Document 6RE6ynd5YeYkYVZDNddqVYMZ4
PCU's In Lake Michigan
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It has been established that Lake Michigan is unique in that it
contains much higher concentrations of .agricultural pesticides than the
other Great Lakes due, in part, to the large useage in the watershed in
comparison to the flushing period for the lake and to the relatively
low biomass density. Previous studies have shown that the fish from
Lake Michigan approached the FDA action levels for dieldrin iif 1969 and
that a major fraction exceeded the action levels for DDT (Roinert, 1 970).
liore recent 'cfeta (feinert, 1972) fro:,) carefully designed monitoring
*
{neinerl, 1971) indicates that the average DOT concentration in Lake
Michigan fish remained essentially the same between 1967 to 19/0 and
suggested that the levels have begun to decrease.
Although not realized in the early analyses by Reinert, other work (Veith, 1970) lias shown that the concentration of PC3's (similar to Aroclor 1254) ware great ;r than 15 ug/gm in large fish collected from Lake Michigan in 1969. thus, it is apparently in Lake Michigan rather than the other Greet -Lakes zn,,a4-i o+!n-,o potentially hazardous and persistent chemicals from our industrialized technology are mTnoncst*t crnonn,c'oennft`nraftnefdl J j* follows, then, that consideration must be given to the effect these
chemicals have on the biological commonitics sustained by Lake Michigan and the possibility of stemming or even reversing th; ;nd of increasing levels of oryanochlorine compounds in trie Lake Michigansystem.
f. Despite the comparatively hig'4 levels of DDT, dieldrin and PCB's in Lake Michigan, there is no direct evidence that the chemicals are endangering the aquatic life in the lake. The concentration of each of the chemicals appeal's to be below 10 ng/1 in the pelagic waters and 'less than, 109 ng/1 in the nearshore waters, all of -which are below the "no effect" level for the respective chemicals for most aquatic organisms. However, the lack of direct evidence of dan-aye may simply reflect, the difficulty in adequately measuring such effects in this
environment.
There is considerable indirect evidence which suggests that the buildup of oryanochlorine compounds iney be a threat to the future of the biological resources of the lake. It is beyond the scope of this introduction to review the literature concerning the pesticides and PCD's, and tiie reader is referred .to existing comprehensive reviews (Z'itko and Choi, 19/1; NUI, 1972; Qwinby, 1 972; Task force, 1 972).
In laboratory experiments Crustacea exposed to varying levels of Arocloi'0') 12~v\ in the water concentrate tiie PCB within their bodies more than 20)00.9 tines. The tissue residues may sometimes reach an equilibrium .and in Ctcnoid'A fasciatus PCB did not concentrate beyond *27,000 times despite .in additional 5-week exposure to l. 6 tig/1- AroclorOO. (Saunders, 1971). In contrast, PC3 residues in crayfish did not reach equilibrium after a 22 day exposure. PC5 concentration factors by two estuarine fisher, Laeondon ighomLqjd.-gs and I eioslosv.is rmthorns, was similar to that uoscrine-J above lor crustaceans -- about 10,009 to 50,000 times the exposure levels in water (Hansen, ct al. , 1971).
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)tLratiisonims poofrtaPCn3t ttohant okteillethdatththeosfieshacicnum11u3 lattoion4s5 doacycsu.rred at rater concen-
Also similar were the accumulation ratios of 26,000 to 56,000 for bluog . 1 i s (UDOnns n.c.rochiru.s) chronically exposed to 2-15 uy/1 of
Aroclor (a) l^.ar.d 12:.-. fathead minnows (Pimephal es promolas) chroni-
?l'n -r\>,12,2 'nd 125/1 for B n^nTh? wSfratcd PCB's
100,OjJ ana coJ,ulO times the exposure level s,. respec Li vely. Residues
f 50
'^suited from exposure for 8 months to 0
,
of PCB w*r jwmlly rzUtod to 7 ,7 7At on
Oexi poasoed in{Sttnaelliwngatearnd(5H0u,0e0k0ins- , 2u0n0p,0u0b0listhimedesdhaitgah, e1r)97t1o). which
re
fffects on Heoroduction
PCB residues in salmon eggs are apparently related to mortality of eggs. In preliminary investigations in Sweden, Jensen, Johansson, and Olsson (1S70) reported that when residues in groups of eggs ranged from 0.4 to 1.9 ug/1 on a whole weight basis (7.7 to 34 ug/g on a fat basis), related mortalities ranged from 16 percent up to 100 percent.
As indicated in Table I, Aroclor 1248 was the most toxic of the eight aroclors tested to Daphnia mr.gna in static tests, with a 3-week LC60 of 25 ug/1iter. Aroclor 1254 was most, toxic under continuous-flow conditions with a 3-week I'.CSO of 1.3 ug/1 iter. The Aroclors were more toxic under continuous-flow than static conditions, with 16 percent impairment of reproduction caused by 1.0 ug/liter Aroclor 1243.
The calculated 96-hour LC50 values for newly-hatched fathead
minnows were 7.7 ug/1 for Aroclor 1254 and 15 ug/1 for 1 242. Three-
month-old fatheads had a 96-hour LC50 of ca. 300 ug/1 for 1242.
Reproduction occurred at and below 1.8 ug/1 1254 and at and below
5.4 ug/1 1 242. Polychlorinated biphenyls were acutely toxic but
exhibited much greater chronic toxicity at very low levels, due to
their cumulative nature. Uewly hatched young were the most sensitive
life stage. Young fathead growth was also affected above 2.2 ug/1
1248 and non? survived above 5.1 ug/1 after 30 days. Young flayfish,
Jordanclla floridae, did not survive above 5.1 ug/1 1248 and did not
grow well above 2.2 ug/1.
"
The ninety-six hour LC50 values for Aroclor 1242 and 1243 with
Gammarus psondol imnaeir were 73 and 29 ug/1 iter. Survival after 30 days
was 5*3 pr*rc"cnt at 8.7 ug/1 1242 and 52 percent at 5.1 ug/1 1243. Good
-reproduction and survival of young occurred at 2.8 ug/1 1242 and
2.2 ug/1 1 248.
'
Abundant adult emergence of the midge T any tarsus dissimil is
did not occur above 5 ug/1 1243 or 3.5 ug/1 12347~The"cal cu 1 disci 3-week I.C 50 (50 percent reduction based on control -as 100 percent) for Aroclor 1254 was 0.65 ug/1 for larvae and .46 ug/1 for pupae.
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DSW 029659
STLCOPCB4013621
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Application factors of 0.10 for 12*12 and 0.15 for 1248 wore
calculated for the BCD's and Gr.mmarus. Application factors of 0.2
for 1254 and 0.1G for 1242 were calculated for fathead minnows using
newly hatched fish to obtain the 96-hour 1.C50.
.
The second generation fry from adults previously exposed to the PCB mixtures were exposed to the respective mixtures for 30 days after hatching. Preliminary data analyses indicated that 3 ug/1 of Arcelor00 1248 caused no mortality but a 20 percent reduction in the weight of
the fry. Similarly, AroclorUO 1260 caused no mortality when the fry ' were exposed to 2.1 ug/1; however, the 'weight of the fry was reduced
by 33 percent.
The residue data from the trout exposed for 27 weeks indicate
that approximately 0.55 ug/1 of Arcelor (TO 12-54 will result in 5 ug/gm of the PCD mixture in the fish (whole fish basis). The concentration in the fillet of fish exposed to 0.84 ug/1 Aroclor(R) 1254 was f 1 ug/gm. The lipid content of the fillet portion of the trout was less than two percent.
Dietery exposure to PCB seems to oe less or
to fish than exposure in water, Coho salmon (Oncorphynchus kl stitch) fed AroclorOO 1 254 in varying amounts up to 14,500 ug/kg body weight
per day accumulated whole body residues which v.-ere only 0.9 to 0.,5 of th' e `level` in the food after 240 days of dietary exposure. Growth
rates were not affected. However, all fish exposed to the highest
treatment died after 240 clays exposure; and thyroid activity was
stimulated in all except the group treated at the lowest concentration
(lichrle and Grant, unpublished data, 1971).
.
The massive trout and salmon stocking program in Lake Michigan has produced an unparalleled sport fishery and provides a valuable protein source for human food as well as animal feeds. Essential to the establishment and maintenance of this fishery is the successful reproduction of the adult fish. However, Reinert (1970) has previously pointed out that DDT and dieldrin levels in eggs are similar to those which inhibited reproduction in the studies of Burdick et al_. (1 964) and Mncek (1 958). In addition, Jensen et al_. (1970) have shown that
15 ug/gm of PCB's (lipid basis) in salmon eggs produced 50 percent mortaility and complete mortality can be expected when the eggs contain 25 ug/gm PCB's (lipid basis'). All of these data concerning the effects of organochlorine compounds on reproduction were obtained individually, and little is known of possible combined effects when the tissue contains mixtures of the toxicants.
