Document jyBm2O0vNRkJZ8axjYy5jmZq2
TOXICITY TO AQUATIC PLANTS
TEST SUBSTANCE
Identity:Mixturecontainingperfluorooctanesulfonatweh,ich may also be referredto as PFOS, FC-95, or as a component of FC-203CF-X or FC-203CF. (1-Octanesulfoniaccid)(CAS # 2795-39-3).
Remarks: The 3M productionlotnumber was 101. The testsample isFC203CF. Currentinformationindicatesitisa mixtureof 1% PFOS, 20% diethyleneglycolmonobutyl ether,70.2% water,2.75% Acrylicfoamer, 3% sodium octylsulfateI,% triethanolamine2,% sulfonatedalkylethersalts,and 0.05% tolyltriazole.
The followingsummaty applies to a mixture with incompletely characterizedconcentrations of impurities.Data may not accurately reflecttoxicityof the fluorochemical component of the testsample.
METHOD:
Method: OECD Guideline201 Type: Acute Static GLP: No Year study performed: 1991 Species: Selenastrumcapricomutum Source: In-houseculture.Originallfyrom the CultureCollectioonfAlgae at the UniversitoyfTexas atAustin,Texas. Element basis: Algalcellcounts (cells/mig)r,owth rate Exposure period: 96 hours StatisticaMlethods: Statisticanlalyseswere performed usingthe computer program ofStephan, 1983. Analyticalmonitoring: pH, conductivitya,nd temperature
Test Conditions:
Algal NutrientMedium: Nutrientmedium per U.S. EPA, 1978. This nutrient medium providedallmineralnutrientsessentialforalgalgrowth and also served as the diluentforallalgaloperations.The pH ofthissyntheticalgal medium was 8.0. Stock and testsolution preparation: A primary 1000 mg/L stock solution was prepared inalgalmedium, and added directltyothe exposure vessels. Exposure vessels: 250 mL Edenmeyer flaskscontaining100 mL test solutionand capped withinvertedglass beakers. Agitation: Continuous Number of replicates:3. Initiaclellloading: 1.0 X 104 cells/mL. Number of concentrations: fiveplusa blank control
Lighting:Continuoulsightiantg44 pEin/seC/Mu2sing cool-whitefluorescent lamps. Water Chemistry:
pH range (0- 96 hours): 8.0 - 10.8 (controlexposure) 8.2- 8.3(1000 mg/L exposure)
Test temperature range (0- 96 hours: 21.9- 22.3'C (incubator)
RESULTS
Nominal concentrations: Blank control,62.5,125,250, 500, and 1000 mg/L
96-Hr.Algal Growth Response values
Nominal Exposure Conc. (mg/L)
Control 62.5 125 250 500 1000
Cell-Count (cells/mL)
602,000 451,000 207,000
12,000 0 0
Avg. Specific Growth rate
0.043 0.040 0.032 0.002 0.000 0.000
% Change from Control
-7 23 95 >100 >100
Element values: 96-hour ErC50 = 143 (130 - 156) mg/L 96-hour NOEC = 62.5 mg/L
Element values are based on nominal concentrations.
Reversibilityof Growth Inhibition:Not conducted.
Remarks: Testingwas conducted on the mixtureas describedinthe Test Substance Remarks field.The valuesreportedapplytothatmixtureand not the fluorochemicalproportionalone.
CONCLUSIONS
The testsubstance exhibitsa 96-hourE,C50of 143 mg/L witha 95% confidenceintervaolf 130 to 156 mg/L. The 96-hour No Observed Effect Concentration(NOEC) was 62.5 mg/L.
Submitter: 3M Company, EnvironmentalLaboratory,P.O. Box 33331, St. Paul,Minnesota,55133
DATA QUALITY
I
Reliability: Klimisch ranking = 2. The study meets the criteria for quality testing.However, the sample puritwyas notpropedycharacterizeadnd the study lacksanalyticaclonfirmatioonfthe amount offluorochemicaplroportion inthe solution.
