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INCORPORATED >901 ESTABLISH CO ANO MAINTAINED BY THE
JfaUunaliioaiCofSuv Qn^nprttns ro sekvicc* not profit
207 EAST OHIO STREET. CHICAGO
illaoollr.noous Hazard Ho. 2498 Applioatlon Ho. 32C1907 Fotoruiry 3, 1934.
REPORT on
HJBRICAHT Swann Chomloal Co., How York, H.Y.
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MQNS 060198
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TABLE OF CONTENTS
------------------1-----------------
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DESCRIPTION.......................................................................................... 1
CLAIMS MADE FOR THE PRODUCT.................................................... 2
PLAN OF INVESTIGATION.................................................................. 2
EXAMINATION AND TEST RECORD.................................................... 3
RECORD IN SERVICE................................................................................. 17
THE SUBMITTOR...........................................................................................17
CONCLUSIONS.....................................
18
RECOMMENDATION
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MCNS 060199
PMrUinUtOtJi i* 0.8. AM.-M"
A. *. SMALL. rwCtlOCNT C. R. WKL.AONN. SKCMCTAMV h. . MKAOCN. TAKAWNN
WNtrco ar*rcs amo cana&a
CHICAGO. 20? (. OHIO ST. new vonk. iti Sixth avc.
SAN rRANCISCO. SIS COHMtACIAU ST.
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INCORPORATED 1001 ESTABLISHED AND MAINTAINED BY THE
BrtiunalBomiloFSitieQna^npntfis
roa SEfwicc-NOTpnorir 207 EAST OHIO STREET. CHICAGO
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Miscellaneous Hazard No. 2498 Application No. 32C1907 February 3, 1934
REPORT on
HJBRICANT
I Swann Chemical Co., . New York, N.Y.
i DESCRIP T I 0 N
0SN3RAI, CHARACTER AND USE: Tho product.which ia the subject of this
report,is a synthotio oil consisting of a mixture of chlorinated hydrooarbdns. It is made in several grades having different viscosities. The color of the three grades submitted varies from light yellow1to deep golden yellow. It is intended for use as a general lubricant and particularly for the lubrication of steam turbines operating with high temperature steam.
MARKING: . "Swanoo", 80 to 150, stenciled on con
tainers*
MOMS 06C20C
HH.2498
CLAIMS MADE FOR T II 3 PRODUCT
The manufacturer claims that the product is a distlnot improvement in lubricating oils' in respect to fire hazard. It has no fire point and is relatively
nonflammable.
PLAN OF INVESTIGATION
The object of this investigation was to de termine the nature of tho recommendation to bo made rolativo to tho fire and toxio hazard of tho product.
In planning tho investigation consideration
was givon to tho Gonoral Haturo of the product, its
Firo and Toxio Hazard, Stability, and Uniformity. Tho
manner of investigation of oaoh of thoso phases is
givon bolow.
1
GENERAL NATURE;
'
Information as to tho gonoral nature of tho product was obtainod by moans of Idontifioation Tosts.
FIRE AND TOXIC HAZARD:
Tho firo hazard of tho product was invostigated in rospoot to flammability, ignition temporaturo,
oxplosibillty, and decomposition temporaturo,- Tho produots of decomposition wero investigated in rospoot
to flammability and oxplosibillty. Considoratlon was also givon to the toxicity of tho fumos produced on contact with flnmo or by dooomposition of tho product. Thoso foatores wars oovsrad by Flash Point Tests, Fire Point Tests, Vapor Pressure Determinations, Ignition Temperature Tests, Explosibility of Vapors Test in ' specially designed apparatus, 3xplosive Range Tosts, and Analytical Tosts of Produots of Decomposition.
STABILIg:
Information on this phase of the investi
gation was obtainod from tho Dooomposition Tosts and
from oonsidoiration of tho ahomloal nature of tho
produo t. 1 '
I
HONS 060201
MH2498
-3 -
uniformity:
As the methods of manufacture are subject to reasonably definite control, a detailed investi
gation of this feature was not required.