Even though the continued-stocking of fish may maintain a food resource in spile of possible adverse effects of the residues on reproduction in Lake Michigan fish, many fish contain body burdens which make the fish unfit as a food resource for humans. The U.S. food and Drug Administration has established a tolerance level of 5 ug/gm, 6 ug/gm and 0.3 ug/g.i for DDT, BCD's and dieldrin, respectively, in food to be sold for human consumption. Since the lake supports a sizeable commercial fisucry m addition to the sport
fisher/, tiie presence of these chenicals below the "no effect" level in water may still endanger these industries due to the large partition
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coefficient for lipid/water systems. Indeed, numerous catches of
commercial fish hoi 119 shipped to markets have boon seized, and tons of largo salmon have been withdrawn from state give-away programs in Michigan because the DDT and PCB residues exceeded the 5 ug/gm concentration.
Concern has also arisen with respect to the impact the organochlorine
compounds in the Lake Michigan biota (principally fish) is having
on other animals which use this food supply. Most notably is \he
effect of Lake Michigan fish on mink reproduction in the north Central
states, before DDT and dieldrin levels in these fish were well docu
mented, Hartsough (1965) indicated that Lake Michigan fish wore .
suspected as the factor leading to poor mink reproduction. Aulerich et al.
(19/0) clearly demonstrated the fish had been the cause of the repro-" '
ductive failure. Aulerich and Rinber (1 570) found that DDT and ODD
.
did not have signif icant adverse effects on-mink. Furthermore, dieldrin
v/as lethal at 2.5 ug/gm in the food for extended periods but did not
appear to effect reproduction at twice this level during the gestation
period. Aulerich et, al_. (1971) concluded..that coho salmon per se did
not cause reproduction problems but that the disorder is associated
with other species of fish and "appears to be dependent upon the
species of fish and its environment." Finally, after the earlier
reports that PCB's were present in Lake Michigan fish, Ringer et a 1.
(1972) demonstrated that 10 ug/gm of Aroclor 1254 in coho' salmon
`
produced 71 percent mortality in mink and that a mixture of 10 ug/gm
PCB's and 0.5 ug/gm dieldrin in coho feed produced 100 percent
mortality. No kits were born alive, when the diet contained 5 ug/gm --- -
or greater Aroclor 1254 alone. This evidence clearly indicates that
the biological resources of Lake Michigan may seriously endanger
other species even though the levels of toxicants arc not sufficiently '
.great to produce a dramatic effect within the aquatic communities.
equally important is the coincidence of high levels of chlorinated
hydrocarbon in herring gull and other bird populations with reproductive
failures and subsequent population decline. Ratcliffe (1970) and
Anderson (1970) have clearly shown that major changes in eggshell
thickness have occurred since 1545 and that the phenomenon may be a
major factor in the decline, if not extinction, of many species of
birds. In general, egg shell thinning of 10 to 15 percent (relative
to pro-1940 eggs) may produce an effect in the population, 15 to 20
percent is associated with readily observable egg breakage, and 50 percent
thinning has been associated with virtually total" reproductive failure
(Risebrough et. a]_. , 1 970: ICeith et aj_, > 1 970).
,
Anderson (19/0) found the Great Lakes Herring Gulls contained the highest chlorinated hydrocarbon levels in eggs ever reported for that species, lie also found that the Lake Michigan gull, which declined dramatically in the early 1 96.0's- but recovered in the: late 1960's, had egg shell thinning which varied from nine perccmt in 1953-1956 to 10 percent in 1965. However, since 1965, the degree of thinning
DSW 029661
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STLCOPCB4013623
has decreased to eight percent in 1969. In comparison, gulls on Lake Huron and Lake Superior have exhibited thinning of seven and eight percent, respectively, and those from the east coast have remained essentially unchanged from earlier eggs.
Anderson, (1970) also showed that double-crested cormorants from
Wisconsin had 20 percent thinner eggs and produced eggs with the highest
DDL concentrations of this species from interior North America'. Golden
eagles which primarily feed on mammals do not show as dramatic egg shell
thinning as do the Bald Eagles which feed on fish. Despite the lack, of
detailed data in the literature, it is not unreasonable to suggest that
the disappearance of Bald Logies from the shores of Lake Michigan may
also be linked by correlation to the chlorinated hydrocarbons in the
food resources of the lake.
The Lake Michigan system is also unique in that the use of the
major persistent chemicals have beer, curtailed in the'watershed by a
variety of actions. Although it is likely the use of the chlorinated
pesticides in agriculture was diminishing in the late 1960's, the Lake
Michigan Enforcement Conference recommended regulatory actions on many
uses in 1963. This recommendation led to restrictions on DDT in Illinois,
Michigan and Wisconsin, including th? sale of this compound. A more
detailed summary is presented by Luebchow (1972).
.
The realization that the widespread use of PCB's has resulted in
the widespread occurrence of these potentially hazardous chemicals in the
environment moved Monsanto Company, the solo producer of PCB's in the
United States, to restrict the sales of PCB's in 1 970 and by April,
1971, only "close system" uses were able to purchase PCB's from Monsanto.
However, there is no data to confirm .the fact that PCB uscages are
significantly reduced.
'
!
As previously discussed, the FDA has placed a 5 ug/gm action level
on PCB's in food for human consumption. Moreover, on March IB, 1972,
this restriction was extended to food packaging materials. On May 2,
1972, the Environmental Protection Agency announced that all discharges
to the aquatic, environment involving PCB's will be restricted to the
lowest possible level and that the desired limit will be 0.01 ug/1
PCB's. These restrictions were re-enforced by the recommendation of
the joint task force headed by the Council on Environmental Quality
and the Office of .Science and Technology (Task Force, 1 972) which called
for all current uses of PCB's, except capacitors and transformers, to
be discontinued.,
. In summary, the use of chlorinated hydrocarbons in the agriculture .and industry in the Lake Michigan watershed over the last few decades
has resulted in the contamination of this valuable, mesotrophic body of water. Indirect evidence exists that these chemicals are having subtle detrimental effects on the species near the top of the food chain, and some of the food resources have been deemed unfit for human consumption. However, the Lake Michigan watershed has also realized unparalleled legislative action regarding the use of these hazardous,
persistent chemicals in the last two years. The following sections
QSW 029662
STLCOPCB4013624
of this report summarize the activities of the States in the Lake Michigan
watershed concerning PCh's and the results of its activities.
.
Table
The Comparative Toxicity of tight Aroclors8 (in pg/litcr)
,
to Oaphnia t.v.qna in Lake Superior Water as Determined
' ''
.'
in Static Test Conditions
' Aroclor
11
Three Week LCSiO
Confidence Limits11
. P.cnroductive In-mirment
Confidence
Confidence
* Limits
162 Limits
o
*
1221 * 1232
1242 1248 ' . 1254 \ . 1260 \ . 1202 '
12G0
ICO 158-205
125 11G-135 ' 89 85.6-92.6
72
G2.G-82.8
. 65 . 60-72.G
. 53
50.5-55.7
67
. 55.4-81
; \.\C3
56.3-70.5 .
48
45.2-50.9
2a
21.4-29.2
24 . 21.2-27:1
16 . 13.9~.10.4.
' 3! '
25.8-37.2
. 28 . . .
23.1-33.9
18
'36 27.7-46.8 ' 33 27.5-39.G ! i-
22'
'Yi 3
37-49.9 '
41
33-53.3 24
j.
253
222-288 ! ' 206 '
105-228
162
14.5-22.3 17.7-27.3 17.6-32.6
146-179
^Polychlorinated Diphenyls: Aroclor 1221-1263.. Monsanto Chemical Company, St. Louis, Mo.
k|>incty~five percent confidence limits.
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DSW 029663
STLCOPCB4013625
I'ru(jrov.s Urider way
m inoi s
Watcr samples were collected routinely at four locations in 1971 and 1972. Two sev/age treatment plants and two tributary sources were sampled during this period. The locations sampled were the Waukegan River,*Pettibone Creek, Worth Shore Sanitary District plants at Waukegan and Worth Chicago. During 1971, thirty-seven sediment samples were collected at tributary streams, rav'ines, and offshore (within tv;o miles) lake bed stations. Composite samples from fish were also analyzed during 1971 and 1972.
Indiana
In 1997, the State of Indiana initiated a water quality monitoring program.
The original sampling network included two stations on Lake Michigan.
At the present time, there are 16 sampling stations located on tributaries
to Lake Michigan. In addition, five water treatment plant intakes on
Lake Michigan are sampled as part of the program. This program provides
data that are used to measure general characteristics of Indiana waters
in the Lake Michigan Basin at important locations and to record trends
in water quality.
