Document oD7xYqVQZO55QNJgp26N11MLE
The Toxicity of the.Fogs Formed by Dropping Pydraui'F-9< Aroclor IP^S and Trlcresyl Phosphate, Upon the Surface of a Heated Inconel (Project ^9) by
Treon, Cleveland, Shaffer, Cappel, oahegan, Wagner March 11, 1953
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SOOpe ............................................................................................ 1
Conclusion* . ........................................................................ 1
Matorlala ................................................................ ..... $
Experimental Method* ....................................................... , 7
Equipment.............................. .... .....................................
Volatilisation of the Material* Without Pooong>osltlon ..............
7 7
Generation of a Peg Prom a Heated inoonel Surfao* . .........................
9
Sampling and Analysla of Contaminated Air . , 11
uxperlmontal Result# ....................................................... .... 19
Exposure to TJndeoomposad Vapor*..........................19
Exposure to Producta Arising Pro* fydraul p-9,
Aroolor 1248. or Trloraayl Phosphate When In Contaot with Inoonel at 1250 or 10J>00
F.................................... ......................................... . 21
Mortality .......................................................................... 21
Gif;ns and Pathology of Intoxloatlon......................23 The Conoentratlona of Idantlflad Deoompoaltiea
Produota Formed at tba Higher and Lower Temperature# .................................. ..... 2$
Olsousslon . . .................................................
Supplementary Statement * She Applleatlen of Pydraul
F-9* Aroolor 1246 and Xrleresyl phosphate Open
the Skin of Itabblta.................................. ....
31
Experimental Methods Experimental Rssuite
31 3
.
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,conf,.DENt,al
Seouenoe of Table*
1. Tha Mortality, Length of Survival, and Change* In Wolght of Animal* ixpooed to the vapor of f/draul K-9 In Air.
2. The Mortality, length of urvlvel, und Changes In Weight of Animals v.xpoeod to tho Vapor of Aroolor 1240 In Air.
3. Tho Mortality, Longth of Survival, ond chan'.;** In Weight of Animals wxposod to tho Vnpor of frlorosyl Phosphate In Air.
1|.. Concentrations of Various DaooTnpooHlon Products in Air of Chiuobor In tho sovoral tjtperlmont*.
$t tho Mortality, Longth of Survival, and Chanda* In Volght of Animals dxpoood to Aerosol* Formed by Dropping Pydraul F-9 Into an Inconel Tube lloatod to a romporatu.ro of I2i>0 F. (677 0.).
6. l'ho Mortality, Longth of Survival, and Change* In Weight of Animals .Ixpoaod to Aerosol* Formed by Dropping Pydraul F-9 Into ary Inoonsl Tub* Hoatod to a i'onporature of 101*0 F, (;i66 C.).
7. The Mortality, Longth of Survival, and Change* In height of Animal* ijtpoBOd to Aororolo Formed by Dropping Aroolor 11l|B into an Inoonol lubu . oatod
to a Tomperature of Xe.'JO0 f. (077 c.).
0. Tho Mortality, length of Survival, and Chani-e* In Weight of Animals ..xpceod to Aerosol* Foruod by Dropping Aroolor l?lj0 Into an Inoonol Tube iloatod to a i'omperaturo of 1030 F. (506 0.).
9, Tho ''ortality, Length of Survival, and Change* in '.,'olt.ht of Animal* .exposed to Aerosols formed by Dropping Trloreeyl 1'hoephato Into an Inoonol Tub* hoatod to a Temperature of 12^0 F, (677 C.).
10. Tho Mortality, Length of Survival, and Chang** In Wolght of Animal* imposed to Aerosol* i ormed by Dropping Trloroayl Phosphate Into on Inoonol 'Tube heated to a Temperature of 10J>0 F. (5>'66 C.J.
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11. busmry ot Mortality Among Groupa of Aninal* Mubjeotod to Aerosols formed by Dropping iydraul
F-9, Aroolor 1248 or frlorosyl Phosphate Into a Heated lnoonol Tube.
12. J.noldonoe of Mortality In Relation to Matorlal and Gpooloa Regardless of tho Tenvoratura of th* lnoonol,
13. inoldonoo of Mortality In Relation to Material, Rpooloa, and Temperature of lnoonol.
l!|.. The Toxlolty of i'ydraul 1-9 When Maintained Continuously for Twenty-four ilours In Oontaot With tho Skin of Rabblte by tho floovo Method of ih-nlso, Woodard and Calvary.
lj>. Tho Toxlolty of Aroolor 1?1|0 When :;alntalned Continuously for Twenty-four Hours in Contaot vath tho akin of Hobbit* by tho Sleeve Method of Dralse, Woodard and Colvery.
16. The Toxlolty of Trloreoyl Phosphate When Maintained
Continuously Tor Twonty-four Hours In Contaot v/lth the olein of Rabbits by tho nioovo Method of Dralse,
Woodard and Colvery.
17. Tho Toxlolty of Gargoyle DTK When Maintained
Continuously for Twenty-four Hours In Contaot with
tho bkln of Rabbits by the f.loevo :!othod of .'raise,
Woodard and Calvory.
.
1C. Bujnarlied Data on the Immediate Toxlolty of Pydraul ''-9, Aroolor 1248, frlorosyl phosphate and Gargoyle
DIB When ulntalned Upon th* ; kin of rabbit* Aooordlnc to tho Mloeve Method of braise, Woodard
and Calvary.
I I | ;
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1, Hoated Veil Froa Willoh Pydraul F-9 Woo Bveporatod Into Air Otreama.
2, Tower* From Whloh I.lquld* ore Volatilised.
3. Equipment for tho '.'onoration of the Decomposition Jroduota of llydraullo Fluids at High Tomporaturee.
4. Absorption Train for Collection of Carbon Jlonoxlda From Air*
J>. Standardisation Curve for the Determination of
Fydraul<
.
6* Standardisation Curvo for the Determination of Aroolor 1248*
7, standardisation Curve for the Determination of Trloreayl Phosphate.
6. standardisation Curve for the Determination of Hodlwf Chloride.
9. Standardisation Curve for tho Determination of Eata-Creaol.
10. Standardisation Curve for the Determination of lara-Oreaol.
11. Schematic Arrangement of Equipment shown In Figure 3.
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The Toxlolty of the Foge Formed by Dropping Pydraul F-9, Aroolor 1846 and Trloresyl Phosphate, Upon the Surfaoe of a Heated Inoonel
(Vrojeot 49)
Soope
The purposes of this Investigation v/ere to determine the Immediate toxlolty of Pydraul F-9 and two other hydraullo fluids, Aroolor 1846 and trloresyl phosphate, (1) when vaporized at moderately elevated temperatures ond {?.) when Inhaled, by animals of several speoles, as fogs formed by dx'opplng them upon Inoonel, maintained at temperatures of approximately 1850* and 1050* F. (677* and 566 0.), these toraperatures being, respectively, sonowhat above ond somewhat below the fire point. A nupplemontary statement oonoerning the Immediate toxlolty of theae materials when maintained In oontaot with the skin of rabbits Is inoluded at the end of this report.
Conclusions
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1. Animals of several speoles survived without signs of lntoxloation when exposed to air laden with Pydraul F-9, Aroolor 1246 or trloresyl phosphate for 7 hours per
CONf ,DeN TIal 2
day on enoli of several days, i'he concentration* of the notorial* In the air end tho number* of day* of o.xpo*ur* vor* os follows) lydraul K9 3.0 mloroi\r*m por liter, y days) Aroolor 1240, 431 Mlorotramn per lltor, 4 day*) and Lrlororyl phoaphate, 01 > nloroy.ram* per lltor, 0 dnya.
2, fho Inhalation of vapor* of fydraul i'9, /roclor 1M|.'; and trlcreeyl piioaphale formed at riodorotely olovatod 1'oora to .poroturos lnduoed minor obcii;,so In tho 1vo:o ol' the animal* .espiratory exposure to either fyuruul < 9 or trleroeyl phosphate induood ^odorate lneroaso* In th.* in-bore of hietlooytoe within tho lunt: p*ronoiiy-a and the air parra e* of oats, whllo eorrerpondln& exposure of other species to either lydroul F-9 or Aroolor 1240 induoed Intoratltlal pneumonltl* and apparently contributed to the severity of this lesion a* It 1 observed, not infrequently, In control animals. Intercurront lnfoetlon, uru'olatod to tho experimental prooedure, obaourod Interpretation of the morbid chan,"os In tho tissue* of r i ulnoa pip and 2 rsbbltn opposed to tho vapor of trlorosyl phoph*to, on* of whloh dlod 4 dsy* after the last porlod of exposure, i'he vlcoora of tho rate and riloe were normal. babbit l' 907s tho only animal of tho <roup exposed to Aroolor 1240 from whloh tissue* were subjooted to mlcrosoople examination, had fatty degeneration and neoroala of the
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hepatio parenohyma. Other animal* that were exposed to vapors from Pydraul F-9 Aroolor 124$ or trioresyl phos phate exhibited no histologlo alterations of the viscera, aside from the lung, whioh oould be aserlbed to the toxle notion of the materials under investigation,
3. The foge of these materials arising from oontaot with Jnoonel at either 1250* or 1050* F. were immediately irritating to the muoous membranes of animals. Exposure for SO minutes to the fog of Aroolor 124$ lnduoed labored respiration, but In the oase of the other materials this became evident only after exposure for almost an hour.
4. All animals survived when exposed for 15 or 20 minutes to the fogs fornsd from Pydraul F-9 or trioresyl phosphate, at either 1050 or 1250* F,, but exposure for corresponding periods of tlms to ths fog from Aroolor 124(5 resulted fatally. In general, guinea pigs and mloe died more promptly than rats and rabbits.
5. Guinea pigs and mioe suffered greater over-all mortality than did rats and rabbits when exposed to the fogs formed from any one of the three materials. Aroolor 124$ was more toxlo than either trioresyl phosphate or Pydraul F-9 Irrespective of the speolee of animals by whioh toxlolty was tested.
6. The fog of Aroolor 124$ formed by oontaot with Inoonel at 1250* F. was more toxlo then that formed when
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th* temperaturo vm 1050 F, l'he fog of J'ydraul F-9 appeared to bo eltghtly moro toxla when generated ot tho high#* temperature, but tho oonvoroo woo true of foe* from triorosyl phoephate.
7, halving tho rate of delivery of tho liquid upon tho hoctod rotftl tendod to loosen tho mortality induced by inhalation of a resulting foe, but thl* was not truo in all Instance*.
0. Hiorosoopio examination of tissue* from animal* that diod a* a r*ult of oxpoeure to tho fog* of lydraul F-9, Aroolor lFJpO and trloroayl phoaphate rovonlod pulmo nary lesion* characterised by intra-alvoolor odema and IsomorrhftLC, diffuse hyporomla, omphyaena and extensive deposition of carbon in tho bronohi, fboro waa also peronobynatoua degeneration of tho, liver, kidney and brain, lisruen from the animal* that survived revealed only pul onnry loolon* manifested by intcratltlal pnoulonHln and Infiltration of oarbon-laden hlstiooyto* throughout tho alveoli and bronchi, fho Ida s of animal* that wore exposed for tho hortot periods wore nonnal, ne wore those killed ?6 day* or longer after the last period of exposure.
9. fho minimum lethal doeo of undiluted fydraul F-9, when maintained in contaot with th* intact akin of rabbit* aooordlng to the Sip-hour levo nothod of Praise,
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Woodard and Calvery, was greater than 3.6 ml. per kg. and lose than 6.0 ml. per kg., of body weight. The correspond ing value for trloreeyl phosphate was between 1.6 and 2.5 ml. per kg. Aroolor 1246 was not lethal in the dosage of 9.4 ml. par kg. Pydraul F-9 and Aroolor 1246 are more toxlo if applied to the abraded skin.
Materials
Pydraul F-9 is a olear, light amber, oily liquid vihioh has a not unpleasant sweet odor. Its viooosity at 100* F, and 210" F., respectively, is 56.0 and 6.0 Centistokesj its speoifio gravity at 25/5 0, is 1,266, its pour point +5* F.
Trloreeyl phosphate is a colorless, odorless liquid, tho vleooslty of which at 0 end 25* 0., respectively, is 1256.14 and 66.6 Centlstokes, Its moleoular weight is 366.4, its speoifio gravity at 25*/85* 0., 1.162, its flash point 470 F. (43 0.), its crystallization point is less than -35* 0., and Its boiling point 420 C, The sample used v/os made from oresyllo aold in whloh there was less than 3 per oent of the ortho isomer.
