Document o6nRoJL0boB91NRzaXQOYX7
E. P. Wheeler - St. Louis
October 21, 1968 Polychlorinated Biphenyls in the Environment
W. R. Richard WHICH
R. E. Kelly, K. D./ W. H. Hunt Scott Tucker -< <iueeny Plant R. A. Keller - RKELL C. PAybon - CPATT
. 1 J/dhns on - WJ OHN
/
Attached is a Xerox copy of a technical paper which Scott Tucker and I picked up in Washington recently. This was provided us by Donald A. Spencer of the National Agricultural Chemicals Association. Kr. Spencer requested that the paper be held "confidential" until such time as it may be published. Spencer indicated that 11 this paper were distributed one of' his principal "sources' would refuse to give him preputllcatlcn information in the future.
Risebrouuhs presentation (the attached) was made at e meeting of 20 to vO toxlclJir^Tst^lTeid na t-bhe^UnlvgTSlby of Rochester in-June. The meeting was billed'~as~~"The First Annua 1 CohJerence on Toxic ologyJ' and was underwritten 'presumably by the AEC which haB had contracts at Rochester for many years. Attendance was.by invitation only.
The meeting dee lb exclusively^ with pestiej^des with about one-third of the papers relatiL ng to mercury. As far as Spencer knows the papers, including the attached, will undoubtedly te " printed as proceedings of the conference although I suspect individual authors were given permission to publish elsewhere. ,
In s few words. Rise! rough has found PCBs alortg with chlorinated pesticides In a number of species of fish and birds along the California coast as well as in waters off Baja California and Central America. He further reports PCB in fish from the Channel Islands and Puget Sound. No PCE was detected in the , liver of tuna taken in the Galapagos Archipelago. Scott Tucker ;is going tc scrutinise the analytical aspects and particularly the validity f some ol the assumptions made by the author.
cs Attachment
Elmer Pi Wheeler
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R. W. Risebrough
.
Institute of Marine Resources
Department of Nutritional Sciences
University of California, Berkeley
ABSTRACT
.. 'Polychlorinated biphenyls, which are widely used as plasticizers and in the manufacture of many industrial products, and the DDT compounds have been found to be widely distributed in marine ecosystems of the Pacific Ocean. Marine birds contain higher concentrations than fish; tissues of the Peregrine Falcon have contained the highest concentrations which have been so far recorded. Ihe polychlorinated biphenyls have not yet been detected in samples of airborne particulates but their observed distribution in the soi indicates that they are dispersed by wind currents. Their effects upen natural populations, including man, are as yet unknown. The DDT compounds .are also accumulating in the sea and are present in highest concentrations in marine birds. Their distribution indicates that coastal areas are not the primary sources of contamination of the pelagic species. A quantitative approach to the problem of aerial transport of pesticides to the sea has been made by analysing the pesticide content of airborne particulates. The results indicate that wind transport can account for the observed distribution of DDT 'ompounds in the California waters and that the amount of pesticides entering the tropical Atlantic as fallout from the Northeast Trades is comparable to that entering the sea from a major rive:r system.
- ` REPORT
The accumulating evidence that no part of the world is now fat- of pesticide residues, the products of atomic explosions, or of a variety of industrial pollutants has produced subtle but profound changer in our concepts of remoteness, isolation, and of pur own .position in the world-wide ecosystem. There has never-'been any " question that local ecosystems may be irreversibly changed by the introduction of synthetic chemicals, whether these introductions be purposeful cr incidental. The sea is the dominant feature of the world-wide ecosystem. The accumulation of significant amounts of several pollutants in marine organisms, pollutants which are non-polar and tnerefore water-insoluble but lipid-soluble, not only eli-cibs an uncertainty about the long-term utilization cf the sea as a source of human food, but has suddently raised the. question of the ultimate survival of a number of species of sea birds. These comprise a very' large fraction of the world's wildlife and doubts about their fjture would have been considered preposterous and untenable only 3 or A years ago. .
