaasacchrccoauuwmmmnueultileanarttsTeeaddtbolPPdeFFseOOr4ivSS.e5ddteeahrrneiivdvteoe6ddtafflrroomm tthhee
`sSCtCeouodmdmiypmpaa(er2rini0sst1oo0Enn)xoporffoevstthehueaerleppsrrPgeeadodtioihccdwtteeamddyoccdfoooennrlcctehpeneentrtrtfrhaaotrtreiiomoenannsssccooeef,fnPPawFFriitoOOhsSSmaoiirnndeeifislsshhhoprttwoeondthihiconotssiTeoeanbosoblbfessaseleir4rnvv,gee5dwdiaitinnnhdittnhh6eet.hMMePPrCaCnAAge of
the observed study (2010)
the observed
averages for reveals good
averages for
the species in each otfh relevant sections model performance, with model predictions
the species in each of the relevant sections
(Figure 12) falling within
(Figure 12).
the
range
of
KKeeyy mmooddeell ffiinnddiinnggss incu include:
+ FfFioosrhr ttahhreee UUnpoptsstetrrxeepaaemmcotofefd330MM rCCeosouttltaatggieen cGGornroocvveneetssrccaeteninaoarnirsioo,o,ftthhPeeFmmOoSoddeielnlfppirsreheddaiibccttossvetthh2aat0t 0ccoonnngcc/eegnnt(rtrpaartetiidooinncsstiiionnn
fSooifsef hc33t22aironnenggsi/ng;o1;,tTT2eaaxbabplnleeedc44t3)e)..disTTthohh,eerwehmmseouordltdeeeilnlspcpperorceeniddceiiecscntiiatoorvnanetwiwroaaangsssceosconofrsnPaisnFsisgtOteeeSdnnttfiwnrwioftiitmshhh2tt4hahebetoooovb1bes0se2e0r0rnvv0gee/dndgg,dd/agaotvta(aeprffroeo9rrd5ic%tion
(22001222) ofthe Section 1, 2 Sections 1, 2 and 3 fish, where
(220 of 222) of the Section 1, 2
and 3 fish samples were below the MDH species averages ranged from 24 to 100
and 3 fish samples were below the MDH
fish issue ng/g, over
fish tissue
99%
Considerations fo PEOS Envicomental Fale
Considerations for PFOS Environmental Fate
140153
14of53
ENVIRON
ENV i ~O N
22669911..00001177
STATE 01178241 STATE_01178241
Review
Review
of
of
PFOS
PFOS
IImmppaaPiirrmmeepenantrteiindn
WfMoirissMsieisstsicipnppioitRRivaivenerrCPoPuoonotcl t22
Prepared for Metropolitan Council
aaddvviissoorryy (Figures
2llee.vve3el,al,naadnndd4)aa.llll
9900th
ppeerrcceenntitillee
vvaalluueess
wweerree
bbeellooww
tthhee
MMODHH
ffiisshh
ttiissssuuee
aaddvviissoorryy
lleevveell
Fo(Friguthrees32M, 3Coatntdag4e).Grove Shoreline scenario, the model predicts that concentrations in
fFioshr tahree 3eMxpeCcottetadgteobGergorveeaStehrortehlianne2s0c0ennag/rigo,(tphreecmicotdoenol fpr4e9d0ictnsg/thg;atTcaobnlece5)n.traTtihoensmoindel
prediction was consistent with the observed data for Section 4 fish, where species. fish are expected to be greater than 200 ng/g (prediction of 490 ng/g; Table 5). The
prediction was consistent with the observed data for Section 4 fish, where species
model
3aavv6ee%rraa(gg2ee7ssorfraa7nn5gg)oeeddffftrrhoeommSe11c66t00iooton 77444i00shnngg/s/gga.m. pClCoeonsnc,ceeanntnrdtraaatltiiloo9nn0ss"aapbbooorvvceeen22t00i00e nnvgga//lgguewwseerareemooonbbsgseesrrpvveeecddieiinns
i3n6S%ec(t2i7onof47w5e)roef tahbeovSeec2t0io0nn4g/fgish(Fsiagmurpele5.s, and all 90th percentile values among species
in Section 4 were above 200 ng/g (Figure 5).
For the Downstroefa3mM Cottage Grove scenario, the model predicts concentrations are
eieFmxxopppraeetichcrtetemedeDdnotttoowcnrroeesnmmtdraieatiaiinnmonaasboboof(vv3ceeMo2n2c0Ce0n0o0tttrnnagagg/t/geigonG((psprrroieenvddeiiiccststhiicooengnnrooeafafrit22oe2,2r00tthhnneaggnm/;g2o; 0dTT0eaalbbnplgleer/eg66d))).i.catseTThhcilioissknesscluuyeggndggtoerewassntttiossstnrseaarme
impairment conditions (concentrations in fish greater than 200 ng/g) are likely downstream
Sofec3tMionCo4t.tage Grove, an area representing at least 50% of the downsiream portion of of 3M Cottage Grove, an area representing at least 50% of the downstream portion of
Section 4.
FoForr lalll mmooddeell sscceennaaririooss,, tthhee mmooddeell pprreeddiiccttss tthhaatt aa mmajaojoririttyy ((8600--8865%%)) ooff PPFFOOSS aaccccuummuullaatteedd
bTbyaybffliiseshshii4ss, dd5eerariinvvededd8)ffriotomhmusiin,nggteehssettiimnnaggjossreeidtdyiimmoefennPttFiinOnvvSeerrittneebfbirrsaahtteetssis((siiu..ee..,,isSSdeeeddriiimmveeendnttfrEEoxxmppoossseuudrireemePPnaatt-thrwwaayy.;
associated Tables 4, 5
associated
PFOS, and 6);
PFOS.
thus,
the
majority
of
PFOS
in
fish
tissue
is
derived
from
sediment-
"TpThheerccoononcceeonpntftrrasaotetiidooinnrmeoonffttoo-rraggisaasnnoiioccciccaaantrrebbdooPnnFiissOssSeedadicimmceuenmntutliisastaaenndbiimymppfoiorsrhtt.aannttAffsaaccmtteoonrrtiininoeenssettdiimmaaabttoiinvnegg,tthhdeeue to a
fplTaoarccorkktphoooefrftOiddoaaCnttaaocffofrnrsocoememdnitMMmrPPeatCnCitAA-oanasainsnndodPcoW Wiaoetleess2dttoosPnneFdssOittmuuSeddiniaetesc.s,c, uaaSmeddnueselfaifaattuevulidltttyvvbaayallnufuiaeselhyoo.sffiA00s..s0o0f11mtgeghneOOtifCoCi/sn/hggedPssFeeaddObiioSmmveeenn,ttdwwuaaesstouussaeedd
fboirotahcecuOmuClactoinocnemnotrdaetilonreinvePaloeodl 2thsatedfilmoewnetr. vSaelunessitifvoirtyOaCnacloynscisenotfrtahteiofnisshaPreFOasSsumed, model
abppsrrioeseadodicciccicttauiiotmonendusslaPiintnFiddoOiincSca.amtteeodFddoettrhhlaaerttxe2aavmehhpaiillggeehhd,eerrtihfppaaeetnrriccfaeelsonnswttauaegmgreeevdaooflfcuoPPenFsFcOOefonSStrrwwOaootCuiulolcddnonobbfceeeOddnCeetrrraiiivvtneieosddnesffdrrioaommrmeenssateesdwdsiaiummsmeenelntdot:-,wemreoddel
from 0.0110 0.0026 g OC/g sediment, associated PFOS. For example, if an
from 0.01 to 0.0025 g OC/g sediment,
84-95% of PFOS accumulated by fish is predicted to be. assumed concentration of OC in sediment was lowered
94-95% of PFOS accumulated by fish is predicted to be
ddperereridivivecedtdevvdiiaacottnhhceeenSSteerddaiitmmieoennnsttoEEfxxPppoFossOuuSrreeinPPcaarttehhawwsaaeyytoPP1FF0OO0SS-1ff,oo7rr0tt0hheenittghh,rreeweehmmiocodhdeesll ssstccieelnnacaroirmioopssa..raTTbhhleee to the
a0apc.crtet0uud1aai1lcl0tvve0aad,llu0uce5eossncooOebbCnss/teergrarvvtsieeoeddndsibbmyyoefnMMtPPP,FCCO4AA5S-((5i22n060c11%r0e0)o.a)f.sefIIiffstthothhPee1F0OOO0CC-S1i,iin7np0pauu0ttttnvvrgaai/bllguuu,teeewdiishstioiicnnhsccerriedseaiasmssteeielnlddtc-fforaromsomsmpoattcrhhiaeeabtlddeeeedftfaoaPuultFlhttOeS,
0in.0d1icatotin0g.0t5hagt seCd/gimseendtim-PeFnOt,S4i5s -s5i6l%anofimfipsohrtPaFnOt Ssoiusracettr(ibruoutegdhltyohsalefd)imofePntF-aOsSsoaccicautemdulPatFedS,
ibbpnryydeffidciisisahhc.tt.inedgMMottoohddtaeaelltlscppeoeendrrciffmeoonrertmnmrataa-ntPniccFoesOnsssSuuofffiffseePrrsssFtiilOfilftSathhniiissnimafaispsssoshuurdtmmaepncpttrtiiesooaonnsueiirsscsemmtaoa(drdo1eeu0,,-g1hhh8oloy0wwshnevagvallefgr).r,,oaafTssPhtiFthshOeerSarranaagnnceggceeuofmooffulated
predicted predicted
predicted
valiuselosw compared to actual values observed total concentrations of PFOS in fish decreases to
values is low compared to actual values observed
in the MPCA 10-180 ng/g.
in the MPCA
(2010) study. This range of
(2010) study.
Corsieratons fo PEOS Envicnmental Fle Considerations for PFOS Environmental Fate
15.0153
15of53
22669911..00001188
ENVIRON
ENV i ~O N
STATE_01178242
STATE_01178242
Review
Review
of
of
PFOS
PFOS
IImmppaaPiirrmmeepenantrteiindn
WfMoirissMsieisstsicipnppioitRRivaivenerrCPoPuoonotcl t22
Prepared for Metropolitan Council
55 SScciieennce--bbaasseedd AAllternaattiivve DDeecciisiioonn MMaakkiing ttoo DDeeffiinne and
AAddddrress PFOS IImmppaaiirrmmeenntt iinn PPooooll 2
"TPThFheeOfSfoolliloomwwpiainniggfmsseeencctttiioionnnPrroeeovvliiee2wwassnMMdPPpCCrAoA'p'ssosiiennsiittiaaallnmmaalantneaarggneaetmmeeepnnattt hrreefssopproownansrsede b((MaMsPPeCCdAA,o,n220a011r00e))vittooewaadodfddrrPeeFssssOS
science and the subsequent integration with Pool 2-specifc PFS impairment in Pool 2 and proposes an alternate path
science and the subsequent integration with Pool 2-specific
data. forward
data.
based
on
a
review
of
PFOS
5F5o.11llowMMinPPgCCtAAheMMiamanpnaaaiggreemmmeneetnntdteRRteeerssmppionoanntssieeonttotohttahtheewaMMsPPbCCaAAse((d2200o11n00))aPPPoooooolll 222S-Stwtiuudddeyyaverage concentration
oaoFfdfodPPllroFFewOsOisnSSigniignnthftferhreeeismsihhpmwwpaaaaitrtiemerrremcdenrrntuutdmmebtyooeffrem22s22tina99abnirtiigsgo/h/nggi,,nthgMMadPPtiwCCsacAAhsaaabrddgaooesppettmdeeiddtoansa fammoaraPnnMoaeaogtgl ere2omm-weVeniIdntWetTssaPttvr.raeattreaeMgggPyyeCaacAiimomnfeeicdrdestnaautttrsaetidon
ccacroodindntecrcreeeisnonsntrtina(rgtCiaoCttnh)iesofooifnmrf pPPPaFFFiOrOOmSSSeiininnnt wwPbaoyatoteelersr2t.aaannbTddlihsffheiisisnhIhgCttiCisdssirssuuceeehpatrtooregseeeesstniliimmtmaasaittstheeyfpossoirittteMhe--esestpptireecocacilWfifiiucVcpVffpiTisesPhrh.ccmooMinntPssfuCuommArptptfhitirieosontnused
cccPoroFintnecOcerSeinontnfrtrraa(otftmCiiooCinnn)goofefofsrPPtiPFFoFOOnOSSoSfiinPninossouuPlrr2offaoaclfciee2s.hwwaTaatnhteederrifaaCnsscCsisduuermmentepearddlesittooenngbbeteesstaaasossnhsoyoocpcfioiaaPttthoeeoeddlticww2aiittlshhuuraapfnnpaecaarecclcwcimaeetppiettrtaaf.obbrlleetBhddeaoossseeed oooffn
adaPeFbbfiiioonSaaeccdfccrhouumummumulianlaangttieiohosenntaiolffatnahccottroofirrsPk((oBBaoAAslFFs2))efsddisseehrmriievavnenetddd pffinrarorcomaimdmeetthntheteearlMMs,iPnPgCMCeAPAsCti((o2A2n0011coa00fl))cPdduoalaotatalat,e,2daasssaurwwffeaCelcCllleaaowfssa7ootttenhhgree/.Lrr.ppBooaMllisccPeyyCd-- Aon
subsequently applied defined human health
subsequently applied
the 7 ngiL {CC to risk assessment
the 7 ng/L fCC to
permit modeling for parameters, MPCA
permit modeling for
Metro WWTP. Based on permit calculated a fCC of 7 ng/L. MPCA
Metro WWTP. Based on permit
wmmaoodtedelreilniqngug,al,iMMtyPPsCCtAAanccdooanrndccslluufddoeerddPFtthhOaaStt.MMeettrroo WVVIWWTTPP hhaass aa RReeaassoonnaabbllee PPootteenntitiaall ttoo EExxcceeeedd ((RRPPEE))
water quality standards for PFOS.