Aroolor 1246 is a straw-oolored liquid whloh has a slightly sweet odor. It is more vlsoous than trloreeyl phosphate. Aroolor 1246 Is biphenyl ohlorineted to the
MOMS 055990
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extent of 4 per sent. It* molooular weight 1* 192, end it* density i* 1.44 P. pw ml. At 30 c. (06 P.) and 1.19 e* pe* wl. *t 300 0. (572 P). It* viscosity rang** from 112 oentlpolse* at 30 0. to 0.47 at 300 C., and It distill# between 340 end 375 C., it# vapor pres sure being 0.00037 aw., 0,16 ;,, 2.9 ran end 360.0 mm. of moroury at 37.0 0., 100 C., l'JO0 0, end 300 C., rospoolively, aooordlnf, to hoArdlo, Garrett ar.d benignua Wud, .'ng. Ohon. 41)1341. 1949). i'hose authors have quotod the National tonrd of Flro Underwriter# to the offeot that "decomposition of the product (Aroolor 1246) we* not appreciable at temperature# below 400 C. (7?2 F.) but booeme increasingly apparent at higher temperaturos," 'Die oo:>pound ha# a flash point of 193 to 196 0.. but no flro point In the Cleveland open oup,
h'bon olthor lydraul f-9 or Aroolor 1248 was drop.od Into on Inoonol tube Alnta'ned at approximately 12^0 F. (677 0.) the liquid burned momentarily with a bright yellow-white or orange-whlto flame, and then burat into a dense cloud of black omoke. Muoh glossy carbon was doposltod on the etdea of the manifold loading to the ohambor, which rapidly became filled with dense prey smoke. This soon turned Jot blaok, apparently booause of the formation of flakes of carbon a# soot. At lOb'O F. (666 C,), these liquid* smouldered and burst Into a
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donHO ;roy-white foe* In whloh wore snail amounts of oarbon soot* In oil Instances tho odor v.oe norld and pungent. Vhon dropped Into tbs Inoonol tube hooted to either 121>0o or 1050 K. trlcresyl phonphoto rove rise to a oharaotor1st,lo phenolic or orosyllo odor and boluwod as did tho other two atorlals when droppod upon iiiatnl at fro hi; hor tempore tv.ro. At temperature* bolow 102rj I',, trlorosyl phosphate appeared to shoulder without flaming*
j-aulpinont. the animals wore oonfinod in a ?23-lJ.tr cltiidrloal stool c'-.oibor oos tod on tho Inside aurfao* with n onked plr.atlo. Jnleee a heavy fop, was pronont tho bo. av lor of tho anl al could bo observed through a cheat of cion," pliable plastlo no -brans, whloh sealed the otherwise open f ront end of tho oluv'ibor. An Interposed heavy wlro-mesh screen prevented t'no onfnols Iron breaking tho plan tic Membrane* She oontaminated air entered tlie ohn;,bor ;;onr tho top of tho roar wall on whloh was ,-iounted a olrculatliV fan. Affluent air was wltlidrawn tl\rou;h an outlet located toward* tho front of the lower pert of the chamber by . alntalnlng a slight negative pressure.
Volatilisation of tho Pateriala Without Decomposition, i'or tho volatilisation of either trlorosyl phosphate or Aroolor 1?1|8, two flet-bottomod cylindrical bubbling tower*
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(8.94" * 13") In parallel (Figure 2) were eivloyed, n
fritted glass thlmbl* (0,94* * 3*75") being Immersed In th* liquid eontalned in eaoh. Thai* tower* war# kept In
a bath of Kujol malntalnad at 109 0. Air passed through
thd two bubbling tower* at rata* of .0 and 6,3 lltor*
per minute, X'eepeotlvely, a* noasurod by a rotameter in
ottoh line, the stream* Merging in a glass tuba leading
to a manifold intwreod in a ooollng bath before entering
the chamber.
At tha etart of t!i experiment 550 milliliter* of
either trioreeyl phoephate or Aroolor 1240 ware plnood
in oaoh of the two bubbling tower*, In the case of trl-
orosyl phosphate. It was found that the eonoantratlon of
vapor within tha ohambcr boooraa lo on the seoond day
of exposure and a till loa* on the third, It 1* thought
that tho trioreeyl phoephate might have hydrolysed some
what during the oouree of standing overnight, possibly
from raoletur* absorbed from the air passing through It
during the day. In order to maintain the oonoentrattone
ne uniform a* possible, the material remaining In the
towere was roplaood with a fresh supply on the fourth-day
of tho oxportmont. Had sufficient material been on hand,
this would have boon done daily In order to attain a
somewhat higher average concentration throughout an exper
iment, This illffloulty did not arlso In tho oa*e of the
Aroolor 1240.
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frPNF 10 C f/ TI Air
It was neoeeeary to employ other equipment for the volatilization of Pydraul F-9 beoause of extensive foaming In the bubblera. Therefore, the Pydraul F-9 was maintained at temperatures ranging from 109* to 112* 0, In a glass well heated by nlohroate wire (Figure 1). Air at the rate of SO liters per minute, as measured by a rotameter, passed ovor the surfaoe of the heated liquid and than through a manifold ooollng bath before entering the Ohamber, A volume of 190 ml, of fresh Pydraul y-9 waa addod to the well dally, of whloh about 1J0 ml, remained at the end of the day.
Generation of a Foa From a Heated Inoonal Surfaoe. A rotameter for measuring the flow of air, a furnaoa for volatilizing and decomposing the liquid, a eeml-potentlomoter (see below), a ooollng manifold, and the ohamber for exposing the animals are shown In Figure 3. In these experiments the smaller rotameter, to the right In the photograph, was not employed, and all air (20 liters per minute) that entered the ohamber was passed through ths furnace. The ooollng oolle were paoked in the bath shown and surrounded by orushed lot.
The body of the furneoe oonslsted of a 26-lnoh length of oold-dravm, seamless Inoonel tubing, having an outside diameter of 1.5 Inohes and a wall-thloknesa of 0,049 lnoh, Pydraul K-9, trloresyl phosphate or Aroolor 1S4U
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was droppod upon the innor surfeoo of the tub* from b burette through an Inoonol tubo weldod to the uppor eurfaoe of th heated tub* near lt midpoint, Phis side tubo tied a length of C lnchao, en outside diameter of 0,675 Inoh, ond a wall-thloknose of 0.091 Inoh. Another olooo of inconel tubing 3 Indies in length and having nn ouuaido diameter of 0,106 Inch and a wall-thlcftieaa of 0.049 Inoh, was alno weldod to tho uppor portion of the furnaoe tubo, to permit tho Insertion of a thermocouple .In such e manner os to measure tho tomperoturo at the upper Interior evrfaoe of the furnaoe. file dlstanoe from oenter to oonter of tho two smaller tubes, whfoh wore parallel to one another and perpendicular to tho furnace proper, was 1,75 Inohoe.
,he outside of tho furnace wee wrapped with 2 layers of molding mloa. fhe middle 10-inoh portion of the lotiptli of tho furnaoe was olootrloally hooted by means of 20 foot (9 wrapping* to the Inoh) of A. i:, u. Jiu.ber 20 I'ophot "0" wire, which hart a roalstonce of 0,659 ohms per foot at 60 F. The wire was Insulated with approxi mately 0.75 Inoh of dietonaoeoue earth and wrapped on the outside with cubes toe oloth,
Pbo temporature of the wall was measured by an lronoonstnntan thermocouple attached to a semi-potentiometer calibrated against a student potentiometer, The thermo couple vas in oontaet with the upper part of the furnaoe
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about 1 Inch downstream from the point at whloh the droplets of material fell upon Its lower Interior eurfaoe.
After the furnaoe had been brought to the desired temperature of either 10JO* F. or 1850* F., the hydreullo fluid was dropped from a burette at the rate of 0.067 bo 0.245 ml. per minute (of. Table 4), 0.100 to O.167 ml. per minute being the usual rate.
Sampling and Analysis of Oontamlnated Air. When the undeoomposed materials were metered Into the air In the ohamber, 4 samples of air eaoh day were passed from the ohamber, at the rate of 3.4 liters per minute, through 8 absorption towers (8.25" x 13" outside diameter), eaoh oontalnlng 100 ml. of an appropriate solvent. Redistilled ethyl aloohol was used in oolieotlng trloresyl phosphate or Aroolor 1848, while hexane wae used for Pydraul F-9. The sample passed through a ooarse fritted glass dlso (1.13" in diameter) Immersed in the solvent and plaoed parallel to the bottom of the tower and about O.E" above It. The oontent of Pydraul F-9, Aroolor 1248 or trloresyl phosphate 00 colleoted was determined by measuring, by means of a Beokman spootrophotometor, tho ability of the solution to transmit ultraviolet radiations of wave lengths 248 BijH, 248 tyc and 284 ty(, respectively.
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C O M 1 D - N T I A L'
A ourve relating the transmission at 846 tytto the concentration of Pydraul F-9 in hexane over the range of 4.7 I 71 miorograme per ml. is shown in Figure 5A comparison of the corresponding ourvee for Aroolor (Figure 6) and trloresyl phosphate (Figure 7). are also shown.
The oloohol used as solvent for Aroolor and trloresyl phosphate was freed from ultravlolet-ahsorbing impurities hy the following procedure 1 About 1750 ml. of 95 per oent ethyl aloohol were permitted to stand overnight with 10 g. of pelletB of KOH and 7 8 aluminum foil (O.OOJ"). The mixture was then refluxed for half nn hour and dlatilled at 76*50* 0., the first 80 ml. being rebooted.
In experimentB involving the exposure of animals to tho produots formed on thermal decomposition of l'ydroul, Aroolor or trloresyl phosphate for no longer than 7 hours, from 3 to 6 samples of air were oolleoted from the ohamber for analysis, depending upon the length of the period of exposure. When exposure was repeated on tho following day, a corresponding number of samples was oolleoted on the aeoond day. Analyses were made for one or more of tho following materials! phosgene, hydroohlorlo add, free oreeols and oarbon monoxide.
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.CONFIDENTIAL
When Aroolor 121(8 vaa to bo determined, the samples of sir were oollootod In an evaouated *:las# bulb 21.455 11tora m oepaolty. The Aroolor in the cample waa absorbed In 100 ml, of redletilled ethyl oloohol, the letter being released Into the bulb from on auxiliary bulb by opening an interposed stopoook. In the first few nnalyoon, It wee found nooeseary to l'roe the olcohollo solutions from carbon coot by filtration, but subsequently trio nood for ro doing was eliminated by the Inocrtlon of a plug of glass wool between the ohambor. and apperatua for collection. Suitable aliquot portion# of the eloohollo solution wore a,-.ployed in the ennlyaea,
v.'hon phoBfOne was to be determined, the air withdrawn from the chamber was passed at the rate of 6,i) lltera per minute first through a column 1.5" x 0.5" of 60 to CO moah sino dust, next through a fritted . lose dlao in arsed In 100 ml. of a 4 per cent aqueous solution of sodium hydroxide contained in a cylindrical tower 13" in height and 2.25" In outside dlamoter, and lastly tlirouf-'h an l.-iplnper similarly im-orsed In a like volume of alkaline solution In a aeoond tower of the same dimensions, Famploa of air to be analysed for hydroehlorlo aold were oolleoted similarly exoopt for the omlSBion of the ooluron of alno dust (of. Jacobs, Analytical Chemistry of Industrial Poisons Haearda end Solvents, p. 305. 306,
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.CONFIDENTIAL
1941). i S. tor on aliquot portion (lp ml. or lost) of the rolution had been nade sold to phonolphthalein with 10 per oont. nltrio aold (1 vol. of HMOj iJ.0. 1,4? diluted to 7 volumes with wator), and diluted to 24.0 :.l. In a volumetric flask, 3 drops of 0.1 f< ('liver nitrate wore c.:dod. i`iiO tratirmlealon of 11: lit of wave loiv.th 400 ryi throv/.h f.-iia turbid solution in a >0 rm. coll was >ensurod In a '.ookman spectrophotometer in comparison with
at fchrou.-.h a i l'Ilnr cell contain.)rip a ohloriue-frce rolution prepared in a corresponding mannor. A ourve relatin'.' the tranawiaalon at 400 tyt to tb* concentration of sodium cVilorldo over the range of 20 to 320 nloro;ram per ?J> -1. Is ahown in /-l.fure 0. One i-illilrram of sodium chloride la oqulvalont to 0.6461 mg-,. of phosgene or to 0.6230 iv. <>f hydroohlorio acid.
The oroaola were determined oolorlmetrloelly after coupling with dianotlaod eulfanilio acid by mothods for the meta isomer desoribod by kosnot and 'lanan (Anal. Chpm. 201941. 1748)# a''11* for the par* leomer by nohmidt (J, idol. Ohom. 3791211. 1949). Oanplee of air for the determination of either trleroeyl phoephate or free oroools (meta and para itomora) wero passed at t-he rote of 6.0 liter# per minute for 30 to 45 minute* through a frittod-clae# diso scrubber and lmplnger in eerie* a* in the oaee of phosgene. In this lnatanoe, eaeh tower
HONS 055999
PONFIDENHAL 15
contained 100 ml, of a 1 pot* cent sodium hydroxide solu tion. In analysing for the froe oresole, 1 nl, of & 20 per oont sodium earbonate solution woo added to an aliquot of 6 ml, or loss oontalnod in a 10 ml, glaae-etopporod graduated oyllndor, Aftor tho solution hod boon diluted to 6 ml,, 2 ml. of dlaeotlited eulfnnjllo acid wore sdrtod, The 1 attar was prepared by add Inc 0,75 ml. of a 5 par oont solution of sodium nitrate to 0,75 ml, of a solution of rulfanlllo acid oontalnod In a 25 ml. volume trio flask previously oooled In on loo-bath. tho eulfanlllo add solution was preparod by dlenolvlng Ip,f> (> of tho acid in )j5 r.l. of concentrated bydrooblorlo acid end dilutln:' It to 500 -,1, with wotor. Alter the partially dlnxotleed solution had boon oooled for 5 minutes, an additional 3 ml, of oodium nltrot* solution were added and further oooled (or 15 .ulnutos, then diluted to 25 ml, i'he solu tion was preparod dally oral kept cold, Curvoe rolatiug the transmission of lip,lit of wave lo.v.the ip?;; ty< end 500 tyu to the concentration of -.ota crosol over the rcrr;o of 3 to !|9 mlorofrasie per 100 ml, ere shown In figure 9. rn making the neoossary measurements, the ooreperlson-oell oontslned a solution similarly prepared oxoept for the omission of orssol. Corresponding curves for pava-orosol over ths range of 10 to 120 nlorograwe per 100 ml. are shown In figure 10. By tho uae of the following
HONS 056000
.....
fipNFIOCNT(Afc 16
ainultaneoue equation*, the amount of :aeta end perm oreeol
oould bo oaloulatod.