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'Perhaps because sh kills have provided the moj. dramatic evidence of
pesticide contamination,' pesticide distribution studies in the United States
and elsewhere have frequently consisted of monitoring the levels in major river
systems [2,7]. In spite of the low solubility of chlorinated hydrocaibons in
water [4], their tendency to pass into the vapour phase [16,1,5,"6,12}, their
persistence in soils [3,10,18], and their presence in very lev; concentrations
in some streams draining areas of intensive application [17], rivers do transport
large amounts of stable, persistent pesticides to the sea. A large proportion
of these pesticides are adsorbed to silt particles which are part of the runoff
from areas of application. Thus, the Sacramento and San Joaquin rivers, which
drain the Central Valley of California, one of the most-heavily pcsticided
areas of the world, annually bring about 1,900 kg of chlorinated hydrocarbons
into San Francisco Bay [2,21], and the Mississippi xontTibutes about 10,000 kg
of the Gulf of-Mexico [7,21].
.
When the Institute of Marine Resources began a study of the distribution
of chlorinated hydrocarbons in marine fish, we expected to find, therefore,
-much higher levels in the fish from San Franci-sc -Bay-than "in -the-fish ~fTom "the
Pacific Ocean [24]. The data of Table I, however, show that collections of
'the Northern Anchovy and of the English Sole from the coastal waters contained
as much as or significantly more total DDT residue .than did the collections
from San Francisco Bay. Total DDT concentrations were highest in the collection
from waters off Los Angeles, but anchovies from the Channel Islands area off
Port Hueneme also contained significantly more residue than the anchovies of
San Francisco Bay. Since no major river system enters the Pacific Ocean from
Southern California, the source of these pesticides could not be agricultural
drainage waters. Similarly, the data of Table II, which set forth the distribution
of total DDT residues and of polychlorinated biphenyls in several collections
of marine fish, including Shiner Perch from San Francisco Bay, Hake, Jack
Mackerel and English Sole from the coastal waters of California, Bluefin and
.Yolloufin Tunas from waters off Baja California and Central America, and Skipjack
Tuna from South America and the Central Pacific, show that almost all total
DDT residue levels fall within the range of 0.2 and 2.C parts per million, vet
weight, including those in the Bluefin and Yellovfin Tunas, which are more
pelagic. Only the Yellovfin Tuna from the Galapagos region and the Skipjack
Tuna contained lower total pesticide residues.- The majority of fresh-water
fish from Wisconsin analysed by the Wisconsin Conservation Department in 1965
contained less than 0.2 ppm of total DDT residue [27]. Moreover, fish from a
stream in Wisconsin which drained an orchard where chlorinated hydrocarbons
had been intensively applied over the years contained lower pesticide residue
than did the marine fish,from the Pacific Ocean [17]. These combined observations
indicate that it is very unlikely that pesticides in marine fish have originated
only in coastal waters contaminated by local agricultural runoff.
.
Thepolychlorinated biphenyls (PCB) occurring in fish and other marine organisms' are assumed to be industrial pollutants. They are used extensively in industry as plasticizers and in the manufacture of paints, resins, electrical insulators and other products, and are available in railway car amounts. Since they a.e very stable, resist degradation, have significant vapour pressures, are poorly soluble in water and highly soluble in lipid, it is inevitable that they should be concentrated in biological systems. Their chemical structure is
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In some respects similar to that of several chlorinated hydrocarbon pesticides,
including DDT and the benzene hexa'chl^ridcs, so that it is to be expected that
they would behave similarly in their movements through ecosystems. They are
highly toxic to uau when inhaled as vapours [9,25] and the more heavily chlorinated
components have greater toxicity. Their presence in concentrations as high as .
one part per million on a wet weight basis, and several times higher on a lipid
weight basis, in species which are used as human food, should be a matter of
considerable concern. At the present time it is not entirely clear how the PCB
enter marine food chains, but they could easily be introduced into the atmosphere
as vapours during manufacturing processes, when high temperatures increase
vapour pressure, or by gradual volatilization over a period of time or even
.
when materials containing them are incinerated.
