Document gD0Q7LgQ43nz19rea1qZ8g7nV
ACUTE TOXICITY TO FISH (MUMMICHOG)
TEST SUBSTANCE
Identity:A mixturecontainingperfluorooctanesulfonatmea;y alsobe referredtoas PFOS, FC-95, oras a component ofFC-206C and 81-2/8.(1-Octanesulfoniaccid, 1,1,2,2,3,3,4,4,5,5,6,6,7,7,8,8,8-heptadecafploutoarsos-i,um salt,CAS # 2795-39-3)
Remarks: The 3M productionlotnumber was notnoted. The test sample isFC-206C and isreferredtoby thetestinglaboratoryas "81-2/8". Currentinformationindicatesitisa mixtureof0.73% PFOS, 76.09% water,15% diethyleneglycolbutylether,4% urea,1.55% sodium octyl sulfate,1.47% hydroxyfoamer, 1.05% polyoxyethylenemonooctylphenyl ether,0.06% sodium laurylsulfatea,nd 0.05% benzotriazole.
The followingsummary applies toa mixture with incompletely
characterizedconcentration of impurities.Data may not accurately mflect the toxicityof the fluorochemical compnent of the test sample.
METHOD:
Method: EG&G, Bionomics protocolentged "ProtocolforFlow-through
ToxicityTestswithFishes,"January 2, 1980.
Test type: Flow-throughacute GLP: No
Year Completed: 1981
Species:Fundulusheteroclitus
Supplier:Commercial supplier
Analyticalmonitoring:Temperature,pH, DO, and salinity
Exposure period:96-hours
Statisticamlethods: LC50 valuescouldnotbe calculated.
Test fishage: Juvenile.
Length and weight: Length= 27 - 35 mm witha mean of31 mm
Loading: 0.092g/L
Weight = 0.28 - 0.63g witha mean of0.46g
Pretreatment:Not noted.
Test conditions:
Dilutionwater:Naturalf,ilterseedawaterfromBigLagoon,a Gulf ofMexico estuary,FL.
Dilutionwater chemistry:
Salinity: 27 -28 partsperthousand
LightingF:luorescelnitghtpsrovideaddailpyhotoperiofd12hourslight and 12 hours darkwithan intensitoyf 1,100 luxincidentothe water surface. Stock and testsolutionpreparation: A primarystocksolutionof 502,000 mg/L was prepared by adding 502 grams oftestsample toa 1-L volumetricflaskand bringingtovolume withdeionizedwater. Alltest solutionswere preparedby a dilutedrelivedngfivenominal concentrations ofthetestsample and controlwater. Flow-through rate:Approximately1.5aquadum volume replacements per 24 hours. Stabilityof the testchemical solution:Not noted. Exposure vessels:30 x 30 x 91 cm glasstankscontaining-50 L oftest solutionvolume. Number of replicates:two Number of fishper replicate:10 Number of concentrations: 5 plusa blankcontrol Water chemistry during the study:
pH range (0-96hours): 7.8- 7.9(controlexposure) 7.4- 8.0(2000 mg/L exposure)
Temperature range (0-96hours): 22 - 27'C (forallaquaria)
Dissolved oxygen range (0-96hours): 5.7- 6.9 mg/L (controelxposure) 0.6- 6.8mg/L (2000 mg/L exposure)
Salinityrange (0-96hours): 27 - 28 partsperthousand (forallaquaria)
Remarks: Duringthethirdday ofexposure,the dilutesrtopped cycling and resultedinonly6 cycles(1 L solutio/ncycle)forthe24 hour period. Since thetestconcentrationdidnotchange, itwas concluded thatthisdid notaffecthe validitoyfthetest. RESULTS
Nominal concentrations: Bk control,125, 250, 500, 1000, and 2000 mg/L
Element value:
24-hour LC50: 48-hour LC50: 72-hour LC50: 96-hour LC50:
>2,000 mg/L >2,000 mg/L >2,000 mg/L >2,000 mg/L
Element valuesbased on nominalconcentrations.
Remarks: Tesbng was conducted on the mixtureas descdbed inthe test
substance remarks field.The valuereportedappliestothatmixtureand notthe fluorochemicalproportionalone.
CONCLUSIONS
The FC-206C 96-hour LC50forFundulus heteroclituwsas determined to be >2,000 mg/L, thehighestconcentratiotnested.10% mortalitwyas observed atthisconcentration.
Submifter: 3M Company, EnvironmentalLaboratory,P.O. Box 33331, St. Paul,Minnesota,55133
DATA QUALITY
ReliabilityK:limischranking2. The studymeets allcriterifaorquality testing.However, sample puritywas not propedy charactenzedand the studylacksanalyticaclonfirmationoftheamount offluorochemical proportioninthesolution.AdditionallyD,.O. concentrationfsell significantbleylow acceptablelevels.