( For the determination of mete oreeol (f)t
p-orcsol 1| .31 il-oreaol * apparent p-oreol (4?5> iy<)
pere*ol + 1.13 M-oresol apparent p-oreaol (500 iyt)
3.10 M-oroeol difference In apparent p-croeol at the Z wave length*
(V) :i-oroeol * fllfforonoo In apparont p-creaol ...................T.10
or tho dotornlnntlcm of para oresol (Y)i
:!-ororol + 1 r p-orosol apparent M-or*eol (425 vy*) 4.13
iororol 1__ _ p-oroaol apparent ii-oresol (500 pp) 1.13
0.653 p-oroeol * dlfferenoe In apparent ;<-oreaol at the 2 wave lengths
(Y) p-ot'oeol dlfferenoe In apparent '^-oroeol
0.653
"
fhe validity of thla method J'or the almultaneoue dotorilnation of the two lno.iore wee demonstrated by the following determination* on eoMple* containing both of thorn In known amount*. Analyale of a aiviple prepared to contain 12.30Y of m-oroeol and 9.96ZY of p-ore*ol yielded 13.90 end 9.95*. reepootlvoly. A rooond sample preparod to oontaln Zli.OQr of m-ore*ol and 9.96Y of the para laomer yieldod 25.90V and 10.7Y, reepootlvoly.
l'ho rerultr do*lf.notod a* froe oreeola In Table 4 roproaont the aum of tho two leomora. From 60 to 70 per
HONS 056001
- 17 -
CONFIDENTIAL
cent of tho total amount of fro* oreeola present in the ohamber, as the result of decomposition at 1050 F., mm found to oonelat or tho moto isomer, hut uhon tho torn* porature of tho furnooo wae 1250 F., only tho mo to Isomer wo* present. 'ilneo a sample of trloresyl phooplioto, analysed sf lor hydrolysis, oontslnod approximately 65 por oont of tho noto and 35 por oont of tho porn isomer, it uppoora likely that tho latter underwent decomposition to unldontlfled fragment* at tho higher teraporature.
For tho deterra1notIon of undecomposed trloresyl phosphato proaont In tho oharaber, o P nl, aliquot portion of tho sample, oolleoted In tho manner Indloatod for tho detox'tnlnation of crenols, voa hydrolysed by refluxing It for an hour with 10 ml* of 45 per oont oquoouo o<)lum hydroxide! It wee thon aoldlftod with oonoontrated hydro chloric odd and distilled until 300 ml. bRd boon oolleotod. Tho usual orosol method was thon applied to tho distillate.
Carbon monoxide was determined by a modification of tho mothod of Bland (Aust. J, Jtper. bid, and Med. hoi, 3j0i35 1940). The sample* were collected by poealne air at tho rate of 47 lltora per minute for 5 mlnutoo tlirou;.'h the abaorptlon train chown In Fleur# 4 by moan* of a cast notary Bloat and huotlon Pump located benoath the table and not shown In tho photograph. The flrat U-tube oontalnod glass beads and a 10 per oent aqueoua solution of
HONS 056002
18 .
CONFIDENTIAL
load aootate, while the eeoond U-tubs, which contained tulfurlo eold (9.(it 1.04) and glass head*, was surmounted by a Ion,', narrow tube paoked from top to bottom with euooseelv* Isyore of silica eel (li-iprognated with a oobalt aalt to Indloate the presenoo of moisture). .>n/vnotilum porohlorate (Anhydi'ono), a eodluni hydrnto asbestos Absorbent (Ascarlts) and a second layer of a. noslum porohlorate. air Insulin from the top of thin tube passed through a tube containing Iodine pentoxlde heated to 115' C. iodine liberated by the reaction
5^0 --+ 5C0g * Ig
vine oolloated in a bubblor containing 5 nl, of a 3 per oont aquoous solution of potassium Iodide, i'he rate of flow was honoured by an upright manometer as shown In r'lhnvo Ip. The oontonte of the bubbler vioro titrated with 0.001 U arsenlous acid, employing starch oa lndloetor,
HjAsOj * Xg + '.!g0 --* !!jAsO^ + 2H1
One milliliter of 0.001 N arsenlous sold *0* 0.070025 mg. of 00. In calculating the results, sllowanos was mads for the previously determined traees of free iodine In the volume of the solution of potassium Iodide present In the bubbler.
;>soh of the following concentrations of the various oontsnlnants of the air of the oharaber. oppressed as
HONS 0S6003
19 -
CONFIDENTIAL
p.p.m, by voluna In air at 64 F. and 745 ran. of roeroury, 1 equivalent to tha Oonoentratlon of 1 ng. per liter.
goBBftWti Phosgene 1101 Xrloreeyl phosphate drorol Carbon monoxide Aroolor 1248
255.9 693.3
68.6 233.8 902.7 131.7
hxperlmontal Heaulf
consisting of a oat, 2 guinea pica, 5 aloe, 2 rabblta and 3 rata, eurvlved whon exposed to air laden with 3.8 microprone of tydraul F-9 per lltor for 7 boura on eaoh of 5 oonsooutJ.vo day* (Table 1), All animal a of a group similarly oonetltuted, except for tha omission of ona rat, eurvlvod whan exposed to air containing 431 mlorograme of Aroolor 1248 for 7 houra on aaoh of 4 oonaaoutlra daya (Table 2). Lxoopt for ona rabbit (1790) that died from oauaaa unrelated to exposure 4 days after tha 6th expoeuro, those of a 3rd croup survived whon eubjeotod to tha inhalation of air boaring 61.5 miorograras of trloreayl phosphate for 7 houra on oooh of 8 daya ovor a period of
HONS 056004
I
f! -T'
*a-v*r
. - . ^CONFIDENTIAL" 20
10 day* (Table )). Change* In weight were umllj email (Table* 1 - 3), end no eigne of lntoxleetion were observed.
Mloroeooplo examination of the lung* from animal*
oxpoeed to pydraul F-9, and killed 10 or 13 day* after the 5th period of exposure, revealed the ooourrenoe of
intoretlticl pneumonitis In the rat, mouse, guinea pig and rabbit. Die oat exhibited moderate number* of hlr-
tlooytoe, containing dark-brown granular pigment, within
respiratory bronchiole* and alveolar duote. The remaining
vlsoera were normal.
.
Animals oxpoaod to the vapor of Aroolor 1240 also had Inter*tltlal pneunonlMa. the lunge of a oat whloh .hod boen subjeoted to exposure to the vapor of Aroolor
1?48 wera normal, fhara wae no evidence of Injury to the
other vlsoera of the varloue speolea. The liver of a
rabbit (1907), the only one examined mleroeooploally, exhibited severe fatty degeneration and fool of necrosis.
Mloroeooplo examination of tissues from a rabbit
(*'798) that died 4 days after the Oth exposure to trl-
oresyl phosphate disoloeed the preeenoe of a severe
parealtlo lnfoetatlon In tho liver. Another rabbit that
was killed 3 days after the Oth period of oxpoeuro bad
lnourred severe parasltlo Infestation of tho llvor, A
guinea pig had aoute lobular pneumonia, unrelated to the experiment. In the lunge of a oat ware considerable
MONS 056005
- 21 -
jp P N F | D E N r (A t
numbers of hlatioeytea, containing dark-brown granule*. The vleoara of the rot* and raloa wore normal.
Tnoonol at 1250 or 1050 E.. rho duration of exposure, tho ohftnge in weight, and tha fata of Individual anlmala that wore eubjeoted to tha Initiation of tha produota firleing; from the oontaot of lydraul F-9 with lnoonal at 12J>0 and 1050 1'. are proaented in Table* *> and 6, roepeotivaly. Correapondlng data from animal* expoead to tho foe* from Aroolor121$ or trioroayl phoephat* are glvon, rocpeotively, in fdblaa 7 and 6 and in Table* 9 end 10. The data relevant to mortality among all group* have boon eummarleed in Table 11.
'lortallty. Caroful examination of tho data demon* ol.ro to certain .. onerel facta, It 1* apparent, in term* of ovor*all mortality, that i:uinoa plga and nloe war# ^ more ini;ooptiblo to oaoh of the throe material* than wort rata and rabbit* (Tablo 12).
The *ame orltorion w* employod for oo*p*rlon of tho fog# that ware formed at 12^0 and lOiJO F. The fog generated from Aroolor 121$ at 12>0 F. wa mor# toxla than that formed at 1050 (Table 13). In tha aa*a of ^
pydraul K-9, tha toxloity of tha fog formed at tha higher temperature appeared to be elightly greater than that
HONS 056006
-?:NF|>CNTJAL 22
generated at the low**1, The temperature of dooompoiitlon was of little Importance In determining the toxicity of the tots fowied from trloroeyl phoephate, slnoe that whloh
resulted from the higher tomporature was apparently
lightly
toxlo than that formed at the lower toiler-
atore.
A comparison of the three material* under corresponding
oondltlon* Indicate* that the foe* formed from Aroolor 1248 were more toxlo for guinea piga, rabbit* and nloe, but not for rat*, than were those formed from Pydreul : -9 or trloreyl phosphate (Table 12) Aroolor 1248 le also the most toxlo of the three material* If the *horte*t period of exposure that is lethal 1* taken a* the orl.orlon. Regardless of the temperature of doooi%>o*ltlon, all animal* survived whon subjected to the fog formed by
fydraul f'-9 or trloroeyl pho*phate for 1> or 20 minutes, but exposure of like duration to the fog oroatod by the thermal decomposition of Aroolor 1248 often resulted
fatally. In order te ascertain the effeet of different rates
of dollvery of the liquid Into the Inoonel tube while
the rate of flow of air through the tube was kept con
stant, Aroolor 1248 and trloresyl phosphate were delivered
at two different rates (Tables 4 and 11). The mortality
associated with reduction of the rate of delivery was
relatively low In many instances.
M0NS 05600?
C.ONFlDCNTIAk 23
flfine and Pathology of Intoxication. Although In those oxperlmenta the fog* rilled the olvamber to suoh n
oxtent that It vaa lmpoealble to observe the anlmale
tliroughout the period of oxposure, a l'ow signs of intox-
loatlon oould be observed. The fogs were Immediately
Irritating to tho wuooub i-ionbranes of tlio animals, tvs ovldonood by tbolr closure of tho eyes, twitching of ine
nose, orylng, coughing and sneeslng. labored rooplratlon
and Irritation of tho superficial tissues of tho oyos
nppoarod later. Dyspnea waa observed after 20 minutes of
exposure to Aroolor 1?46, but this did not appear until
the animals bad boon exposed to tho othor retorlnlo for almost an hour, i.lienover oats wore exposed exoossive
salivation was ovldont, and frequently long strands of
thlok nuous drooled from the mouth. Maolt root oovered
tho hair of animals exposed to fogs generated at tho
hi; her temperature (1250 F.).
Examination of animals that died during or shortly
after oxpoaure to tho fogs of fydraul f-9 Aroolor 1?J|8
or trlorosyl phosphate revealed extensive pulmonary eongeetlon end. In oooaslonal animals, fool of pulmonary
.
homorrhogo, .Many olso had fool of black pigment that
appeared to be oarbon distributed throughout the lung tissue. Mlorosoopleally, the loelons oonslsted of marked hyperemia of tho lung, oontnon to all exposed animals
MONS 056008
- 24
*HTlA
examined, and in many there hw lntra-alveolar hemorrhage nd edema. The oarbon pigment we* distributed ehlefly
within the bronohi and, in eon* instance*, completely odbluded their lumen* iulmonsry emphyeewa vae prssont frequently. In 5 guinea pipe and 2 rabbit* tht died during oxpoeure thar# was, in addition, an aoute purulent bronohlti*, apparently a raaotlon to bronohial irritation. Lethally poieoned animal* exhibited paronohymatoue degen eration of the liver, kidnoy and brain with regularity,
in addltioh'to^thd, pvCMw:y leaion*. the vleoera of animal* that died 7 to 10 day# aftor brief periods of exposure revealed pulmonary leal^na almllar to those
already deioribed extepi that there ivae more pliagooytosl*
<< '
f'.
of carbon partial**.* Anlrtal*. that survived were killed
after intervale varying from 1 Week to 2 month#, there "were no significant lesions of vlaoera othsr than lung, two oats of the 5-exposed to the fog of iydraul i-9 wore examined miorosooploally. The vleoera of Cat A)8l were normal, while the lunge of Oat *374 were the site of pro
fuse intraluminal bronohial deposits of black granular material and interstitial pneumonitis. The lung of Cat *371, whloh had boon eubjeoted to 2 periods of exposure to tho fog of trlcreayl phosphate, was ohareoterl*sid by almllar pulmonary changes. Oulnsa Pig A862, Jelled 22 day* after 2 period* of exposure to trloresjfl phosphate
HONS 056009
-c Oyv /io
85
vaporised at 1250* F., was found to have numerous hlatlooytes loaded with oarbon pigment In the lungs, as well a* a severe Interstitial pneumonitis. Other epeoles of animals had a similar Interstitial pneumonitis. However, animals that had suffered the shortest periods of exposure, and animals killed 2(5 days or longer after exposure, exhibited normal vlsoara.