the PCB peaks had been evident in chromatograms of our extracts of marine fish and birds but remained unidentified until late in 1967. Extracts of tissues and of an unhatched egg of a Peregrine Falcon, a species whose decline and local -extinction has frequently been attributed to pesticides, contained exceptionally high amounts of the unknown compounds [22]. Attempts to identify them were unsuccessful until reports appeared from Sweden [30] and from Great Britain [14] that PCB had been identified in wildlife with the use of mass spectrography and gas-liquid chromatography, respectively. The published chromatogram [14] was virtually identical with those we had obtained from the Peregrine Falcons extracts.
The commercial PCB preparations are mixtures of several compounds. Of these, those having the following retention times relative to p,p'-DDE on fDC-200 and QF-1 columns have been detected in marine fish and birds:
! DC-200: 1.25, 1.48, 1.75, 2.05, 2.41, 2.50, 2.90, 3.41, 3.88, 5.53 dieldrin: 1.00; p,p'-DDD: 1.27; p,p'-DDT: 1.68
QF-1: 1.10, 1.33, 1.40, 1.65, 1.72, 2.14, 2.59, 3.23, 3.88, 4.84
dieldrin: 1.49; p,p'-DDD: 1.75; p,p'-DDT: 1.91.
The retention times of the three principal peaks, are underlined. Similar values for the DC-200 column have been reported from extracts of seals from the North Atlantic [13]. Because of the similarity of retention times, it is evident that large amounts of PCB will interfere with the determination of p.p'-DDD and p,p'-DDT on DC-200 columns and with p,p'-DDD on QF-1 columns. Conversely, in many extracts, the PCB content can be determined only after DPD and DDT have been removed by saponification with alcoholic KOH. The quantitative measurements of the \PCB compounds were made as follows: it was assumed that each produces the same peak height in the electron capture detector as the same amounc, by weight,
P.P'-DDE. After summing the contributions of the individual peaks, the total was multiplied by 4.2. Measurements of standard solutions by this method yielded results close to the predicted values and to those obtained by measuring t^ie total halogen content with the microcoulomctric detector.
Measurements of the PCB in the firh extracts were made from .pooled extracts. Unlike.the DDT compounds, the PCBs. appear to be relatively more abundant in San
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Francisco Bay, but their presence in Yellowfin Tuna taken off Central
America indicates a wide geographical distribution.
Concentrations of the chlorinated hydrocarbons, both pesticide and PCB, tend to be an'6fder~ef magnitude higher in marine birds than in fish. ^~In ~ Table III are listed the total DDT and PCB concentrations in tissues and in entire birds of several species. Table IV lists the DDT and PCB content of those eggs so far analysed. The latter values will eventually be also expressed as parts per million, lipid weight.
From the data in Tables III and IV it is evident that both DDT and the polychlorinated biphenyls are widely distributed among marine birds, which are'bfie' terminal-carnivores of a comprejr^arlet^^f^ood^ha-i-ns^tn~thH-sea. Sooty and..slender-'bliled shearwaters -are pelagic -species which breed in ' New Zealand and Australia, respectively and which spend the southern winter in the northern Pacific. Rhinoceros Auklets and.Ancient Murrelets breed on the coasts of British Columbia and Alaska, whereas Kittiwakes, Fulmars, and Red Pharalopes breed in Alaska and the Canadian Arctic. All of these specimens were collected in California, so that it is not clear how much DDT and PCB the birds had ingested on their breeding grounds. In the pelagic bird species, in most of the fish from the ocean and in the other specimens from areas remote from sites of application, such as Baja California, the ratios of DDT to PCB are of the same order of magnitude and most values are between 5 and 15. If both PCB and DDT werq dispersed around the world by the same transport system, their relative concentrations in "remote" areas would very likely be similar. Additional data are needed to support this hypothesis; eggs from tropical regions and from Antarctica have been obtained and will eventually be analysed.
In many of the specimens from San Francisco Bay and San Diego Bay this
ratio is close to one. Absolute concentrations of PCB also tend to be
higher, suggesting that the most important sources of contamination are
local. .