-
'
The following table indicates the location and frequency of the routine
sampling for PCB's:
.
Station
' Type of Sample Frequency
Lake Michigan-Hamsiond VJ.W.
Lake Michigan-WIriting VJ.W. Lake Michigan-East Chicago
11. W. Lake Michiqan-Gary W.W. Lake Michiqan-Mich, City
W.W. Ind, Harbor Canal .-Dickey P.d. Grant Calumet River-Indpl s.
B1 vd. Grant Calumet River-Kennedy
Ave.
Burns Ditch-RD-1 Burns Ditch-Pbrtoge
' Boat Yard Burns Dftch-Chrismon Rd. Trail Creek-franklin St. St. Joseph River-Autcn Rd.
Flkhart itiver-at mouth
grab grab grab
grab grab
grab grab
*
grab
grab grab
grab grab grab grab
monthly monthly monthly
monthly monthly
monthly quar terly
' quarterly
monthly quarterly
quarterly monthly non tidy quarterly
In addition to the regular water quality monitoring program, samples i effluent, from all municipal sewrgo treatment; plants in the basin will collected two times during 1973. When possible the so samples will be composited over a M-hour period.
OSW 029664
STLCOPCB4013626
This program will b3 expanded to include: the collection of samples from various industrial outfalls and runoffs from landfalls. For the most part, these samples will be collected during comprehensive 24-hour surveys of point discharges which are routinely conducted in the Lake Michigan Basin.
Michigan
'
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Michigan instituted a monitoring program for polychlorinated biphenyls (PCB's) early in 1971. The initial program consisted of a state-wide water sampling survey for determination of concentration in inland ,
Waters and tributaries to the Great Lakes. Supplementary sampling has since been conducted on stream sediments, municipal raw water intakes, groundwater drinking supplies, sanitary landfill runoffs, municipal wastewater treatment plants, industrial discharges, and fish from both inland and Great Lukes waters. Sampling is being continued on a periodic basis for establishment of trends.
Wisconsin
The Wisconsin Department of Natural Resources is surveying the waste effluents of some 55 communities in the Lake Michigan Basin. Those municipalities shov/ing significant levels of toxic materials will be investigated to determine the source.
. .
U.S. Bureau Snort fisheries & Wildlife
7~
Great Lakes Fishery Laboratory program of analysis for PCB's in Lake
Michigan fish will continue with selected .species of fisli from two
areas of Lake Michigan in 1973-74 according to the following schedule:
'
Years of
Time of
Collection
Size ' Continuous
Col 1ection Species
Site
Number of Fish
Range
Analysis
Spring Fall Fall Fall
Chubs Lake Trout Chubs Co ho
Saugatuck Sauga tuck
Saugatuck Ludington
200 30
200 30
240-280 ran 500-800 mm 240-280 ran 500-800 ram
2 3
5 6
DSW 029665 STLCOPCB4013627
l*eK*r Jft Ion
/.RKi-.cy
Co.'plrtc.i
( UI rr:t
j
Fr r t ( ne nt 1 ii fei -.w 11 on
i. Crrai
?'1 tor tuf. l'r$ron
J. Vntrr Quality Aaseosnent rro&caea
('ii the Cimt lake:. * Korthern
j.nkc Hiciiir.jn
Frof.rm of analycl.'i for palyehl.ir Jnntc J b 1 p!.e: y) s , TOT f.rd dleldrin lu Jake Michigan IK.h.
4, Toxic Substances Centaalnatioa
Lrop.rna: /i. Metal
K VC Is. C Fhth.ll/ltcs *5, bDX and dlcldtin
` 9
US 1TA - key I on V 5utvcnin;uo f.ni Analy#i Piviiion
Canada Center for Inland Water*
U.S. 1`urran of Sport Fisheries r.ni WJidMfe. Great. Lnkes fishery Lr.boratory
4 urates:
.
1, 111 Junta
7, Indiana
3, Michigan
4, Wisconsin
,,
X In five a Jaln/^t t .1 ( 1 vo yuldtr.zc m.i tonullr.at Ion to ih.i vulouu US li A *Ctiv/tlr.
X In IV?? conplete.t 9 C.rcit La> e - Cruise* employing V/vj`jir(fn V.nl*..-. to ns sea a vater quality.
X
1. x'
k. X
3. X
<4. X
'
rjncUnf.a Vtll to tjvrIl ln tl>1,, To,,c SubcffanccB f-cporc*
Wan P f-ropren for pollution detection, boat *c~m~c, And MU-lb nitci.vlt vjth infrared ond ultraviolet ..uar.r.cr to detect pollution and physical prtcf.'Sc*.
C, I'roerarj include: Water Mot ion,
Vetur CharactcrlstJca, Umology,
Lake Hydrology# end Ll'unology
Systems,
*
7* Under the Anadrcr.ous Kish Kror.rja . rcr.ee*.Ah is directed toward the
' ee.use of ilie-off.
t, *
r.creMch progr " to include mthenatlcil raJtls to describe pollutant.* In the Creot Lakes,
.9,
JVo'iotlon of all aspects of Creot luvkos research end di sscr.ir.ot Jon of ir.fotnction.
10,
Hie Sea Grant Fropr.\3 in the CjrAt Lakes area (take Michigan)
Vcot Jc Jdc-r>ediiicat luU-v.nctioo ^ On C'rrcn Lay
. Aqueous Ltwi roar.cnt al ("heals try of Fine in Luke Michigan
'
Foeticide Levels of Fitds Vintcrlng on Lake Michigoo
Uptake an>d Accusu) e. i f on of FcDutnut* by Lake Michigan Fish
Lectors Affecting llnerpy Fixat Jon in Luke. Michigan
A Cnnprehrnslve Study of the VMci Quality of Ml lunwkc*! Harbor , Mid Adjacent Lake Michigan
Survey end Analysis of Milwaukee L'aibor -- Lake Mi'cMf.An ^Lxchaiige
F-aic a
fedinento o a Source or Sink of.
MJtjor.rri In Creen Hjy
,
LiOvcnir of Heated Lf fluent 'on the Distribution ir.J ,*.hu-dpnre of LJiehts Lear tho va r.iveri: and
t L.evjun;-c!'.:c 1 ear Fo-c-r Fin:.is ou Lake
11. Le.ko Michigan Studies
U.S. Coast Guard
-
Lake. Survey Center - L'OAA
-
Matiooal Marine Fishery. Service (ICG'S) .
,
.
V.S. ecological Survey
.
International Actoelatfoa fo r Great Lake* research
University of Wisconsin
David Arr-sttong, Later Chcci stry,
uimsm
1
C, Fred Lee, Water Chcudstry LVMSM
.
Robert F.llatson. Wildlife Eiology,
r.:<s .
*
.
Mirk Mclencon, biochemistry. UWJC-3
Alfred fccetoo. Center for Great Lakes Studies, tLK'lC
Alfred F.eeton, Center for Crcat La;;.'.5 Studies, V^.Z
.
David Cutchln, Center for Great
tj-kes Studies, V^u'X
*
.
D, R, Feeney, Soil Science, UVMSX
lohn 3. Kagnuson, Zoology, irvTJSX
Vniveraity f JllcMf.uo
1?. LnVft i;i,-!itf.an Siudie-i
3J.
lfr.2 1,1 J0>1 l.f.if Kltl.it.n
1 li.I,
1 rl ri h-M locial 3ofnt Cc.rnJr-o Ion (U.S. Section)
^
Vtrc ((mill/ l.ftl-crotoiy
t. Vvltll
.
X
X Fol ) vi 11 on f urv*y vlH ir.clv.Jf a )C0: tillc district fion Duluth, .Vuv. to St. Feels, S. Y.
X Fropraja consists of darn collection investigations end studies.
X Studies include pnracltlroJcjical, pathological, and pesticide residues
35
X
VJll ue S
ratio to describe
pollution and*circulation patterns
X Lns cczfcrcaccs cooually.
X
X/
X
X x;
.X
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X rr.ployw a vessel to chcMtnl bJ(.logical and j-hyalcal p.i i aue t f r.
Also v-oul t or air.
X 7t* lupplrrcnt th-* l'p;rt and Icvpr (lent l.'i' in f.tuller. t* I'.clv'o per. t I c I dro , phtlialaicu o:ul t.'alc I'M n 1 f. .
1`Jnnl lcpovt.
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DSU 029666
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Data Summary - Lake Michigan, Open Caters and Sediments
111 inois
Sediments (<1-3 miles offshore)
24 samples, 1971
Aroclor
1242
'
1254
[lean Range
Mean.