REFERENCES
Thistestwas conducted by EnviroSystemsDivisionR,esource Analysts, Incorporatedo,f Hampton, NH attherequestofthe3M Company, St.Paul, MN, Lab Request number J1884-3,1991.
OTHER
Last changed: 6/28/00
Study Title
Static Acute Toxicity of YC-203CY to the Alga, Solonamo, aWAcornut=
AMIlk2U
Timothy J. Ward Robert L. ft&rl
Study ...@l.ted August,
Performi;@
Resource Analystsi,-,Xxncorpora One lafayfttii-Rmd
sampton. xw Rai4ohLre 3"3
-7-'
I
summty
The acute toxicity of FC-203CT
to the alga, solonastxlm
capricornatum, Le described in this flnal r"mrt. The tout was
conducted for 3H Oompany for 96 hours during July IS to 22, 1991, at the
ZnvLroSystma
Division of Resource Analysts, Inc. in Hampton, new
Hampshix,e.
It was conducted by Joamn Magazu, Peter Kowalski, Zll*n
Stanford, Robert BoorL, and Timothy Ward.
The test was performed under statle conditions with five
concentrations of test substance and a dilution water control at a man
temperature of 22.1*C.
The dUutLan water was synthetic @dL&.Preparod
with sterile doLonL&od water. Flasks were incubated on a rotary shaker.
Light was adjusted to 44 uZLn/sec/a2 with a phatoperlod of 24 hours
light and 0 hours dark. Nominal concentrations of rC-203CF war*: 0 mg/L
(control), 62.S mg/L, 12S mg/L. 2SO mg/L, 500 mg/L, and 1,000 mg/L.
Nominal concentrations were used for all calculations.
Algae us" in the test was from an in-house culture that was
maintained under test conditions. txposure of alga* to the test substance
resulted in a 72 hour SCSO of 230 mg/L FC-203cr and a no observed effect concentration (WORC) of 62.5 mg/L. The 96 hour MCSO and ROBC are 143 mg/L and 62.S mg/L, respectively.
r
4-,
"ai,@Page
2-of IS,
It. Tua or cm&=,L
summary
Tabls Of COntOnts Index of Tables
IV. Introduction
V.
Methods and Materials
Vi. Results
viz. References appendix A.',water Quality Data frm TeoiLcityTest
PAGE 2 3 4 5 5 8 12, 13
3 ommuce
Ill. INDZX Of TABLU
Table 1.
Chemical characterization of a representative sample of doLonLzod water used to prepare test media for toxicity test
Table 2. Growth data from toxicity test
Table 3.
Percent change from control and average specific growth rate from toxicity test
Table 4.
Median effective concentrations (RCSO&I from toxicity test
Table A.I. Temperature measured during toxicity test Table A.2. pH measured during toxicity test
PAGZ 6
9 20 11 14 is
Xr,
@ke
@4,'4 t
IV. irrYA)Ducnm
This study was sponsored by 3M Company* St. Paul, Minnesota. The objective of the study was to dateralm the &cuts toxicity of rc-203CY to a freshwater alga. The v-y-rt contalne sections that describe the @thods and materials employed in the, *tuft, and the results of the investigation. The report also aantalue an appendix that presents the water quality data collected during the test.
V. XBTHMS AND XRTMIJA
TEST SUBSTANCZ:
FC-203CF (ZnvLroSyst@
Sample Numimr 2937Z) was delivered to
ZnvLroSysteme on May 23, 1991. It was contained in a 4 as. plastic bottle
that was labelled with the following Lnformationt "JI884-3# FC-203CF"o
FC-203CP (an orange-brown liquid) was -Vyliod by 3H Company, 935 Bush
Avenue, St. Paul, Minnesota. Prior to mm the test material was stored in
the dark at room temperature. A reserve sample (approximately 2.0 gr=)
will be retained at gnvLroSysteme for a -Ini-- of 10 years.
DILUTION WATZRI
Water used for acclimation of test organl@ and
testing was sterLIe enriched media (U.S. ZPA, 1978)
approximately 8.0.