.
The sample sizes of Tables III and IV are very small; many samples, however, remain to be analysed. Only tentative suggestions can be made from the data, but a consistent pattern is evident. Thus, the Western Gull egg from San Francisco Bay and the Pigeon Guillemot egg from the coast near San Francisco contained more PCB than the egg of each species from the Farallons. Of the two night heron eggs analysed, one had an "ocean" profile: high DDE, low p, p'-DDT and DDD, high DDT/PCB ratio; the other had a "bay" profile. The Caspian and Forster's Terns nest side by side on the dikes in -San Diego Bay, yet the DDT/PCB ratio is much lower in the Caspian Terns, which feed primarily along the coast, than in the Forster's Terns, which feed along the brackidh and fresh-water dikes and canals. The two California Peregrine Falcons had both been feeding in jSan Francisco Bay prior to capture; in both the ratios of DDT to PCB are near unity.
The high DDT concentrations recorded in the Bermuda Petrel /327 and in
the Skua from Antarctica J2.SJt which are species of the high seas, also
indicate that coastal regions were not the primary source of contamination.
A quantitative approach to the problem of aerial transport of pesticides over the sea has been made by measuring pesticide concentrations in airborne
. , 1 DSW 200589
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on nylon mesh screens coated with glycerin v?hich had been mounted on the Scripps
pier in La. Jolla. Dust collected on such screens in several areas of the world
had previously been shown to contain.the mineral talc in concentrations much
higher than expected on the basis of its natural distribution [31]. Talc has
been extensively used as a diluent for pesticides; in addition to other industrial
applications. Moreover, the rate at which talc has been deposited on glaciers
shows a significant increase after.1940 [31]. Analysis of the airborne dust
collected on the Scripps Pier showed that pesticides, predominately p,p'-DDT
>
were present in concentrations ranging fjjm one to eighty-one parts per million,
corresponding to a mean value of 7 x 10 grams per cubic meter of air. The
method fractionates against those materials carried on particles less than
several micra or present as vapours. This value is therefore a.lower limit
of the amount of chlorinated hydrocarbons in the air. No PCB peaks were
.
observed in the chromatograms of the dust extracts. These were then pooled,
concentrated, and saponified in order to degrade DDT and DDD. PCB was not
present in the saponified extracts and a maximum concentration of 5 ppb was
calculated for the dust samples, 10,000 times lower than that of the total pesticides-.
Since the ratios cf PCB to DDT observed in fish and birds is much higher, it
would appear that the PCBs remain as vapours in the air and do not adsorb
to.
particulate matter. In the near future wo hope to obtain air samples which
have been passed through a cold chamber in which PCBs, pesticides and other
compounds present as vapours would condense.
The winds at the Scripps pier in La Jolla,are predominantly landward with an unknown fraction of air from nearby agricultural areas. Although the lack of knowledge about air circulation patterns and fallout rates makes difficult at the present time a calculation of the amounts of pesticides brought to the coastal waters of California by winds, such a transport system could account for the unexpected geographical distribution of the DDT compounds in fish.
The Science Research Council of the United Kingdom hadearlier mounted a
similar screen on the eastern tip of the island of Barbados in an attempt
to collect extraterrestrial dust of meteorite origin. The Northeast Trades '
at Barbados have blown over 5000 kilometers of the tropical Atlantic and it
was therefore considered highly unlikely that any dust accumulating on the
screen could be of continental origin. This assumption was, however, in error}
6ince significant quantities of airborne particulate material were collected
on the screen which upon mineralogical and biological examination proved to
be most likely from Africa and Europe. Fallout rates of the dust over the
tropical Atlantic and its contribution to the bottom sediments were calculated [8].