AAmlalttnhhaooguuiggnhhgMMmPPaCCnAAy''sstrppadrriootppiooonssaeelddchppeeemrrimmicitatttliinsngog-f-fofcococunuscseeedrdnaa,pptpphrreooaaavccahhilccaoobuullelddsbbiteee-aasnnpeaacpipfppirrcoopdpraritiaaatteeanffidirsstut nssitteqepupeiinn
aeemndnavdvnirirreaoosgnnsinmmigenengnmtttaaahllenaayissmtpprpaeeacdcititrtssimoeoonfnfatPlPcFoFfhOOePSSmooiiiclnnadd2li.isccaaoSttepfeeccttohihfnaaitctceaaalrnnnly,aa,ltlhttaeeenrrnnaaaavltttaeeeilraaanppbappltereroosaaaiptccephh-rsommpaaeacycyhifbbicceeadnmmaobtoarereeasneeufdpfifpeeuoccnrttitiivqveeuedeiinn
scientifically as addressing the
scientifically as
described below: impairment of Pool
described below:
2.
Specifically, an alternate approach can be supported
+ IImmppaaiirrmmeenntt iiss LLiimmiitteedd ttoo SSeeccttiioonn 44 wTTihhteehiaanvvSaaieilclaatbbilloeen PP4.oooolIlf22coddnaasttiaaddederememdoonosnnisrtaraastteeecttthhiaaotnt-PPbFFyO-OSseS-ca-tasissosonocbciaiaastitees,dd hiimumpmpaaaiinrrmmeeexnnpttoisissulrliimemiitttoeeddPttFooOooSrr in fwfaiisvisthehhrittnaiisgssSesuueefecitsbbioheentyyioo4snn.sddueIfSScceeooccntntciisoeoidnnnet44raetiidsis onnonoonstt assinuusffieffsiiccchtiiieoesnnnatt-mbttpooyl-rrseeeedsscuulitlnittoSiinnnecbaatannisoiiimsnm,spphaa1,iuirrm2mmaeeannnnttdessx3ttpaawottuesusursrebbebeeteccoalaPuuosswFeeOthSe in aeMMvvDDiedHHreangffciieseshh,fitstiiihsnsscstuliusueesdiuaaneddgvvciMissoPoonrrCcyyeAnlleetavvraeneltdlioooWnffes22s00itn00ofninnsgghsl/gegsda((iMmPmPepCnlCeAtAd,a, inn22d00S11w0ea0)ct.)t.eiorSSnePsevFve1eOr, raS2all acaahnddedddmiiti3tiisowotnnreaayrllednlaibnteeaes,lsowopofef ethreferrieevsvvihdiieebewniwoceeaeddc, crrieuensmsceuelulaadarrctcinhihgooonMnnmPttohhCdeeeAlffaiaattnneegdoodfWfePPmeoFFsntOOosSSntrsiiannetdaaeqiqmtuuhaeaattntiitcctahssenyydsssottweuemarmtcsseeoraafPnnddFtQhffieisSshhi,,cmhaapesasimwwreiemslelltlrnyaatssdiassstiiatte,e--psseppeeecrci-iffiicc faadissashstsoaobccdiiiooaaattenceoddctuwwmsiiuttuhphlpallootoricoctaanlltrmSSeeeaotccditteniogilinno4Pgno4cdPPle2FFmOOaoSSsnsssatoorsuauirtrncecgeetlsshe,,autppnrtirhiitmmedaarusrieoilluyytrocccooethnnoettafalmmtahirienngaeaimttdeeipddfafssiereemrddeieinmmnceetensnits.ti.n PTTFhheeOS `dcaotnacednotrnaotit osnuspipnoirstht,resautirnfgacPeowoalte2r,asaandsisnegdleimuennittdbueetwtoeethneSelacrtgieondi4ffearnedncSeesctiinoPnsFO1.S2 caaSoonnunddrc33ce..enstAArwallittthtihohooniuunsggShhinectthfhtiseeihrroe,ensaa4urrertefoannocootehbbweaararrritSeieeerrcr,sstaittnooodnppssrroeeefvvdeePimnontotelmnmto2o,vbveeueptmmwteaeenkentent oaoSffnefdficisstehihloieenmxxi4ppnooaatssnieedoddnStkloeoincPPetitFFoiOnOcssSSo1f, 2 PFOS in fish tissues suggest hat concentrations of PFOS in any fish emigrating from sources within Section 4 to other Sections of Pool 2, uptake and elimination kinetics of
PFOS in fish tissues suggest that concentrations of PFOS in any fish emigrating from
SSareeeccatstii.oonn 44 wwililll ddeeccrreeaassee ttoo lleevveellss bbeellooww 220000 nngg//gg wWiitthhiinn wweeeekkss ooff eleaavviinngg hhiigghh--eexxppoossuurree
areas.
iIIttmiipssauuinrnedddeerrfssottroo3oo0dd3(tthdha)attprrueerggpuuollsaaettsoo;rryyhppoowoleliivcceyyrrer,eqquwuihrireeensstdthheeeveeelnnoiptriireenttgyyaooffpePPoroomolil2i2nttgoo abbpeepllriisostateecddhaasts.o
impaired for 303(d) purposes; however, when developing a permitting approach to
eSR ES paare mos Hin 10158 Science-basedAIternative Decision Making to Define 16 of 53
and Address PFS Impairment in Pool 2
~ENN VViI RR O ONN
22669911..00001199
STATE_01178243
STATE_01178243
mene ---- Review of PFOS Impairment in Mississippi River Pool 2 mm Prepared for Metropolitan Council
Ey ------ address the impairment, M PCA has the regulatory latitude to use the data and other orgs ba moe a ay eae supporting evidence to manage a water body reach by stretches rather than an a a a beoa a voks Wt its S1o 08 mep smo sdobyd homogeneous unit. The data indicate that the actual source of the impairment is located
in Section 4, that the contribution of Metro WVVTP PFOS to impairment is irrelevant and insignificant, and that PFOS limits for Metro VWVTP will not help MPCA address that
sy ser oh be coon Se ht impairment by reducing fish tissue concentrations in Section 4 fish. The data indicate that Br pe rs WATE whe sve re aco effluent limits for PFOS at the Metro WW1-P will not resolve the impairment that is
concentrated in Section 4. Focusing clean-up and restoration efforts on the section of
asi sya son vas his her, Pool 2 (Section 4) with a demonstrated human health concern is more effective (cheaper, cea ve on ot ep sh so quicker, cleaner) than treating the entire Pool as if it were homogeneous, which essentially ears seston, A rons on 44d,,ilouortreaas ptphooerrttiieoofnnfottrhthseerraeenoofdf,, miissassyuunppoppotorarttdeedddrebbsyystththheeeddcaatotaar.e. problem. A focused approach to Section I SR -- Calculation of the IViPCA Fish Consumption Criterion is Inconsistent with the
Methodology of the MDH Fish Tissue Advisory In implementing the mitigative strategy for the impairment in Pool 2, MPCA appears to have assumed that it needs to evaluate risks to human health via calculation of a water
yn a 5 owt, EW ey tn ro quality criterion for PFOS in the form of a fCC. However, MDH has already evaluated the a dbs es sci vt ot gt risks to human health, and has established an acceptable fish tissue level of 200 ng/g. In ones a pan ies Hon mins order to remove the fish tissue impairment identified by MDH, the mitigative strategy i ah ms so EES re 20 needs to target those actions that will reduce average fish tissue PFOS levels below 200 Ce ere Pa PS ny gea lo 5 ng/g. Calculation of a fCC using the MPCA methodology targets a fish tissue level of 37 a os soso ng/g, which is five times lower than appropriate to address the impairment.
Of specific interest in the calculation of the fCC is the use of the Relative Source
Re Contribution (RSC) value, which accounts for the allowable percentage of exposure from eo te ro3s doom non ot the particular source of interest (in this case, Pool 2 fish and incidental ingestion of Pool 2
wwaateter)r.). TThhee RRSSCC vvaalluuee uusseedd bbyy MMPPCCAA ttoo ddeerriivvee tthhee fCCCC iiss 00..22;; aa vvaalluuee pprreessccriibbeedd bbyy
hoy ha Sr ht os 00 Th MPCA policy for use in absence of chemical-specific data (MPCA, 2008). This value a FoF EaS ares ano i on 2 assumes that exposure from Pool 2 PFOS sources can be no more than 20% of the mr SEeeeptne FaOR sanocoy tt 3075 reference exposure dose that represents an upper limit for a PFOS dose with no adverse
effects. In contrast, the RSC used to derive the MDH fish tissue advisory level of 200 ng/g is 1.0. Although this is less conservative than using 0.2, state and federal agencies take
Bem a blab oh aE this approach because it is assumed that positive health benefits associated with fish me a sr sa sve ht von consumption partly outweigh risks associated with potentially adverse effects from I chemical exposure (OEHHA, 2008).
The use of a RSC value of 0.2 results in a target concentration of PFOS in water and fish
bichon ot iid le bio that is 5 times lower than to the level effective in removing the observed impairment. CE S95 cease Interpreting M PCA fCC calculations (M PCA, 2010), at a water concentration equal to the To a nan 5 134 a cot fCC value of 7 ng/L, a maximum concentration of 37 ng/g in fish tissue is the control limit. a Ho rain hobo ba hess een By using 7 ng/L as the criterion in permitting calculations, the effective concentration of mae aseans sm ovo my PFOS in fish tissue is calculated to be 37 ng/g or lower, which is unnecessary for iodide tds A appropriately addressing the impairment by lowering fish tissue concentrations below 200
nnggl/gg..
pore Science-basedAIternative Decision Making to Define
and Address PFS Impairment in Pool 2
17 of 53
ERVIREH ~ N V I R O N
22669911..00002200
STATE_01178244
Seen 508 es Review of PFOS Impairment in Mississippi River Pool 2 FL Prepared for Metropolitan Council
Te Fi Consumption Doss not Act fr hoo FOS The MPCA Fish Consumption Criterion Does not Account for the Major PFOS Sore Soma Source - Sediments
AAppppllyyiinngg tthhee BBAAFF ttoo wwaatteerrss aanndd eefffflluueennttss aassssoocciiaatteedd wwiitthh aa ppooiinntt ssoouurrccee ddiisscchhaarrggee ((aass iinn tthhee ddeerriivvaattiioonn ooff tthhee ffCCCC)) eexxpplilicciittllyy pprreecclluuddeess ccoonnssiiddeerraattiioonn ooff sseeddiimmeenntt aass aa ssoouurrccee ooff
Pe pphaieioes fv pmiibb PFOS (i.e., calculation of the fCC value does not include concentrations of PFOS in ian, ao amet se EA ora sediment). The current permit-focused approach to mitigating the impairment is to reduce metbe so Sos Poa cmon discharges to the water column. This approach assumes that the concentration in the Vr aS hat Vr 3 Cra Papo G05 water column will also decrease, resulting in a concurrent proportional decrease in fish oe rt sr cat Sons oy Gorgon tissue concentrations (a tenet of a water column BAF-based criterion). Using the osm esi tht ren 45, wee ood PS bioaccumulation modeling described above (Tables 4-6), water column-associated PFOS mary pom 1 ES ek sob. accounts for only approximately 15% of the PFOS in fish tissue, while sediment-
a`assssoocciiaatteedd PPFFOOSS aaccccoouunnttss ffoorr aapppprrooxxiimmaatteellyy 8855%% ooff PPFFOOSS iinn ffiisshh ttiissssuuee.. SSiinnccee tthhee
Ta Gotan EOS wormam oe seat oi rn majority (i.e., 85%) of fish PFOS exposure originates from sediment sources, even if Hee vets tara erm oy tah sors PFOS discharges to the water column were removed completely and all other conditions Fear an. ints APG te ly eran oy rot remained the same, concentrations of PFOS in fish are likely to remain relatively constant, morse paar ao ane Sar a Pk resulting in no change in the impairment status for fish in Section 4 of Pool 2. es na 41 Alternatively, a more specific targeted approach to mitigation of impairment in Section 4 to
a`addddrreessss tthhee iimmppaaiirrmmeenntt ooff PPooooll 22 iiss ssuuppppoorrtteedd bbyy tthhee ddaattaa aanndd ootthheerr sscciieenntitiffiicc iinnffoorrmmaattiioonn..