Results of ch@4c&l analysis of
sample of deLonLzed water used to prepare the media
Table 1.
for all toxicity with a pH of
a representative are presented in
TEST ORGAMISK:
Algae' used for the test was frm a culture originally procured from the Culture Collection of Algae at,the University of Tozan at Austin and
delivered to MwLrosystems
on May 14,'1992'.",The identity of the culturs,
was verified using., an, appropclato taxonomic @ )my.
The culture was:*'*''
transferred to sterLIe. enriched media' identical to media used for this
test and maintained at,,,tint'conditLcmm
Tmxci TY TZSTINGs
BCC"N
2,o8r JL9
1, 000 conc*sit'rat greater
og;(L the
1%71@l,@.Lth,th-etamt-,substance ip-- conduct'
24'
-'was 1*88 7nii6@er;,@of
ter 96: bmro the@:iii6e@-a -COIL a pe
thazi;,t
the controgand at
COX"
cot o'lipea54--ow,-,W''@. so a f;.thgi'ccithi or,-*
199i
Tho," defLnLtL"@'@'.toxLaLty@! t' -It Le based on procedures of,,.
was Porformd dur '01=@ (21)84).
July,15.,to,,
PAK
5 of Is
Table 1.
Chemical charActOCLIation of a rVreoentatLve sample of doLonLzed water used to prepare test media for toxicitytoot
Paramter
OrganochlorLne pesticides
Unit of Heasuremnt
ug/L
Reporting Limit
2
Measured Value
RD
Organophosphorus
ug/L
0.5
ND
pesticides
PolychlorLnated
ug/L
0.5
ND
biphonyls
Note: ND not detected at or above the reporting 11-it.
ce
The test was conducted at a target t
ature of 22 1 2*C with five
concentrations of test substance.and a dilution water control. A
1,000 mg/L stock solution was prepared Ln dilution water. The stock
solution was added directly to dilution water contained in the toot
vessels without the use of a solvent. goolnal concentrations of the
test material worst 0 mg/L (control), 62.5 mg/L, 125 mg/L, 250 mg/L,
SOO mg/L, and 1,000 mg/L.
Algae
was randomly
and equally distributed among three
replicates of each treatment at the rate of 10,000 cells/ml. The toot
was performed in 250 ml glass Zrl*nm"r flasks that conta!.ned 100 ml
of test solution. The flasks were capped with inverted glass beakers.
Test vessels were randomly arranged on a rotary shaker in an incubator
during the 96 hour test (a random numbers table was us" to select the
location of each vessel). A 24 hour light and 0 hour dark photoperlod
was maintained with cool-whlto fluorescent light@ that provided a light intensity of 44 ule-Im-2
The number of algal callo/=I in each test vessel was determined visually every 24 hours by mans of direct microscopic counts with a
hemacytometer.
The pH (Beckman model pEl 51 motor) was determined in
each test flask at the beginning and and of the test, and temperature
(ASTH mercury thermometer) was measured and recorded daily in the
incubator.
STATISTICRL METHODST
Results of the toxicity test ware interpreted by standard
statistical techniques (Stephan, 1983). The binomial or moving average
method was used by the author to calculate ECSO values using nominal concentrations of test substance.@@.''@T,he.@,-'N' was calculated using
Dunnott*s test, which includes a. parametric ora-tmy analysis of .,'.varLanco (ANOV-IL). The average specLfi6'growtb rat* was calculated as
the' natural log of the number --of@colls'per od at 24, 48, 72,-,cc 964
hours minus the divided by, the
natural sure
log of tliol"iimb@r@ofcells per al at 0 hour s ............ period -4f The@ percent 'change from control 'i
calculated I by subtracting t"
-&-v'e'ra"s-pecific growth raLt@4!fz;ca
,,t" control' average speeLfLc,,,
rit@i,'.dLvLdLng that..value
',"average specific growth rate' thi@:-control &ad multiplying
100.
The percent change:from contro -its&u,s" to@
to Z,
values..,
4.