Gram samples were subsequently made available to us for analysis. The con
centrations of pesticides in the dust ranged from less than one part per billion
to 164 ppb,. with an average value of 41. Knowledge of the fallout rate over
the ocean made possible an estimate cf the quantity of pesticides entering the
tropical Atlantic between the Equator and 30 N. This figure, a minimum value
since the jecovery of very small particulate materials was low, was 600 kilograms
a year, which compares with the value of 1,900 kilograms entering San Francisco
Bay in the San Joaquin and Sacramento Rivers [21]. It cannot be concluded that
these nesticides had originated only in Africa; the DDT residues accumulating
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/ the rare and declining Bermuda Petrel [32] might have come from any part of
tlic world.
.
Host of the chlorinated hydrocarbon content of the particulate material of marine airr-consistc oi p,p---BBT*--p>pl-"fli3E, however, comprls'es the large proportion of the total DDT in marine fish and birds. The percentage of DDE is lower in fish from San Francisco Bay and Puget Sound; DDT and DDD are comparatively more abundant. DDE, however, comprises only 22% of the total DDT residue entering San Francisco Bay in the San Joaquin' River [2] and in bottom mud, where anaerobic conditions might prevail, DDT can be expected to be converted to DDD rather than to DDE [15,29]. From mammalian and insect toxicity studies it has been concluded that DDE is relatively hamless. Recent research at the Patuxent Wildlife Research Center, however, have indicated that the toxicity of DDE to birds is much higher than expected and may be about one half that of p,p'-DDT [28]. Like p,p'-DDT, p,p'-DDE is capable of inducing liver epoxidase enzymes [11]. Such enzymes degrade sex hormones by hydroxylating them [19] and thereby may affect calcium metabolism. No evidence of abnormal calcium metabolism has yet been observed in sea birds, but a significant decrease in eggshell weight of several birds of prey in Britain after the Second World War is evidence of a fundamental change in the environment [20].
' .
Thfe^e'ffects of the PCB compounds upon natural populations remain unknown. The highest concentrations so far recorded were in an adult female Peregrine Falcon from California, where the species has recently undergone a sharp decline [22].
. Application of the persistent biocides and the release of nondegradable waste products into the environment have frequently been justified by arguments that point out that local populations of organisms remain relatively uncontaminated and thaf, especially in the case of the chlorinated hydrocarbon insecticides, even the persistent compounds disappear with time. It is abundantly clear that these arguments have become misleading, irrelevant, and wrong. r_Pollutants do go everywhere. Those which are non-polar, water-insoluble and which have--'"Finite vapour pressures will' eventually appear in marine food chains. The DDT compounds and the polychlorinated biphenyls have already done so to an alarming degree.
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' TABLE I
.esidues3 iii collections of Northern Anchovy (Engraulis mordax) and
.ish Sole (Parophrys vetulus) from San Francisco Bay and California
fital waters.
.
/
i '.
/ / Species f locality, date
N
'
Mean Wt (g) p,p'-DDEb
Total DDT
Northern Anchovy _
San Francisco Bay July 29, 1965
17 12.4 0.21
(6-22)
+0.05
San Francisco Bay November 4, 1965
29 4.0 0.11 (2-5) . +0.05
Monterey November 30, 1965
. 30
26.5 (21-35)
0.68 +0.19
Morro Bay June 16, 1965
29 25.9 0.45
(19-33)
+0.12
Port Hueneme February 24, 1966
15 11.6 2.44 (2.8-21.5) +0.77
Terminal Tsland Los Angeles, June 25, 1965
44-
11.7 (6.5-20)
10.2 +2.1
English Sole
San Francisco Bay July 29, 1965
18 14.3 0.14
(5-35)
+0.02
San Francisco Bay November 4, .1965
. 33
17.3 (7.5-53)
0.13 +0.03
San Francisco lightship December 1, 1965
15 253 )175-306)
0.12 +0.03
Monterey February 15, 1966
15 195 (89-262)
0.53 +0,13
0.59 +0.11
0.33 +0.04
0.90 +0.22
0.74 +0.22
3.04 +1.00
14.0 +1.9
0.55 +0.07
0.55 +0.12
0.19 . +0.04
0.76 +0.16
3 from R. W. Risebrough, D.B. Menzel, D. J. Martin, Jr., and H. S. Olcott in preparation. DDT residues include the two isomers of DDT,p,p'-DDT
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TAKLE I, continued
and o,p'-DDT and their metabolic derivatives: p,p'-DDE, o,p'-DDE p,p'-DDD and pjp'-DDKU.
wet weight paits per million, means, standard errors, 95% confidence
limits
.'