52_ nts 108 Wangament isis stave eo ve 5.2 Alternative PFOS Management Strategies Relative to Metro WVVTP ron ps pa oped gE Based on the previous sections, it is clear that a permit-focused mitigative approach to eon Eos games sh sesars 3 Poa kr oh so ahh addressing PFOS impairment in all sections of Pool 2 is not warranted, nor will it be effective in ior veo Sem tant Po et ogame addressing the Pool 2 impairment. Instead, Pool 2 data and ecotoxicological information on BE rp eta of actos oe TAT 7a PFOS support the implementation of a section-by-section approach to mitigating the rrr Oo Soi oo es or to sny a impairment. Only Section 4 fish exhibit fish tissue concentrations exceeding the MDH fish A be mph tissue concentration limits. A section-by-section consideration of the data and ecotoxicological rei gprs ge ee information on PFOS provides a holistic approach for addressing and prioritizing the many a or 7 Fat aE AO WER Ser aramebe, i sources of PFOS in the Pool 2 watershed, including legacy sediment contamination,
groundwater, nonpoint source runoff, precipitation, and other industrial point sources, even in
tthhee aabbsseennccee ooff aa ccoommpplleetteedd TTMMDDLL..
roe ppt sec md mea cars clots oat A more appropriate approach would be to tailor the fCC and subsequent calculations to properly esak Ta St B49 Bo eat set the fish tissue concentration endpoint, accounting for the discrepancy in the RSC values eToys apna 55 EOS nn et 5 used by MPCA and MDH, and to adjust the approximately 85% of PFOS in fish tissue that is eeit oyTw es om Bt a, Spo derived from sediment while only 15% is derived from the water column. Alternative permitting es mason, pest ses soa cot mt calculations (described below), properly adjusting for data, conclude that there is no Ferns oan ume thy no F708 Reasonable Potential to Exceed the water quality criterion for PFOS. Fis ENVIRON oda RSC vaso 10, wich condrss tofprNOM First, ENVIRON used a RSC value to of 1.0, which is consistent with the derivation of the MDH Tomas rao FOS 5 Soca (ows rire 208 fish tissue advisory level for PFOS as discussed previously (allows an end result of up to 200 peypaindeaordh5inrvtarttSennpgetota oh Siy b rr ng/g in fish tissue) and the level which will address the fish impairment. After applying this
modification, the resulting fCC value is 34 ng/L. This value targets fish exhibiting concentrations
ooff PPFFOOSS iinn ffiisshh ooff 118877 nngg//gg aanndd hhiigghheerr,, wwhhiicchh aapppprrooxxiimmaatteess tthhee 220000 nngg//gg ffiisshh ttiissssuuee aaddvviissoorryy
ed rr hs wa ry snr na a level. Second, a modification was made to explicitly account for the contribution of sedimenteine PO yg EROS 0 PEGS Basa me cna associated PFOS by using ENVlRON's fish PFOS bioaccumulation model to estimate the rs at am rake ey ho om concentration of PFOS in the water column that would be necessary to elicit a concentration of
Srpoe rs Science-basedAIternative Decision Making to Define 18 of 53
and Address PFS Impairment in Pool 2
LAL ~ N V I R O N
22669911..00002211
p-- STATE_01178245
Seen 508 eF s L Review of PFOS Impairment in Mississippi River Pool 2 Prepared for Metropolitan Council
aapppprrooxxiimmaatteellyy 118877 nngg//gg iinn ffiisshh,, aassssuummiinngg aa ccoonncceenntrtraattiioonn ooff PPFFOOSS ooff 00..6699 nngg//gg iinn ssuurrffaaccee
ar ora Ao Fo Suporte, Treo Aa 4 45 sediment (average value for Pool 2 upstream of Section 4). The resulting alternate fCC is 145 TOL a son cats Sos 1.30 veal 1 Conk ng/L (Table 7), and would be applicable to Sections 1,2, 3 and 4 upstream of 3M Cottage
GGrroovvee..
Th, ENVIRON ed rssh backgroud ccrttLoonsorft Third, ENVI RON used a conservative background concentration of 5 ng/L for alternate Fam totes ee oe na, To eA MPoCrA permitting calculations based on observed instream values. The current MPCA permit eee insane goa Om rca a To oan calculations use a Mississippi River background PFOS concentration of 7 ng/L, a value that is Frey aT EFS res Tt Bie PRS rn not based on the actual instream PFOS measurements that are available. Instead, by unwritten opotiie g eipebic r policy, the value is set in the MPCA permit calculations to be equal to the fCC. If the
bbaacckkggrroouunndd ccoonncceennttrraattiioonn aanndd ffCCCC aarree eeqquuiivvaalleenntt,, tthheenn tthheerree iiss nnoo aassssiimmililaattiivvee ((ddiilluuttiioonn))
`ccaappaacciittyy iinn tthhee rreecceeiivviinngg wwaatteerr aanndd,, eeffffeeccttiivveellyy,, tthhee ffCCCC iiss tthhee eenndd--ooff--ppiippee ppeerrmmiitt lliimmiittaattiioonn..
EE ia oe oe i ped PEGS MPCA's rationale for this approach is that the receiving water is listed as impaired for PFOS and om Samat Boag SvRtng ee applying this approach is "established practice" toward not causing or contributing to further aan EVR spate gos a hroh impairment. ENVIRON modified the applicable background concentration to reflect actual Isammessymos PS ort 1 WA mt Th steve 18 instream measurements of PFOS from the official MPCA database. The actual instream results ps pyiinbod o-oo (<5.07 ng/L, <5.11 ng/L, and <4.93 ng/L) indicate that PFS is not detected in upstream aren var atbo 5SEC2A navidn ndsSteir Sbio. Seurot0 Mississippi River water at an approximate method detection limit of 5 ng/L. These values are
also consistent with the 2010 MPCA sampling conducted in Sections 1 and 2 upstream of the
MMeettrroo VWWWVTTPP ddiisscchhaarrggee ((sseeee TTaabbllee 11))..
Toru es 0 RPEst of eek VTP ENVIRO ani HEC To numerically assess the RPE status of the Metro VVV~I-P, ENVIRON used the standard MPCA en as Raton ne) EASEHE 150 spreadsheet with the two alterations as described above: 1) an alternate fCC of 145 ng/L (in the ent Walton pe nha 3 sat spreadsheet this is referred to as the continuous standard - cs), and 2) a background
ccoonncceenntrtraattiioonn ooff 55 nngg//LL.. AA rreepprroodduuccttiioonnoofftthhiiss sspprreeaaddsshheeeett ffoorr PPFFOOSS iiss ggiivveenn iinn TTaabbllee 88.. NNoo
riper Lb eptember tobi other input parameters to the spreadsheet were changed from the original MPCA calculations
((iinncclluuddiinngg W WWWTTPP ffllooww,, rriivveerr 77QQ1100 vvaalluuee,, eettcc)..). W Wiitthh tthheessee ttwwoo iinnppuutt mmoodidfifiiccaattiioonnss,, tthhee rreessuullttiinngg aalltteerrnnaattee wwaatteerr qquuaalilittyy bbaasseedd eefffflluueenntt lliimmiittss ((WWQQBBEELLSs)) aarree 11,,885566 nngg//LL. ((ddaaiillyy mmaaxxiimmuumm)) aanndd 11,,007711 nngg//LL ((mmoonntthhllyy aavveerraaggee).). TToo aasssseessss tthhee RRPPEE ssttaattuuss,, tthhee pprroojjeecctteedd eefffflluueenntt qquuaalilittyy ((PPEEQQ)) iiss
na ely mo WEBEL 15 PE es Toy mn compared to the alternate daily maximum WQBEL; if the PEQ is less than the daily maximum OenEcEveyrte7dKE rt pn i en ern WQBEL, then there is no RPE and no further permitting action (such as implementation of
numeric limits) is warranted.
hor PE E5010 Haro WT perio ccdtin isc The original PEQ value (650 ng/L in Metro WWTP permitting calculations) is a statistical na en a ro ae SH TAPS projection of the maximum expected effluent concentration and essentially applies a multiplying o Enaamtaston 3v3a5r1asana amreayvi,aMoGSno.t moaetsa 0S factor (2.6 - based on the number and variability of the database, i.e., 4 samples and a
coefficient of variation of 0.6) to the maximum value. MCES has more representative PFOS
eefffflluueenntt ddaattaa ((JJuullyy,, 22001100)),, wwhhiicchh rreessuullttss iinn aann uuppddaatteedd PPEEQQ ((ddiissccuusssseedd bbeellooww).). SSiinnccee tthhee `oorriiggiinnaall PPEEQQ ((665500 nngg//LL)) iiss lleessss tthhaann tthhee aalltteermnaattee ddaaiillyy mmaaxxiimmuumm W WQQBBEELL ((11,,885568 nngg//LL)),, tthhee
erm de SAREE rp Pe Metro VWVTP does not exhibit a RPE. Also, the original PEQ (650 ng/L) is less than the
mmoonntthhllyy aavveerraaggee W WQQBBEELL ((11,,007711 nngg//LL),), ffuurrtthheerr ssuuppppoorrttiinngg tthhiiss ffiinnddiinngg.. TThhee ccoonncclluussiioonn ooff nnoo
es ny Po clo boop ark ATs wr RPE is based directly on MPCA calculation methodologies and input parameters except for two
aalltteerrnnaattee ppaarraammeteetersrs:: aa mmoorree aapppprroopprriiaattee ccoonnttiinnuuoouuss ssttaannddaarrdd ((ffCCCC)) ooff 114455 nngg//LL aanndd aa
erm a es on Mississippi River background concentration of 5 ng/L derived from instream data.
Srpoe Science-basedAIternative Decision Making to Define
and Address PFS Impairment in Pool 2
19 of 53
22669911..00002222
LAL ~ N V I R O N sore ovate STATE_01178246
Sev met Review of PFOS Impairment in Mississippi River Pool 2 FL Prepared for Metropolitan Council
Hor score WIP srt ECS st aco tr ho se More recent Metro WVVTP effluent PFOS data are available as alternate values to those eres hos. Reta fomay. oes S470 re SO og presented above. Results from a 7-day, consecutive 24-hour composite sampling program Canis So wearers conducted in July 2010 are presented in Table 9, which indicate values well below the previous Pa oii $50 (oy vo SPSL) Goin maximum effluent concentration of 250 ng/L (maximum daily value of 56.3 ng/L). Given the aa see oma Creer, 72 rr ce more representative sample type (24-hour composite versus single grab) and recent changes to i ma Wosbee i het bt eso contributing industrial users, Metropolitan Council believes this data set better characterizes the rer Sec current Metro VWVTP discharge. at ars eso oy 2010 case args 22105319. in ct Daily average values from the July 2010 database ranged from 42.2 to 56.3 ng/L and reflect a ote heed i hot. or WtWATE SPF decrease in PFOS associated with influent, resulting in lower Metro VWVTP effluent PFOS or te anos s vais Sa PothWAT Tee5 concentrations due to changes in wastes received at the Metro VWVTP. These changes are
lliiikmkepelllyyerrmeeellanattteeedddttbooycc3hhMaannOggaeekssdaaattliiennddguursstorturiinaadllweeallteeeccrttrro(oSpppllraaittniingn,gg ff2aa0cc1i0ill)iit.tiieessAlaasnnodd, ssmooouurrrecceecoccnoonfntitrdrooellncmmeeeacasasunurrbeeess placed
implemented by 3M Oakdale groundwater (Spring, 2010). Also, more confidence can be placed
ny 013 tt crea 24 ee ses. vee Ho in the July 2010 dataset because it is comprised of 24-hour composite samples. Previous Metro a ho ne 6 a a 3 VWVTP effluent data are derived from grab samples that provide a less-representative mor amy Agony sy 200.1 cn 30 "snapshot" of effluent quality. Using only the July 2010 data, 7 samples with a default an ara OR ae skp 3 MPR ie 120 coefficient of variation of 0.6 yields a multiplying factor of 2.0 and an updated PEQ value of 2.0
*x 5566..33 nngg//LL == 111122..66 nngg//LL.. TThhee uuppddaatteedd PPEEQQ ((111122..66 nngg//LL)) yyiieellddss aa vvaalluuee ssiiggnniiffiiccaannttllyy lleessss tthhaann
tthhee oorriiggiinnaall PPEEQQ ccaallccuullaatteedd iinn tthhee MMPPCCAA sspprreeaaddsshheeeett ((685500 nngg/L/L).). TThhee uuppddaatteedd PPEEQQ iiss mmoorere.
tof cr Hao WTS Sr doh rans a ty representative of current Metro VVWTP effluent due to the recent changes in influent quality and Samer aot arin on the more robust sampling approach.
NREL avr 150 of ang an bec rt ene reson BBootthh tthhee oorriiggiinnaall ((665500 nngg//LL)) aanndd uuppddaatteedd ((111122..66 nngg//LL)) PPEEQQss rreessuulltt iinn aa ffiinnddiinngg ooff nnoo RRPPEEfoforr
WQBELs derived from an fCC of 145 ng/L and a Mississippi River background concentration of
n5bgan/cgkL/gL.r. oFuFunurdrtthhceeorrn,,ceffoonrrtrtthaheteibboenetttuteeprrtrroeeapprrleeessveeenlnttaeatqtiiuvvaeelJJtuuollyyth22e00{11C00Cdda(at1taa4bb5aanssgee/,,L)uusswieelloofaflaasnnoyyreaasllutteletrrnniaanttinivvoeeRPE.
background concentration up to a level equal to the fCC (145 ng/L) will also result in no RPE.
Srpeoo mrs Science-basedAIternative Decision Making to Define 20 of 53
and Address PFS Impairment in Pool 2
22669911..00002233
LAL ~ N V I R O N soe auras STATE_01178247
Review
Review
of
of
PFOS
PFOS
IImmppaaPiirrmmeepenantrteiindn
WfMoirissMsieisstsicipnppioitRRivaivenerrCPoPuoonotcl t22
Prepared for Metropolitan Council
66 CCoonncclluussiioonnss
2EE,NNrVVeIIvRRiOeOwNNediinnaddneedppeeenvndadelenuntatltlyyedaannthddeccsrritittaiictcaael-llloyyfaa-tnnhaaell-yyszzceeiddenppcueubblrlieiccgllayyr--caaivvnaagiillaPabbFlleeOSPPFFfOaOtSSe iccnhhaeeqrmuiaisstttircyy sddyaastttaaemiinsn.PPooooll
a2rre,deldalrretaeivvtsieiesvwtitooenegdPPoioaomon)plda22i,,ervaamannelddnutaaatcsesossdneedtssihssteeeioddsntsatthhtaeeet-toeerxfxi-iibtsshuttteiinen-dgsgpctpeioeerntrmhmcieetitd-brbieasagscsaheeradddrignmmegaaonPnfaaFPggOFeeSmOmeSfeanntftetraaoinpmpppaMrrqeooutaaarcctohhicWffosoWyrrTsPte.ms
Based on ths independent research and analysis, addressing impairment conditions attributed to the
Based on this independent research and analysis,
ENVIRON makes the following discharge of PFOS from Metro
ENVIRON makes the following
WkkeeVyyVffTiinPnd.diinnggss::
1. AAocncttauuaasllecffitisoshhn-ttbiisyss-ssuueeectPPiFFonOOSbSasiim ims,ppaatihirremmoeennlntyt iSissecllitimimoiitnteeoddfttPooooSSleec2ctttiiohoannt 44exiihnnibPPiotosoolilm22p..aiWWrhmheeennnteeivvsaaSlleuucaatttieeoddn
4M4onP((oaCorarAsae(ppco2otri0rot1tnii0oo-)nbnysttt-hhsueederryece.ctofio)f).nO. vbSSeaeresccit9stii,9ootnn%he44ofoiisnthtltyheheeS22emm2cootsifsotitnsddhooosfwwanPnmsosptotlrrleee2daamtmihnassSttteuuecddxtyyhioissbneeistccstt1iiio,mo2nnopoaaffniPrdPmooo3eo,lnlat22lisoiinnnSgttehhwceeititohn
their average MPCA (2010)
their average
and 90 study.
and 90
ppOeerrvcceeenrnt9iti9llee%vvaaollfuuteehsse,,
are222
are
below the evel fish sampled in
below the level
indicative Sections
indicative
of impairment. and do 1, 2 and 3, along with
of impairment, and do
nnoott trriiggggeer2ra fiisshh aaddvviissoorryy.. MMPPCCAA''ss iimmppaaiirmmmeenntt ccaallccuuilaattioonnss iimmpprrooppeerrllyy ccoommbbiinnee ddaattaa frroomm
aTallhl effooduuarrtSSaeecactntiidoonnosst.,herrreesseuuvllittiidnneggnciinneaainssdccioocappteee ootffhatththeethiiemmippmaapiirammierenmntetnththaastt iilssimNnioottetdssuutoppppSoeorcrttteeiddonbbyy4 ttohnheleyd,daatatasa..
TffeiislhsehehvmamdtoaoevtvdaeecmamoennedncntetontpptharaeattrttteieerovmnnissdseaaannntcddleePPvienFFldOOsicSSoaftbbeciioootnahacccaecctruutnhmmueaulrialmaettipiloooannciramiitnneedffniiswsthhiitsaahrrliieemn ssSituueecccdthhitottohhnSaat4et.cffiitsTisohhhneeexx4hahivoibbaniiilttyiain,bnggalse
ededfaalfettivaacaiaaetennntdddtcoccouusrnrerrcleeeenncnttttirkkvannetlooioywwnlalsepedpdalggtyeelemooviffetilPPsgFFaotOOifvSSceoeesnnncvrveiirrarnoontnammreeeetngnltootaiacellaaetcccehhshdeemmwsieisitscthttririnyyonSiinnebddcaiictcsiaoaettndee 4toth.nhaaTtt hhtiteesissapmmveocaoisilfsatitbcle
contributions and sources. efficient to selectively apply
contributions and sources.
mitigative
strategies
to
each
section
based
on
the
specific
2. AASedllooiccmaaellniiztzeeaddndPPFFwaOOtSSerssdooauutrracceefrwwoimitthhMiiPnnCSSAeeccattniodinoo4nt4heiissr rrpeeussbippcoolnnys-siaibbvlaleeilffaoobrlreiimmrepppaoairitrrsmm,eenantst..weAAlvvaaaiislaabsbiilteee-
Sssspepeecedctciimifiofiienccn4PPt FFaanrOOedSSrwffeiaissstphheorbbnsidioioaabatclaceccfurfuomormmuutlaahMettiPooiCnnmpAmmaoiaodrndmedeleniliotnn.tggh,,eCirinonpddnuiciccbeaanltittceerlyatt-hhtaaaivttoanlliolsoaccboaafllleiizPzereFeddOpccoSoorntnsidnd,iiwtatiiaosotnnwessrewwlaliintathhdsiinnsite-
osSsruuerrmcffoatairocceene ss4ieenaddlriieemmnegreentnhtstpaaaorlloneonsnoiggbrldaaeerppfosoorrrotttfiihoomennaigoomfnfpitthatheeiurdm33eMeMnhitCC.goohtCtettraoaggntehecaeGGnnrrtaoorvavveteeiroassnghhsoeororeueflplPiisnnFteeOraaeSppapmpirnrovowxaxliaiummteaesatr.teeallnFyydi11shmmiillee
bioaccumulation or more in length
bioaccumulation
modeling reveals that concentrations are orders of magnitude higher than
modeling reveals that concentrations
of PFOS in sediment and average upstream values.
of PFOS in sediment and
water Fish
water
iinn
tehhliiisscitaarcreeoana,c,eaansstrwwaetelillloaansss ttihnheefirrsehemthmaaiatndeiexnrcoeodfefedtthhreteheddooMwwDnnsHsttrrfeieasahmmtippsoosrrutteiiooanndovofifsSSoerecycttlioievnoe4ln4,,foaarrreePFlliOikkSee.llyy ttoo
TPTeohlhiocrrliootuu2cgg,ohhnrooecuupetrtnePPtsrooaeootnlitloin22n,,sgmmianoopdfdpeisrelholiixnntihggmaaidtdteeeenxnltcytiiefi8ieee5dss%sstheeoeddfiiMPmmFeDenOnHtSt faaisesshxptthtohieessuspprurreeiismm.aaadrrvyyisssoooruuyrrccleeeveooflf
PFOS to fish for PFOS.
PFOS to fish
iinn
Pool 2, representing approximately 85% of PFOS exposures.
3. sMMuPPpCCpAoA'r'ssteppdrrobopypootssheeedddappteearr.mmiAittp--pbblaaiscsaeetddiommnaaonfnaaMggeePmmeAennttprrreeospspoposoenndsseenuttmooerPPiFFcOOalSSpiiennrmPPiootoo-llba22sffeiidsshh iiss nnoott
sauanpupdppperrprooosaatrcctahehnddbbieebnyyygoonntohfddePSSdFeeacOctttSaiio.onennA44vpipiirssloincnnoaomttteionsstnuuappolppfoocrMhrtteePemddiCsAbtbryy'sy.PPpooroooMllepto22rsoddepaadottlaaniuaatamnnnddeCrttoihhcueeanlcccipuulrerrrrdeemonntiett-sssbccaniieosententditdiffeiiccny that
dMuMeonetedtrsreoornsWVotatvWvnrvTdeqis-nPuPgltddoiiisfnsccPthhhFaaeOrrgigSemepsseanPPivrFFimrOCoeSSnnmtttotoehnPaPttoaooolhllacs22h.;ebmhheooiewswnetrevyove.bre,srM,erePPvtFFreoOOdpSSoonlrirlteeayllneieanaCssSoeeeuddcntffcirroiolomndm4oMMeoesefttrnrPoooootWVldWWe2TV.n1Py-.Pthat
aCdCroooenencsbceeennltnoorttrwaartetfiiisoosunhnlsstadioonvffitPhPseoFFrOOiymSSlpeiiavnneilrffsmii.ssehhnCaatossnthcccaellotnostsheeraasaatssiboe22nesttnoooof77bPrrsiivFeveerOvrrSemmdiiilnloeensssulyddroofinawwcnSnessewttcrarettieoaeanmrm4aoonfofdfMMsePeetotdrroioolme2WVn.WWt.VT1-PP
aiaalmrlsespooabiiienrnlddmoiiewccnaatfttieesohbtthhsaaaedttrvvttiheseeodrPPiynFFlSeOOevSScetlsiiin.notnthChe4e.onMMceeettrnrootraWWtiVWoVnT-sI-PPofddiiPssFcchOhaaSrrggiene
doesnot result in surface water and
does not result in
thesediment
the
impairment observed in Section 4.
McMoPPnCsCAiAd'e'ssr ppsrreoodppioomsseeenddt nnausummaeresiroiccuaarllceppoeefrrmmPiit-F-bbOaaSsseedddesaapppipptrerootaahccehhsffioogrrniMMfeiecttarrnoot VW(W~W8VT5T%PP) ddcoooneetssrinnboouttt ieeoxxnpploilicfciittllyy
sediment-associated PFOS to PFOS impaitment. Concentrations of PFOS in sediment consider sediment as a source of PFOS despite the significant (~85%) contribution of
sediment-associated PFOS to PFOS impairment. Concentrations of PFOS in sediment
Concusions Conclusions
2105 21 of 53
ENVIRON
ENV i R0 N
22669911..00002244
STATE_01178248
STATE_01178248
Review
Review
of
of
PROS
PFOS
IImmppaarsirommpeeannrtteiidnn
ifMrsisiMseisstiscioppppoilRRtiaivvneerrCPPoooncolcl
!22
Prepared for Metropolitan Council
aarree nnoott eexxpplilicciittllyy aaccccoouunntteedd ffoorr iinn tthhee ccuurrrreenntt BBAAFF aanndd iittss ssuubbsseeqquueenntt uussee ttoo ggeenneerraattee aa
`wwaatteerr qquuaallittyy ccrriitteerriioonn aapppplliiccaabbllee ttoo ppooiinntt ssoouurrccee ddiisscchhaarrggeess.. TThhee ccuurrrreenntt wwaatteerr ccoolluummnn--
waainnlddlppiokoeiilnnytt-b-sseoouuinrrcecfeefeddciitssiccvhehaairrnggaeed--dbbraaessseesddinaagppppirrmoopaaaccihhrmwweiinllltnnioonttSaaeddcddtrireeossnss4PPfiFFshOO. SS iinn sseeddiimmeenntt, aanndd tthhuuss.
will likely be ineffective in addressing impairment in Section 4 fish.
MFMPPOCCASA''sisn ppPrroooopploo2sseeidds iaanppcppornrosoiaasccthhentttoowddieetthteertrmhmeiinnMiinnDggHtthhfeeisnnhuutmmiesresiruicecaaalldvppieesrrommriyitt--lbbeaavsesleeddusmmeaadnntaaoggteermmiegegnentrt ooff
MDH has already evaluated the risks to human health via consumption of PFOS in isn, PFOS in Pool 2 is inconsistent with the MDH fish tissue advisory level used to trigger it.
MDH has already evaluated the risks to human health via consumption of PFOS in fish,
aanndd hhaass eessttaabblliisshheedd aann aacccceeppttaabbllee ffiisshh ttiissssuuee lleevveell ooff 220000 nngg//gg.. IInn oorrddeerr ttoo rreemmoovvee tthhee ffiisshh
ttiissssuuee iimmppaaiirmmeenntt iiddeennttiiffiieedd bbyy MMODHH,, tthhee mmiittiiggaaitiivvee ssttrraatteeggyy nneeeeddsstoto ttaarrggeett tthhoossee aaccttiioonnss
tthhiaaststuwweiillllerrveeeldduuoccfee37ffiissnhhg/ttgiis,ssswuuheeicPPhFFOOisSSfillveeevvteelilssmebbseelllooowwwe22r00t00hannngg/w/gg.h.atMMwPPilCClAAbemmeeeftfthheocodtdioovlelooiggnyyrtteaamrrgogveetitssngaa tffihissehh
impairment tissue level of
impairment.
37
ng/g,
which
is
five
times
lower
than
what
will
be
effective
in
removing
the
EEvveenn wwiitthh aann eenndd--ooff--tthhee--ppiippee ppeerrmmititttiinngg mmaannaaggeemmeenntt ppaarraaddiiggmm,, iit iiss cclleeaarr tthhaatt ppeerrmmititttiinngg
aaccttiioonn iiss nnoott rreeqquuiirreedd ffoorr MMeettrroo WWWTTPP aanndd wwililll nnoott bbee eeffffeeccttiivvee iinn rreedduucciinngg ffiisshh ttiissssuuee
cacoopnpncrceeonantrctrahatttiiohoanntss,,isaamnnoddrttehhuucssonaasddidsdtrreeensstssiwinniggthtthhaeectIiummaplpaadiiarrtmmeaenatn.nt.d UUtshseiinnMggDaaHmmofodisdihfifiiteeiddssppueeerrmamidtvittitiisnnoggry used to
Iaiddpeepnntrtioiffayyciihmmptphaaiairrtmmiesenmtn,to, raaesscwwoeenlllsl isaatssenaatwwwaatittheerra--cccotoulluaumlmdnnacctarriittaeenrridioonnthttehhaaMtt DeexxHpplifliiccsiihttllyytisaasccucceoouuanndttvssisffooorrryPPuFFsOOeSSd tiinon
sseeddiimmeenntt, aa RReeaassoonnaabbllee PPootteennttiaall ttoo EExxcceeeedd bbyy MMeettrroo WVVWWTTPP ddooeess onott eexxiisstt.
IInn ccoonncclluussiioonn,, lleevveellss ooff iimmppaaiirrmmeenntt iiddeennttiiffiieedd bbyy MMPPCCAA ((22001100)) aarree bbaasseedd oonn eelleevvaatteedd PPFFOOSS
ffSoeoucuntndidossnoo4lleeollyry iainn pSSoeertccittoioinnot4nh4effriisesohhfltgiisisssvuueeen.. fiIIsmmhppmaaoiivrtmmeemennettnitiss paaanntddtwweimilllsllaiiknkeedllyytcchooenntttiiinmnueueescttooalbbeeeforrreessPttrrFiicOctteSedd ttoo
uptake Section
uptake
aa4nnddoreealliimpmioinnraatittoiiononnthiinen rffeiissohh.f.
Multiple given fish Multiple
lliminneoessveoomff eeevvniitddpeeanntccteeerininnsddiiaccnaatdteethtthheaatttimllooeccaasllcssaooleuurrfccoeerssPooFffOPPSFFOOSS
iinn
SSeeccttiioonn 44,, eessppeecciaiallllyy PPFFOOSS iinn SSeeccttiioonn 44 ssuurrffaaccee sseeddiimmeenntt,, aarree rreessppoonnssiibbllee ffoorr tthhee iimmppaaiirrmmeennt.t.
`TiTnhhaeedpdprrroeopspsooissneegddtppheeerrimmmiiptt-a-fiforocmcueusnsete,dd aaappnppdrroomaaaccyhh,,laaatsseraaippmpplpliieeedddettoao MMmeoetrtrreoo eWWffWVeTVctTPiPv,e, iiTssMllDiikLkee-llyfyottocobubeseeiidnneeaffpffeepccrttioivvaeec.h
ttinoo auudnndddereerrssssttaiannngdd taahnneddimmmapaanniaramggeeenttthh,eeaccnoodnntmtrriiabbyuuttliaiootnenssr ioomffpttheheedemmuaullimtittouurddeeeeooffffesscootuiuvrrecceeTssMaaDnnLdd-fddoeecffuiinnseeedccooammppplperleoxxa.ch
eennvviirroonnmmeennttaall pprroocceesssseess iinnvvoollvveedd wwiitthh tthhee ffaattee ooff PPFFOOSS iinn PPooool2l2.