EXAMINATION AND TEST RECORD
, DESCRIPTION OF SAMPLES
The manufacturer supplied for testing the following samples:
1 can (12 lb.) "Swanco 80" 2 oans(24 lb.) "Swanco 100"
1 oan (12 lb.) "Swanco 150"
, < "
The first and last samples were furnished as representative respectively of the minimum and maximum chlorine content, corresponding to the minimum
and maximum viscosity of the product suitable for lubrication of modern steam turbines. The second sample was supplied as one between the other two in chlorine oontent and viscosity.
For use in comparative tosts two samples of ordinary oommorclal turbine oil wero obtained by Underwriters1 Laboratories. Thoso samples are des
ignated as Samplo "A" and Samplo "B".
--ID--ENTIFICA--TI--ON--TE--STS: 1 ;
METHODS
Spoelflo gravity - Tho specific gravity at
15.S C(60 S') with rospootto wator at tho saijio tomporaturo was detorminod by moans of a pyonomotor.
Flash Point - The flash point tost was made with tho Ponsky-Martons closod cup tostor, using
tho standard A.S.T.M. mothod for this instrument.
Fire Point - The firo point tost was mado with tho Clovoiand dp on dup tostor, using tho standard
A.S.T.M. mothod for this instrument.
MONS 060202
132498
4
Viscosity - Tho viscosity at 123 F was de termined by moans of the SaybolV Univorsal Viscosimetor according to. tho standard A.S.T.it. method for this instrument.
Acidity - Tho acidity of tho oil vas de termined by hoating a 20-g. sample with alcohol and titrating with standard fiftieth normal base, using phcnolphthalcin as an indicator. Tho acidity was oaloulatod in torms of por oont HC1 by weight.
Q.nal.1 tatlvo Tost for Chlorlno - A anall samplo (No. 100) was tested vdth motallio sodium by hoating in a tost tube. The test tube was brokon in wator, and tho solution filterod. Tho filtrato was aoidifiod with nitrio acid and silvor nitrato solution addod. Tho prosonoc of chlorine is shown by a white preoipitato.
cj
Distillation - The distillation was conducted employing the A.Si.i'.i;. Hethod for Distillation of G Oils (D 158} exoopt that temperature and volumo roa ings v;oro more froquontly taken.
Determination of Chlorlno.- Tho poroontago chlorine was determined by tho Carius mothod.
HONS 060203
(
MH2498
-5B2SULTS The results are tabulated below:
Determination
"Swanoo 80"
Specific Gravity
at 60 F 53T
1.461 '
Flash point,deg.F Penalty-Martens
395* '=r>
Fire point,deg.F Cleveland open oup None**
Viscosity Saybolt Universal at 122 F_. ,
(no test)
Acidity, per cent HC1 by weight
(no test)
Qualitative test for chlorine
(no test)
"Swanco 100"
"Swanco 150"
A
3
1.479
1.485= 0 ;834 0.889
405* None**
395* None**
370 450
390 460
121 (no test)(no test)(no test) 0.0012 (no test)(no test)(no test) present (no test)(no test)(no test)
* In view of the negative results obtained in the Fire
Tests, it is olear that the flash point test cannot be
depended upon to give a true measure of the fire hazard
M
of this product. It was therefore necessary to oonduot
tests of* the explosibility of the vapors of the product
in specially designed apparatus - see page 9 et seq.
(Sea "Underwriters' laboratories' Method for the
Classification of the Hazards of liquids", page 4 ot scq.)
** Intermittent flashos were obtained but the product did not oontinue to burn. The samplo was hosted to boiling point; tho tost was then discontinued.
HOMS 060204
MH249S .
6-
Do termination ;
Distillation,ySamplo No. 100.
Tomporaturo 1p c :
647.0 . 650.0 1 655.0 1 660.0
665.0 67Cj.O
' 675.0 680.0 685.0 690.0
341.4 343.3 346,1 348.9 351.7 354.5
357.2 360.0 363.0 366.0
Volume Cubic Centimeters
1st drop 46 57
, 33 21
1 16 8 6 4 4
Per Cent by Volume
0.0 23.0 28.5 16.5 10.5
8.0
4.0 3.0 2.0
2.0
Volume distilled
Initial boiling point Maximumi tomporaturo Rooovnrod Ro siduo and loss
200 oo. 647 Ft341.4 C) 690 J(366.0 C)
97.5 per cont
2.5 per cont
Determination of ohlorino - Tho per cent ohlorino was found to bo In aooord with manufacturer' s statomont.