{fringe
23.7' (;D-l'bu.l)
14.7 (2.5-46.9)
Indiana
Water Intakes 15 samples, 1973
Menn 0.02
PCB (ppb)
Range (<.0t - 0.09)
Mi chi gar. .
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RGB concentrations in drinking water supplies from 45 intakes on the Great Lakes and connecting waters and an additional 20 on inland lakes and streams have generally been less than 0.01 ppb. Limited sampling of groundwater drinking supplies in southern Michigan has indicated that groundwater has not bean significantly contaminated with PC3's.
Water Intakes
Date
Aroclor 1254 ppb
Soul!i Haven
Holland
.
Grand Rapids
Muskegon
Ludington
Traverse City
L sc an aba
Gladstone
Menoaiince
Bridgeaian
Dridgeman
St. Joseph
Benton Harbor
South Haven
-
Holland
Grand Rapid?
Kiu'.kogon
l.udington
Horthport Point
Traverse City
Id; can a ba
Cl ad stone
Menominee .
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.
3/9/71 `
4/14/71 4/14/71 3/9/71 3/9/71 3/2/71 2/25/71 2/25/71 .3/23/71 .4/14/71 5/23/72 5/18/72 5/18/7 2 5/18/72 5/18/72 5/18/72 .. 5/18/72 5/19/72 6/21/72 . 6/21/72 8/28/72 8/28/72 0/28/72
'
`
<0.010 <0.010 <0.010 <0. 010 <0.010
<0.010 -0.177 <0.010 <0.010 <0.010 <0.010 <0.010 <0.010 <0.010
<0.,010 <0.010 <0.010 <0.010 <0.010 <0.010 <0. 010
<0.010 <0.010
osw 029667
STLCOPCB4013629
Data Summary - Lake Michigan Fish
Illinois
.
Twenty-nine composite samples from five species of lake fish (yellow perch, chubs, carp, coho salmon, and alewivesjwere analyzed for PCB's in 1971. Concentrations in the composite samples ranged from 0.1 to 4.0 ppm with'an average concentration of 2.1 ppm. The highest average concentrations of PCB's by sex and species were 0.4 ppm for yellow perch males, 3.4 ppm for chub males, 2.3 ppm both carp males and females, 2.2 ppm for coho salmon males and 3.1 ppm for alewife males. The concen trations were below the-U.S. Food and Drug Administration1s interim action level of 5 ppm.
Jn 1972, fourteen'composite samples (69 individual fish) from two
species of lake fish (yellow perch and chubs) were analyzed for PCB's.
Concentrations in the composite samples ranged from 0.3 to 3.1 ppm with
an average concentration of 1.7 ppm. The highest concentrations of PCB's
were found in chub samples. Concentrations of 3.1 ppm were found in
samples of female chubs.. Samples of male chubs were similar with
.
maximum values reaching 2.8 ppm. These concentrations were also below
the FDA's interim action level.
.. .
Michigan
In 1972 Michigan developed.a cooperative State-Federal study of contaminant levels in Great Lakes fish species including lake trout, salmon, whitefish, chubs, menominss, yellow perch, alewife, carp, and suckers. Fish from Lakes Michigan, Huron, F.rie, and Superior are systematically being sampled on an annual basis to obtain information on areas where contami nants approach or exceed FDA guidelines for consumer protection. The project, developed by the State agencies in cooperation with the U.S. Food and Drug Administration and the Bureau of Sport Fislieries and Uildlife Great Lake Laboratory, will establish patterns of residues of mercury, PCB's, DDT'and dieldrin in Great Lakes fish. The following table shows the concentrations of PCB's delected in fish from Lake Michigan during the first year of this study. PCB's in Salmonids (lake trout, steel head, coho salmon, and chinoolc salmon) and chubs were shown to exceed the FDA guideline of 5.0 ppm while concentrations in othc*r species did not exceed this -guideal ine.
OSW 029668 STLCOPCB4013630
Fish Cont'd
,
. -12- '
Concent rations of polychlorinated I'.iphcnyls (PCB's) found in fish species
takrni from Michigan waters of Lake Michigait during .19/2*.
Species
Alewifc
Carp
'
Chub .
Menominee
*'
'
`
'`
BCD's by District**in ppm (sample size in p;irenthesis)
IP13 MM4 [CIS
I'.'vS *
1V17
MM3
1.7 (3)
.
' ...
m
2.3 (1) . 2-7 (6) ' 3.0 (6)
2.7 (G) *
3.2 (2) 8.5 (8) 6.5-(9)
0.8 (1) 1.2 (2)
Total f
Pish
Mean
Sampled Concert t r.-> f i
*16 2.4 4 O.G
6 3.9 2.0
19 7.0 4.2
*
3 1.1
.Perch
..
Coho Salmon
.Chinook " ' Salmon
' -
* . C.5 (1) 0.4 (5)
' 11.2 (3)
*'* 't
' * 12.4 (10)
0:5 (11)
17 0.4 0.4 3 11.2
10 12.4 4 5.0
Suckers
0.8 (6) '
0.7 (2) 1.5- (3) 1.1 (G). 17
' 1.0 0.7
-Steel head Lake Trout 1,'iiitefish
; G.O (2)
n.v (3) 6.4 (3)
'`
0.6 (3) `
3.2 (2) ' 5.7 (6) 0.8 (2) 1.1 (1)
9.2 (6)
2 20
6
6.0 7.4 4 4.0 0.7 4 0.3
* Doth from Michigan's Great Lakes Environmental Contar.iina nt Survey, 1572. ** ^oncs of Lake Michigan within Michigan Boundaries
K'-'.3 - l'ort!;ern Basin
'
'
* IV-',4 - Grand Traverse Bay
' '
MM5 8 KM5 - Central Basin
/
' |V-57 & MM8 - Southern Basin
DSW 029669 STLCOPCB4013631
fish Cont'd
U.S. RPSVJ
Po 1 vchlorinntecl piPhenyl
Approximate!)' BOO of the fish collected from Lake Michigan were analyzed for PCG mixturesresembling that of Aroclor 1254. A.generaliz^d summary of these results is presented in the accompanying table'in which the range and average concentrations of PCD's (as Aroclor 1254) is reported for 13 species of fish. The mean concentrations ranged from 2.1 ug/gm in smelt to 15'ug/gm in Chinook salmon. The data show that the larger fish such as brov/n, lake and rai nbow trout and Chinook and coiiu salmon contained PCB's at concentrations two to three times the 5 ug/gni action level established by the PDA. The mean PCB concentrations in suckers, smelt and whitefish were considerably less than 5 ug/gni and the mean concentrations in the alewife, carp, chub and perch were approximately 5 ug/gm, ranging from 4.7 to 5.9 ug/g:n. As is expected, the larger fish with greater percentage fat contain greater concentrations of PCB's.
' i. v_. Suaaary of PCB Concentration:; in - " the 19?1 Lake Michigan Fish
* . Species
*
/.lowifo Brown Trout
,
Carp
Chub - ' Chinook Salnon
Coho Enlnon
1,0): o Trout
Perch ''
' Baiubow Trout
Itcd Sucker ,
. Sr.clt " V'hito Sucker
W litef ich
l'unber of Fish Analysed
Concent:cation of PC3
(pg/cn as Aroclor 12^)
y.
Pansy'1
. )l(V.n
. ?6 : *6
.A2 ' 229 21
. 2,5 r 0.9 6,7 - 12 1.? - 11
. . ' -;34 - 0,1 9.9 " 24
. 4.? 8.8
; 5.5 , 5 5.3 ' 15
. '3.6-17
12
l-P
m .
10
.
'% ..
8,1 - 21
4.2 - 11 .# 4 0,8 - 12
. 14
* 5*9' i 10 '
16
V
2.7 - 3.2
' 35
' 0,7 - 3.2
` 90 '
. 2.1 - 11
43 1.5 - 6.1
2.9 2.1 . 4,1. . 3.5
iiv.lienter, ix'.nse of avere.sod Dcvel of j'CB of e. given rpeclca nt n
given
ins location--weight i;t;t K-.olr.
.
average of nil location:; sampled
DSW 029670
STLCOPCB4013632
fish Cont'ci
-14-
(
Hot. only does the PCB concentration vary considerably among the 13 species captured, but also the range of concentrations in a single species in the lake was generally greater than 103 percent (the range in red suckers was less; however, all were captured in the same region). Although some variation in concentration is expected because of the normal analytical precision, the tqble reveals much larger ranges which are undoubtedly due to other factors which'1imit the usefulness of mean concentrations presented. Previous research has shown (Reincrt, 1S70) that the lipid content, size of fish, season of capture and concentration in the water may effect the.observed concentration of chlorinated hydrocarbons in tissue considerably. Accordingly, the data in the table must be considered in more detail.