REFERENCES
This studywas conducted by EG&G, Bionomics ofPensacola,FL atthe requestofthe 3M Company, 3M Lab Request number 7038, 1981.
OTHER
Last changed: 6/26/00
E,41
7o3 p-
Acute toxicity of a surfactant solution to the mummichog (Fundulus heteroclitus) in a flow-through system
FC--206
Toxicity Test Report
Submitted to
Minnesota Mining & Manufacturing Co.
Environmental Engineering and Pollution Control
Environmental Laboratory
St. Paul, Minnesota
55133
Project'Number R36 Report Number BP-81-9-151
EG&G Bionomics marine Research Laboratory 10307 Gulf Beach Highway Pensacola, Florida 32507 September 1981
EG&G Bionomics Marine Research Laboratory
10307 Gulf Beach Highway Pensacola, Florida 32507
TOXICITY TEST SUMMARY SHEET
Client:
Minnesota Mining and Manufacturing
Company
Client Contact or Principal Investigator:
Dr.* Eric Reiner
Report date & number:
September 1981; BP-81-9-151
Bionomics project number: R36.
Study Director: Mr. Scott Ward
Test material:
Surfactant solution, 20% butyl carbitol
Description:
Deep orange-yellow liquid
Date material received:
12 August 1981
Date of definitive test: .10-14 September 1981
Test condition:
Flow-through, 96-hour duration
Test procedure:
BMRL's Test Protocol:
"Protocol
Toxicity Tests with Fishes"
for Vlow-Through
Test animal:
mummichog, Fundulus heteroclitus
Source and age: Commercial supplier, juveniles
Seawater:
Natural, filtered, 27-28 parts per thousand salinity
Solvent/carrier:
None
Nominal test concentrations:--125,@250,-,500,.1,000,. (mg)/liter (t)
Effect criterion. Mortality
and 2,.000 milligrams
96-hour LC50:
Could not be calculated; 2,000 mg/t
maximum mortality was' 10% in
A flow-through marine toxicity test was conducted at EG&G Bionomics Marine Research Laboratory (BMRL), Pensacola, Florida, to determine the acute effect of a surfactant solution on the mummichog (Fundulus heteroclitus). The criterion for effect was death. Results of the test are reported as a 96-hour LC50 value (the concentration,of test. material estimated to be lethal to 50% of the test animals after 96 hours of exposure).
All data related to this study are stored at BMRL.
Test material
MATERIALS AND METHODS
The test material was recei
BMRL on 12 August 1981 in one
9.5-liter (Z) cubetainer labeled 3M SAMPLE 81-2/8."
I,. A deep orange-yellow liquid, was -tested as receivec.
The test material,
All test concentrations are reported here as milligrams (mg) of
surfactant solution per t of seawater.or as parts per million
(ppm). Test animals
Mummichogs were purchased from a commercial supplier and maintained
at BMRL in flowing, natural seawater for 15 days. During the 96-hour period immediately before the test, the salinity of the holding water was 27-28 parts per thousand (0/oo) and thetemperature was 21-22 degrees
Celsius (OC). No mortality was observed during the entire holding
period.
The control fish were 27-35 millimeters -(mm) standard length and
0.28-0.63 grams (g) wet weight; mean length and weight were 31 (S.D.2)
mm and 0.46 (S.D.0.10) g, respectively. The control fish appeared to
be representative of the test population.
2
Test water Water used to maintain and test the fish was natural seawater which
was pumped from Big Lagoon, a Gulf of Mexico estuary adjacent to BMRL. The pump intake was located about 80 meters (m) offshore at a depth of approximately 3 m. Water was pumped by a 316 stainless steel pump through hard polyvinylchloride (PVC) pipes, through sand-filled fiberglass filters, through charcoal-filled fiberglass filters, and through 10-micrometers (pm) pore size polypropylene core filters into an elevated fiberglass reservoir. Water was chilled by Teflon@ heat exchangers and flowed by gravity into the laboratory. Test conditions
Methods for the 96-hour flow-through test were those described in BMRL's "Protocol for flow-through toxicity tests with fishes" dated 2 January 1980. The test was conducted in an intermittent-flow system by using a proportional diluter (Mount and Brungs, 1967) constructed to deliver 1 Z/cycle/test aquarium at a dilution rate of 50%. The number of cycles was approximately 3.2/hour, except during day 3 when the diluter cycled only 6 times in 24 hours because of a malfunction. The cycling..rate of 3.2 cycles/hour provided-approximately 1-5 volume additions in 24 hours.