VAPOR PRESSURE PBTEIMINATIONS:
SAMPLE "Swanoo 100" was used in these tests,
METHOD
The Hoffmann apparatus and method were employed in these determinations. The apparatus consists essen tially of a graduated barometer tube filled with meroury and surrounded by a glass jacket. The glass Jacket is provided with an inlet for heated vapors and an outlet for the heated vapors and oondensate. A thermometer is suspended in the vapor space between tho barometer tube and glass Jackot,
HONS 060205
MH2498
-7 -
In aonclucting the test, the height of tho mercury in tho barometer tube was moasurod, and tho
sample was then introduced into the tube, and allowed to remain at room temperature ovor night. In tho morning tho height of tho mercury in tho tube was again measured. Tho temperature of barometer tube and samplo was next raised, furfural vapor, introduced at tho top of tho jacket, being used as a heating medium. After tho tomporaturo became constant, tho hoight of tho mercury in the tubo was moasurod and the barometric
prossuro noted. From those data tho vapor pressure at tho boiling point of furfural was oaloulatod applying
correction for tomporaturo and tho vapor prossuro of
tho moroury, Tho tost was ropeatod. using napthalono vapor and oonzoio aoid vapor as heating mediums.
RESULTS
Tho results of tho tosts are tabulated below:
Bolling Substance
furfural) naphthalono bonzoio a,oid
Tomporaturo ______ C
159.0 217.5 250,0
Vapor Prossuro HU. of Hg.
4 23 53
IONITIOH TEMPERATURE TESTS:
METHOD
In tho first sorios of tosts, tho apparatus employed oonsistod osscntially of a conioal quartz or
glass flask, which was submerged to a dopth equal to two-thirds Of its hoight in a molten solder bath heated by throe blast burners,, and equipped with a thcmooouplo
for tomporaturo mcasuriponts. Tho flask was 1-1/8 in. .in diameter at the top,'2-3/8 in. in diameter at the base, land 4-1/4 in. high, with a oapaoity of about
160 oo. '
Tests were also oonduoted using an iron flask of the same size and 3hape.
HONS 060206
IIHii'i'JO
-0 -
Tho teat consisted in dropping a few drops of the lubrioant into tho flask at each ^nterval of 5 C(9 F) and observing whothcr or not ignition \va3 obtained. In some of tho trials a littlo addi
tional air was introduced into tho flask by moans of a rubber bulb and boat delivery tube. .Ifter, each trial tho gasos and vapors wore oomplctcly displaced by tho aid of a.-slow stream of air. Tho lowost tomporaturo at whioh ignition (without application of flame) oould bo obtainod was takon as tho ignition
tomporaturo.
In tho sooond sorics of tost3 the apparatus U30d oonsistod ossontially of an iron plats 10 in. square by l/4 in. thick, heated by means of gas burners. A shoot iron shield was provided around
tho plato to dofloot the hot burner gases. Tho shield consisted of a strip of sheot iron about 10 in. wide whioh vras boltod around tho odgo of tho plato at an asbostos gasketed Joint. Bis plato assembly was sot upon a fire brick structure de signed to conserve tho hoat of tho burners. A cali brated 14 B.&S. gauge ohroraol-aluncl thermocouple, brazod at tho oentor of tho upper surfaoo of tho
plato and oonnoctod with a potentiometer, was. usod to measure tho tomporaturo of tho plato.
In oonduoting tests tho plato was hcatod
and raoasurod quantities of lubrioant (up to 10 oo. )
were applied to tho oontor of tho plato. In some tests a slow streum of oompressod air was applied
to tho vaporizing oil. Tho lowost tomporaturo at whioh ignition ooourrod was rcoordod as tho ignition tomporaturo.
' As a ohook on thermocouple temperature
readings, roadings of plato tomporaturo woro made by moans of a disappearing filanlont optical pyromotor.
MGNS 060101 l
I f i.