The concentration cf PCB's in alewives (on a fresh 'weight basis) were
greater in southern Lake Michigan than in the northern regions, although
anomolies are apparent. It is apparent that most of the alewives
captured south of a line between Saugatuck and Sheboygan contained
between 4.4 and 5.5 ug/gm PCB's whereas those caught north of the line
contained between 3.5 and 4.4 ug/gm. An interesting exception is the high
concentration, 8.9 uy/em, in the alewives from Rock Island just off the
Door County Peninsula in Wisconsin,
.
The analyses of brown trout suggested similar trends in that those from
Michigan City at the southern end of the lake contained 11.9 ug/gm while
those from Sheboygan and Gills Rock contained 7.9 and 6.7 ug/gm, respec
tively.
. .
The carp from Michigan City also had higher levels of PCB's than did those from the northern region. In contrast to the 11.0 ug/gm found in the Mi chi yo;n City carp, those from Saugatuck and Sheboygan contained 4.6 arid 1.7 ug/gm, respectively.
The PCB's in chubs in southern Lake Michigan ranged from 4.9 ug/gm near
Milwaukee to 8.1 uy/gn near Saugatuck. In general, the chubs from the
northern regions were below 5 ug/gm. The concentration of PCB's in the
five groups of chubs collected over three months near Sheboygan varied
without trend between 3.7 and 6.1 ug/gm, although the mean was below
5 ug/gm. The variation is somewhat less when the data is expressed on
a lipid basis, for example, the PCB's in the 8/27 and 10/15 chubs was
5.0 and 3.7 ug/gm--wet weight, respectively. In contrast, the concentration
of PCB's in the lipids was 23 ucj/gm and 21 ug/gm, respectively. Thus,
much of the observed variability is due to lipid content of the fish
analyzed.
;
One hundred"percent of the Chinook salmon captured in Wisconsin contained greater than 5 ug/gm PCB's and mean concentrations ranged from.24 ug/gm in Milwaukee to 9.9 ug/gm in Strawberry Creel:.
Little trend in the concentration of PCB's in coho salmon was observed with sampling region. 'Jitli tho exception of coho caught: early in 1971
near Michigan City, the mean concentration or PCB's ranged from 11 ug/gm in those near l.udington to 14 ug/gm in those near Michigan City.
.
DSW 029671
STLCOPCB4013633
fish
The PCB's in lake trout were most concentrated in the trout from Midi! gun
City, Sougatucl; and Milwaukee where riv.-.n concentrations wore generally
between if and 22. ug/qm. The trout from the northern areas such as
Sheboygan, i.udington, Grand Traverse hay and Gill's Rock were considerably
lower, and the mean concentrations ranged between 8 and 15 ug/gm.
J
The concentration of PCB's were unexpectedly high in the perch caught
near Milwaukee in that the.mean of the 10 fish was 11 ug/g:n. In contrast, perch from other regions appear to be less by a factor of two,fand those * from lower Green Bay contained only 2.7 ug/gm.
Rainbow trout' (-.'ere only caught near Michigan City and Gill's Rock. The
Michigan City trout had 12 ug/gm PCB's while those from Gill's Rock
averaged only 8.C ug/gm ['CD's.
The concentration of PCB's in suckers and smelt '..-ere generally b:
2 and A ug/gm, although the average concentration in the three white
suckers from Sauootuck was 6.0 ug/gm. '/ith the exception of whitefish
caught at Grand Haven and Michigan City, the PCS concentration in whitefish
was less than 3 uy/gm.
`-
Additional Data from U.S. SSFAU Great Lakes Fishery Laboratory
Mean FTB levels in take Michigan Fish
'
Species
Tine of Col 1 eel ion
. location of Collection
Lake Trout
Labe Trout
Coho
'
t.'hi tefish
Floater Chub
bloater Chub
bloater Chub
Tall, 1971 Fall, 1972 Fall, 1972 Fall, 1971 Spring, 1972 Fall, 1972 Fall, 1972
Gd, Traverse Bay Saugatuck, Ml. Ludington, Mi. Gd. Traverse Bay Saugatuck, Mi. S3iigatucb, Mi. Saugatuck, Mi.
h'ur.ber of
Analysts
_3 20` 10 3 20
' 12 ' 'B
Humber of Fish I
- 15 '
20
TO
15
200
1 20
60
Mean Length _([
Hca n
K'ei ght (ora'is 1
617 633 D.A.
605 256 255 229
3,033 3,199 D.A
1,390 160 177 120
Mean Lipidr, (percent)
N.H.
IB. 5 7.3
11. M
16.8 21.C 13.8
Total rCB's
11.3 20.7 10.9
2.2 8.0 5.7 3.6
II.H. > not near.jrad a.A. r- flats available
OSW 029672 STLCOPCB4013634
Data Summary - Tributaries
II1inois
Tributaries . 4 water samples, 1971
13 water samples, 1972
Aroclor (ppb)
1242
1254
Mean
Kangs
Mean
Range
0.712 (0.140-1.810) 0.110 (ND - 0.653)
0.253 0.158
(0.1 92-0.333) (0.033-0.841)
Sec! iments 13 samples from '
ravines and minor tributaries, 1971
95.0 (ND - 55.30)
32.3
(1.5-232.0)
Indiana
Tributaries
,
6 water samples, 1973
PCB (ppb)
Mean
Range
.025
{<.01 - .07)
DSW 029673 STLCOPCB4013635
Tribs. Coni'd Hi chicion
-17-
Quarterly water sampling in thirty Michigan tributaries showed that about 60 percent of the samples contained more than 0.01 ppb with one stream, the Saginaw River, having a high concentration of 2.9 ppb. Fish from the Saginaw River had PCB concentrations os high as 165 ppm. Five Michigan
streams had mean concentrations in water samples over 0.10 ppb. These were all located in the populous southeastern lower peninsula v/^iicli drains into lower Late Huron, Lake St. Clair and Lake Erie. Of the Lake Michigan streams, the Grand and Kolamazoo rivers consistently showed the highest concentrations'with means of 0.0`i 1 and 0.065 ppb, respectively.
A study of transport of PCB's to Lake Michigan on suspended solids was
conducted during March-May, 1973, on the Grand, Kalamazoo and St. Joseph
Rivers. Sediment traps .-..'ere suspended 1-2 meters off the bottom of the
rivers and collected at varying time intervals in each river ranging from
3 times weekly to once a month. Concentrations of PCS' s were notably
higher in the settleable solids from tiie Kalamazoo River than from the
Grand and St. Joseph rivers. The over-all mean for all samples were
3.52, 0.99 and 0.97 pp.n (oven-dry basis) for the Kalamazoo, Grand and
St. Joseph Rivers, respectively. This data substantiates earlier results
indicating elevated levels of PCB's in the Kalamazoo River watershed.
Extensive sampling at upstream sections of the watershed lias identified
past and present wastepaper recylcing by paper industries located in the
City of Kalamazoo as the major source of contamination to' the river.
Certain sediment deposits in impoundments on Portage Creek, a
tributary to the Kalamazoo River-at Kalamazoo, ware found to contain
RGB's at concentrations exceeding 350 ppm (dry weight basis). Leaching
from-these PC!) enriched sediments appears to be significant. Fish
collected immediately downstream from the City of Kalamazoo were found
to contain residues of PCB's, in their tissue as high as 110 ppm
(Hesse and Kill son, 1972).
,
..
An. example of one location in Michigan where monitoring and subsequent
control measures have resulted iri a marked reduction in PCB contamination
is live Saginaw River basin. Even though it is not within the Lake
Michigan watershed, the Saginaw River PCB situation is worthy of review.
Monitoring of major Great Lakes tributaries curing 1971 -1 972 identified
the Saginaw River as having the highest concentrations of RGB's of any
tributary within Michigan boundaries. Intensive sampling throughout
the river basin in search of point sources successfully isolated ten
.major points of PCB discharge to the river system. Each of the
-
industrial sources were asked to identify the cause of their losses and
to take corrective action. Control measures, in most cases, conversion
to non-PCB containing products, have proved very effective toward
lowering tiie'i'CB concentrations in the Saginaw River. A sharp PCB
dbcline at a monitoring site near tin-? river mouth war. observed in
October, 1972, and concentrations have remained low since that date. It
is hoped that a corresponding decline* in TCB concentrations in fish from
the river and Saginaw Bay will soon be observed.
,
OSW 029674
STLCOPCB4013636
Ilean ret Concentrations in W.Whipn Triluljries to U.c C.nt
1971-77.