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TABLE II DDT and polychlorinated biphenyl (PCB) residues in marine fish.
Species, locality, date
N Mean Wt. Total X
PCB DDT/PCn
(s) DDT PP'-DDE
Northern Anchovy
Terminal Island June 25, 1965
44
11.7
14.0 83
(6.5-20) 1.9
1.0
14
Shiner Perch
San Francisco Bay .. 14 October 20, 1965
5.5 1.0 (4-8) 0.1
28 1.2
0.8
San FrancisCo Bay October 20, 1965
10 26.7 1.4 (10-48) 0.3
35 *0.4
3.5
San Francisco Pay November 4, 1965
15 15.3 1.1 (8-493 0.1
33 1.2
0.9
English Sole
San Francisco Bay July 29, 1965
18 14.3 0.55 25 0.11 (5-35) 0.07
5
San Francisco Bay November 4, 1965
33 17.3 0.55 24 0.11 (7.5-53) 0.12
5
San Francisco lightship, Dec. 1, 1965
15 253
0.19
(175-306) 0.04
63 ' 0.05
4
Monterey February 15, 1966
Jack Mackerel
15 195
0.76 70 0.04 1?
(89-262) 0.16
.1
Channel Islands November 22, 1965
33
81.8
0.56 57 0.02 28
(45-141) 0.10
Hake
Puget Sound January 29, 1966
22 281
0.18
(185-350) 0.05
23 0.16
1.1
r
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Hake
%.
TABLE'll-, continued .
-'
- .'
. - -'
Channel Islands February 24, 1966
Bluefin TunaC
6 384 (61-872)
1.8 1.1
68 0.12 15
Body muscle
7--
0.56 45 0.04 ' 14 ' +0.24
Liver
:
.9
--
0.22 45 .0.04
6-
+0.13
Yellowfin Tuna Liver**
Liver*
13* -- 13 --
0.07 13 NDe +0.02
>7
0.62 30 0.04 15 +0.19
Skipjack Tuna Liver Body Muscle
Liver*1
Liver*
3-- 13 -- 25 ' --
12 --
0.057 23 0.1
6.6
0.051 18 +0.014
ND
>30
0.056 +0.023
11
ND
>30
0.029 +0.008
21
ND
>20
from Risebrough et al. 124]Concentrations in wet weight, parts per million. Means, standard errors, 95% confidence limits
. \
Northern Anchovy (Engraulis mordax). Shiner Perch (Cymatogaster aggregata), English Sole (Parophrys vetulus), Pacific Jack Mackerel (Trachurns symmetricus), Hake (Merluccius productus j., Lluefin Tuna (Thunnus thynnus), Yellowfin Tuna (Thunnus albacares). Skipjack Tuna (Euthynnus pelamis).-
c Isla Geronimo, Baja California, Aug. 29, 1965
^ Tower Island, Galapagos Archipelago, Nov. 6, 1965
C N.D. not detected, less than 0.01
.
I
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TABLE II, continued
Central America (90 W, 8 N) Aug. 23, 1965 Hawaii, November, 1965 Galapagos Islands, November and December, 1965 Cape Pasado, Ecuador, September 1, 1965
Risebrough-11.
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t
Risebrough-12.
I.
'%
TABLE III
DDT3
and
PCB
residues
in
ma* rine
.b.i.ro,sb
and
:in
*`he
Peregrine *.
'Fa,xconk.
Species, locality, date
Total
% DDE
PCB
DDT/PCB
DDTC
Cassin's Auklet^ g
Ancient. Murrelet ; Fulmar^ Fulmar^
..