! > i
.7 ./
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I
The results are given in the table below:
Sample
Ignition Temperature*
Apparatus with Flask of
Olasa
Quartz
Iron
Heated ?late CF
Ho. 80 no test 672 C(1243 W) no test I 770
Ho.100 "
" 661 0(1222 F)648 0(1188 7) 770
Ho.ISO " "
no test
no test ' 770
A 256 0(493?) " "
""
417
B 261 C(50Z?) " "
""
417
1418 1418
1418 783
783
*V/ithln experimental error the optioal pyrometer
and the thermocouple gave the same readings | for plate temperature.
^EXPLOSIBIIITY OF VAPORS !E3T:
!
3 AMP 13
"Swanoo 100" was used in this tapt
MSfflOID
The apparatus used for this test was a i specially designed steel cylinder, about 26 In. in length and 6 in.' in diameter, provided with an inlet for the introduction of air and an outlet discharging to the atmosphere. A small mloa observation window was provided in the wall of the cylinder. \ 1/4-ln. spark gap was placed at ite goomatrio oenter. She oyllnder was heated externally by gas burners. An iron-oonstantan thermooouplo oenneotod with dpotontlomotor was used for moasuring tho rolojAvo. tomporaturo of the intorior of tho oyUnder.
In conducting a toet tho cylinder was hoatod to tho prodotermined tomporaturo, and n quantity of oil (from 3 to 20 oo.) was introduood into It through a throadod hole 7 in. from ono ond. Tho holo was loosoly olosod, and sparks wore passod aoross tho
MONS 060208
MH249B
- 10
spark gap at half-minute intervals for a period of 15 min., or until ignition occurred. In case of negative results for 15 min., a little additional air was then added to the vapors, and sparks wore again passed. The cylinder was then thoroughly purged with air in preparation for the next test.
RESULTS
The lowest temperature at which a flume
nrooagation ooourred was 166 C(331 F). This wa3
obtained with 19 oe. of the product upon intro
duction of a little additional air immediately after
the end of the 15-min. period. The flame propagated j
slowly through the mixture in the pipe, and there
were no obvious pressure effects. No propagation
of flame was obtained in six tests conducted at
'
temperatures ranging from 153 to 159 c(307 to 310 F),
employing various quantities ranging from 3 to 20 oo, \
of* the produot.
j
The explosions gradually increased in force
with increasing tenparaturo until at 250 C(482 F)
j
modorato pressure offsets were obtained as indioated i
by blowing asbestos plugs from openings in pipe.
]
EXPLOSIVE RANSE TESTS:
SIMPLES
"Swanoo 80" and "Swanoo 100" wore used in these tosts.
METHOD
The apparatus consisted essentially of a glass chamber equipped with a spark gap and a stirrer.
o The chamber la oylindrioal with tho lower end hemi spherical, and is approximately 3 in. in diamotor by 8 in. in height; it has a volumo of 1000 co. Tho apparatus is provided with a glass lid supporting the stirrer and the leads to the spark gap near the bottom of the ohnmber. An opening in the lid is
provided for introduction of the sample. The glass chamber is immersed In a molten solder bath to a
depth of 6 in.
HONS 060209 /
I.IH2498
- 11 -
In conducting toots the soldor bnth ras ad
justed to c. temporature of 400 0(752 F), a measured quantity Of the liquid to bo tested was placed in tho apparatus, and the vapors stirred. Sparks wore thon passed at the spark gap while observations were made for flamo travel and pressure offoots. Following the
tost tho vapors wore displaced by a slow stream of com pressed air in preparation for tho noxt test,
RESULTS
The explosive range of the produot ("Swanco 100"
in air at 400 C was found to be from -0.045 ec. (1.2 per cent by volume) to 0.115 oo. (3.2 per cent by volume). The percentages by volume are calculated on the basis of a molecular weight of 299.3.
Cheoic tests with "Swanco 80" indicated a range slightly wider than that obtained with "Swanoo
100".
ANALYTICAL 3ESTS- OF PRODUCTS OF DECOMPOSITIOK:
This series of tests was conducted to de termine the chief constituents of the products of decomposition obtained in the presenoe of hot-iron surfaces and also in the presenoe of gas flames.
SAMPLE)
"Swanoo 100" was used in these tests.