! r
fllchipjn
Ibron
1
1
51. Cl sir trie
River
rco's
Iiu.U?2LL
I?,
' St. Joscrh Kale^aee-o
Crenel Ike step era ikinistee
Doardran
Ilk
0.013 0. OS 5 0.011 0.010
. o.ou
0.017 ' 0.01Z
Saginaw
"1.103 '
'
Css5'
flint* , Shi ewes see*
0.0H 0.07!) . 0.0 79
.
litta'.'iwessc. s'
O.KO
. Ac, Sahlc
<0.010
Thunder fey
G.0?3
ClieSoystn
0.032
Clinton
Mark
St. Clair
0.1 SO C.O'.J
0.010
<0.0)0-0.r w
o.t r, 3.r
O.PU-O.' '
<0. 0! 0- 3 . t 1.' <0.r>lt, # <00, ;
<0.010-0.t,J1
0.-.SO-?.'." I <0.0lo o.'t-;
O.OIO-.i. | '
<0. Kt 0 - C-. t * J <0.:i <0.010-0.* ft <0.010-0.f 17 <0.010-0.(.53
<0.039-0.1 v;, <0.0:0-3.ItO <0.010- 3.'. , ;i
*
Raisin Huron r.oogp2
Detroit
0.210 0.0', 2 0.470 0.020
<0 f.fP.A r r\'%
<0.010-0,0j 1 0.053-1 .('6
<0.010-3.033
^Trlhulcry to Saginaw River Tributary to Octroi t Oivrr dov.nstrorn from P-Hroit*niver s&mpHr.Q station
River Ci and
Concentre, ion, of l>Cfe*s (polychlorinated f.phi-r.yH) in the settle solids collected f. kale-jeep. end St. Joseph Riven; Sprir3 15-73. tor eerier.sen of v,,rie.!,,c v->
inns in f-pm cn an oven-dry Oasis.
-tu of -----
'
e 7v:>c- 4
' 0/?l
3/73 3/30 </? 4/1
Sarplt Oates 4/5 4/9 </l1
i/13
i/73 __ i!7/__ jm _ 5/3 5H 5/U Weens
3X Weekly [,i weekly
f'ontUy
3.21 .
1.2S
0.S1 0.C5
l.C* 0.03 1.0 <0.1
1.1
.
0.93
1.53 1.03 0.73
1.41
< 0.55
0.7-t 0.50
O.L'l
3.5 0.5) 0.00
W.can
1.43 0.77 0.!.) 0.(0 0.07. 0.53 0.V5
'' 0-53
ILcUsimod
3X
Weekly I'.ivec kly
lionlhly
0.7 27.5
2.03 <0.1
C.K3 ^.0
3:77 *
2.52 3.51
1.33
3.20
<0.1 3.77
2.54 2.11
3.07
?.53 7.01
3.11
3.59 3.75 2.1-3 4.C? 2.50 3. It W.oan < "
0.7? 3.0 7 ?.f.G 7 .( 3 3.5?
St. Joseph
3X
Weekly l-.ii v, kly i'onthly
0.03 0.1?
0.72
2.13 O.C-G 0.C5
0.95
0.75 0.07
0.0) 1.71 0.75 D.U3
1.1G 1 C.75_
15:an - 0.5 7
4 *
3)' - Sr pie cel U c led Wan., Wed. Cor,cent rat (on t-.Hid upon a 1:1
end Criday ratio of Arcelor
1212
er.d
1251.
All other concent ratiens c. .a 1 r u 1 a ted as ,'meler 1?",2.
#* -
\ ...
DSW 029675
STLCOPCB4013637
Tribs. Conl'tl
19-
|,(,l/(Mci lrotrd MfVnyls (rcD*$) in co-poi(to wj'vct
<rc,' U * Ss'0*''Jw F.nrr 21 I.'y li-ui-or Hii-im, t:j<ch 1971
V.sy >973.
C.I.U'-.L1. 1
' ' CtnciMroHcT jor Milton
3-9-71 0-10-71 P-77-71 10-70-71 0-B-72 10-13-72 10-27-72 10-30-72 11-1-72 11-2-72 11-1-72 11-0-72 1-20-73 5-24-73
' 0.450 .
. ' 0.000
` 2.V00
' 1 - ICO
- __ 0.C40
` 0.300
<0.020
-<0.020
0.091
'j
0.031
' : <0.020
... . 0.022 `
1 . ::
<0.100 0.210
0 roncintr.-itii'"'; o( pcly-thlt:' : cd hi'hcoyls 0\*'l) in fith I ioj 5o-ln.w Klur,
. t1'ctculnr ?, 1971. ( r 'JJ vet vrii',' i).
._
Snoden
)'r rch Cr.r,' CxUHS Cnl fieh
C/rp
-Cerp
.
C.up
C*i p
cJt|. 1-11 <
l.il.C c. ;*>.*. Ciw.-.tJ
i-t..iJ4
Ulx:c>iJ 5^*1 ^d*
i-tt'.ntC JO.*.!4
Vt*rnt i on
--.
.
i>rn.v/ef,r!ock L'ischiru; Ci^r.cl
to t to
* 11
n VI
to M
to
l'-S.
CusTd Static.:*
V
to I
I* It
II * M
l 11
to
to '
M f
, to
to l
**
to
to
to
H
to
to
to
to
to *
*
** w *w
to n
.1 to .
.
JI)o. .-.il-tf
Icnpth
fd
9.0 71.0 D.O 7.5
- 1.3 0.9 7.0 4.9
73.0 24.0 70.6
?4.0 21.0 77.0 73.0 `
14.0 t.o 4.5 5.0
----
10.5 * c.% y.9 4.6 l.C 1.1
17. S 13.3 13.0 ' 17.0
4.S
5.0 5.0
* '
13.7 9.0 f .7
VCb'* cjk>u l.'O 0.X .M ` 1\
10.3 *.1;
37.1 4 ),7
4*.0 70.4 n.s 4V,n 33.7 JC.(.
(..9 1
3.`. *t 1(1.9
77.0
31.1 *.\U 10.*
* C<*nctnlr*ll 4-ft I r-.rd i.poa mr.V/cIo ( thole U *h. .u 1 ether* 1-Med vipon nJJt'l* j- 11 1 i'i
QSW 029676
STLCOPCB4013638
Bata S'j'.r.ury - Discharges
] 1 ] i no i s
Sewage TreaBeen l Plants
G samples, 1971
1G sa;npl es ,. 1 97 2
1242 Moo n .
Aroclor (;>piO
1291
BpilQP
Moo n *
pa nee
1.^03 0.177
(0. 2G0-/J. 0?0) (ND-0.510)
0.300 0.1 2G
(0.130-0.999) (0. 039-0.200)
Indiana
Murric i n-al 1 tv
Michigan City Michigan City V o 1 pa i\a i so Valparaiso . Ibln.r t llobnrt llaiivnond llw.ond Last C! lie a no Last. Chicago Chester ton Chasterton Gary South Oend Mi shawaka HI; hart Goshen 1,'appanec Keudallvil 1c 1. a Grange L'igoni or Angel a Syracuse
. Date .
11/27 & 23/72
12/20 S 21/72
11/27 S 20/72
12/20 & 21/72
11/27 & 20/72
12/20 u 21/72
11/27 & 28/72
12/20 A 21/72
11/27 0 28/72
12/20 !t 21/72
11/27 28/72
12/20 & 21/72
11/27.S 28/72
3/22 & 23/73
3/22 & 23/73
3/22 ?i 23/73
_ 3/22 S 23/73
` 3/22 & 23/73
2/20/73
3/7/73
' 3/7/73
3/7/73
3/7/73
.
Flow .
- (USD)
n.o 13.3
4.0 4.0 2.7 3.1 42.9 42.3 ' 18.3 18.7 1.5 1.8 50.5 35.8 . 10.39 17.5 4.8
.900 1.2
.185 .434 .784 , 305
Aroc.lnr 1251
(WdO. .
2.4G 0.1 9 0.27 0.20 0.35 0.11 <0.1 0 <0. 10
<0.10 0.1 0
<0. 10 <0.1 0
0.38 <0.10
0.1 3 <0.10 <0.10
<0.10 <0.1 0 <0.1 0 <0.10
0.1 7 0.13
DSW 029677 STLCOPCB4013639
Discharges Coat'd
Mi chi (tan
Analyses of surface cater runoff from sanitary and industrial landfills in
Michigan surest, that these are a minor source of environmental contamination,
live of the 9 samples collected hod PCB concontrotions ranging from 0.01 to
0,30 ppb while the others contained loss than 0,01 ppb.. ' *
.
Sampling of municipal wastewater treatment plant (WV/TP) effluents throughout
Michigan in l(i71 and 197?. indicated that many l/WiT's represent major point
sources of PC 11 loss to surface waters of the State. The avcraqc PCB concen
tration of 00 effluents sampled was 2.55 ppb. While only seven of the W'./TP
effluents exceeded 1 ppb, the Bay City VJ'.ITP located on the Saginaw River had
an average of fluent concentration of 120 ppb (high of 3i0 ppb), skewing the
over-all average for all plants sharply upward. The average concentration
excluding the Boy City VP./TP was 0.56 ppb. Those WWTP's with PCB concen
trations in effluents exceeding 1 ppb were, with one exception, located on
rivers already identified as having high levels of PCB contamination.