The Oonoentratlons of Identiflad Pepompoaltlon Prod ucts Formed at the Higher and Lower Temperatures. Although only a port of the materials metsrsd Into ths Inoonel tube oould bs aooounted for In the air In the ohamber, some very tentative statements oonoernlng the composition of the air may be made. Although large amounte of soot were formed, no attempts wsre made to measure the amount of free oarbon or of oarbon dioxide. More unidentified materials v/ere present when the decomposition was effeoted at the' higher temperature, Irrespective of the nature of the liquid dropped Into the tube.
In the case of Fydraul F-9, less hydroohlorlo aold and more free oresols were present when the temperature of oontaot was 1050* F. than when It was 12j50* F, (Table. 4).
V/hen the temperature of oontaot with Pydraul was 1050* F., the oonoentratlons of hydroohlorlo aold and phosgsna, measured together In terms of hydroohlorlo aold, ranged from 0.35 to 0.67 p.p.m., but when the temperature
HONS 056010
- 26 -
0/ /*>
n
was 1250 y. ths corresponding values ranged from 11 to
82 p.p.m. J'ree oresolo were more abundant at the lower
temperature, being present to the extent of 11 or 12
p.p.m., whereas only 0.09 to 0,15 p.p.m. were found when the temperature was 1250* ?,
In experiments with Aroolor 1243, nuoh more undeoom-
poood material wee found present when the temperature of
oontnot was 1050 V. than when It was 1250 K,, 121 to
286 p.p.m. being found In the former oases and only 10 to
16 p.p.m. In the latter. Only rarely was more than one
p.p.m. of phosgene found regardless of the temperature,
tho values reported as hydroohlorio aoid and phosgene
representing predominantly the former. Loss hydroohlorio
aoid was present at the lower temperature, there being 11
to 17 p.p.m. in this oase and 84 to 102 p.p.m, when the
temperature was 1250 K. The values reported for oarbon
monoxide are probably somewhat low beoause the rotameter
employed for the oolleotion of the samples had not been
oallbratod for use under the conditions of these experi
ments. Nevertheless, It seems apparent that whon the
lnoonel was kept at the higher temperature the amounts of
oarbon monoxlds found tended to lnorease as the duration
of the experiment lnoreaaedj muoh less variation was
onoountered when the lnoonel was kept at 1050 T.
HONS 056011
- 87
A'/r lb
In the oase of trloresyl phosphate, more or the undeoompoeed materiel ana more free oreeole were present In the ohamber when the temperature of the Inoonel wee lower. The values reported (Table 4) for trloresyl phos phate, as determined by hydrolysis and the oolorlmetrlo determination of the resultant oresols, may be somewhat low, oinoe results several fold higher oould be obtained by measuring the ultraviolet abeorption at 64 eyM- of aloohollo solutions of spot samples oolleoted In an evac uated balloon. Determinations by this means may, however, have given high results, slnoe filtration failed to remove a slight smoky turbidity.
HONS 056012
Co Nf? id N rUi 80
It 1* unlikely that any of the fatalltlos In thea experiment# oould be attributed solely to the preaerro* of phosgene, elnoe, ecoordlng to I'lury and Zornlk (Harmful usees, Gorlin, 1931* p. 888), raloe must be expoeod for several hours to the oonoentratlon of 1,85 p.p.n. If any are to bo killed, while only 70 par oent of a group of mice dlod when exposed for SO mlnuto* to air bearing SO p.p.ra. On numerous oocaslona the mlee In our experiment# dlod when exposed l'or but one hour to an atmoaphere that contained loaa than 1 p,p,n, of phosgene. Flury and ViOrnlk atata alao that rabbit* survived following oxposure for 50 nlnutoe to tha concentration of 50 p.p.m., but that 75 por oont of another group died whon expoeod for twice that period. Box and Culluitibina (Br. J. ftiarmaool, and thorn, t30, 1947) report tlrat 8 of 18 rats died after bolus exposed for 10 nlnutes to 0.83 ng, of phosgene per liter of air (57*5 p.p.m), although tha oonoentratlon of O.OGO mg. per liter (80.5 p.p.m.) vaa not lethal for rata when inhaled for 10 minute**
In the oonoentratlon of 1,3 to 8,0 tug. por 1. (1174 to 1805 p.p.m.), oarbon monoxide caused no elgnlfloant slgna of Intoxication in mice expoaed for 6 hour* by Cherno and Liberman (Pannekol. 1, Tokelkol. Afit (Ho, 3)t88,
HONS 056013
19471 0* A, 42,(2679 1949), nlthough SO to 40 per oont
of group of mIm died * result of a Ilka period of
exposure to th# concentration of & mg, of oarbon monoxide
por 1. (5416 p.p.m,). Slnoo tho mice In our experiments
(Uod under conditions whleh were nuoh le* sever* with
respeot to oarbon monoxide, It la evident that thla com
pound by ltaolf was not roaponalbla for their death.
Comparable information with roapoot to other apoolaa of
nnlmale la not readily available, although Moae, Jsokson
and Selborlloh (Aroh, Ind. Hyg, and Toxlool. k)6S, 1951)
hava reported that tho concentration of $,000 p,p,m, was
required to kill a rat In 30 mlnutee,
Rabbits and guinea pigs survived when subjooted to
tha Inhalation of tha vapora of hydrogen ohlorlde In the
approximate concentration of 250, 700 and 1,000 p.p,m.,
over the respective perloda of 7, 2 and 0.08 hours ('freon
ot al,, Aroh, Ind, Hyg. and Toxlool, i?l6, 1950), In
thoae same experiments, come of the guinea plge and rab
bits died whon expoeod for 0,5 to 5.0 hours to oonoentra-
tlona of hydroohlorlo sold ranging from 1,000 to 400
pp,m. Again, hydroohlorlo aold doe* not seem to be the
eolo agent responsible for the deaths encountered in tha
present experiments.
HONS 056014
Data pertaining to the toxlolty of oreaola In air
are not available} however, Deichmann, Kltemlllor and
30
{o. N >V,
Witherup (/w. J, Clin, fatb. ^173* 1944) found that only after 20 perloda of expoaura, eeoh of 7 houra, to tha vapor of phenol In the air in tha oonoantratlon of 0,1 to 0,2 mg, par 1. did any raaplratory diatraaa or fatalitlaa develop among a group of 12 guinea plga liabbita and rata furvlved much longer# Slnoe it la likely that tha vapora of mate* and pora-oroaol ara comparable in toxlolty, it doaa not appear that tha doatha raportad haraln ora attributable to oroaol.
HOUS 056015
mmMJM
Experimental Hothode. In eooordanoe with the tech
nique of Dralso, Woodard and Calvary (J fharm. Kxper.
iharap. 02)377. 1944)# one of a aarlaa of graded dosage*
of oaoh of tha undiluted material*, lydraul F-9. Aroolor
121)0 and trloraayl phoephata, waa maintained for 24 houra
in contact with tha Intact akin of ona of a group of rab
bits. In this method, tha hair waa ollppad from an area
of MtIn 6 to 7 Inches wide and completely enolrollng the
trunk of eaoh rabbit. In other groups, tha outermost
layer of akin waa abraded by eoratohlng thin furrows 7.5>
om, in length and a few millimeters apart with an hypo-
demlo needle.
'
In either ease, the ontlre trunk was covered with a
oleovo of dental rubber dam whioh fitted tightly at the
oophalad and oaudad edges of the dipped area and loosely
over tho Intervening area. During the 24"hour period of
oontaot tha rabbit waa kopt in atooka. At the end of the
21) houra, the material waa removed from tha akin of the
animals by washing with water and a aulfoneted oil, *pH6".
In addition to the three material* mentioned previ
ously, a produot designed to fulfill tha eane purpose,
HOMS 056016
I
32 -
'*to
Oergoyle 1XTK, wee lnvoetlceted. Gargoyl* DTK (Sooony) in nnld to bo o petroleum base hydraulic fluid oontelning minute amounts of n runt inhibitor ond on oxidation Inhibitor. Osrgoyle DTK he* tho speoiflo grerlty (API)
of Jl.l, moxlntUM pour point of 20 F,, a minimum flash
point of 395 F.| a flrn point of 497 F. Itn vlnooslty
at 100 F, 130 F and 210 F. Is 225, 116 and 40.5 S.S.U., ronpnotlvoly.
Experimental Iionulta. Tho partlnent data of tho oxporlmontn relating to Pydreul P-9, Aroolor 1248, trloronyl phosphate and Gargoyle DTK are given In Tables 111, 15, 16 and 17, respectively, Table 18 summarises the oseentlal information In the preoedlng tables.
Two rabbits died following the appliestlon of 9.4 ml, of Pydraul P-9 por kg, of body weight upon the lntaot akin of eaoh, uhoreas only 1 of 3 rabbits died whan tho dosage waa 6.0 ml. per kg, fiiroe rabbits sur vived when oaoh was aubjootod to tha application of 3.6 ml, per kg. The dosage of 6.0 ml, per kg. was lsthal to 3 rabbits when applied upon their abraded skin (Table
14).
.
'
Two rabbits dlod following the application of 6,0
ml. of Aroolor 1248 per ltg, of body weight upon abraded
ekln of eaoh, wheroae only 1 of 3 rabbits died when tha
^4
HONS 056017
CC 'V,,. 'b.
33
dosage was 9.If or 9.0 ml. per kg. The dosage of 9.4 ml.
per kg. wee tolerated by 3 rabbit* when applied upon their
lntaot skin (Table 15),
The application of trloreeyl phosphate upon the
lntaot skin resulted In the death of a rabbit given 9*1*
ml. per kg. and in that of another given b.O ml. per kg.
When the dose was reduoed to 2.5 ml. per kg., 1 of 3 rabbits died, whereas 3 rabbits, eaoh given the dosage
of 1.6 ml. per kg,, survived (Table 16).
Five rabbits with lntaot skin and 3 rabbits with
abraded skin eurvived following the application of 9.4
ml. of Oargoyle DTK per kg. upon their ekin (Table 17).
In no lnstenoe was the lntaot skin of the rabbits
Injured by the application of these materials. Nothing
remarkable ooourred when Oargoyle DTK was applied upon
the abraded sklnj however, the abraded skin beoame very
slightly erythematous after Pydraul F-9 or Aroolor 1248
had been applied.
From the Kettering laboratory in the Department of. Preventive Medlolne and Industrial Health, College of Kedlolne, University of Cinolnnati, Clnolnnatl, Ohio.
Experimental Work and Report byj
Joseph F. Treon, Ph. D, Prank P. Cleveland, M. D,
Prederlo E, Shaffer, M, 9.
John Cappel, B. S. Thomas Oahogan . William Wagner
Approved
MONS 056018
Robert A. Kehos, M. D.
Dlreotor
.
Date Maroh 11, 1953
o V.
Table X
Th Mortal tty, length. of .survival, end Phanaea In weight of Animle. Bxpea.od to the Vapor of rjr4mu3. Fr:9 in. Air
(Gonoontretlon of 1`ydraul S-9i 0,00377 mft./l.)
(Duration of ibcpoourei 5 * 7>0 iioura)
Identification Number
Chang* In height Sxproeeod aa
i'oroontare of Initial violpht
Initial During
After
Weight Period ol` Period of
kg. Expoaura Exposure
Kate
Loncth of Survival
Aftor '.xpoBure S'oforo the
Anlmla Were Killed
Paya
oat A359
2.5'04
(.'Ulnoft H; A740 0.969
v.ulnoa
A74-1 0.961
H ;lioe 3 ;loe
) Av. 0,0196
)
hobbit i CPli
2,038
iabblt FG25 net P539
1.963 0.246
Hat P540 fiat P541
0.209 0.252
-2.4 -1.4 -3.1
" -.4 -0.9 11.2 +3.3 -1.6
1.3 - 0.9 ' -
*11.8
15.7 + 3.6 + 1.2
Survived
10
Survived
10
Survived
13
Survived
10
Survived . 13
isurvlvod
10
Survived
10
Survived
10
Survived
13
Survived
13
"OHS 056019
'p-'wvtyy*.
*** "VWt<wW|IM|
Mill ^ Mgyt^^ ^nam ^ SarTlyia, and P4*nM in Weight
(Concentration of Aroolor 12481 0.0431 mg./l*)
(Duration of Kxpoeurei 4 * 7.0 Hour*)
...................
Change In Weight Kxpreesed ae
Peroontag# of Initial Weight
Identification Number
Initial During
After
Weight Period of Period of
<8. Kxpoeure lixpoeure
fate
Length ol
Survival After
i'jtpoaura Uefore ttw
Animate
were K11U Papa
Get A3?8
4.300
Culneo Pig A7i>7 0.908
Guinea 21.8 A7i>0 0.939
4 ;tloe
Av. 0,0178
babbit I<'906
.044
babbit K907 Nat K203
2.144 0.179
lint K284
0.170
- 2.8 4*8 - 4.8 +12.4
- 6.4 1.7 11.7 14.7
- 3.0 0
- 2.3
6.7 +13.1
+11.2
Survived Survived
Survived 2 Survived 3 Survived
Survived survlvod Survived Survived
6 6 6 6 7 6
7 6
7
HONS 056020
cv 'A'./>,
MkLl
tht Ror.taMt.yj- hngthj> gurvlvalj an4 Ohangaa l1UflJ.j5M.et Anl?)j-^AMA.Jig...tht-.y<>Bgg-af. mMMAJtaniHto in Air
(Concentration of Trloreayl Phoaphatei 0.0615 mg./l., 4*2 p.p.m.)