METHODS
The -specially designed steel cylinder pre-- viously described under "Explosibility of Vapors Test" was also used in these tests. Connections for withdrawing samples of the decomposition produots for analysis were inserted in the outlet pipe. An evaporating dish for the sample, a anall gas burner,
and a spark gap to ignite the gas at the burner 'were plaoed inside tha cylinder at the small mica obser vation window.
HONS 060210
MH2496
- 12
Free chlorine, hydroohlorio aoid, phosgene,
oarbon dioxide, carbon monoxide, and oxygon wore de termined, Employing tho following methods.
Frco ohlorino was dotorminod by aspirating a measured samplo through potassium iodido solution and titrating the liberated iodino with fiftieth .normal sodium thiosulphate.
Hydrochloric acid was determined by as
pirating a measured simple of the gas through vntor in contact with a small* amount of mercury, and pre cipitating tho hydroohloric acid in the aqueous
solution as silver ohlorido. The per cent by volume
hydroohlorio acid in tho samplo was calculated from tho weight of silvor chloride and tho voluno of tho
original sample.
Phosgene was dotorminod by aspirating a measured quantity of sample through a U-tubo filled with crushod antimony (to remove free ohlorino) and then through a saturatod solution of aniline- in water. Tho precipitated diphonyluroa (if any) ves driod and weighed and tho per oont phosgene calcu
lated, one molecule of diphenyluroa being equivalent to one molecule of phosgene.
Carbon dioxide, oarbon monoxide, oxygon, and nothano woro determined by means of an Orsat apparatus with a soparato hot wiro combustion pipette.
Tost 1 - In this tost the cylinder was h.ntcd to a temperature of about 459 C(858 F) and a
sample of 50 oo. of tho produot was introduced into the cylindar. Tho aspirators were then started, and samples for chlorine, hydroohlorio acid, and phosgene were drawn during evolution of any considerable quantity of vapor from the outlet pipe. Two gas
samples for the ' determination of oarbon dioxide,' oarbon monoxide, oxygon, and methane, were taken, one at 4, and one at 24 min. after insertion of the sample of the produot into the cylinder. At the end of 33 min; after introduction of the sample the fumes
decreased, and aspirators woro stopped.
MCNS 060211
HH2498
- 13
Tost 2 - .1 75-cc, sample of the product was
placed in the cylinder, and the email jps burner was
lighted by means of a spark and was kept burning
during tho tost by lighting again whonover extin
guished. The pipo was hoated to a temperature of
340 C(644 F) and,when flamos bogan to flash from '
tho small tumor ovor tho surface of tho lubricant,
tho aspirators wore started and samples drawn for
a ncriod of 23 min., at which time vapors coasod to
oomo from tho outlot pipe in material quantities.
Samples woro also taken at 6 and at 19 min. for
general gas analyses.
.
RS SUITS
Tho results of tho tests are given in Tablo I. It will bo observed that tho gases produced by dccomposi tion of tho product inoludod 0.6 per cent carbon monoxide, 0.99 per oont hydrochlorio acid
gas, and 2.1 per oont combustible gas calculated as methane.
DSCOKPOSITIOHi TEMPERATURE TESTS:
SAHPIE
"Swanao 100" was used in these tests.
The- apparatus and method described in Ignition Temperature Tosto using a flask vxirc employed in those toots, exoopt that observations wore made for decom position rather than for ignition. Hoist litmus papor was hold in tho vapors evolved from oil droppod into tho quartz flask, and tho lowest tomperaturo at which .appreciable roddoning or tho papor took place in a short (time (about 3 min.) was taken as tho decom position tomporaturo.
KSSUITS
Decomposition of tho product v.ns not appre ciable at tcraporaturos below 400 C(752 F), but became increasingly apparent at higher temperatures.
MONS 060212
MH2498
14
TABLE I GASEOUS EHODUCTS OF DECOHPOS ITION OF THE
LUBRICANT
--------------------------------------------r
,-----------------------------
Analysis of Products of Decomposition
Test 1
1 Test 2
Time 3amplo was taken,' min. after start of tost (a)
Per bent COg
4 1.7
24 0.4
6\ 5.4
" " 2 " " CO
18.3 0.4
19.5 0.3 '
13.2 0.6
" " CH (b)
%
2.i -
o.o ;
0.7
The figures given below aro based on samples drawn con-
tinuously during tho test.