Conclusions Conclusions
20053
22of53
22669911..00002255
ENVIRON
ENV i RO N
STATE01178249
STATE_0].178249
Review
Review
of
of
PFOS
PFOS
IImmppaaPiirrmmeepenantrteiindn
WfMoirissMsieisstsicipnppioitRRivaivenerrCPoPuoonotcl t22
Prepared for Metropolitan Council
77 RReeffeerreenncceess
AAhhrree2nn0s0s,8,.LL.,,PYYaaramtmatsaohsrihitinatag,,beNN.f.i, aYYveieuournngog,f, pLLe.WrW.-Y.aY.n.,dTTpaaonlnyyiyfalasusuou,r,oaSS.l,.k,yHlHoocrroiii,m, pYY.,o.,uLLnaadimsn,,bPPeK.tKwS.eS.e.,nEEpbboirinnegghwhaaautuses,r, aRRn. d 2009. Partitioning behavior of per- and polyfluoroalkyl compounds between pore water and S69e7d5i.mentin two sediment cores from Tokyo Bay, Japan. Environ. Sci. Technol. 43:6969- sediment in two sediment cores from Tokyo Bay, Japan. Environ. Sci. Technol. 43:69696975.
AAmrnootpto,,teJJn.AAti,.a,lGGoaofbboaarssg,,anFFi..AcA.PcP.h.eCCm..ic22a00l00s33.i.n AAaqggueaentneiecrriifccooQQdSSwAAeRRbs.ffoorrQaaSssAsseeRssssCiionnmggbtt.hheeScbbii.iooaa2cc2cc:uu3mm3u7ul-al3at4tii5oonn potential of organic chemicals in aquatic food webs. QSAR Comb. Sci. 22:337-345.
BBeecckSkeuerl,rf, oAAnM.aM.te., iGGneterhresstimsmeaadnnin,m,enSS.t., oFFfrrtaahnnkek.,RoHH.t.er2200M00a88iaan..rPiPveeerrrf,flluBuoaoyrrrooeoouccttthaa,nnooGiieccraamccaiinddyaa.nnddEppnveeirrrffoluunoo.rrooPooolcclttuaatnnee
165.818-820. sulfonate in the
156:818-820.
sediment
of the
Roter
Main
river,
Bayreuth,
Germany.
Environ. Pollut.
BBeeccktkeherer,,mAAa.jMMo.r., sGGoeeurrrsscitemmoaafnnnin,v,eS5r..,poFFlrlrauatnnikok,n,.HH.C. h22e00m00o88sbb.p.hPPeeerrreffllu7uo2or:ro1oo1o5cc-tia1a2nn1ee. ssuurrffaaccttaannttss iinn wwaassttee wwaatteerrss,, the major source of river pollution. Chemosphere 72:115-121.
`CCoonnbddeieror,a,cJJc.MuMm,.u,lHHaotokikeve,e,?RR--.AAA..,cddrieetiWWcoalloflrf,,evWWi.e.,wRRauunssdsseeclllol,mpMMa..HrH.i.s, oBBnuucvckik.t,hRR.p.CeC.r.si22s0t00e08n8.t. [AAporrpeehiPPiFFcCCcAAoSsmpounds.
Environ. Sci. Technol, bioaccumulative? - A
Environ. Sci. Technol.
42995-1003. critical review
42:995-1003.
and
comparison
with
persistent
lipophilic
compounds.
FFuunnkFk,i,sJJh..erLL.i. es1199S55o77c..ieMtMyoov8v5ee:mm3e3e-n5nt7t.ooff ssttrreeaamm ffiisshheess iinn MMisisssouoruir.i. TTrraannssaaccttiioonnss ooff tthhee AAmmeerriiccaann Fisheries Society 85:39-57.
GGiieessEyyn,,viJJ.r.onPP...,, SKKcaia.nnnnTaaennc,h, nKK.o.l220300501:1.1.33GG9lla-ob1ba3al4l 2ddiissttrriibbuuttiioonn ooff ppeerrffluucorrooooccttaannee ssuullffoonnaattee iinn wif. wildlife. Environ. Sci. Technol. 35:1339-1342.
GGiieessTyye.,cJhJ..noPP.l.,, KK3a6a:nnnn1aa4nn6,,4-KK.1.522200A0022.. PPeerrffliuuoorroocchheemmiiccaall ssuurrffaaccttaannttss iinn tthhee eennvviirroonnmmeennt,t. EEnnvviirroonn.. SSccii. Technol. 36:146A-152 A.
GGoobbaass FF.AA.PP..CC,, KKeellllyy,, BB..CC..,, AAmrnoolt,, predicting the bioaccumulation
JJof.AA.P. O22P00s0033.i.
tQQeururaenastntirttiitaaalttiifvvoeeodssttwrrueucbcttsuu.rree-G-aaSccttAivvRiittyyCrroeemllaabttioiSoncnsishhii2pp2ss:3ffo2or9r -
3predicting
336.
the
bioaccumulation
of
POPs
in
terrestrial
food
webs.
QSAR Comb Sci
22:329-
GGoobbacashs,e, mFFi..cAAaP.P.lC.Ci.. aq11u999a93t3.i.c AfAommoododwdeeelblsff:oorrAppprrpeelddiiciccattiiningogntththoes LbbaiokiaeocOcnautmacriuocla.tuioEmncoouoflfhlMhyoydaddrerotolppihho6oo8b:bin1icc-1oo7.rrggaanniicc chemicals in aquatic food-webs: Application to Lake Ontario. Ecol Model 69:1-17.
HHiiggggSiionniss,,TCCe.PcPm..,oLL.uutt4hhyy0.,7RR2G.5G.1.722200500656.. SSoorrppttiioonn ooff ppeerrfflluuoorrinnaatteedd ssuurrffaaccttaannttss oonn sseeddiimmeentn.t. EEnnvviriroonn.. Sci. Technol. 40:7251-7256.
HHiiggggpiiennrss,f,uCCo..rPPo..c,,hMMecmcLiLeceaooldds,, iPPn..8sB.e.,,diMMmaaeccnMMtasnaunbsyu-stS-hSpepeaenqncuceaertri,,cLLoA.lA.i.,g, oLLcuuhttahhysy.t,eRRL.uGGm..br22i00c00u77l.u. sBBiviooaaarciceccguuammtuuulsalattiioonn ooff
Environ. Sci. Technol perfluorochemicals in
Environ. Sci. Technol.
41:4600-4606. sediments by the
41:4600-4606.
aquatic
oligochaete
Lumbriculus
variegatus.
HHoouudFdreea,,ctMMi,.o,naCCtzziuuobbn,,aGGn.,.d,SbSmimaolaa,cllc, uJJm..MuMl.,a,tBBiaoacnckkouufss,p,eSSr.,.f,iWWuoaarnongog,c,tXXa,n.,eAAslluaaleefeeo,,naMM.t,.e,M(MuPruFi,rO,SDD)..CCi.s.GGo.m.er22s0000in88a. Lake
Ontariofood web Fractionation and Ontario food web.
Environ. Sci. Technol, 42:9357-940. bioaccumulation of perfluorooctane sulfonate
Environ. Sci. Technol. 42:9397-9403.
(PFOS)
isomers
in
a
Lake
JJoonneeTssowMMt.aJ.Jn,.d, rSSittvuueararrattnLId.GG.f.lo22o00d0p08l8a.i.n.LLaatEteecrroaalllommgyoovoefmvFreeenstohmowffaccteooermmnmmFoitosnnh c1ca8ar:rpp17((-CC6yy2pprriinnuuss ccaarrppioioL.)L) iinna laalarrggee lowland river and floodplain. Ecology of Freshwater Fish 18:17-82.
References References
Boiss 23 of 53 22669911..00002266
ENVIRON
ENV i RO N
STATE_01178250
STATE_01178250
Revoif PeFOwS
Review of PFOS
IImmppaaPiirrmmeepenantrteiindn
WfMoirissMsieisstsicipnppioitRRivaivenerrCPoPuoonotcl t22
Prepared for Metropolitan Council
KKwwacaiidniikjak,q,uCCa.tJ.iJ.c.AAs.FFys.,,tKeKomorsyryttia~nrr,t,hPPe.,.,NeKKtohoeeerlmllaamnndass.,nAAs.EA,An.v.ir22o00n11.00..SciDD.iissTtterrciibhbnuuottilio,onno4of4f:pp3eer7rf4fll6uu-oo3rr7iin5na1atteedd ccoommppoouunnddss in aquatic systems in the Netherlands. Environ. Sci. Technol. 44:3746-3751.
LLiinn,, wAAa.YsYt..e, wPPaaatnneccrhhraaennagglaammm,e, nSS..CpC.l,.a,ntCCsiiooauun,,dPP.d. owHHiniggshhtrlleeevvaeemllssrioovffeprpseerrpffolulsuoerroogccrhheeaetmmiiiccsaakllssoiinnloTTcaaailiwwaaaqnun'a'sstic
ecosystems. Chemosphere wastewater treatment plants
ecosystems. Chemosphere
80:1167-1174. and downstream
80:1167-1174.
rivers
pose
great
risk
to
local
aquatic
MMaalliiFnnilsslkkeytys,,. MM.U.OD.S.E2P200A00992..00CC8oomNmpaatpriaaorbnaiablliilFittyoyraaunnmddoSSnttaaCnnoddnaatrrdadimizziaanttaiionontnsoofifnMMFeietsthhh.ooddPssorffotoriraPPndFF,CCOAArnenagalolyynss.iiss iinn FFiisshh
November 2-5. Fillets. USEPA
November 2-5.
2009
National
Forum
on
Contaminants
in
Fish.
Portland, Oregon,
MMaartriptinen,r,fJJlu.WWc.r.i,nMMaiaaebdburuayrcy,i,dSSsiA.An,.,juSSvoeolnlooimlmeoronan,i, nKKb.RoRw.,, rMMouuu,itr,(DDO.n.CCc..oGGr..hy22n00c00h33uaa.s. myDDkiiieesttsaa)rr.yy aaEccnccvuuimrmounul.alattTiioooxnnicoooflf.
Chem. 22:189-195. perfluorinated acids
Chem. 22:189-195.
in
juvenile
rainbow
trout
(Qncorhynchus
mykiss).
Environ. Toxicol.
MMaartrdtiiinns,,tJJi.bWWu.t.i,oMMnaaobfbuuprreyyr,,uSSor.AAi,.n,aSStoeoldloomamcooinnd,s, KKinR.R.r.,a,iMMnuburoir,w,toDD.u.CCt..GG(..On22c00o00r33h5by..ncBBhiuioosccoomnynckceiensnst)rtr.aattiioEonnnviaarnnodnd.ttiissssuuee
Toxicol. Cher. 22:196-204. distribution of perfluorinated
Toxicol. Chem. 22:196-204.
acids
in
rainbow
trout
(Oncorhynchus
mykiss).
Environ.
MMaartrftiionn,o,dJJw.WWe..b, WWfhrhiotimtttleLe,a, kDDeM.M.On,.,taMMruiuori.r,, DDECn.Cv.iG.rG.o.n,,. MMSacabib.uurrTyye,,cSSh.n.AAo..l 22300800:445.3. 79PP-ee5rrf3fll8uu5oo.rrooaallkkyyll ccoonnttaammiinnaannttssiinn aa food web from Lake Ontario. Environ. Sci. Technol. 38:5379-5385.
MMiinnnsScs,i,. CC5.2KK,. 111489399955.-.15AA08IlI.omleotrmyoeoffhthoormmeye rraannggeesisizzee iinn llaakkee aannddrirviveerrffiisshheess.. CCaann.. JJ.. FFiisshh.. AAqquuaatt. Sci. 52, 1499-1508.
MMoorrogngalnainTnTe.. (a220c00c06e6.s.seMMdoorOrocontnoeecbchehrryry3s,soo2pps0s,1,0)UUninverisityvoofefMMircichhisiggaainnAAntniimmyaallDiDvievresristityyWWeebb.. AAvvaaiillaabbllee ~ho.nittlipnt:e///a(anaicmncaielsdmsiveaedlrsOdityci.tuouvmbmeemmrrzz3s.,uuim2mi0tci1chy0h),:eedduu//ssittee/a/caccocuonutsn/ti snffoorrmmaattioino/Mnoorroonnee cchh ry~ sosps. hhtimml.
MMPPCCCAoA.n.taMMmiiinmnneaestsiooottnaaiPPnooMllilluuntntiieoosnnotCCaoo,nnttrProohllaAAsgegeenOncncyey... 22R00e00p66.o. rIItntnovveSesesttniigagaattetiiooEnnnvoofifrPPoeenrrmffleluunootrroCocochmhemeimmtiictcaealel.((PPFFCC)) Contamination in Minnesota, Phase One, Report to Senate Environment Committee.
MMPPCCPArA.o.teMMcitiinnonnneessoofottWaaatPPoeolrlllsuuttoiiofonnthCCeoonSntttarrtooell.AAggeennccyy.. 22000088.. CChhaappeerr 77005500,, WWaatteerr QQuuaalltityy SSttaannddaarrddss ffoorr Protection of Waters of the State.
MMPPCCPAeA.r.fiMMuioinnrnnoeceshsoeomttaiacPPaololsllluuitntiiofoninshCCoaonnntdtrrooWllatAAeggree.nnccy2y.0.0922.00110&0..MaMMricissshsiis2sss0ii1pp0ppii RRiivveerr PPooooll22 IInntteennssiivvee SSttuuddyy ooff Perfluorochemicals in fish and Water: 2009. 8 March 2010.