(Duration of Expoeurat 0 x 7.0 Hours)
Change in Weight Expressed aa
teroentage of Initial Weight
Initial During
After
Identification Weight Period of Period of
Humber
Ice Kxpoaur# Exposure
Fata
length of
survival After
Apoaure bofore the Animal* War*
Killed (K) or Mad (D)
Day*
Oat A353
3.226
Guinea fig a?33 O.809 Guinea l'lg A734 0.811
5 Mloe
Av* 0.0164
Hobbit 1797
1.779
Hobbit *790
1.841
Hat 0536
0.130
Pat 0537
0.140
Rat 0538
0.129
+ 5.6 + 1.6 - o.5 *13.4
+ 4.6 + 6.5 *14*6 7.1 +20.7
0 + 4.0 .
0 m * 6.2 *25.7 *
Survived 3 K
Survived 3 K
Survived 10 K
2 Survived 3 K 3 Survived . 10 K
Survived Survived
3K 4 D (1)
Survived 3 K
Survived 10 K
Survived 10 X
(1) Death due to paraaltlo infestation of llvor unralatad to exposure.
HONS 056021
Table 4
C
Concentrations of Various Decomposition Products In Air of Chamber In the Several Bxpeid merits
Material is Contact
With Inconel
Variation in
Temperature
of Inconel
T.
Experiment Number
Material Added
ml./min.
Expressed as mg./l. on Upper Line and p.p.m. on Lower Line
Aroclor
Phosgene
HC1 (uncor rected for
Phosgene
Trlcresyl Phosphate
Free Cresola
.'
Carbon Monoxide
Pydraul
1240 - 1256
1
0.143
-
0.032S 22.7
- O.OOO65 0.15
Pydraul
1245 - 1260
2
0.133
-
Pydraul
1240 - 1250
3
0.167
-
Pydraal
1245
4 0.245 -
Pydranl
124-5
5 0.220 -
- 0.01S0 12.5
- 0.0164 11.4
- 0.0155 10.7
--
-
0.00052 0.12
_i -I
33
- 0.0003S _ j 0.09
--
3-
---
~|
Pydraul
1040 - 1055
6
0.132
-
-
0.0005
- 0.0459 * ~ -I
0.35
10.7
1
i
MONS 056022
Table h (Page 2)
lOt
ht
Material In Contact
91th
Iaoonel
Variation
In Temperature
of Inconel r.
Experiment Humber
Material Aided
ml./min.
Expressed as Eg./l . on Upper 1ins and p.p .m. on 101ser line .
Aroclor
Phosgene
J5C1
(uncor rected for
Phosgene)
Trieresyl Phosphate
?ree Cresols
Carbon Monoxide
Pydraul
1047 - 1052
7
0.125
-
Pydraul
1049
$ 0.113 -
-
0.CC12 O.83
- 0.0435 11-3
T;
i
0.00096
-
0.0437
i
0.67
11.4
-^
Pydraul
1049
9 0.14$ -
-
-
'i
-
0.0513 12.0
-
i?
\
Pydraul
1047
10 0.100
--
Aroclor
1247 - 1256
l
0.113
0.124 0.00203
0.121
16.3
0.52
33-9
-
- 0.24 1 216.7 1
Aroelor
1247 - 1252
2
0.144
0.111 o.oi36
0.147
-
- . 0.03663
14.6
4.3
101.9
33-0 f
4
Aroclor
1249 - 1252
3
0.125
0.0773 0.0012
-
10.2
0-31
- - 0.0016^ . 1-* i - 1 "3
MONS 056023
Table h (Fage 3)
Co Nf id
r'A,
Material in Contact
With Inconel
Variation
in
Temperature
or Inconel o p.
iiperirjent Xurjber
Mp iorial Added
al./rain.
.741reased aa r-<,./l. on Upper Lice and p.p.ru on Lower List
Aroclor
phosgene
HC1 (unearrected for Fhoagene)
Tricrespl phosphate
Free Oreads
Carbdk aoonidi
Aroclor
1252
4
0.130
0.102
-
13.4
- - - 0.0007! 0-7-
Aroclor
1224-9
5
0.069
0.0573 0.0109
0.0143
-
7.5
2.8
9.9
Aroclor
1252
6
0.067
0.0387 0.0015
-
5.1 0.4
-
Aroclor
104.9 - 1053
8
0.121
2.17
0.00035
0.0224
-
285.8.
0.09
15.5
- 0.025a* 22.7 -1
- 0.038^ 34.8 ;
- 0.0260.* 23.5J
Aroclor
1049 - 1053
7
0.122
1.80
0.00071
0.0154
-
237.1
0.18
10.7
- 0.030a; 27.8 ;
Aroclor
1C49 - 1051
Aroclor
1049
9 10
0.121 0.120
1.37 180.4
1.24 163-3
O.0CO37 0.09,
-
0.0253 17.5
0.0190 13.2
-.
'-
0.0146? 13.2 '
0.0220 19.9 i
HONS 056024
Table 4 (rage 4)
Co N FlD
r'At-S
Material In Contact
With Inconel
Variation
In Ter^erature
of Inconel r.
Sxperlnent Suribar
Manorial
A-ded nl./kin.
iixpressod as :-:g./l. or. ,u>e.- line and p.p.a. on Loner Ull
Aroclor
Phosgene
SCI (uneorractod for irlcreeyl phosgene ) Phosphate
ri*ee Cresols
Carbea* SODOXlSi
Arcelor
1051
11
0.120
0.918 -
120.9
-
--
0.0231
19.0
Aroclor
1049 - 1051
22
0.058
1.60 0.00052
0.0171
-
-
0.0255
210.7
0.13
11.9
23-2
Aroclor
1050 - 1052
TricreaTl 1240 - 1258 Thoaphate
13 15
0.068 012&
1.31 172.5
-
-
0.0107 7.4
-
-
0.0049 l.i
0.012^ 11.6 ;
i "t
S70950 SNOW
00
1
Xrieresj-1 1249 - 1252 2 0.122 Phosphate
- 0.00266 O.Q2M 0.6 26Jt i
TJrteresyl 124? - 1253 1 0.121 - -
-
Fhoaphate Trier*yl 1257 Phosphate
14 0.233 - -
-
Triereeyl 1249 Phosphate
I 6 0.210 -
0.0088 0.00158 0.0345
6.0 0.4
3l.l ;
- 0.00676 1.6
- -. .
4
.fable h (Po^e 5)
Material In Contact
Vith Inconel
Triereeyl Phosphate
Variation In
i'orperature of Inconel
y.
1245
Experiment Straber
8
i'c.terlal Added
nl./stxn.
0.071
iixprecsod as : . ,/i. on Upper iJ.no and p.p.n. on lover Um
Aroclor -
Phosgene
-
SCI
(uncor rected for
phosgene}
-
Tricresyl Phosphate
.-
i7
Free
Certce -
Cresole acn-ori-asi
0.0011 0.3
'1
Tricresyl Phosphate
1258
frlcresyl Phosphate
1045 - 1057
Trlcreayl Pboephate
1049 - io5l
Tricresyl Phosphate
1025
Tricresyl Phosphate
1053
Triereeyl Phosphate
Tricresyl
Phosphate
Trloreeyl
Phosphate
io5i 104.9 - 1051 1051
7 14 13
3 10 11
9
12
0-C72
C.130
0.125
0.120
0.175 0.195 0.088
0 *Co2
--
-
-
----
----
- - - ", *
-
-
0.011 2.6
3
-
-
0.098
<
23
-
o.55o
0.0565 0.025*
37.8
13
22.6 j
i
- - - * ^
1f - -:
!i 0.35 81 1 -' - 1
970950 SNOW
.CCf
,N' 7" M i
The Xor iallty. Un. th cf 'urrivcl. a'wl Clicrvcs In `. cl, ht cf
--xucged
to Aerosols > or- oi by
< ydraul r-9 InUo &ii Xncur^l .Tube
. lieate-j to f- .`cnfrsgsvjre of 1250 - (677 ^ )
2xj>or- Duration of
iaent ^exposure Identif ication
Sunber
Hours
Nunber
Initial Weight
kft.
Change in Weight
expressed as Percentage of initial weight
During Period of exposure
Ai'tor
Period or lix^oi-ure
Fate as Length of ourriTal
icted at
of Anhsale That
2nd of . Died (D) or Were
best
Killed (x)
Period of
After Lest
ihpoaure Period of Exposure `
1 6.0 + 6.25 Cat A37b .
2.9i;5
-lo .0
6.0
Guinea Pig A759
0.620
- 1.2
6.0 6.25 Guinea Pig A760
1.020
-11.1
6.25 ,, 3 KiCe 6.0 6.25 2 Mica
) )
Av.i'.CS;
6.0 * 6.25 Babbit F93?
2.620
- 6.S
6.0 * 6.25 Rabbit B533
2.550
- 4.2
6.0 Hat H301
0.207
- 1.0
6.0 Hat 302
0.20S
- 1UP
+11.2 + l.s
+10.0 + i.5
hurvived hied
-urvived
Died
.'.-urrived iurvired
Died /led
7 days X 7 days X
7 days K 7 days K
'
2
6.75 6.75
6.75 6.75
6.75
6.75 6.75 6.75 6.75
Cat A379
3.170
Guinea Pig A761
0.6-50
Guinea Pig A762
0^2i5
.House AU35
0.025
3 Mica
/.v.0.020
Rabbit ?538
2.267
Rabbit P935
2.270
Rat H303
0.160
R*t C.205
- 9.9 - 1.8
0 - .0
0 0 - 2.2 - 4.9
3*3 -- -
+16*0 -
+11.2 + t eil
iurvlved
,'ied
i)iod
burvived GlOd .rvived
OurviTed 6;ld Died
2 saonths X -- -
15 days K --
6 days X C days X
-
"
709S0 SNOWI
a
Xaolo 5 (rav 2)
Exper Duration of
iment Exposure IdectIflentIon
Rumber
Hours
Suaber
Initial weight
fee*
Change in Weight Expressed as Percentage
of Initial weight
During Period of Exposure
After Period of Exposure
Fate as Soted at
End of
Lost
Period of Exposure
Length of GurriTal of At1 wale That
Died (D> or Were
Killed (K) After Last Period of Exposure
3
3.1 3.1 3.1 3.1 3.1
3.1 3.1 3.1 3.1
Cat A370
Guinea Fix; A7&3 Guinea ?l A764
3 "Ice 2 Mice
Rabbit F93& Rabbit F937
Rat 22305 Rat E306
3.0G0
0Jl65 0.420
Av.0.015 At.0.0175
2.170 2.470 0.200 0.200
-7.5 - 2.7 - 7-1
. .
C -- - 3*5 -1.0
+10.0
+ 9.2 -
+ 6*iL -
-
SurTlred
Died Gurrired
Died c-urriTed Gurrired
SurrlTed Died Died
7 aya
7 days --
15 days 7 days 2 day*
"
K
ID
K' K 9
.
4 0.9 0.9 0.9
0.9 0.9 0.9 0.9
0.9
0-9
Cat A3S1 Guinea Rif. A765 Guinea i-I : A766 4 Mice 1 Vnuse
Rabbit 93-3 Labbit F939
Bat =307 Eat E3oa
2.325 0.440 0.410
At.0.017 c.ci5 1.998 2.030
0.205 0.188
-1.9 -1.6
0
0 . 0 0 - 6.8 -10.6
-
+ 5-9
+53*3 27.1 +27.6 25*ii 32.4
survived
Died
curvired 4>ied
GurriTed .'urrired GUTTiTOd :urvlred : urTlTed
9 days
-- 15 days
-- 14 days 15 days 15 days 14 days 15 days
K
s
K K K K K
5
0.25
0.25 0.25 0.25
0.25 0.25 0.25
Guinea ilr A7&7 C-uinea Fig A768
5 Mice
Rabbit 794-0 Rabbit' F941
Rat S309 Rat i.310
0.450 0.460 At.0.0156
2.115 2.050 0.187 0.188
- 2.2
- 4-0 0
* ^*4 0
-14-4 - 6.5
+ t.4 +10.7 + 6.3 +37.9
+36.9 +30.3
v-arrived . urrired : urrired
urvlTod
GurriTed Gurrlrod
iurrlTSd
24 days K 24 days K 26 days K 2c days K 26 days K 26 days K 28 days K -
HONS 056028
Pablo 6
Pc :<::;:NriAc
The .`ortalltr. Lcrx th cf : nrvlYel. rr.d Cbsn- os Ir. -.el; ht of AnJ-EsIa exposed to Aerosols formed by ./rop.ln/ i draul f-y Into a~ Incor.ol Pubs Heated to a ioreperatura of 1050 P. (566 C.)
Exper duration of
iment ixposure Identification
Susibar
Hours
Humber
Initial Weight
Rg.
Change in '.eight
Expressed as Percentage of Initial .eight
During period of
exposure
Al ter period of exposure
Fate as Noted at
Lest rorlod of j&cposur#
Length of surrirul of Aninale Shat
Died (S) or Were Killed (X) .. After Last .
Period of Exposure
6 6.5 * 6.8
6.5 6.5 6.5 6.8 6.5 6.8 6.5 b#8
6.5 + 6*8 6.5 6.8 6.5 + 6.8 6.5 6.8
7.
6.8 6.8
6.8
6.8
6.8
6.8
6.8
6.8
6.8
6.8
Cat A376
Guinea pig A769
Guinea Pi~ A770
1 House
)
1 House
}
3 Hice
>
Rabbit F942
Rabbit F943
Sat E311
Sat K312
3.065 OJtSO 0.406
at.0.0184
2.190 2.140 0.235 0.208
.