19 2.4 17.4 0.5 0.0
Per oont HC1
Tost 1 0.28
Test 2 0.99
" " coci3 " < C1
2
none 0.003
.inonc 0.001
(a) The start of tho "tost is taken as tho time when fumes booomo plentiful, an! when aspirators wore started.
(b) While oalculatod as methane this figuro includes other gaseous hydrocarbons also.
/ HONS 060213
1212498
15
DECOMPOSITION TEST AT ELEVATED TEMP 33ATU RE AND PH2SSUHE:
SAMPLE
"Swanco 100" was used in theso tosts.
METHOD
Bio apparatus used in those tosts wa3 a oloood syatom of piping, having a total.volume of 750 co. It consisted of a 36-in. section of 1-in. pipe connected at right angles to a 6-in. section of 2-in. pipe. The system was provided with a gauge for measurement of the internal pressuro and with an inlet for intro
duction of comprossod air. The section of pipe 1 in. in diameter was mountod in an olcctrically heated test furnnoo 12 in. in longth. A thermocouple connected with a potentiometer was used to measure the temperature of tho pipe.
A sample (290 co.) of tho product'was intro-
duood into tho system, and compressed air v.r.a introduced
to an internal prossuro of 210 lb. per sq. in. After
maintaining tho system at a temperature pf 260 C(500 F)
for a period of 4 hr., it was allowed to cool. Tho
gnsos wro thon removed and analyzed by methods de
scribed under "Analytical Tost3 of Products of Decom
position". No test for phosgono was mado. Thoi sample
of tho lubricant was removed, and its acidity and *
)
flash point dotormined according to tho methods given
under "Idontifioation and Analytical Tosts".
,
MONS 060214
MH2498
- 16
RESULTS
below:
The results are given in detail in Table II
TABLE II
Tost Temperature
260 C(500 F)
Time, hr., to reach tost temp.
0.9
Initial air pressure, lb. per sq> in.
210
Air pressure 4 hr.after its introduc
tion (or at the time fumaoe was turned
off), lb. per sq. in.
'
210
Air pressure, furnace cool, lb. per sq.in. ^ 195
Temporaturc variation during 4 hr. of tost - 3 C(5 F)
Properties of oil removed from system
aftor test.
.
Appearanoe Flash point
Slightly darker, frothod on removal
202 0(395 F)
Acidity (per oont by weight HC1)
0.0075
Gas analysis Per oont C0,,
0.0
20.2
CO 0.0
CH4 HC1
0.2 none
Cl,, none
HONS 060215
(
MH2498
- 17
RECORD IN SERVICE
Tho produot Is in prooess of dovolopmant and has not been in general use. Accordingly, data as to its record in aorvioo are not available.
THE SUBMITTOR
Tho manufacturer, the Swann Chemical Company of How York, is a division of tho Swann Corporation, and is submitting first produot to -us. This concern is woll known in the chemical industry.
SU5SRVISI0H OF PRODUCT BY THE LABORATORIES;
Tho produot will bo placed undor Reexamination Sorvloo.
HONS 06C216
i
o
KK2498
- 18 CONCLUSIONS
EICRAL NATURE:
This product is a mixture of chlorinated
hydrooarbons, made in varying degrees of viscosity.
In Identification Tests it was found to ex hibit the characteristics of hydrocarbons and to contain chloj-ine in the amounts statod by the manufacturer.
FIRE AND TOXIC HAZARD:
.
The produot is practically nonflammablo at
ordinary temperatures.' It is capable of forming
moderately corabustiblo and explosive mixtures with
air under laboratory tost conditions at higher tem
peratures, beginning at a temperature level somewhere
within the range 318 to 331 F, but under praotioal con
ditions formation of oombustible or explosive mixtures
at temperatures as low as 331 F is regarded as extremely
unlikely. The fire hazard is very small, being in a
class only slightly greater than that of chloroform. -
The gases or fumos produced by burning or
decomposition of the produot by heat inoludo hydro
chloric acid, carbon monoxide, and a small amount of
free chlorine. This will ordinarily constitute a toxic
hazard only whoro the conditions aro such as to cause
HONS 06021?