Sampling of 53 111/TP effluents in 1 973 continues to show high PCB levels
with can average concentration of 0.52 ppb, including the Cay City plant.
The PCB discharge from the Bay City 1(./TP has been greatly reduced as a
result of control measures in industries served by the V/V/TP.
.
Sampling of sewage sludge from 57 of the 53 WV/TP's tested in 1 973 showed
Bay City to love the highest concentration of PCB's in the sludge being
removed by the treatment process. The PCB concentration in the sludge
from the Bay City plant was 352 ppm (dry weight basis) compared to a
state-wide average of 15.6 ppm.
I.
In an attempt, to identify major contributors of PCB's within municipal
WWTP systems, sampling at key points in the interceptor S3'Sterns has been
conducted within the municipalities of Bay City, lit. Clemens, Saginaw,
Adrian, Detroit and Kalamazoo. This program has been very successful.
The City of Detroit has, in fact, established an on-going sampling program
within tlveir interceptor system with analytical assistance from the State.
They are applying a new City of Detroit sewer ordinance which limits
discharges within the wastewater system to a maximum of 0.1 ppb.
A broad scale sampling of industrial discharges throughout Michigan has shown results indicative of the widespread usage of PCB's. Dearly half
of the industrial disc,barges sampled have contained more than 0.1 ppb with many in excess of 1 ppb. The highest concentration detected in an industrial discharge in Michigan has been 7,200 ppb. Automotive plants, chemical companies, -and paper product manufacturers are among the types of iivduslrfos with highest concentrations. Also industries and building complexes, including some schools end hor.pi tal s, with heat transfer systems appear to be another'major source. Industries identified ns sources of PCD pollution have been encouraged to changeover to replace ment. compounds or to clean up their operation so that discharges of PCB's do not exceed the present Michigan guideline of 0.1 parts per billion.
Michigan is currently trying to get a handle on losses from electrical tronsi '.nv.iers in leakage, servicing, and replacement within plants. It
..
....
DSW 029678
STLCOPCB4013640
Di scharcjos Cont'd
appears thot many of the; small transformer maintenance companies are
still dwM,)inr, PCI- s dov/n the drain rather than rcturniny them for
incineration.
.-
ii
i
OSM 029679 STLCOPCB4013641
i)i scharcirs Cont'd .
. -23
.
'
- '' "
' CITY
. **
'
Polychlorinated diphenyls (PCB's) in Effluents of Municipal Wastewater Treatment Plants throughout
' Michigan 1971-1972. Unless specified, all .samples ar 8 hr. composites.
. '. . ' ' ; DATE
' * . ,
'
PCB's as Aroclor 1254 (ppb)
. -r
Mean Iiipi'l
Adrian ' .
. ,. . .
.
' 3-30-72 6-13-72
. 6-1-1-72 , -9-6-72 .
1'80 ` 14.00
6.90 0.41
' 4.60 .
*,
\
Albion
3-28-72
0.44
' 0.44
Ann Arbor
'
10-14-71
0.14
..
3-30-72
<0.10
0.12
Battle Creek **
.
, *' '
-' ' .
10-5-71 3-28-72 2-21-726-6-72 6-7-72
`
0.39 0.16 0.92 0.28 0.21
0.39 *
*
Bay City
'
''
' -
.
11-4-71
11-22-71 li-23-71 3-2-72a 4-4-72 6-13-72 6-14-72 9-14-72
340.00 210.00 60.00 290.00 it ov' nKsn\S
11.00 . 25.00 . 5.70*
..
120.00
Benton Harbor -
St. Joseph
' 10-28-71' ' 4-4-72
0.99 0.31
.
0.65
Brighton Charlotte
.
'. '
, 10-5-7V 7-20-72
0.38 0.61 .
. . 0.38 0.61
Constantine
4-4-71 *
0.85
0.85
Detroit `-
Dexter
. '` " 10-14-71 . 12--20-72c
. 1-20-72 3-9-72 .
' ' 4-17-725
' 10-19-72
10-14-71
C*' 1 I
r\>
2.20 3.00 0.92 2.40 1.80 0.83 2.50**
< 0.10
1.95
,* > 0.10
OSW 029680
STLCOPCB4013642
t>ificcirq:.'rr. Conn'd CITY '
.
F. Lansing '
Fsconaba Fssoy.vi lie
Flint
> '
`t
Flushing Gladstone Grand Haven Grand Rapids
Holland
HoughtonHancock
Jron MountainKings ford
Iromvood
Jackson
' Kalamazoo
,,
..
. _
L'Anso Lansing
'
-24-
DATE
PCB's Aroclor 1254 (pph)
Mean (Ppb)
. 11-15-71 .4-3-71
0.69 0.35
13-16-71
0.29
11-4-71 3-31-72
0.21 0.28
10-5-71 `3-31-72
G-7-72 ` 6-0-72 10-5-7.2
1.30
0.92 0.47 0.30 . <0.10
10-5-72 . _ 0.52
7-21-72
0.19
*..4-4-72
<0.50
11-15-71 3-30-72
0.37 0.60
10-20-71 3-29-72
0.79 0.42
*'
' . `
. .
`
0.51 0.29 0.24 0.60-
0.52 0.19 <.0.50 0.52 0.60
3-21-72
3-21-72 4-4-72
3-20-72
11-16,71 2-21-72 3-20-72
10-5-71 ' 3-20-72 6-6-72
6-7-72 12-6-72
' ' 4-21-72
10-7-71 4-4-72
<.0.10
0.55 1.20
0.16 `
<0.10 <0.10 <0.10
1.30
0.03
0.43 0.53 0.19
<0.10
0.23 0.13
0.10 0.07 0.16 <n.io
0.66
<0.10
0.13 DSW 029681
STLCOPCB4013643
-25-
0 ischargers Cont'd CITY
-v\ . DATB .
PCB/s Aroclor 1254 ..(ppb)
Manistique
. 12-1.5-72
<0.20
Marquette
'
` 12-34-71
0.35
Mars (tall Menominee
1
*t '
- 3-28-72 12-1.5-71 _
<0.10 .0.35
'.
Midland
`
2-2-72 :
0.29
3-31-72 '
0.40
J 4-14-72
0.13
dl0-2-72
0.13
Mi 1 ford
'30-14-71 . . <0.10
Monroe
11-15-71 3t3Q-72
0.60 0.33
'
Mt. Clemens /
.'
11-15-71 3-30-72 6-7-72C 6-8-72c
7-26-72 8-2-72
' 1.40
.2.90 4.50
3.10 .9.40 10.00
'
Mt. Pleasant
` 3-31-7.2
<0.10
Muskegon
11-15-71c
.0.28
Muskegon Heights ' .
11-1.5-71
0.37
Miles
4- 4-7.2
.0.. 68
Norway
4-5-72
0.40
Ontonagon
4-21-72
<0.10 .
0,70S so
. 9-14-72
<0.10
Parchment
.*
Pcntioc (Auburn Rd.)
4-20-72
11-17-71 ' ,3-30-72
. <0.10
<0.10 0.6)
Pontiac (C. Blvd.) Por (.age
11-17-71 3-30-72 . G-G-72
6-7-72
' n-15-71d
0.20 1.30 0.15 0.16
1.90
* .
Mean <0.20
0.35 <0.10
0.35 0.23
<0.10 (5.46 5.21
<0.10 0.28 0.37 0.60 0.40
<0.10 <0.10 <0.10
0.35 0.45
1.90
OSW 029682
STLCOPCB4013644
Dischargers Cont'c! '
CITY
.
. T3ATE
Port Huron '
- * 11-15-71 3-30-72
:TC[Vs os
Aroclor 1264
.huh)
~
0.28 0.62
Mean Cone, .(ppb)
0.40
Saginaw
'
*1
110-6-71 .'3-31-72
6-7-72 *6-8-72 710-4-.72('
.1710 3.'80
' '1/80
2.00
1.30
3774
.
St. lynace South Haven Swartz Creek Three Rivers .Trenton .
.
' .12-15-72
x;o:2o
7-4-72
co/io
710-75-72
<0710
'4-4-72
<'0.30
711 -16-71
3-30-72 -36-6-72 .6-7-72
'
' '0.14 .1.10
'.0.47 ' :o.9ic
. '
<'0.20 < 0/10 '< 0/10 '<0/30
0/53
Warren-
41-15-71 3-30-72
-:o.i6 . . 07.10
- 0/13
'Wayne County (Wyandotte)
11T-4 6-71 3-30-72
(0.64 > .0.717
.0.40
White Pine Wyoming
7-21-72
:o/2
. 0/20
_ ' 41~30-72c
0.44
3-30-72
:q. ss
0.49
Ypsilanti
41-16-71 4-2-72 .