- 7.3 - 5.3 - 7.1
-
-- -14-4 --2Geii - 4.3'
Guinea Pig A771
Guinea Pig A772
3 Mice 1 Houm
) )
1 House
)
Rabbit F944
Rabbit P'9115 Rabbit F946
Rat 326
Rat 327
0.4.90 0.465
AT.0.017
2.055 2.140 2.410 0.230 0.280
- 5.9 - 1.3
a. - 5.1 0 -13.0 - 8.6
- i.2
-
-22.6 33.2
+ 6.4 +23.5 -12.1 24.6 -28.6
Surrlred Surrlred
Died Died Surrlred surrlred Surrlred Surrlred Surrlred Surrlred
Died Died Died Surrlred Surrlred Surrlred Surrlred Surrlred Surrlred Surrlred
3 months X 16 hours D
3 days 7 days 17 days 4 dsys 3 days 24 days
_
S
X S 9 D
X
3 days D 5 days , 9 24 days X 26 days X 6 days 9 29 days X ,
1 "8"Ul
HONS 056029
.'able 6 (i'a: e 2)
CC 3 2.VrrA. "i
i
Sxpop- Duration of
inent Exposure Identification
5safer
Hours
Kuaber
Initial Weight
kg.
Chssve in -.eight Expressed as Percentage
of Initial weight
During Period cf
Exposure
After Period of Exposure
Fftue u l>oved at End of
Last period of
exposure
Lcn-th of Survival cf Anisala that >
Died (D) oar *" Killed {)
After last < Period of ibqposur#
e 3.4 3.4 3-4 3-4 3.4 3-4 3-4 3.4 3.4 3-4
9 0.9 0.9 0.9 0.9
* 0.9 g 0.9 0.9
0.9
S -9 O'
10 S 0.25 0.25 0.25 0.25 0.25 0.25 0.25 0.25
Guinea fie A773
Guinea Fig A774
3 Kies
)
1 .=4ouse
}
X House
}
Rabbit F953
Rabbit 2954
Rabbit 2955
Rat 328
Rat 329
0 ii'OO
Av.0.023
2.000 2.250 1.940 . 0.230 c.230
Guinea fig A775
Guinea fig A776
2 Kice
)
3 Jtte
)
Rabbit 5956
Rabbit P957
Rabbit 2954
Rat 330
Rat 331
0-430 0.405
Av.0.0162
1.934 2.1eo 1.670 0.260 0.230
Guinea Pig A777 Guinea Fl A778 5 Mice Rabbit F9S9 Rabbit 960 Rabbit F961
Rat 332 Rat 333
0.845 0.695 AT .0.0122 2.040
2.095 1.735 0.200
0.235
- 3.1 - 3-4
~ _ -26.2 -23.1 -11.6 - 7.4 -12.6
- 1.6 - 3.2
0 - 0.7 -17.3 0 0
- 7.2 - 6.2
0 - 0.7
0 O - 7.5 -10.6
-
+5o #0 +49-4 35.1 +2li.7 35.7
-36.2 -
+27.5 +28.5 36 a6 +30.8 +34.3
+11.7 + 6.0
35.5 +43.5 +29.9 +57.5 42.1
Died Died Died Survived Survived Survived Survived Survived Survived Survived
Survived Surrired
Died survived Survived Survived Survived Survived Survived
Survived Survived Survived survived Survived Survived Survived Survived
_'
-.
--. 6 days D 6 days X 1.6 aonths X 18 days 28 days 27 days X 27 day*
-
19 days D 1 day D --
4 days X 2o d&j* 28 days
1.6 aontbs K 27 days X
27 days X
1.7 nanth* X 1*7 npAthft K 34 days X 28 days X 28 dsys X 28 days X 1
29 days X 29 days X
'able 7
:<~!0 = ht,ac
The '-TortalltY. hearth of Survival. end Chan os to Weight of Aniaala paposod
to Aerosols I'or-.ed by --roa-. Aroclor 1246 Into an Inconel Tube
Heated to a Vetterstune of 1250 r~. (677 C.)
.
Srperincnt
Suaber 1
2
Duration or iiXpOS'UPO Hours
7-c 7.0 7.0 7.0 7.0 7.0 7.0 7.0
3.0 3.0 3.0 3.0 3.0 3.0 3.0 3-0
Identification Number
Guinea i'l;: A7?9 Guinea Pig A7C0 5 Mice Rabbit F962 Rabbit >963 Rabbit P964 Pat ^334 Sat b.335
Guinea Pi- A762 Guinea Pig A7S3 5 Sic Rabbit iv;CG Rabbit F9&1 Babbit F?c2 Fat 6336 Rat a337
Initial Weight
5q>
-.475 Av.0.0154
2.105 2.205 1.960 0.220 0.250
0.430 o.kito Av.0.0152 1.750 1.800 1.865 0.26? 0.240
Change in Weight impressed as percentage
of Initial Weight
inuring
period of iuiposure
After Period of iu-porure
- 1.2 - 1.1
*
- 1.7 - 1.4 0. - 6.6 - 6.0
_
* _ -
k*> - 6.6 -19.1 - 9.2
--
- 1.9 -- 4*
-29.S
7.4 -
"
Rate aa Doted at
Dnd of Last
period of ixposore
Died (1) Pied (1) 5 Died Died (2} Died (2) Died U) Died Died
survived Died (3) 5 i>ldd vuryired iurrlTad j;lod Died Died
.' Length of Surriral ;
of Aniaala 12mt
Died (D) or
-1
Killed <K} .. j
After last , : ;
Period of Eqweige i
i
-i
_ -
9 days S -
27 days D 6 d--ays ' S '
j
i '! 3 p1ij * ! j i \ -ii j
s 14
HONS 0 5 6 0 3 1
xble 7
e 2)
C. At
Experiaent
Kisabcr
Curaticn of Exposure lours
Identification Ltsber
ini old teiihit
3
1.0
-uinea k i; A7rl
-.113
1.0 1.0
Guinea ri A?c5
1 :-5ouso
)
v.3.0
1.0
1 rouse
} av.C.C'16
1.0
1 .'ous
)
1.0
1 -'out
)
1.0
HaSMt JvC3
1.7:5
1.0
Hafcbit F9C1
1.785
1.0
1.0
Rabbit r'955
Sat .>336
1.550
02*4.3
1.0
Fat e339
..265
C'uui e in .Lcpi-essed as rorciu.tt e
c-f Initial . ei; lit
i eri'.xi oi* ^;.c*&ure
Af tor i-cried ot -Af-crure
. ate as Acted at
;uil of East
. eried of -ueposur
- 4.1
--
-
-
-
-
0 0
V - 7*ii
-10.6
-36-2
-
-
-
+28.7
+27.3 +-5.0
+36.3 +30.9
-urvired
urvivod
.urvived
: urvired
1urvired
survived
' urvired
.urvired
0urvived :urvivod :urvired
Len_.tLi of Survival
of AniraCLs fbiat Died (o) or Kara
allied U) After Last
forled cf Exposure
7 hours D -
t days 0 .
5 minutes 3
1 day
6 days c days
23 days
D
o
0
:
:
!
23 days
?
23 days
21 days s
21 days
!
4
0.33
Ouinet Pip A7C6
0.160
- C.7
:. urvivod
1 day 3
:
0.33
Guinea Piu; A717
-
-->0.0
urvired
V days C
:
0.33
5 Mice
AV.0.C162
-22.0
-
> urvived
1 day D
'
0.33
Ii&bblb rSrC5
2.C7S
- 1.1
+ ab
`urvivod
6 days s.
0.33
Rebblt Fy66
1.361
-
-13.2
; urvired
10 days o
:
0.33
Rabbit F967
1.960
- 1.0
-Survived
6 days K
0-33
Rat 3^0
0.220
0
+ t..S
.survived
13 cays'
0.33
Fat Z3H
0.225
0
;?</
] -urvired
13 days
HONS 056032
i
fable ? (fage 3 )
O riOi.NTIAL
exper iment
Suonber
i>urcvicn of i^xpcrure Hours
Identification Kunber
5 3.0 Guinea ?lg f.7i&
3.0
Guinea fie A769
3.0
' sice
)
3.0
i +ouse
)
3.0
Rabbit 5966
3.0
Rabbit P969
3.0
Rabbit 5970
3.0
Rat (31^2
3-0
Eat 2343
Initial ..eiiht
k.
0 eill^G 0.415
2.160 1.6-/5
1 _f:70
0.260 0.215
Chan; e in rfeinht expressed as i'erc outage
of Initial height
During ireriod of ixxpcsure
After icrioi of ^xvosure
Rate as Goted at
ind of Last
terlod of Lxpoeurs
-25.5
- 7-1 - 3-9
- 1.1 - *4. *6
- 4-7
-62.0
-63.3 --
-23*?
-13.6
+19.7
8.1 + 6.G
--
Gurvivod Survived
Died : urvived
Survived survived Survived furvired
-;xdd
Length of Survival
of Animals Ttsat'
Died (D) or Ker*
Silled ()
.
After Last
:
9 days D
10 day* O
6 days 3 22 days 22 days
7 days
12 days
,
.
.
6
1.0 1.0 1.0
Guinea Els A790
Guinea ii A791 5 Mice
0.605 c J*S i\7 C>QliU
- 5.5
- 9-5
0
.
-11.2
+ 7.5 +65.9
survived Survived 5 Survived
1.6 months
1 month 2u days
1.0
Rabbit 5971
1-7V5
V
+26.0
Survived
22 days
1.0 1.0
Rabbit 5972 Rabbit 5973
1.950 1.500
c
0
+3>.h +17.3
Survived Survived
1.4 month* 22 days
1.0
Sat 2344
0.330
v
+ 3.6
Survived
23 days K
1.0
Sat h.345
0.2vp
0
22.6
. urvived
23 days X
(1) 2.25 hours Trot the start of exposure. (2) 6 hours fr^r the start cf exposure.
(3) 1.5 hours fro- the start oi c vo.'ur.
hons 056033
I
-able o
he Mortality, Len. oh
-urvival, and Chen s Jr
finals iasoaed
to Aerosols joraed by Prom In,; Aroclor 12h& Into an Ir.conel fabe
.lessee to -or?,erasure of 1CS0C
&UP .)
Experinent
Hteber
Duration of .sjcporura iovrs
Idontificstion 'limber
8
?.C
Guinea tic- A 79a.
7.0
Culzzdfi i*it; AVvS
7-0
ii Mice
)
7.C 7.0
1 .'louse
}
7.0 +7.0
Kebblt J977
7.C 7.0
Rabbit F-/7C
7.0
Rabbit F979
7.0
Rat -361
7.0 + 7.0
Eat 362
Initial Dei. ht
*>
Change in .ei; it hxj-rossod ss ierconta^e
of Initial height
i iroriod or
AT tor i'viPlod 0" .-xposure
i'a t as "oted. at
Last roriod or exposure
Length of furriTal of Aniicals That
Die! (D) or Wore Silled (K) After Last . -
ieriod of Kxpoaure
0-433 C*
2.060 2.200 2.175 0.260 0.295
- 2.3 - 2.2
-
- 9.2 -1C.0 - 9.2 - 7.7
-,
-
_ .
-32.6
Died Died
4 Died
hurrived
Died Died Died i>lad iurrived
12 hours S>
_
-
5 days D
. -
7
7.0
Guinea ?i< A792
c.li50
0
Died
7-0
Guinea Ei" A793
0.^20
- 1.2
-
Died
-
7.0
2 nice
)
.e
2 Died
7-0 7.0
1 Mouse
2 Mlco
} at.0.019 }
-
- iurvieed
5 days D
Survived
2S days. S
7.0
Rabbit Fy7&
1.965
- 6-5
- Surrired
5 days D
7.0 7.0
Rabbit FV75 Rabbit F976
1.665 2.005
- 9*^ - c.l
44.2 +19-4
lurrired Surrired
1.3 aoQtbe K
1.3 isnwths X
7.0
Rat x.359
0.305
- 2.6
-
Died
7.0
Rat 360
0.310
- 3-2
Died
:!
HONS 0 5 6 0 3 *
ibcpcr- Duration cf
iisant Ljcpoauro
Identlfication
Somber
Hoops
Hunber
Vabie 8 (Pave 2)
Initial
Weight kg.
Charge in 'Weight ^jqgpessed as Percentage
of Initial Weight
During
period of Exposure
After
Period of cjcporure
Coti obkT!Al - - ,
k "i
F*te u .Noted at
2nd of Last
Period of wtsposure
Lou th of Surrl-ral cf Animals That /
Died (D) ear Wqt* ' Killed (K) After Last ..
Period of Stpoaurs
9
3*5
Guinea Pig i-7'/6
0.390
3.5
Guinea Pi0 A797
0.415
-
3-5 3 Mice
)
-
Died Died - 3 Died
^ 4_
--
--
. :" '*
3-5 1 House
) AT.0.019
--
- PurriT-ed 10 day* B .
3-5 1 isouse
)
a. - Serrived 20 days K
3.5 habbit F9S6
2.320
-13.6
15*6
Surrlred
X rtaonth S i
3.5
rVf27
2.250
-
- 4-3
surviTed
5 days B
3.5 i-abblt PyOS
2.355
v *6
-
Died
3.5 Hat H363
0.290
- 3.4
+23-1
I urrired
1.1 faiths X `
3.5 Hat 364
0.240
-10 .0
+26.2
GurriTod
1.1 months S
10
1.0
Guinea Pig A798
0*455
- 2.2
Died
- .-S
1.0
Guinea Pig A799
0.430
- 3.5
SurriTed
2.5 hoars B
1.0 5 Hlce
Av.0.0190
- 2.2
+37.9
Surrired
20 days K
j
1.0 Rabbit F9S9
2.040
-V
- 6.9
Surrired
6 days D y
1.0 Rabbit 1-991
2.250
- 3.5
+17.3
Surrired
1 neeth K .