Red Phalarope*' Rhinoceros Auklet*1
`
Slender-billed shearwater*"
Sooty shearwater** Sooty shearwater*^
Peregrine Falcon
breast muscle, second . year female, migrant
from Arctic
breast muscle, immature California
breast muscle, adult . female, California
' .
5.8 0.75 0.41 3.4 0.78 2.7 32.0 12.3 10.3
98 0.16
90 0.15. 76 0.08
89
79
0.34 0.10
97 `
0.36
92 2.1
94 1.2
86 0.9
36 . 5.
5 10 .
8 8 15 10 12
104 99 22
4.5
13
99
10.5
. 1.2
112 98 109
1.0 .
'
a: from Risebrough et al. [23] and Ri.sobrough, Kirven and Herman [22];
b: entire bird analysed, except Peregrine Falcons; c: includes p,p'-DDT,
p,p'-DDD, p,p'-DDE, p,p'-DDMU, p,p'-DDE; parts per million, wet weight;
.
d: Ptychoramphus aleuticus, adult female, Farallon Islands, April, 1966;
e: Synthliboramphus antiquus, Monterey Bay, Nov. 1, 1966; f: Fulmarus
glncialis, Monterey Bay, Nov. 1, 1966; g: Phalaropus fulicarius. Monterey
Bay, Nov. 1, 1966; h: Cerorhinca monocerata, Monterey Bay, Nov. 1, 1966;
i: PuFfinus tenuirostris, Monterey Bay, Dec. 12, 1966; j: Puffirms grissus, .
Monterey Bay, Nov. 1, 1966; k: from Risebrough, Kirven and Herman [22].
I DSW 200597
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TABLE IV DDT and PCB content in eggs of several bird species.
Riscbrough-13.
Species, locality
N Total
%
BCBa DDT/PCB
DDT p,p'-DDE
Brandt's Cormorant (Phalacrocorax
penicillatus)
Farallon Islands
Pelagic Cormorant (Pba3acrocorax
pelagir.us)
San Mateo Co. Calif.
Murre Uria aalge
.
Farallon Islands
Pigeon Guillemot Cepphus grylle
Farallon Islands
San Mateo Co. .
Cassin's Auklet Ptychoramphus aleuticus
Farallpr. Islands
Western Gull Larus o.ccidentalis
. Farallon Islands
San Mateo Co.
San Erancisco Bay
17 326 91 113 2.9
2 128 90 (125-130)
62 (48-75)
2.1
--
6 1945 - - 96
-558
(932-3621)
(364-1010)
3.5
--
1 110 95
20 5.5
1 103 ' 91
62 1.7
` -* ' - '
2 147 97 (127-167).
1
15 (12-18)
10
1 423 95 118 3.6 1 235 94 . 112 2.1 1 458 87 480 0.95
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TABLE IV, continued
Black-crovucd Night Heron Kycticorax nvcticorax
San Francisco Bay
Caspian Tern Hydroprogne caspia
San Francisco Bay
San Diego Bay
.
Forsters Tern Sterna forsteri
San Diego Buy
Least Petrel Halocyptena microsoma
Baja California
c Peregrine Falcon Falco peregrinus
Baja California
1 541 89 330 1.6
1 869 99
24 36
2 1269 89 (1216-1322)
805 1.7 (660-950) (1.3-2.0)
5 1430 88 1010
1.4
(991-2430)
(550-1600)
2 665 89 (598-732)
'
2 30 (23-37)
84
114 (91-137)
5.8
-
3.1 10 (1.2-5.0)
;
1
4830.
97.. , 471.
10
a: total micrograms; b: samples pooled for PCB analysis, p,p'-DDE content ranged from 63 to 1240 micrograms; c: from Risebrough, Kirven, Herman [22].
I
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[33] The National Science Foundation, (grant GP 6362) provided
financial support. I thank P. L. Ames, E. D- Goldberg, S. G.
Herman, M. N. Kirven, H. S. Olcott, P. Reiche and R. L. Rudd
for their assistance. The Monsanto Chemical Company generously
provid i samples of Aroclor 125A and 1262.
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