MMPPCCStAAor--CmCrwaraatnneeer,, PJJo..LLn.daaSnnedddHHiemenennnnetesss,,frSS.o. m22t00h11e00.M.inAAnssesaspeeosslssimms-eeSnntt.t oofPfaPPulFF,CCMCCNoommMpeptooruuonnpddossitiiannnUUArrrbbeaaa.nn Society
UoSofSftoAEE.rnnmvviwi1rroa0ontneNmmroeePvnnteotamnaldbl eTTSoroex2xidi0ccim1ool0leoo.nggtyys
and Chemistry North American from the Minneapolis-St. Paul,
and Chemistry North American
Annual Meeting, MN Metropolitan
Annual Meeting,
Porant, OR, Area. Society
Portlant, OR,
USA. 10 November 2010.
MMuuirire,,nDDvCi..CrGo..Gn,m.,enHHtooawlwaacrrhdde,,miPPsH.tH.s.. 2200E00n8v6.i.roAAnr.reeSttchih.eerrTeeecoohtthnhoeelrr.ppee4rr0ss.iis7stt1ee5nn7tt-oo7rr1gg6aa8nn.iicc ppoolllluuttaannttss?? AA cchhaalllleennggee ffoorr environmental chemists. Environ. Sci. Technol., 40:7157-7166.
NNaakk`aaDyyeaatmmeraam,,inSSa.tFFi..o,,nSSoytfrnypnaearrrf,,luMMo.rJ.J.i.n,aRtReeeidninecero,rm, pJJo.LLu,.,ndDDeselliiinnrkktsshyye,, uAAp.pDD,e.,,r LLMiiinnsddsssitstrrsooimmp.p,iAA.R.BBi.v.er2200B1a10s0i..n. Environ
Sci. Technol, 44103-4109. Determination of perfluorinated
Sci. Technol. 4:4103-4109.
compounds
in
the
upper
Mississippi
River
Basin.
Environ.
References References
240153
24 of 53
22669911..00002277
ENVIRON
ENV i RO N
STATE_01178251
STATE_0].178251
Review
Review
of
of
PROS
PFOS
IImmppaarsirommpeeannrtteiidnn
ifMrsisiMseisstiscioppppoilRRtiaivvneerrCPPoooncolcl
!22
Prepared for Metropolitan Council
NNOOAAOAfA.f.ic22e00o00f88.R. eSSscpcrroeeneesnneiinnaggndQQuuRiieccskktoRRreeaftfeeirroeennnDccieeviTTsaaiboblnle,ess.N.atNNioOOnAaAlAAOOOceRRaE&nRRicRRaeenppdoorArttt00m88o-s-11p,,heSSreeiaaclttele,, WWAA,,
Administration Office of Response
Administration.
and
Restoration
Division,
National
Oceanic
and
Atmospheric
PaPrarrroCnC.lS.iS.n.e (22a000c02c2.e.ssLLeeedppooOmcmtiiossbmmearaccr3r,ooc2ch0hi1irr0uu)ss,, UUnniivveerrssiittyy ooff MMiicchhiiggaann AAnniimmaall DDiivveerrssiittyy WWeebb.. AAvvaaiillaabbllee ,hohni~ltitnppe:///(aaanncimciemasalsdceivdievrOseictrytos.ubimetrmy3.z, .uu2n0m1mic0zh):u.emidcuh/.seidteu//asictceo/uacnctosu/inntfsofrimnfaotrimoant/iLoen/pLoempoirsmism_maaccrroocchhiirruuss.hhtimll.
OOffffiic`ceceooonftfaEEmninvnviairrtoiononnmmegenontatalalsl HHaeneadallttahhdvHHiasazozarayrrddtAiAsssssuseeesslsesmvmeelnestnfto((rOOcEEoHHmHHAm)Ao.)n. c22o000n08t8.a.miDDnaeenvvtesleoiplnmoCeaplnimtofooferffnnfiiisasthhsport
fish: Chlordane, DDTs, Dieidrin, methylmercury, PCBs, selenium, and Toxaphene. contamination goals and advisory tissue levels for common contaminants in California
fish: Chlordane, DDTs, Dieldrin, methylmercury, PCBs, selenium, and Toxaphene.
sport
TToollllssr,,evJJi.,e,wKK.ilooCeshppeppmeeorrs--SpSahammesrs,e, 2P2.9.,; SS6ii9jjmm3,.,7DD17T.T...HHM.M.. 11999944.. SSuurrffaaccttaanntt bbiiooccoonncceenntrtartioant~-oAAn ccrriittiiccaall review. Chemosphere 29: 693-717.
UUSSEE`PPCAoA.n.ta11m99i99n33a..ntTTseefccohrhnntihicceaalPl rBBoaatsesicisstiffooonrroDDfeeBrreiivnviitnnhggicSS.eeddOiirmmgeeannnttisQQumuaslailbittyyy UCCsrriiittneegriiaaEqffuooirrlNNboroniniuioomnniPicacrOtOirtrggiaoanninicnic:g,
EPAB22.R63011 Contaminants for the
EPA-822-R-93-011.
Protection
of
Benthic.
Organisms
by
Using
Equilibrium
Partitioning.
vvaanniLLmeepeeruuowwveeenmn,e, nSSt..PsP.J.iJ,n, tSShwweaaarntrat,,lyCC.s.PiP.s,.o, vfvaanpenrdfdeleruroVVreieeneannt,e,d|I,.c,dodemepBBoooueernr,d, sJJ..in22w00a00t99e..r SSainiggdnniifffiiicschaa:nnRttesults from aiamnnpiirnnotteveerrlmlaabeboonrrtaasttooinrryythmmeeetathhnooaddlyseevivsaaloluufaapttiieoornnflussottuuriddnyya..teJJd.. cCCohhvmroopmmoatuaontogdrgs.r.inAAw11a22t1e166r::a44n001d1--f44is00h99.:. Results from
WWeests`otAonsn.s.es22s000m07e7.n.t RRReeempmeodretidaifalolrIItnnhvveeessCttoiigtgatatatiigooenn GRRreeoppvooer,trt,,MPPNhhaaSssteee.22,,JuFFnlleuu.oorroocchheemmiiccaall ((FFCC)) DDaattaa Assessment Report for the Cottage Grove, MN Site. June.
WWeestsotonn,. 22000088.. FFeeaassibibiillittyy SSttuuddyy,, CCoottttaaggee GGrroovvee SSiittee,, CCoottitaaggee GGrroovvee,, MMNN.. MMaarrcchh..
WWeestsAotfontn.e.ma22t00i00v99e..ReFFfeeiaansesimbibeiilnlit?tyy),SStCtuuoddtyytaRRgeeeppoGorrrtot vAAeddddSieetnned,duCumomttNNoao.g.e22,G, r((oPPvrreee,--DDMeeNss.iiggnnJaDDnauatataary.RReeppoorrtt aanndd Alternative Refinement), Cottage Grove Site, Cottage Grove, MN. January.
ZZuusshh`iic,,oYYm..p,,oTTuaankkdeesddaaa,n, dTT..t,,heMMiarassluuonanadagsgaai,n, tSSh..e 22T00s00u88r..umEiExxRiiissvtteeenrnccbeeasooiffnn,nooJnnapppoaoininn.tt ssCoohuuerrmcceoesoopffhppeeerrrlfeluuo7o1r:riinn1aa5tte6edd6-
1573, compounds
1573.
and
their
loads
in
the
Tsurumi
River
basin,
Japan.
Chemosphere 71: 1566-
References References
250153
25 of 53
22669911..00002288
ENVIRON
ENV i RO N
SSTTAATTEE0_101117788225522
Review
Review
of
of
PROS
PFOS
IImmppaarsirommpeeannrtteiidnn
ifMrsisiMseisstiscioppppoilRRtiaivvneerrCPPoooncolcl
!22
Prepared for Metropolitan Council
TTaabblleess
20153 22669911..00002299
ENVIRON STATE01178253
STATE_01178253
T
3
S5 E15 Eld Rle 4
5i [R2E3
833
L= E5(BE1e5lE E5el1Ee3el3EEssls [o][oEoaflegEeEiE2s8a)
g
atin ia
3_|S 3|3 3|S 3|2 3|2 3
BS3ST3
3:
RglRe RflIe Ele Rll[ReR [feReRlR |Rko
<
EEREEEEEEEEERIE/EEE:EEK ERfe
E2F lTiosaf B FR RE FF[FREFE [FCEERR
u
2 [2E
2
i
g
i3 le lo aN 0 HHEEH 38a
g: EESaEfiEaliEatESatESaat
$i
E Ee E aige E ree
:
1S| S| 3|3S| S| :'3S_ISdi
: feERRREEM
8s Is Is Is Is
Is [sf
~0
0
0
28
B|z ellSEsRo EEo Eko
i
FEE ER EE
HEH
5
<o2lfi: 8 --
5
3a3
SSHEEETH IE2E13R8E18 I3E4E3 i] | 8s35f3iss
22669911..00003300
stare or7s254 STATE_01178254
$ fis
5 Es3e
z sii
35:
3 ECE
g 3g885E3F
$ Boop 3 583,38588
EE:
gt s 22E:58
2 gE3sgtt
938:
S2
2
s225e.s8
g5 32esf:ti3et
3 sigs
2 gs3a8giss:
g cis:2
32 ZPE 4a82E 8H%S
5 2 g38s
iF gil:
gf esis
t i, 01 EEE
Z! wii 35 82a
Em ZSHlfi: HfgeagigrzReiEgeike:ls,3 giCEfB ToPiE:ns3s%
wl}
2
22669911..00003311
dg
33
~8
stare_01178255
STATE_01178255
g
IEEEEEE EEREEEEEER
8
rE
EEE EE HEE EE EEE EEE EERE
8
53 82 85515]l slSl lols cle els = sls) |[5[Elelelel lle
i
EEE EEE SEEREEREEE BNSEEEESEE
:
~
0000000000000000000000000 0000000000000000000000000
~
i ied
0000000000000000000000000
RRR
qa
3 i]
| Hill 1 [IT
i
z
33g
gs | 3s
i 5 E53
G2f 823 -- 2 E3
Ha
38<35]]
0000000000000000000000000 0000000000000000000000000
201050 21020 120|0]00 2[ 0|020 ]20[0 [0 210]00|00 2[0 < 010 2]00
SEDE8E0AAAATRCEAC 0EI0200
EE SEF O0
0000
0000
000
8
22669911..00003322
EEEIEEEE state_on7a2s6 STATE_01178256
EEEEEREERRE
2E] E2E2)EEE] REENNE HEEEENEENNE
EEEEEEERE
LihaEg slslEslslE] 1S
2E g
~ o
EH IEE12E 121202H 020212EE 00E00E 00H 0E8E0H00E1E E2E10E1E0
2 STE
=: |B
o<|li
5:
lol
1853] lel! 38[EI5/8!
22669911..00003333
sate 01178257 STATE_01178257
ees
IRIE
ZE ]
eg
ERE
g
FERRE Em nsng Lf (TEER
se
iq3| E0H:
wld
22669911..00003344
$58
28655
STATE_01178258
: g
i 3i:
3 :: 2
2
2
si35
2 a2
g 3:
gf
T
g3
Ei w2& 35
S: i gE l&dt
HHii gBeaegceiEeika:c Cgfi
wi
4
22669911..00003355
:$s3
sate 0178259 STATE_01178259
,
&
z5
=&
z
=
3
EEE [RR
EEEE fg [Ig28
its l[igF e |TEF
2 Z2E Eg]
gii iEofelicl
H$8i5H3
g!.8
i
z
EL CHUUEE f i3
gls Is [5 |slslsl
les}
0 0 000~
~
~
O0
0 0 0000
0
0
O0
: iF CR 8
EE ls |e feels | ls [Eg]
Egil I
EES
EE
o2f: 8
Hi ig
A
10
oll olols elelz [2 [2
8 [88Es 5s Fs
55p3o
c88Es
22669911..00003366
srare_o117260 STATE_01178260
; i: 25E3d
Eil Euf i
fost
: i] $ 2ss9s3:%
FEHE]
ggE 2BEsE:F
[RH
5 58:8
ist gist
5 2g8e:l5s
Efaeills
HEfHagE:
PFs :R ofsigF1 EEeiEd
FH] 8 Hi
$ 8858
Z|$ WEE Es2
SPogi iE npir
EfOff 8Bf5Rai2Rs:Ee:
0SIE fEsiztyel gi H8E3 R
wl}
22669911..00003377
` sveonren STATE_01178261
Table 4. Fish bioaccumulation model for Sections 1, 2, 3, and 4 upstream of 3M Cottage Grove.
mp inemssZtz iuitsse assssistiAniYit [MWeeaassuirreeda [WWatateerr PPFROOSS] pFe m eSL ote o Measured [Sediment Fale =Sm PFOS]
PT ~i~ti~n
Wat
4.5
i
ng/L
fee i Average
CoTf
wwaatteerr
ssaammpplleess
iinn
SSeeccitioornss
11--44,,
upstream of Cottage Grove.
Sed
0.69 ng/g, dw Average of Section 3 and 4 surface
sediment samples upstream of Cottage
Grove.
i Table 1
Table 1
Total organic carbon (OC'~ TOC in sediment
ereEsE Biota-Sediment
Accumulation Factor
i (BSAF) 2Bioaccumulation factor
(BAF)
viat|on BSAF
BAF
me Bioconcentration Factor BCF
0.01 g, OC/g, dw
a = Organic carbon not measured or data
unavailable for sediment samples from Pool 2 investigations of PFOS in sediment. 0.01 i.e., 1% TOC) represents a standard default modeling assumption for sediment.
fdERLE i Ta 1.22 g, OC/g,
ww
i Lab-derived steady state estimate with invertebrates and spiked sediment.
i Higgins et al., 2007
TTET , 0.32 kg prey, wwfkg 3redator, eS ED ww 1,100 IJkg, ww
Lab-derived steady state estimate (fish carcass) for trout and PFOS-spiked food only exposure.