1.0 Rat i-365
0.315
- 4-8
+24.S
SurriTed
1.1 nontbs X
l.C Sat H366
0.305
- 4.9
+I6.4
Surrlred
14 days K
;
HCiNS 0 5 6 0 3 5
11
0.33
Guinea ri-' ACOO
0.410
-45.1
G-urrlred
1C days B
0.33
Guinea Pi.- AS02
0.455
- 1.5
Died
-.
j
0.33
5 iiee
.AVsQsOoO
-26.6
GurriTed
19 dayd K 1
c.33
Rabbit PyV4
2.095
-11.2
+24.3
PurriTod
1 nenth K
0.33
Rabbit ?99>
2.120
- 3.2
--21*4
Gurrired
1.3 nmths X 3
0.33
Rabbit F996
2.1'/0
-26.1
urrlTed
12 days 9 ' .
0.33
Bat i.367
0.260
o-
+29-6
urrired
1.1 souths X J
0.33
Hat 366
0.255
0
35.7
r-ureiTed
i.A ******* * i
if.*-.
Table 3 (Page 3)
Confidential
4... ld
Exper Duration of
iment Exposure Identification
Stssber
Sours
Kunber
Initial
Weight kg.
Change In Weight Expressed as Percentage
of Initial Weight
Ourlasg
Period of Exposure
After Period of Exposure
Fate as
Soted at
End of Last
Period of Exposure
length of Survival, of Anlnale That
Died (D) or Vara" Killed is.) After East
Period of Sxpeaura
12
3.5
Guinea Pig Ac-02
0.460
- 3.3
3.5
Guinea Pig AO03
0450
- 2.2
--
Died Died
-
3.5 5 iiiCO
At.0.017
0
+22.4
Survived
16 days X''
3.5 Babbit P997
2.210
- 7.2
+20.5
Survived
29 days X .
3.5 Babbit F993 3.5 Rabbit F999
2.060 2.090
- 5.5
+11.3 - 5.7
Survived Surrired
29 days X 5 dava D
3.5 Rat 369
0.255
0
10.9
Survived
1 sooth X
3.5 Sat 2370
0.23S
O
26.7
Survived
1 sooth X
13
1.0
Guinea Pig aGC4
042S
- 2.4
1.0 1.0 1.0
Guinea Pig AS05
3 Klee
)
n
0. .405
1 House
)
- 1.0
0
Survived Survived Survived
Survived
3 houra 2> 3 boure D 16 d*y X 7 days D
1.0 Rabbit 02
2.340
-IS. 6
+40.6
Survived
37 daya X
1.0 Rabbit G3
2.410
- 6.6
24.8
Survived
29 daya X
1.0 Babbit <4
2.345
- 3.2
124.
Survived
29 daya X
1.0 Rat 2371
c.230
- 6.5
9.6
Survived
32 daya X
1.0 Rat 2372
0.215
- 2.3
74
Survived
32 daya X
HONS 056036
Table 9
n P / 0 ; NHAj
The .iortalltT. Lon." ch of tyrrival. and Chan-cs In -el- lit cf Anigals exposed to Aerosols ferried by Drop'-Iry .rlcrecTl Fhoagiiato Isto er- Inconel Tube Heated to a iO;-?oorasyro of 1290 f (677 0.)
Kxpor- Duration of
insnt Exposure
Sumbar
Hours
Identification iiaaoer
Initial 'aieieht
kg.
Cuanre in sieiidit Expressed as Percentage
of Initial .'eight
during cried of Exposure
After Period of Exposure
Fa'^e r.-oiod at
cf b&Sv >dried of Ajqxjs-ur#
Length of Survival
of Ariaala Shat Died (D) orWer*
Killed (K) After Last ' Period of Exposure
15 2 x 7.0 Cat A371
3.611
- 6.5
2 x 7.0 Guinea Fir a562
- 6.0
7.0
Guinea Fig A563
Ci;3&
- 2.3
2 x 7-0
5 Klee
Av.0.0156
2 x 7.0 Babbit G17S
2.963
-
2 x 7.0 Babbit Gl?9
2.563
0
2 x 7.0 Babbit G180
2.791
- 6.9
7.0 Rat S679
0.14-06
- 2.2
7.0 Rat Sij.80
o^So
*
X.2 +11.9
--
+12.9 --156 +19.6
--
*
Survived survived
Died 5 Died
-Survived
Survived Survived
Died Died
.
7 days S 22 days A
--
17 days K 16 days D 16 days K
--
2
7.0
Guinea fig a8C8
c.6io
- 6.9
-35.0
Survived
30 days D
7.0
Guinea Fig ASC9
c^i.95
- IJj.
uiod
--
7.0 5 Mica
Av.0.017
- 5.0
- p Died
--
7.0 Rabbit u8
1-965
- 6.2
Survived
27 days K
7.0 Rabbit C-9
2.010
- 2.7
+22.1
survived
27 days K
7.0 Rabbit C-1C
2.075
0
+33-5
GurviTod
27 days A
7.0 Sat H375
o.lv5
-16.9
-
Died
-
7.0 Rat H376
0.225
-12.0
"
Died
'
HONS 056037
Sxperirsent
Staaber
Duration oT Exposure Houses
Identification Sunber
Initl&X ..eight
k.
Change in weight .caressed as Percentage
of Initial Weight
?vricd or .^xpocuro
After Period of Exposure
iate as Jotad at
End cf Last
period of Exposure
Length of Survival
of Anisala fhat Lied (0) or Were
Killed UQ
After Last . Period of Exposure
1
3*5
Guinea fig >,806
0.500
- 2.6
Died
3-5
Guinea fig AGO?
C *4^Q
-
- Died
3.5
2 Mice
}
- 2 Died
--
3-5
1 Miouao
) Av.0.017
-10.0
-
survived
22 daya C
.
3.5
2 .lice
)
+33-3
Survived
34 day* X
3.5
Rabbit C'5
2-270
0
4'jLii.8
Survived
28 days K
'
3.5
Aab'clt G6
2.110
0
+37.4
Survived
28 days X `
3-5
Rabbit G?
2.140
- 0.5
+20.7
Gurvivod
28 day* X
3.5
Rat 373
0.220
0
+ 2.3
Survived
34 days K
3.5
Rat 374
0.215
0
+ 2.3
Survived
34 daya X
HONS 056038
u. 1.0
Guinea PL- A22
0.445
- 1.6
1.0
Cuir.ea fig A-S23
c.430
- 5.3
1.0
5 Mice
Av.0.0150
-
1.0
Rabbit 022
2.095
- 2.0
1.0
Rabbit C-23
1-995
2.3
1.0
Rabbit C-24
2.110
- 5.9
. 1.0 1.0
Rat i.399 Rat 400
0.215 0.210
- 6.0 - 3.8
6
0.33
Guinea fir- A 842
0.905
- 1.1
0.33
Guinea fl- AG43
C.8C0
0
0.33
5 Klee
Av.0.022
0
0.33
Rabbit 0114
2.450
0
0.33 0.33
Rabbit G117 Rabbit 0118
2.260
- 9.1 - 5.2
0.33 0.33
Rat 437
Rat 438
.
0.175 0.205
- 5.7 0
-
+57.3
+32.2
-19.5 +20.8
+ c.4
16.7
4* i. ^ + 3.5 +1.. .5 15.7 +32.9 7-3
20 .4
2ied Gied survived Survived Survived Survived survived survived
Survived survived survived survived Survived
:urvived
Survived survived
--
22 days X
19 days X
12 daya 0
28 daya S
1.1 aontha X
1.1 aonths X
8 days X
8 days K
11 daya.K 6 daya S
1.1 nontba X
8 daya X
.
0 daya X
8 daya X ;
i's'olc 9 (tu; e 3}
CO.NJF
2xporlaont
Kuraber
Duration of Exposure flours
Identlflea tion Nursbar
Initial ,,'oijat
k-
Chan;:e in ..eirnt toprecced e s Percenta; e
of Initi al Weinht
i>UTtn Period cf exposure
lifter Period cf Abipocure
l ate as '.died, at
Of Last . i^riod of -i^pocure
Len.i f. of survival of Aniraals fbat
lied (D) or Vere Killed (X) After boat
Period of sxposur.
6
3-5
Guinea Pi? AcJi6
1.060
0
+ 6.3
Guryived
7 days X.
3-5
Guinea Pl AoJs.7
C.770
-7.3
+13.2
burylved
7 days X
3-5
2 Xice
)
_
--
2 Oied
--
3-5
2 I-Sice
) Ay.0*024
--
-36.0
Survived
7 day* D
3-5
1 House
)
a. - Survived 7 days X
3-5
Rabbit G129
2.23i>
-0.2
- 7.0
Survived
7 days X
3-5
Rabbit G130
1.V20
0
+ 0.3
Survived
7 days X
3-5 3-5
Rabbit G131 Hat Vjji; 1
1.965 0.315
O -
5.2 a.
Survived Oied
7 days X
3-5 Rat K'jJi-P.
0.335
-7.5
+ 9.6
survived
7 days X
?
1.0
Guinea Pit; AK*it
0.055
0
** 2.1
Survived
C days X
1.0
Guinea tie; AGttS
0.070
0
+ 3.1
Survived
6 days X
1.0
5 Xice
Av.0.023
-6.0
+16.5
survived
0 days X
1.0
Rabbit C119
-0.8
+19.1
Survived
25 days X
1.0
Rabbit 0120
2.325
0
10 &
Survived
5 days K
1.0 '
Rabbit 0121
2.W0
-7.3
+35.8
urvived
1.1 nonths X
1.0
Rat Eb39
0.195
-5.1
Survived
3 days X
1.0
Rat RljiiO
e.190
0
+23.7
survived
S days X
HONS 0 5 6 0 3 9
gable 10
f- i C- i K TI A L
The ."iortallt:/'. Ur. th cf -arrival, and Chcnres In Vlei-ht of Aniaals Exposed to Aerosols I or-xed by Dro,r_.ir,-~ Tricro?'/! ihosphate Into an Inoonel Tube Heated to1 a PeT**>orgi.ure of 1050 P (566 C.)
Exper Duration of
iment iixpcsvir Identific&t Icn
Somber
KoUZ*S
Slices*
Initial Geirht
'*+i.
Change in Ooi^ht Exproesod as Percentage
ol' Initial Height
during Period of
Exposure
After Period of
Exposure
Pate as noted at
End. of Last
Period of
Exposure
Length of Survival of Anbaals fiat
Died {D) or Mere
Silled (K) After last . Period of Exposure
7.0 7.0
7.0 2 x 7.0 2 X 7.0 2 x 7.0
7.0
7.0
Guinea Pig Ac60 Cuinea ri^ Ao61
5 Kice Rabbit G163 Rabbit Gl6i* Rabbit 0165 Rat El*71 Rat 4*72
1.035 0.563 Av.0.0208
2.393 2.029 2.005 c.J*54 0.474
- 4.S - 6.0
-23.1 - 1*.S
-12.3 -10.7 -10.1 - 5.9
. Died
- Died - Died - Died a. Survived - Died
- Died
- Died
--
a.
_
1 hour D
-
--
, -
.
-
.
13
7.0
Guinea Fir AC50
04*30
- 2*.2
Died
--
7.0
Guinea fir. AC59
C4*10
- 1.2
-
Died
_:
7.0 3 Mice
) ._ .
- Died
_;
7.0 2 race
AT eVaOlO }
a
Survived
13 <Jay S
:
7.0 Rabbit 0151
2.01*0
- 7.7
+16.9
purvivod
12 day* K
.
7.0 Rabbit 0152
2.525
ID .5
+13.5- Survived
13 day* X
.
7.0 Rabbit 0153
2.035
- 6.2*
a.
Died
*
7.0 Sat l*63
04*70
- 4.0
-
Died
--;
7.0 Bat KE*6*
04*55
- 2.2
"
Died
*;
0 V 0 9 S 0 SNOW
i
Table 10 iPa;e 2)
CC ;
Exper Duration of
iment Exposure
Suaber
Hours
Identification
itasber
Initial Weight
Change in Weight Expressed as Percentage
of Initial Weight
Daring j Period of {
Exposure
After Period of
Exposure
Pate as Uoted at
End of
East
Period of
exposure
Length of Survival of Aniaals Chat >
Died (D) or Wars .Killed UtJ' : After East .
Period of Exposure ;
3
10 x
3.5 3.5 3.5 3.5 3*5 3-5 3.5 3.5 3.5
l.o 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0
Guinea Pig A0l8
Guinea pig A819
1 House
)
3 Mice
)
Rabbit G17
Rabbit Gl8
Rabbit 019
Rat B393
Rat 53%.
oo
Av.0.0138
2.150 i.ec4 2.180 0.193 0.197
Guinea pig Ao52
Guinea Pig A853
3 Sice
)
2 Mice Rabbit G142
)
Rabbit Gl!}3
Rabbit G144
Eat 2454
Rat E455
1.110 1.280
Av.0.018
2.166 2.835 2.W0 0.160 0.160
- 1.8 - 3.3
-19.3 - 1.6 - 2.5 - 2.8 - 4.1
0
-11.1
-22.2
- 2.0 - 5.0 - 6.9
44-9 -IV-0
+23.0 12.2 20.7 12.7
3.0 - 3*8-8 19.5 -47.8 -43-0 + 6.7 19.4
*
Died
Died Died Survived Survived Survived Survived Survived Survived
Survived Survived
Died Survived Survived Survived Survived Survived
Died
26 days X 7 day* D
20 days X 20 days X 25 days X 25 d*y X
6 days x 2 days 9
as
7 days X 26 days 9 17 days 9
8 days X 9 days X
>
i
i 1 I1 i 1!