Pave.,7 of
ipm,
Vi. RIMMTS Biological and water quality data- generated by the acute toxicity test are presented in Table 2 and Appendix A, respectively, and the percent of control and average specific growth rate information is prommt&d in Table 3. The 24, 48, 72, and 96 hour BC50a for alga* exposed to FC-203CP are presented in Table 4. The 72 boar ECSO in 130 mg/L, and the 72 hour MORC is 62.5 mg/L PC-203C]F. The 96 hour ZC50 in 143 mg/L and the 96 hour IIOZC in 62.5 mg/L.
ID
Tal@le 2. Oxcwth data from toxLcLty test
NooLnal
concentr&tlon img/L)
rep.
0.0 (control)
62.S
125 250 500
irooo
1 2 3 mean
1 2 3 mean.
1 2 3 mean
1 2 3 mean
1 2 3 mean
I 2 3 me an
I mu mber of calls per MilILILter x 103 (hour)
0
24
48
72
96
10 10 10 10
10 10 10 10
10 10 10 10
10 10 10 10
10 10 10 10
10 lo:. 10,. 10
28 28 38 31
20 22 22 21
20 is 22 20
16 22 is 19
12 20 16 26
10 10 10 -'.10
128 116 146 130
68 44 66 66
44 so so 61
14 20 20 is
6 26 4
9
4 22 4
7
310246 288 282
218 162 156 179
S2 so 74 61
12 12 10 11
4 2@ .4 .3
.4
620 512 674 602
470 386 494 451
220 198 202 207
26 12
a 12
0 0 0 0,
o, 0 0
pa" 9@of --A*
Table 3.
Percent change from control and average op*cLfLe grow b rate fi@om taxLcLty test
noolnal Concentration of Test Substance
(mg/L)
Average spec!!Lc growth rate
24hr 48hr 72hr 96hr
0.0 (control) 0.048 0.053 0.046 0.043
62.5
0.031 0.040 0.040 0.040
125
0.029 0.038 0.025 0.032
250
0.027 0.012 0.001 0.002
Soo
0.020 -0.002 -0.016 0.000
1,000
0.000 -0.009 -0.009 0.000
Percent change from control
24hr 48hr 72hr 96hr
0
0
0
0
35
24
13
7
40 28 46 23
44
77
98
95
58 >100 >100 >100
100 >100 >200 >100
Table 4.1 M*dLan of feftive 00roftatc&tLOns (BCSCB)tem toxicity test
axposure period
Rcso
95 percent confido" limits
Calculation nothod
24 hours. 48 hour@ 72 hours 96 hours
212 mg/L 156 mg/L 130 mg/L 143 mg/L
182 - 244 mg/L 140 - 174 mg/L 120 141 mg/L 130 156 mg/L
Moving Average Having Average Moving Average moving Average
7
'of is
Viz.
08=.
1984. Guidelinesfor Testing of Chmicals. Section 2 t If feats on
Biotic Systems.
Method 201, Al@a, Grow h Inhibition Test. Adopted Ji,
4, 1984.
Stephan, C.S. 1983. Comput*r program for calculation of LCSO values. Personal communication.
U.S. RPA. 1978. The Solonastrm caprlco=u.-un Bottle Test. ZPA-600/9-78-028. July, 1978.
PrLntz Algal Assay
'7
IP 12'oo
Aippendix A. WATER OUALITY DATA FROM TOXICRTY-M=
Table'A.l. -T-
Day of gxpoouro
2 3 4
toxielty t*st
Temperature of Incubator,*C 21.9 22.1 22.1 22.0 22.3
'4@
Table A.2. pH wasured during toxicity test
W=Lnal concentration
(mg/L) 0 (control)
62.5
125
2SO
500
1, 000
Replicate
1 2 3
1 2 3
1 2 3
I 2 3
1 2 3
1 2 3
PH initial
final
8.0
10.8
8.0
10.8
8.1
10.6
8.2
10.4
8.2
10.2
8.3
20.2
8.3
9.0
8.3
9.0
8.3
9.0
a.3
B.S
8.3
8.5
8.3
8.5
8.3
8.4
8.3
8.4
8.3
8.4
8.2
-8.3
e.2
8.3
6.2
8.3
14