Martin et al., 2003a
Lab-derived steady state estimate with trout Martin et al.,
ETT] (BCF)
fish csrcass) and PFOS-spiked water only exposure.
2003b
=Ga Sediment PFOS], OC-
normalized Predicted [Sediment
SedOC Inv
69 ng/g, OC Sed TOC 84 ng/g, ww SedOC BSAF
invertebrate PFOS1
o= n[Fish PFOS] from Dietary
Sediment invertebrate) Source
Predicted [Fish PFOS] from Direct Absorption
Fsed Fwat
=527 ng PFOS;g, ww 4.9 ng
PFOS;g,
Inv x BAF Wat x BCF 1,000 g, wwlkg, ww
from Water
Total [PFOS Fish]
F
ww 32 ng
PFOS/g,
Fsed + Fwat
Percentage of [Fish PFOS] from sediment
pEerceenotraFgisen Percentage of [Fish
PFOS] from water
m.e Abbreviations dw: dry weight fo. g: gram kg: kilogram L: Liter ofne ng: nanogram OC: organic carbon EE PFOS: perfluorooctane ww: wet weight
%Fsed %Fwat
sulfonate
WVV
84 %
16 %
100% x Fsed I F 100% Fwat / F
1 of 1
35 of 53
22669911..00003388
STATE_01178262
Table 5. Fish bioaccumulation model for Section 4 adjacent to 3M Cottage Grove shoreline.
T p Zz T e ae ~i~ti~n
Measured [Water PFOS] Wat
pm me Measured [Sediment
Sed
PFOS]
Fale le Sem Total organic carbon (OC'~ TOC a = in sediment
i 88 ng/L 10 ng/g, dw
0.01 g, OC/g, dw
i Average of water samples in Section 4
i Table 2
adjacent to 3M Cottage Grove shoreline. Average of surface sediment samples in
Table 2
Section 4 adjacent to 3M Cottage Grove
shoreline
Organic carbon not measured or data
unavailable for sediment samples from Pool
2 investigations of PFOS in sediment. 0.01
i.e., 1% TOC) represents a standard
default modeling assumption for sediment.
ereEsE fdE TR aLE Biota-Sediment
Accumulation Factor
i 2 TTET (BSAF) , Bioaccumulation factor
(BAF)
viat|on BSAF
BAF
me eS ED Bioconcentration Factor BCF
i 1.22 g, OC/g,
ww
i Lab-derived steady state estimate with invertebrates and spiked sediment.
i Higgins et al., 2007
0.32 kg prey, wwfkg 3redator,
ww
1,100 IJkg, ww
Lab-derived steady state estimate (fish carcass) for trout and PFOS-spiked food only exposure.
Martin et al., 2003a
Lab-derived steady state estimate with trout Martin et al.,
ETT] (BCF)
fish csrcass) and PFOS-spiked water only exposure.
2003b
=Ga Sediment PFOS], OC-
normalized Predicted [Sediment
SedOC Inv
1,006 ng/g, OC Sed TOC 1,227 ng/g, ww SedOC BSAF
invertebrate PFOS1
o= n[Fish PFOS] from Dietary
Sediment invertebrate) Source
Predicted [Fish PFOS] from Direct Absorption
Fsed Fwat
=5393 ng PFOS;g, ww 97.0 ng
PFOS;g,
Inv x BAF Wat x BCF 1,000 g, wwlkg, ww
from Water
Total [PFOS Fish]
F
ww 490 ng
PFOSIg,
Fsed + Fwat
Percentage of [Fish PFOS] from sediment
[PEorcentageeof Fish Percentage of [Fish PFOS] from water m.e Abbreviations dw: dry weight . g: gram kg: kilogram L: Liter Ifone ng: nanogram OC: organic carbon EE PFOS: perfluorooctane ww: wet weight
%Fsed %Fwat
sulfonate
WVV
80 %
=20 %
100% x Fsed I F 100% Fwat / F
1 of 1
36 of 53
22669911..00003399
STATE_01178263
Table 6. Fish bioaccumulation model for Section 4 Section 4 downstream of 3M Cottage Grove.
mp inemZsz stiie bssitisaiuei ~i~ti~n
Measured [Water PFOS] Wat
pm me Measured [Sediment
Sed
PFOS]
Fale le Sem Total organic carbon (OC'~ TOC a = in sediment
i 27 ng/L
5 ng/g, dw
0.01 g, OC/g, dw
i Average of water samples in Section 4
i Table 3
adjacent to 3M Cottage Grove shoreline. Average of surface sediment samples in
Table 3
Section 4 adjacent to 3M Cottage Grove
shoreline
Organic carbon not measured or data
unavailable for sediment samples from Pool
2 investigations of PFOS in sediment. 0.01
i.e., 1% TOC) represents a standard
default modeling assumption for sediment.
ereEsE fdE TR aLE Biota-Sediment
Accumulation Factor
i 2 TTET (BSAF) , Bioaccumulation factor
(BAF)
viat|on BSAF
BAF
me eS ED Bioconcentration Factor BCF
i 1.22 g, OC/g,
ww
i Lab-derived steady state estimate with invertebrates and spiked sediment.
i Higgins et al., 2007
0.32 kg prey, wwfkg 3redator,
ww
1,100 IJkg, ww
Lab-derived steady state estimate (fish carcass) for trout and PFOS-spiked food only exposure.
Martin et al., 2003a
Lab-derived steady state estimate with trout Martin et al.,
ETT] (BCF)
fish csrcass) and PFOS-spiked water only exposure.
2003b
=Ga Sediment PFOS], OC-
normalized Predicted [Sediment
SedOC Inv
488 ng/g, OC Sed TOC 595 ng/g, ww SedOC BSAF
invertebrate PFOS1
o= n[Fish PFOS] from Dietary
Sediment invertebrate) Source
Predicted [Fish PFOS] from Direct Absorption
Fsed Fwat
=5190 ng PFOS;g, ww 29.9 ng
PFOS;g,
Inv x BAF Wat x BCF 1,000 g, wwlkg, ww
from Water
Total [PFOS Fish]
F
ww 220 ng
PFOSIg,
Fsed + Fwat
Percentage of [Fish PFOS] from sediment
pEerceenotraFgisen Percentage of [Fish
PFOS] from water
m.e Abbreviations dw: dry weight . g: gram kg: kilogram L: Liter Ifone ng: nanogram OC: organic carbon EE PFOS: perfluorooctane ww: wet weight
%Fsed %Fwat
sulfonate
WVV
86 %
14 %
100% x Fsed I F 100% Fwat / F
1 of 1
37 of 53
22669911..00004400
STATE_01178264
ers eer Table 7. Fish bioaccumulation model applied to estimate PFOS water criterion at a given concentration of PFOS TTY in surface sediment.
Pm se ey DFOS reference dose
4uman angler body
Eve pe] C/eight
Relative Source 3ontribution Factor
RFD BW
RSC
Er= 1]er EE ee] Incidential ingestion of
IW
Units
I
8E-05
7C <g, bw
I
MPCA~ 2010 MPCA, 2010
1 0.01 Jd
Value ccnsistent with that used by MDH to indentify water body impairment and derive a fish consumption criterion for Pros (200 ng/g, ww)
MPCA, 2010 MPCA, 2010
~/ater --ish tissue consumption
fr OR] re Te | "ate
Measured [Sediment
pe| ~FOS]
CR Sod
[men] Be Frm ~ Total organic carbon (OC) TOC
3C g, ww/d
0.6~c qg/g, dw 0.01 ~, OC/g,
Average of Section 3 and 4 surface sediment samples upstream of Cottage Grove. Organic carbon not measured or data
MPCA, 2010 Table 1
n sediment
dw
unavaila31e for sediment samples from Pool
2 investigations of PFOS in sediment. 0.01
(i.e, 1% TOC) represents a standard deraulL rnodelirlg assurrlpLiurl [ul sedirnenL
fe--_-- ma] mea Biota-Sediment Ee Tre ccumulation Factor
:BSAF)
3ioaccumulation factor :BAF)
BP, AF B~,F
F ITTEE 3ioconcentration Factor
-- E _ IT-- e T -- e| :BCF)
BCF
1 22 ],OC/g,
Lab-derived steady state estimate with invertebrates and spiked sediment
Higgins et al , 2007
0.32 1,100
<g prey, a'w/kg 9redator ~'w _tkg, ww
Lab-derived steady state estimate (fish carcass) for trout and PFOS-spiked food only exposure.
Martin et al, 2003a
Lab-derived steady state estimate with troJt (fish carcass) and PrOS-spiked water only exposure.
Martin et al, 2003b
Pr e m ............................
i lO Sediment PFQS]= CO- SedOC
normalized
Sir d Dredicted [Sediment
Inv
69 qgtg, OC Sed + TOC 84 qg/g, ww SeOC x BSAF
eEmT nvertebrate PFOS] :Fish PFOS] from Dietary 'Sediment invertebrate) 3ource Dose from consumption 3f sediment-derived
Fsed Drsed
TBEe | 27 1.2E-08
qg sFOS/g, ^'w "ng/Kg*d
Inv x BhF
CR Fsed + 1,000,000 ng, ww/ng, ww BW
DFOS in fish
Allowable maximum dose Dwat
6 8E-05 "ng/kg*d (RFD - Dfsed) x RSC
:tom ingestion of water and ingestion of fish
PFOSfish consumption
Em criterion
>redicted [Fish PFOS]
Sl :rnm F)irect Ahsr~rption
:tom Water
Tr Total [PFOS Fish]
FCC Fwat
F
14~ ng/L
16C ng -~FOS/g, ~'w
187 ng -~FOS/g,
1,000,000 ng/mg x (Dwat x BVV) + ((IW+ BCF x CR + 1 ~000 ,q~ ww/k,9~ ww)) Wat x BCF 1,000 g, ww/kg, ww
Fsed + Fwat
a'w
hr) Abbreviations dw: dry weight g: gram kg: kilogram L: Liter Re: nanogram QC: organic carbon Pros: perfluorooctane sHIfonate ww: wet weight
1 of 1
38 of 53
22669911..00004411
STATE_01178265
[Enanyer]
TTaabbllee 88.. AAtlteemrnaattoe PPFFOOSS peri permit ccaallccuullaattiioonnss ffoorr MMeetrtroo..
QMMueetatrroiopp.oolBliiattasanendCCooEufunlncucioillntEEnnLvivimirriootnenmm(eeWnnOttBaaEllLSSEee)rrvviicceess ((MCCEESS)) WWaatteerr
Quality-Based Effluent Limits (WQBELs)
EERx -- [ParaValmue eUnit ts |eorw])
Plant Flow
[292 5510..0004s mmlmigtegt rads/d o(Ao DW)l|
wer ome+ [RFeriver 77Q1100 [t 5 000i 0] nmogga|o |PFoS: e $60l2|8 Background Conc. [contiuous Stgtes) | tasooool gt| | Continuous Std (cs) [WaSvtimme}um| 5500000] "no |] Maximum Std (ms) [Fina Acute Value 77000060] ng?|] Final Acute Value
4,1 97.87
oss1716
0.646317 1,1 09.08
5.0000 145.0000 85,000.00 170,000.00
mliters/d
I
mgd ng/I ng/I ng/I ng/I
(Class 2B) PFOS; S000-266
W[is----VLoilaTocsat7tieooen]l ose
[CosataVnariatm ionS1 n V co3e ors)
[C[sVSatddo r.iaoDneceveu .GamssT1 too s3e000..n 35005]74055]
Duration (n days)
30.00
ng Term Ave TTR
bul fT uss ez u4/u3o ~g T~
~ LTA 6.38
u
6.24
fT o un LTAcs ul
595.84 11.75
[LUUTssAee mLLTTsAAcs<<
LUTiAAmmss::
|TRUE] 147,884.58 TRUE
[~Q aBEB~DDaEi~lily~LMax~:. |
18556511
1,8 5 5.6 511
[T seS2n on 0.17
[oT e es Sn
0.41
uo
6.31
Mo.Av. (2x)
1,071.13
[[HCieMoxaxmMaeepaasosEnEfsfflvVa| alluue~ | 225450000.0000]]
[[PPEol#PaeEdnQaftcafaucpcaotooinrPtsEG)I | ws2oe420..006000]]
Proj Effl QuaI.(PEQ)
650.00
PEQ > Daily Max
[FEa> FAV PEQ > FAV [Reasonable Potertal Reasonable Potential
FALSE
Tn] FALSE no
Note: NOTE: Table was mofed rom a ie oblined fom WPCA. Table was modified from a file obtained from MPCA.
Tort
1 of 1
901s 39 of 53
22669911..00004422
SSTTAATTEE__0011117788226666
ENVIRON
PlTTaaanbbtllee, 99J..ulCCyo2on0nc1ce0en.ntrtraattiioonnss ooff PPFFOOSS iinn eefffflluueenntt ffrroomm tthhee MMeettrrooppoolliittaannWWasatsetewwataeterrTTrreeaattmmeenntt Plant, July 2010.