MH2498
- 19 -
'
oonfinement of the fumes, as in a closed room in which
combustion or decomposition of the product is maintained
by firo or highly heated surface. It is to bo no tod in
thi3 connection that oils in common uso at present for
the lubrication of steam turbines arc readily combus
tible and,whon burning under conditions of restricted
air supply,form oarbon monoxide in dangorous concen
trations.
By reference to the results of Identification Tests, it will be noted that the flash point of the product is comparatively high, 201.5 C(395 F), and that a so-called "fire point" was not obtained. 'Viiile intermittent flashes occurred in this test, the product did not continue to burn. The flash point and so-called "fire point" testa, particularly the latter, in the case of chlorinated hydrocarbons are of limited value as a measure of fire hazard but are useful for purposes of identification. The practical significance of the above tests in theoase of the product in question is that its fire hazard i3 of a low order.
} By reference to Exploslbility of Vapors Test and Explosive Range Tests, it will be noted that vapors of the product failed to ignite or explode in tests at 159 C(318 F) but weak oombustlon occurred in tests at 166 C(331 F). In tosts at still higher teraporature3 modorato explosions wore obtalnod. At a temperature of 400 0(752 F), tho explosive range of the vapor with air was found to be frbm about 1.2 to about 3.2 per oont by volume of vapo^ in air. It will be noted that i this |L3 a comparetivoly narrow explosive range.
As shown under "Ignition Temperature Tests", the igiition temperature of the product was found to be 642 0(1188 F) in an iron flask heated by a solder bath and 770 0(1418 F) when dropped upon a hoatod iron plate.
MONS 060218
ID12498
- 20
Hydroohlorio acid, carbon monoxide, and a
small amount of chlorine wore found in tho gases pro duced by decomposition or oombustion of tho product,
as shovm under "Hosults of Analytical Tests of Products of Decomposition", An all-sorvioo gas mask offers pro tection from thoso gaso3 if formed in toxic concentra tions in a oonfinod space due to unusual oonditions.
It will bo noted that combustion and decom position of tho product was maintained by heated surfcooa t459 C, 858 F) or by a gas flamo in carrying out tho Analytical Tests of Decomposition Produots (see Tests 1 and 2), Aa shown by tho results of tho Decomposition Temperature Tosts, appreciable decomposition did not oocur at tompera taros below 400 0(752 F).
stabiiitt:
Bie product is reasonably stable and in uso
/is xmlikoly to undergo deoomposition resulting in an
lncrcaso in fire hazard.
In the Deoomposition Temperature Tests tho
product did not undergo appreciable decomposition at
temperatures below 400 C(752 F). In tho Decomposition
Test at pile voted Temperature and Pressure (500 F, 200
lb, por sq, in.), tho amount of decomposition wag ex
tremely small. Considerations of tho chemical structure
ana properties of tho produot also lndicato that it is
reasonably stablo,
'
imiFOHMirr:
-
It is Judged that the uniformity of tho
product can bo controlled within tho limits covered
by this investigation.
\
A consideration of tho composition of tho
produot and tho gonaral proooss of manufacture indicates
that it would bo praotioablo to produoo tho produot in
accordance with tho standard . established by tho samples
submitted,
*
MCMS 060219
RHCOKHEHBATION
TO THE FIBS COUNCIL OF UNLER'.JRIKRS' LABORATORIES:
We recommend promulgation of the following notice to subscribers and the action indicated thereby:
Guido No. 540 112 February 3, 1934 - Laboratories' File iIH2490
Swann Chemical Co.,- Mfr. , 1239 Graybar Bldg,, New York, N. Y.
Lubricant
A synthetio oil Intended for use as a general lubricant and particularly for the lubrication of steair. turbines
Harking: "Swanco", 80 to 150, stenciled on containers.
Listed by Heport - An investigation of this proiuct has been made by Underwriters' Laboratories, the results' of which are contained in a report dated February 3, 1934, copy of which may be obtained either from
the manufacturer or from the Laboratories.
Listed - Reexamination Service.
Soe description of Reexamination Service on guide card.
Tests by:
A. F. Matson C. C. Clogston
Report by:
Revlowed by:
SUBMITTED Chemical Engineer.
The foregoing Recommendation has been accepted
CCC:BIS
(HGATD) D. B. AKESS33JJ Secretary
HONS 060220