The surfactant stock solution (502,000 mg/k) was prepared by weighing 502 g of surfactant solution in a 1-t volumetric flask and bringing to volume with deionized water. The stock solution was placed in a 4-t glass reservoir attached to a "dipping bird" (Mount and Brungs, 1967). A 15.5 milliliter volume of stock solution was delivered into the mixing cell via the dipping bird during each diluter cycle. A Teflon solenoid valve, controlled by float switches, regulated seawater flow into the water cells. Mixing of various
3
volumes of uncontaminated dilution seawater from the water cells with
various volumes of stock solution in the test material cells produced
the five concentrations of test material which were distributed to the
appropriate test chambers. Test chambers were 30 centimeters (cm)
x 30-cm x 91-cm glass aquaria which contained approximately 50 k of
test solution or control seawater. Light was provided by two 3.7-m fluorescent blubs suspended 46 cm
above the test containers, providing approximately 1100 lux incident
to the water surface. Photoperiod was 12 hours of light and 12 hours
of darkness. Five concentrations of surfactant solution and and a control were
maintained.. Selection of surfactant solution concentrations were based
on the results of a 96-hour static test and a maximum test concentra-
tion established by verbal authorization from Mr. Eric Reiner of the 3M Company. The nominal concentrations were 125, 250, 500, 1,000, and
2,000 ppm. To begin the test', the diluter cycled until all test chambers were
filled with test solutions or control seawater. Ten fish were then
placed into each duplicate test container.
Survival of fish in all treatments was recorded at 24-hour
intervals. The dissolved oxygen concentration and pH were measured
in each test container at 0 and 96 hours and in both controls, low,
middle, and high test solutions after 24, 48, and 72 hours of exposure.
The temperature and salinity were measured in both controls daily
throughout the test. Diluter function was checked daily by observation.
Only one
problem occurred. During the third day of exposure the diluter stopped
cycling shortly after the test was checked on a weekend. This problem,
4
however, did not result in any change in the test concentrations and therefore did not affect the validity of the test.
The test was conducted 10-14 September 1981.
RESULTS AND DISCUSSION
After 96 hours of exposure to surfactarlt solutions, mortality of
fish ranged from 0% in test concentrations <1,000 ppm to 10% in the
2,000 ppm test concentration (Table 1). A 96-hour LC50 could not be
calculated because mortality in the maximum test concentration was
<50%. Physical or behavioral abnormalities were observed Qnly in the 2,000 ppm test concentration. After 24 hours of exposure, 4 fish
were observed to be darker than normal, however, this was observed
again only after 96 hours when 1-fi-sh was--a
@Mn n@ormal.
After 72 hours of exposure, 11 fish were observed at the surface of the
water in the 2,000 ppm test concentration. This probably occurred
because of the diluter malfunction and correspondingly low dissolved
oxygen concentrat"l nrt-c;.
Mean salinity during the test ranged from 27-28 O/oo. The
temperature ranged from 22-27OC; mean was 2520C. The dissolved oxygen
concentration remained >9% of.saturation in all test containers through-
out the exposure. Dissolved oxygen concentrations were low after 48
and 72 hours of exposure, especially in the 2,000 ppm test concentration.
The low DO may have been caused by a high oxygen demand after 48 hours
and the lack of changeover during day 3. The pH was 7.4-8.0 in
all test containers throughout the exposure (Appendix A).
5
REFERENCES
EG&G
Bionomics Marine Research Laboratory.
1960. Protocol for
1 Flow-Through Toxicity Tests with Fishes. 2 January 1981.
5 pp-
Mount, D.I. and W.A. Brings. 1967. A,simplified dosing apparatus
for fish toxicological studies. Water Research, 1:21-20.
6
TABLE 1.
Mortality of mummichogs (Fundulus heteroclitus) exposed to a surfactant solution in flowing natural seawater. *Test concentrations are given as nominal concentrations of whole material.
Nominal Concentration
Control 125 250 500
1,000 2 000
(mg/k;ppm)
24 hour 0 0 0 0 0 0
Mortality
48 hour
72 hour
0
0
0
0
0
0
0
0
0
0
0
0
96 hour 0 0 0 0 0
PREPARED BY:
G. Scott Ward
G.
Study Director
7 ]5ate
AUDITED BY:
Alan G. Miller
Quality Assurance Urfit
Ljcxr-e
/.ofa44 /Y.P/ Raw data audit: I Preliminary report audit: lg"f,@&419pl
IF
Final report audit:
REVIEWED AND APPROVED BY:
Peter J. Shuba, Ph.D.