Raw Data
|
E Topor | erat a si] z |
[hussay| Thursday Thursday
7magoro| 7t2212010 7t2212010
esi PF4-1
PF5-1
|
sie 51.2 51.6
|
[mursThdurasdayy
[FFrida ay y |
7T7t7/t2m22a2w2312a/v220o001r1a10o00 | | |
AAvveerraag1ee
pmapz PF4-2
|| ss5ii1.ar4 | | s5m7.7e |
[ [sF awreFFrsry iiddaayyy | |77m77m/t2e2w33ao/!22o00tr1100oo| | AevAPvereFrr5eaa-2g1see | ms555s23.7.78s5 |
[Sa[tsuSSraawdttuurraddaaayyy | | n 7mv77//mw22w44aa//22oo00r11to00e| | AvePPeFFem45--sg33 e
|
39.2
a ae48
||
[sway Satu rd ay Sunday
|
msmor0 | 7/24/2010
7/25/2010
pres Avera1e PF4-4
a743.6 47
|
[[SSu[wnsdaSSwuuannyddyaaayy | y1 7m777m1//ss222555aa//722oo2000rr1110000c| |PPFF4ap-44rP(aFD(s4Duu-aepp4lvliisAcecavaarteteersaaagT gnneeaalylyssisis)|) |____e a4s44335a6..63 |||
[[MSounnddSSuuaannddyaayyy | | 7i77met/22si55az//22o0001t1r00o0| __| AAvPPvreFeemSras-g4gee |--53e6.26-- s5 |
[Tu[eWesdTMdunoenaseddasayyyd| a| y 77Tm//p22m67oa//22ot00r11oo00 | |
PF4-5
rraesr PF4-6
I ss45aa24..ss23 ||
[WW Weeddenneessdddaayy | nes7777m2//w228d88a7//222o000ta 111000c| y| PPFF4E-T7P(rDDauupPtpllFAiec4vaa-te7teenaagnemalayssis|)|5 se 7 5574..88 s 8||
Wednesday
7/28/2010
PF4-7 Average
56.3
S[SampalempleDDaattaa ffoorrPPeerrmmitititningg UUsseess"2
Ham PFOS Concentration
pTionpgo |si91) s|
7772//242232322//22000011110000
51.4 55.75
Tasa00 7/24/2010
7/25/2010
|si5433.e 6.65 s|
7/26/2010
TER |sis| 7/27/2010 777 I -- 7/28/2010 7 -- -- Avera1e [egian [sr | Median I------ Count amon |] Maximum
42.2 54.3 56.3 51.0 53.7
7 56
NN1O-OOTTnEEe::sampler(PF4)was operatfeodr ne week (Thursday, uly 22-Wednesday, July28),wo.
sS(1aP.aFmOmSppn)lelewessaasformoommppleetrtrhaii(tssPeFssdaa4fmm)oprwpllfaeeosrrur(o(Jupdulaelyyyras22te55(dTaahfunnorddrsdoJJaounylel.yyw22J68eu))leykwwe2e(rT2ree-hSuaaurnnsnadadlalayyyyzz,,eeJddJuiilynyn dd22uu52p)pl-.WiliccAaealtldtee.ns.eaTTsmhdhpeaelyeoo,sttJhhwueeerlryrsse2aa8amm)np;paltlleweyrrozed
faf(oPoprrpFrPP5o)FFpOrwOiaSSasataetotiApAseXXortYaYoStpSeidcAAnfsnaotalraylynftotdiiuaccarraldldsaSSeytersorvvc(iioTccrehersuserc((stSSdfiiaoddnyne,eayyJn,.u.allBByyCC2e,,2rCC-Seaacunnonavaddedaarai)y)e,bsbJyyulSSyPP2EE5I)IL.LCACIlIlMMsSSaIlmMNpSSleuussswiinneggre analyzed
22aa..yp.RpRraaowwRperdidsaaauttetlaasiswwooaaftssodpuccipcooimmsctbabaitnineednsdaesrftddoaosmppptrorlooevcvsiioddrweereearacetssfiiaonnvrggellaerenavavgaleyladtue,elrtofeohrucreottvhehreeeersicceuooslnn.tcceefnntotrmraatttiihoeonntowofof sPPaEFmOOpSSleiirnnseeffwffleuureeenntt ppeerr
averagedfor day. Results
averaged for
agencay of duplicates
a given day.
samples
were
averaged,
then
results
from
the
two
samplers
were
tort
1 of 1
H4000o1f 5533
22669911..00004433
STATE01178267
STATE_01178267
Revoif PeEOwS ImpFarmapeanreidn MoiMseitocnpeRainveCPouonc2 Review of PFOS Impairment in Mississippi River Pool 2 Prepared for Metropolitan Council FFiigguurreess
410153
22669911..00004444
ENVIRON
STATE_01178268
STATE_01178268
AREA rE a TEEra RE
3
hE
oaA
mTOT
[le FeLelsSHCC a Dee ng a]|
[51 apa
LER
[|oFl s Yfebfn i3 C i i FoeJ aYi ny LH | 3=
Ji
il a LovI gE 26 lL o
Bl a] A n[o oeLd: eaLhreaT oSnIEgis SE
Ae Rae a )T, T
|i a a gi
reY ol aT a
|--
||| 555835
| =
fi
am ha iy "5s
CTE
oll | =T
Bak
[[gTeaAeL
ne eh i IRE {| 0p
eg Ee ! lSS egueee s |i1dhl]| =5128
2)
G
$4144
vrs Eide
[ Sir NYniwNx EaSEe A aRmTLl
2
1s
oL w ie in RR |EEEiRiSi
m sop Y it |
EHEEilRlEY
rf
peizediiiifl
er ae EER
I i z| |}
o|
| | >
iz
| lw
22669911..00004455
sme ourizes STATE_01178269
]
--
J = = SE 2&.
Oa 3
NCEE po
ph
IT a NZ ; SESNEN PSC emasill
-- ea SA NNeolde tn 5
re S
RE|:
EHR
~Ef]
ge cos&sosa8ns%
Lh es \ \
ln a
i22
2
I
: AT
# SI
33
ice-a
ial 0sTET Ly Pe
na
Ss
SEY
AS SY
Sa adie
[ies noha
Ps
Pbon
R 3 y
aH SE
a
J
28
;
hv 5:
Z| 5
Re vy 3
SN$eES pes NESial 2
Se fe crm
parse hall
Ee adaa
bea ssL u TE ei
Ey
PD ATEEoLhet |di
)
[dees many 1:1:
i IE
ii
='
olf
|
rel 24 5
versa]
esoie iii] 3111 2)
ear Bin ol]
22669911..00004466
Ep -- STATE_01178270
TB
iEf 1g5a8
e--r13 SESELE
ls Te
TT] eee
iflA i
ioi m
ld <i
Cg gaia. iH
=: Li LE oe 32
F sone a eal Ee
FETTR
Io
- ambie fid RN TeA BJOdSe rhi gh Fa
*A L |S3a5?5
Sal gen no = RE
Eitan
Eye Le
i
Ge +
RE NE
aan gL
pe
|<:
Fir FATE SNE] 2
EE
ERD a
|2
0
5
WEEE
m
Liu
Bre CN
SEONG a | 5
3
:
Wis
ee
a
I SERRE ric TN
i] RC
5 Se ay i
-
5 iH El lh le EBl
Ee a ends inigi s
22669911..00004477
[p-- STATE_01178271
BEEin. Hl
774
EE Err, ]
/
g
4v4
i EEaE
C =| a ys
BE
gif --
ze
g
LatoA
8
88
gle
JI]
82
88
3
;Sa
g 8 &8 8 s HBS
rt
(695014 1
2s
mJt elsept BoEo R "Ele
E E Lgz
SE Se
NS ee | 0
ry
ia
82)
[rasa Sl
ER tsi
cf
E[ ER 7Ne er tFaas OA | ER E
EoH
ob IE
le
[EH
Hi yee a 4 aie REN Si a
[Eat Tih
es ASE a2f
SEgeaid te ne e ons R ey Ee
|
a
eb
RR
i
Sa
T a E Se
ef i RE
3!
mBqY Aha eug trp SLEa
3% 24
2 :i
sill E8
ali =
iIh]
Prd etl
:
:
'
1
2i
=|
h pBhaeddi rdii {-3cE=
pl
psn
li
$:u|[1i8ecc000[012] 1
ol]
22669911..00004488
stare_on7s272 STATE_01178272
--[
)
||
f C-- E], FS
|| e2i ERHls
| is
2
| om
|
He
|
|
o
rz
L
5
.a
5 8 5 1 EEE |
|| pei
Sy ena r 6504 (~i6u) 0_4cl msn enss!
7
;
p4
4
;/
73
od
|
iiat dus a33
=
EE
+H
2
RE s3s
Ee
52
7) {
> 3 3 ny a oi ddEy | A
=z:
S&So 3g
din
\
ap
i
0
ful LY
rHdH
:
|-
8
;
3g
shill s
HLiindl) =
Jiiki
fh Lab gE S
id i
i3
o|
SUE EE, andi
iv|[JEfecco00@:] | EI ||lw
22669911..00004499
stare on7273 STATE_01178273
-------------- oo f
3
i
EE [] oe
|_|
EEE
T>
2
?
2z
IFJILIN cam w I
233208a
|
Ll
0
=o
9H
S J3o)
I0l ~ ow
Cl
"q
L]
[0
82
o8 d so28
Qa
0>
[(7a)
52
2 [my
S2G% St 88%=
ocSkQ 8|5:
0s
E28
ge
os = =O
5S
2
o
|Z o
=] Qo Qo =] =] I=]
2 lo
Io
So
o
oIo
--
@o
o <
gi4s8 S42E
|ec |.
((~6//~6uu)) S$OO4ddd eonnssssi!Li
222 02d
Es22os2el.l >=| :[i
R EE wl fif
Ep-- STATE_01178274
22669911..00005500
|r"...
:
Sh Lr
Pfi d
SYER ne
= r Iee ee
|
3
ni
ES
Be
5
i;
:
WE La i
Fpl
Bi5
I
Ig
afl
bt
H
dol
ilbr
iit
HH
32
roIa
|
j"
ihFy
Tad a
|
0 iEdt
| spd ,2
=Jsi a3:
rt]
1i
Freranaecce
35
3
5i
8g%E gSakf
Ea Cs5s2 nHhiahlllsEtr jiiiunhpiihlfl8Sgses ih ini ! y HhigJhit
Wii ST ce Sal!
J
Be
e BREe E i
|e i
i
13
ixffac0000 2 2
soot
2691.0051
stareon7e27s STATE_01178275
Las
;
<7
#/ GFT ol
25
=i TY 1s} auf == il
gti El ( 2
Et
0%
it
ed
. gm 2s 4 EE: : = =o
23
n
hr
108 +9Besony YOY)
0
Heya
8
1
-
3&
ir > WE
E i
fi i 2 FHH
fan
hi 7
i i i
32
sBaiiiraesniscd fllE8S2
ffoo0o0O0O0O0 I
i:
8
I'[ad
oy
id
Hs Vyid
rE
fh 3vf Ml
AS a
fglacaryrdoo i7 icc.scEo80E00
i
ERE] Shi a E
fTihnidmeh geid
=
TT
HE i BH
=o
ae
EE
I=
22669911..00005522
stare owrers STATE_01178276
han
TEE
eTiee ncng cell SIE Wall iff
5 0 !
.
f
faaed 2 i TEE
i
Lo
{
CIg
=
7/ i5
on of |
3
7 :b
p5e|
C|EE ER
| ibs Of
oe ET iy
Sooeg Wade pL Rovg |
1
MITER : : i! i
[HH
ii3igicacl0i0i0s -f8
Wiles HtLleeles sd
ifi|fEls2z ;E
dill 3%
gSael.
[|2 Prrarcans=p5Fi PhAION
= Anhye . ja | Heese SEE
Bb i
4 Trin
Oita WE
[paCE]po ICeR!d
li
BT 3) i
L%
er
o
f oe.
22669911..00005533
5 22g
i:2
tlde |
: EZ) E
:
ml >
I
sate_owirsarr STATE_01178277
Ea
Roped Rsde |e? Fa YS
Ra
ig
i
i
x
IT
3
Be HE
i bes SE
ir ur
Er
4
RE
5 E ER fSe
0
1!
jIho
I
0
fh
0 jer Gr
Ca PEN i NAN foand
4 EeieFEfr
5rod Saaldl,ThE
liv are 8d]
es Ld
CIE GSE
| Ciiilaxrad-eSiiy 3
|
i]
in, i
Eaffneg
$8iiias 5
#i281000000 .2
2i
25
ghoiilleiisdi g|IBk3
f8e.c0000 ||32
= i
Th Ss
i iii|33
ills
B3e ailnull|Es8f3
H3o2
i
LF
8
T
Mo e" CHRrease
Co | ait PY LE
| oe
[
FIR
22669911..00005544
=1
=o
<I
al >7
stare onze27s STATE_01178278
sities tse ssg0: ep ET
name sso1 +- T]T :
I7EE[i|
I 1 il
;F:Hd
||
:
EL
|
E EIir ]
|
]i
EEbill
Fig
;
|
EE
ds
|fhiis. |
i]
iL i T2A
|
|
: 2::
;
a)
ra8 7
|
g
|
:
i||
8:: 3 :
|
i : .
|
|
t
||||
5 =||
|
:
i i-
|
1 | a| | |
BE iE
|
1 38 | : |
:
|_ i
Bo2
2
i
2
a| [8S Ai! EE
OER FE| |B-
Ee |
N: ea)
ipyy
lL iiorsS )
i| [
rZd a
:
:3S5i
|
iH
8 hb
|
R:
Nfyy :eg
od :
o 3 t
fig
:
2 8PI!
i$
Hi
7
s8ll=whi
zh
ol:2
i5|| |> i
te
seeress
~
--
22669911..00005555
stare_o1178279
STATE_01178279
a
-- 4 pewssio
18PON
a ----------]
panesqO
|spom
Q8
85323
-- ponesq0
38
i
g3E
i
=a
l 13PON
oo
0 g898 g038 309830g830g890g8g080 0
0
0 RI-K~
0
(.0
0 LWOb
0 F
6 0 S0
0 -
((~mvmw `'BB//BBuu)) [[Ss0044dd uqss!d4]]
------
<
as 5T Nf N |i&
yo=S
RSE6sTe8]9 S3EEBRS
Za8o
=2
9
Ny E
8558
aE Sz
*3 L D22 23 S 20 2589 Zs
S
ko]
Si
3 Be
ET gSe o2
S? E 25g8 3260
aTE
3EYa
25s
5 oO 3
2 532 E2Z0 333228 2oO 0 9o'as
5
a5
.%
oc 35
HY E4RE
oy Oo] | 838) [ec
HE IRENE 53] >| fd ggeks22s28||3|| )|=Z| | [|2B
Ev
22669911..00005566
STATE 01178280 STATE_01178280