11
i
0.33 0.33 0.33
0.33
0.33 o-33
0.33 0.33
Guinea Pig AS54 Guinea Pig A855 5 Mice Rabbit G145 Rabbit 0146
Rabbit C147 Rat g*56
Hat S457
0.446 0.4.65 Av.0.0190 2.400
2.333 2.395 0J1S0 o.45o
- 5.5 - 1.7 -13.7 - 2.2 - 6-4
0 - 6.0
- 9.1
15.9 5.6 +17.9 + 3.5 11.6
10.9 2.4 17.8
Survived Survived Survived survived Survived. Survived
Survived Survived
9 days X 9 days X 10 days x 3 days x 8 days X 8'days X
9 days x 9 day* X
iONS 056041
!
1 n
HONS 0 5 6 0 4 2
Exper Duration of
iment Exposure Identification
Sunber
Hours
i-unber
Jable 10 (2a^o 3)
Initial height
*e-
Change In Velght Expressed as Percentage
of Initi
During
Period of exposure
After
period of iLxposure
CGX !
Rate aa Soted at
Last Period of Exposure
a;
Lang tb of SvorvivaX;
of AnlvlrThst '? Died (9} or- Mere `
Silled (XJ >=
After last 1 ' Period of
9
3.5
Guinea pig a850
0.920
- 3.0
0.9
Survived
8 days X - .. 1
3.5
Guinea Pig A851
1.035
3.5 3 Hies 3*5 2 Mice
) )
AV.0.C17
3.5 Rabbit 0139
2.145
- 0.2
-11.9 -21 Jj. - 9.0
-_ -
21.4 6.3
Died
Died Survived Survived
7 days X 9 day* X
I 4
3.5 Rabbit C-110
2.430
- 4.9
0 Survived 34 days X
3.5 Rabbit G141
2.460
0
+ 0.8
Survived
4 days X
3.5 Rat E444
0.360
- 6.7
a.
Died
3.5 Eat H|45
0.330
-10.6
8.8
Survived
9 days X
12
1.0
Guinea Pig a856
0.750
- 5.2
+ 1.2
Survived
8 days 9
1.0
Guinea Pig A857
0.510
- 5.3
-17.6
Survived
29 days 9
1.0 5 Sice
At.0.017
0,
11.8
Survived
1.0 Babbit 0148
2.686
- 8.1
10.2
Survived
9 days X
8 days X
1
1.0 Rabbit 0149
1.0 Rabbit 0150 1.0 Rat E458 1.0 Bat 459
2A00 2.170 0.460
0.430 j
- 2.0 - 1.6 - 4.8
- 6.5
16 .4 15.2 + 3.0
4.9
Survived
Survived Survived Survived
8 days X
23 days X 9 days X 9 days X
i
Vls
l
1
ie'clc 11 (i-a^e 2)
CC
Compound and Xeaperature of Contact
lacrstlon
Uours
.aco
Ka ts
Guinea
Pi3
Saobits
Cate
i^orinent Itasbeaf
Jtroclor Decorqxjsitlon 1050 ?.
7.0 * 7.0 7.0
3.5 1.0
0.33 3.5* 1.0*
5/5
f/5
%
2/2 2/2 0/2 0/2 0/2 0/2 0/2
Trieresyl Phosphate Docoapositlon 1250 P-
2x7 7.0
3-5 1.0
0.33 3.5* 1.0*
1
2/2 2/2
0/2
0/|
0/2
zfe 0/2 1/2 0/2
Trieresyl phosphate tecoapositlon 1050 >-
2x7 7.0
3.5 1.0
0.33 3.5* 1.0*
5/5
3A iA
3A 0/5
3/5 o/5
2/2
2/2 0/2 1/2 C/2
1/2 0/2
s
2/2
*/*
i/2 2/2 Z/Z 2/2 0/2 0/2 0/2
2/2 2/2 2/2 l/2 C/2 1/2 t/2
8
X%U?
& "4oA #
3/3 1/3 1/3 2/3 o/3 V 0/3
-
c-A
.
_ -
8 7 9 10 11 12 13
15 2 1 It 6 8 7
lit 13
3 10 11
9 12 `
Sate of liquid delivery use about os*--half of that in other e:c;erifsor;t of similar duration-
HONS 0560*3
1'afcla 11
CO i'-' ' l A L
Suaaarr of Mortality Aincn--- Groups of Anlnals Subjected to Aerosols Foraed by
Dropping Pydraul F-9. Aroclor X2kS or grlcresyl Kiosshate Into a Heated Inconel Tube
-4
q =j --v**i
..I
Compound and faaperatur* of Contact
Pydraul Decomposition 1250 F.
Duration Bours
Klee Bats
6.0 6.25
6.75 3.1 0.9 0.25
1
2/2 2/2 2/2
0/2 0/2
Guinea Pigs
Rabbits
V2
2/2
1/2 1/2 0/2
0/2 0/2 1/2
0/2 0/2
Cats
0A A oA oA
Experiment
-j
' ' J|
I '1
k3 31
s .i
ti $Pydraul Decomposition 1050 F.
6.5 6.8
6.8
34 0.9 0.25
8
1/2
1/2
0/2
0/2
0/2
2/2
2/2 2/2
2/2 0/2
2/2
8
oA
Aroclor Deoesposltion 1250 F.
7.0 3-0 1.0
0.33 3.0* 1.0*
2/2
i 2/2 0/2 0/2
0/1
1/2 0/2
2/2 2/2
2/2 2/2
2/2 0/2
8
$$
-
i
9
10 1
2 6
j
1 A
"i
j ;
i
i
ii
HONS 0 5 6 0 4 *
CONFIDENTIAL
Tabl# 12 .Tncldewoo of Mortality In Relation to Haterlal
'Torn! oraburp of fog) T-noonol
Spolo*
Total Humber c>f AnirrmX# That Died/iotal Humber ixpooed
Iydraul F9
Aroolor 124
Triorosyl Fhoephat#
Mio*
t 28/49 (S>71)
% 37/63 (SB.7)
* 32/69 (46.4)
Guinea H(;, 13/20 (6S.0) 24/26 192.3) 17/20 (60.7)
Habbite
4/?4 (10.2) 16/30 (42.1) 9A2 (21.4)
Hat# '
6/20 (40.0) 9/26 (34.6) 11/20 (39.3)
HONS 056045
CONFIDENTIAL
mulu,
jtnoMenog-.of Spool--V and Toni-iefoturo of Inconol
.''pools*
Mloo Oulnaa I'lffa Uabblta Unto Total
;Uo* Quine* Tl(' Kebblta riot* Total
Mlot Oulna* Tigs Httbblt* Oat* Total
Number of Axilme.In jhot Ulod/llumber of Animal* Fxpoaed
1250 F.
1050 F.
Aroolor 1248
%
24/29. (62.8)
10/12 m
(i6s3?.3!
46/71 (64.6)
*
13/34 (38.2) 14/14 (100.0)
9/20 (45.0) 4/14 (20.6)
40/02 (40.6)
Tydraul F-9
15/24 5/10 1/10
6/10
*
(62.5) (50.0) (10.0) (60.0)
27/54 (50.0)
13/25 0/10
3/14 2/10
t
(52.0) (00.0) (21.4) (20.0)
26/59 (44.1)
Trloreayl fhoaphate
17/3? 7/14
2/21
5/U
%
(40.6 (50.0 < ?.5 (35.7)
31/84 (36.9)
1105//1314.
I0/llt
%
(niil
I8:il
30/63 .(45.8)
HONS 056046
HONS 056047
i'a'oltt 14
The Toxicity of fj-uraul I--9 when Hal; tai-.ea Coriinncu.slT for TuantT-fo-r Sours ir. Contact With the Akin of :;nbtlt3 by the Sleeve "othod of Praise. ioodsrd and Cslvory
(Applied undiluted)
Identi
fication Condition
Ihrater
of Skin
Initial '8L>t
Loss of '..eight impressed as
rercenta.a cf Initial WaisJht
jf ate
Length of Survival After
the Material fas Applied
c-333 0-339
Intact Intact
9.4 2.06-3 9.4 2.390
0-340
G-419 0-421
Intact Intact Intact
6.0 2.275 6.0 1.630 6.0 2.016
0-420 0-436
0-439
Intact Intact Intact
3.6 2.100 3.6 2-262 3.6 2.265
0-455 Abraded 6.0 2.090 g-45? Abraded 6.0 1.9S6 g-458 Abraded 6.0 1.666
36.1 17.4
19.8 9.9 9.6
6.1 . 3.6 3-7
36.5 4.3
li.2
died Died
7 days 3 days
Pied/ 20 days
Survived 9 days; killed Survived 9 days; killed
Survived 23 days; killed Survived 16 days; killed Survived 16 days; killed
Pied Pied died
19 days 44 hours
3 dsys
i
1)
i
i
Table 15
nt:al
The ~oxXslt7 of Aroclor 12LS When Maintained Continuously for Twenty-four Hours la Contact Kith the Skin of Rabbits by the Sleeve Method of Praise. Woodard and Calvery .
(Applied undiluted)
Identi fication
Kuaber
Condition of Sirin
Dose al./fc.
Initial Weight
leg.
Loss of 'weight Expressed as
Percentage of Initial 'Weight
Fate
Length of Survival After
the Material
Waa Applied
9*0950 SHOW
II!
EEg
G-3bS G-tfUO c-4i
Intact Intact
Intact
9-4 2.>10 `>4 2.310
94 2.053
0-422 Abraded 94 1.C65 G-424 Abraded 94 1.922 c-443 Abraded 9.0 1.970
G-liUh Abraded 6.0 2.196 0-456 Abraded 6.0 1.662
19.3 3.9
26.2
9.2. 35.2 14.8
19.2 12.7
Survived Survived Survived
Survived 4 day*; killed Died " 8 days
Survived 29 days; killed
Died Died
6 day* 21 hours
Table 16
' T -- fvj T
the .`o.-loltT :,f Xrlcrorvl rh&ay'sgto 'when MEintair.sd Continuously For Twenty-four Hours In Contact With. the Skin of babbits by the Sleovo Method of Pralao, Woodard and Calvary
(Applied undiluted)
Identi fication
dumber
Condities of Skin
Dose xal./kt:.
: loss of Vieiglit Initial iiepressod as
Weight : Fercentage of
k. 1 Initial Weight
Fate
length of Survival After
the Material Was Applied
5V09S0 SNOW
0-628
G-337
0-334 c-m 0-345
c-423 0-!;42 0-445
Intact
Intact
Intact Intact Intact
Intact Intact Intact
9.4
6.0
2.5 2.5 2.5
1.6 1.6 ` 1.6
2.487
2.460 !
2.190 ! 2.360 2.125 |
1.620 ; 1.609 1 2.158 i
15.5
16.1
21.0 38.2 9.8
13.2 11.3
5-9
Died
2 days
Died
2 days
Survived 20 days; killed
Died
7 days
Survived 6 days; vmad
Survived 9 days; killed
Survived 21 days; killed Survived 16 days; killed
-c.'clo 17
; ' I c 3 N TI A L
the Toxicitv of Car-oyle CT jl V.nen 4e*.-.i-aiLr:c<I Cvoici/uc? .-or Tventv-focr Hours in Contact with tlvo s <cia of :.ab uits
by the Sleeve ' ;ethod of Dr&ice. .loodsrd and Cu-lvery
(Applied undiluted)
Identi
fication Condilion
Suraber
of Skin
Dose nl./k>
Initial Weight
Loss of vS.* _iit
Stressed as ie-rcontce;o of Initial Wei;-ht
1 ate
Leu: th of Survival After
Uiis Sa Serial as Applied
0-329 G-33I 0-341 0-342 g-343
c-332 0-352 0-354
Intact Intact Intact Intact Intact
Abraded Abraded Abraded
9.4 9.4 5.4 9.4 9.4
5.4 9.4 94
2.470 2.345 2.C30 2.210 2.160
2.040 2.450 2.255
12.9 11.9 15.2 17.6 1C. 2
6.6 10.4 20.2
Survived surv ived survived Survived Survived
14 days; killed 18 days; killed 20 days; killed
19 cays; killed G days; killed
survived
days; killed
Survived 20 days; killed
survived 20 days; killed
0S09S0 SNOW
I
asai&Jg
-ONf`Dnt;al
Suaaarizod Seta os tlio I*-;;,oalatcS- Tonicity of Pydr&vl r-9.
Aroclor 12hS. Trlcrer?! Phosphate ar.d Gargoyle DTE -has
Maintained ~0aon the Skin of babbits According: to the Sloeve :jothod of Jralze. Woodard toad C&lrery
MONS 0 5 6 0 5 1
Blle/kg.
JhEibor that 2ied/Wuaber Given che Material
Pydraul ?-9
Aroclor 12ij.8
Tricresyl Phosphate
Gargoyle 3>IK
Intect Abraded Istact Abraded
IStact
Intact Abraded
9.4 2/2
0/3
1/3
VI
o/5 C/3
6.0 V3 3/3
2/2
1/1
--
3.6 9/3 -
--
-
--
2.5 - - - - 1/3 - -
1.6
* " ' * - c 0/3'
-~
Figure 2
HONS 056053 II
Figure I
i !
I
Figure 3
HONS 056054
Figure 4
HONS 056055
Figure 5
W
Figure 8
Per cent Transmisson
Figure 7
Per cent Tronsmisson
100
.1
0909SO SNOW
-J
Per cent Tronsmisson
3 O
2
O
\n O'
Figure 10
O'
Jh..
FIGURE II.
HONS 0 5 6 0 6 2