0.22 .Q..21
0.21
Ypsilanti Twp *1
T1-16-71 4-2-72
0.12 <0.10
0.11
Ypsilanti Twp i!2 *
'` f
41-16-71 ' -4-2-72
0.19 0.16
*Aroclor 124? Standard **Aroclor 1242 and 12/4 in 1:1 ratio'
fl6 hr ^10 hr c24 hr ^Grab chexane lost
GR'd3 .'"-Vi
0.17 2.63
* \
DSW 029683 .. STLCOPCB4013645
t yi' Di schargers Cont'd
Concentrations of PCB's i.u ' ! r i /, *; i fluent from
' Waste-water Treatment Plants "to
Hichlg m,
Spring, 1973. dry weight.
Concentre lions in pa its per billion
CITY
.
' DATE -
. 1242
pen's 1 754
Adrian
-.
Albion
Ann Arbor
Bay City
Battle Creek
Benton Harbor-
St. Joseph
Brighton
Cadillac
.
Charlotte
'
Constantine
Detroit
Dexter
East Lansing
Escanaba
Essexville
Flint
Gladstone
Grand Haven
Grand Rapids
Holland
.
Houghton-
Hancock
Iron Mountain-
Kings ford
Ironwood
'
Jackson
.
Kalamazoo
L 'Arise
Lansing '
Mahistique
Marquette
Marshal 1
Menominee
Midland
Mi 1 ford
Monroe
.
Mt. Clemens _
Mt. pleasant
'
Muskegon
Muskegon Heights
Niles
Nor.-.1 ay
Owosso
Pontiac (Auburn)
Pontiac (E. Blvd.)
.
Port Huron
Saginaw
Sail It Sto. Marie
' 3/7 2/22
3/1 3/1 2/28
. 2/20-
3/1 ' 3/20
5/1 .
2/28
2/28
" 3/1 j
5/2
3/28
3/1 2/22
| '
3/23
2/21
2/21
2/21
3/27 1
'
. ' .
-
3/23 . 3/27 : 2/22
2/29 3/27 4/18 3/28 3/27 2/22 2/28 3/1 * 3/8 . 5/4 3/8 3/28
2/28 2/20 2/20 3/28 2/21 3/12 3/12 3/8
3/1 3/20
*
0.34 0.25 * 3.20 <0.10
0.20
. 2.15
0.53 0.34 0.4G
0.23 0.18
\
..
.
` 0.10 <0.10 0.44 <0.10 1.05 <0.10
` 0.10
0. GO .
<0.1
* 0.22 * 0.03 0.29 0.15 0.57 <0.10
<0.10
0.29 0. HO
0.10 0.40 <0. 10 0.1 2
DSW 029684
fVt V/ J*
1742:1254 0.26
0.33
0.28 ' -
0.29 1.12 0.31
2.20 2.90
O.GO
0.54
1. P.0 0.77
STLCOPCB4013646
Qiscfmyers Cont'd
.CITY ' .
;St. lyrwtcc
'
"Three Rivers
'
Traverse City
.Trenton
.
.Warren
.Wayne County
.Wyoini mj
.Yps.il anti
'' `
Ypsilanti Twp !! 1
.Ypsilanti Tv.*p /2
-r.20-
' ;DAT E
: 3/28 '2/2) i3/7 . 12/20 :.2/27 !2/23 2/21 .;2/28 :-3/i 33/1
:mt7"
TCI)' s :m
0.31 -<T). 10 *<0.10 <0.10 '<0.10
'o.*,o . -0.22
'<0.10 <o.io
0.31
^Concentrations based on best fit of 3.standards: Aroclor 1212, Aroclor 12 !j4, or
;a;inixture of Aroclor'1242 and .1254 in a .1:1 ratio.
' ""
r
OSW 029685 STLCOPCB4013647
i)isc:hnrjurs Cont'd
.
. Concentrations of PCB's in the sludge from fifty-seven municipal
wastewater treatment plants in Michigan, Spring 1973. Concentrations
in parts per million, dry weight.
.
City
- Date
' 1242
PC B' s* 1254
Adrian
'
3/ 7 .
*
Albion . . Ann Arbor
2/22 3/1-
*.
* ..
. 1.5 1.1
Bay City
` ' 3/1
'
352.0 .
Battle Creek
2/28
'
.
2.8
Benton HarborSt. Joseph
2/28
13.8
Brighton Cadillac
' . 3/1 ' 3/28 ' '
. <0.1 . <o.i'
Charlotte
5/1 . '
6.0
Cons ti ji0
2/28
2.1 `
Detroit
2/28
32.1
Dexter- E. Lansing Escanaba
3/1 i*
5/2 '
. 3/28
. .t
#
.
3.2 4.G 5.9
Essexville
3/1
3.9
Flint
2/22
*
. 6.3
Gladstone
. 3/20
Grand Haven ,, Grand Rapids
2/21 2/21
.
Boll and
2/21 '
llowel 1
.4/26
Hough ton-llancock 3/27
" -.
4.1
4.1
11.0
0.8
15.0
5.5
r 12-12 0 254' 24.0 *
DSW 029686
STLCOPCB4013648
-30-
dischargers Cont'd
City
3ran Mountain - (
Kings ford
'
Date ' 3/23
12d 2
PCfl' 5; 1281
' 3.5
1247:1251 r
Ironwood
:3/27
' 33
Oackson Kal oiiiazoo
2/22 2/29
. 33.3
- 3/0
L'Anse Lansing Mairistique
' . 3/27
.
. 4/18 '
3/28 .
-^
t . -4.4
^ ' .
3/3 - *1/5
'
Mar(|uotto Marshal 1
3/27 2/22
. -.
2./U 3/9
,. . .
-Menominee Midland Mil ford
. .'2/28 3/1
3/8
' . *`
'
'4/2
LC^> *
*
50.5
Monroe Mt. Clemens Ml. Pleasant
_ 5/4 . 3/8 3/28
1175:0 *
(6.3
Muskegon
' 3/20 ' ...
.. 11.73.7
Muskegon Heights Miles
.'2/28 2/20
Il/I./O
* ..
//..a
Norway Qwosso
. *
3/20 2/21
'2.3
Pontiac (Auburn) 3/12
12.1
Pen Line (I*. Blvd.) 3/12
Port Huron
3/8
0,2 ' .9.2
OSW 029687
STLCOPCB4013649
~3'i -
Discha rgors Cont.'d
City Saginaw
. .
' Date 3/1
'
Sault Stc. Mario 3/20
St. Ignace
' 9 3/23
.
Three Rivers
2/21 ''
Traverse City
. 3/7
Trenton .
3/28
Warren
2/27 .
Wayne County Wyoming
2/20' ' 2/21
1
Ypsilanti Ypsilanti Twp. ;'/l
2/20 3/1
*
i i cul u I * Wp L 3/1
1242
, 0 : .'
..
RCB's 1251
5.0
ZA 1.5
4.1 . 1.0
<0.1 <0.1
.. 0.58 2.0
' <0.1
` <0.1
* Concentration based on best fit of 3 standards: Aroclor 1242, Aroclor 1254, or a mixture of
Aroclor 1242 and 1254 in a 1:1 ratio.
1254
>
DSW 029688 STLCOPCB4013650
'Dischargers Cont'd Wisconsin - 1973 Survey Results
fluivicipali ty
Adel 1
Algoma
*
Amherst
Appleton
Buttes Des Mcjrtes
Utility Dist.
Bear Creek
Berlin
Bi rnemwood
Bouciuel
.
Brill ion
.
Bristol
Brookfield
Cedar Grove
Chi 1 ton
Clintonville
Coleman
Crivitz
Dopere
Elkhart Lake
Loud do Lac
Grafton
Green Bay
.
Kenosha
Marinette
Weeneh-Menashn
Milwaukee-South
Shore
Worth fond du Lac
Racine
Shawano
Sheboygan
Surinq
`
Waldo'
West Bend
'Cone, ppb
.33 ' <. 05
<.05 .26
. .11
<. 05 <.05
.28 . <.05
.5 <.05 '<. 05 <.l 1.45 <.05
.1
<. 05 .31
<.l .59
. ' <.05 .44
<.05 <.05 2.1 1.1
.23 .34 - .4 17 ' .21 ` .23 .19
RCB , lbs.... .ooooso
. 01 o
.0001 o
.000GG
,032 .000021
.032 .067
.071
.060 .00053 .021
. 000/1
.34
.000069 .000033 .0018
DSN 029689 STLCOPCB4013651