Technical Cbordinator
Date
p IZZEYGiz G BIONOMICS
Marine Research Laboratory Pensacola, Florida
SUBJECT: ACUTE TOXICITY DATA SHEET
CLIENT:
3M Company
pRW=
NO: R 36
APPENDIX A
A-1
PAGE: NO.z BP-QAF-001 EFFECTIVE: December 1980
SPECIES:
-TEST MATERIAL:
Fundulus heteroclitus
Surfactant
solution
ANIMAL HISTORY
LOT NO:
2-k, - o, (I- cj
SEE PAGE NO: COLLECTION/RECEIPT
11;131 ()F4ANIMAL
LOG FOR RAW DATA
DATE MAINTENANCE/ACCLIMATION CONDITION OF ANIMALS: LIFE STAGE:
BEGAN: ;7-& AOC"? I fF)L,-C--kte.,+
3 MORTAL M (%)IN TATIK 48 HOURS PRIOR TO TESTING:
%
iqti Ft5iA
SEE PAGE NO.
OF "LibktOC. Lt6C- FOR RAW DATA
TEST CONDITIONS
PRELIMINARY 1% DEFINITIVE
[:]STATIC MFLOW-THRU
NU.MBER OF ANIMALS/CONTAINER 3, 5,(920, -
TIME ADDED CHFMICAL/ANIMALS
15,3c>
TEMPERATURE(-C) 20,030-
NUMBER OF TEST CONTAINERS/CGNC
I,f,"4*,i-
TEST CHAMBER VOLUME (1) 1, 3.8, 19
TEST SYSTEM OPEN
CLOSED
DILUENT VOLUME (1) 0.9, 3, 15
-
SAL IN ITY (D/oo) AM91ENT_le,-
PROTOCOL FOLLOWED:
CIRCLE ONE:
TEST MATERIAL AS ACTIVE INGREDIENT/WHOLE MATERIAL
TEST CONCENTRATIONS
%
mg/i
ug/l
til/I
CON- SOLV
TROL CONT
AMOUNT OF CHEMICAL/STOCK ADDED
N.A. N.A.
STOCK SOLUTION USED (1', 2*, 3')
N.A. N.A.
AMOUNT OF SOLVENT ADDED (ml)
ti.A. l@)AIN.A. N.A. N.A.1 14.
ADDIT10NAL COMMENTS: (DOCUMENT ANY DEVIATIONS FROM PROTOCOL)
SOLVENT/CARRIER
D
N.A. N.A. N.A.
S/C CONCENTRATION A) PI
2_0--CHHOIURUCR,A
24-HOUR
8-ilouR
DATE
COP@TROL TE@IP 'C/SAL. TIME
U/oo
c
2(-
c
0 /00
DATA BY
NO.MI!IAL CONCE:;TRATION (Eg /-@, i!g/l%
ill/I REP OBS -1-
NO.
D0mg7/1)
DEAD CUM
PH
@Bs
DEAD
- - /D C
OBS 11 1 10 1
NO. DEAD CUM
DTE DEUAMADD PH
CONTROL
-I.q U.q AJDKZ'_
7,9 (,.1IVIIIY%14
00 OBS
SOLVEt4T
A
COTITROL B
C.2
o/o
7.9
A
'77
7.7
A
e-)
-
-sS. 0
5c3
0
A
0/0
6"'6
t e c>
J2
C>
A
IS13
-@ql(:) - -
oc-o
B
L
A*A
It G. 9-
? 1.
67
B
tAA8
@.-5- L
72-HOUR
c
O/oo
DEA CUM DEAD
6
00
DO77 00
75, CL(IL
'38
UA)i
;7
Dr i@) Di@O
C)
DOMETER USED
PH METER USED
SALINITY MEASUREMENT
T EIIPERATURE MEASUREMENT
OBSERVATION KEY
NONE - OBSERVATION WAS MADE AND NOTHING OUT OF THE'ORDINARY WAS OBSERVED
AS - AT THE SURFACE
ERR - ERRATIC
MSP - MUSCLE SPASM
GY - GYRATING
CLE - COMPLETE LOSS EQUILIBRIUM
DRK ' - DARK PIGMENTATION
PLE - PARTIAL LOSS EQUILIBRIUM
HEM - tiEt4URRKAGIC
LETH - LETHARGIC
RA - RAPID RESPIRATION
IHYP - HYPERACTIVE
G - GULPING
CLOY - CLOUDY SOLUTION
PRE - PRECIPITATE FOS - FILM ON SURFACE
UC
UNDISSOLVED CHEMICAL
:!4z
rol
TEST KEY
one,