Document yrOR6mwZ816qqa4b2qm8LdMm6
E. I. DU PONT DE NEMOURS & COMPANY KREBS PIGMENTS DEPARTMENT 256 VANDERPOOL STREET NEWARK, NEW JERSEY
Copy No.
ubr ar y copy
Period Covered*
NEWARK PLANT PIGMENT COLOR RESEARCH REPORT
Filial Beport In Investigation of the Determination of Total All*.all Metals in Dine Yellow.
Jass. 5, 1944 to larch 20 # 1944
FILE* DATE:
212 4/25/44
Serial So, 0-44-2-4
Copy So, f
C&W to*
% - Stmrleal me
t
'2 * Besearel* Office (212)
3 - Library VUi
(212)
4| -,, XapnarUOL Ctaa^tal SMbtatries, Ltrtd,
, tt
9
9 fit
? ** Sr* C. B# * - Hr, f, W,
9-
la)
BIWABS PLAIT
pxesat c o l o b mmmm was
Final Beport
Title* As Investigation of the Beteristoatitm of Total AUsaXi Metals to Ztoc Yellow.
Period Covered* laa. 5, 1944 to Marsh 20, 1944
S0MIYYI BY* A.B, Haa&e & S.W. Baabel
BATE SUBUfTED* 3-30-44
DUP050150709
mstals m:
jg
See Appendix I.
mat part of nit #46 miai alkali attain is attached to
It sms observed that ma KCR #46 in fallowed mssM.*
me
residue almost invariably
varying
af 1.
iTf>, fpd
It 1
served ta&t a w n h 1 supposedly free of cwylai f**# HP M io <M90 M* m
Wi mSt tjfeff
ssf; a^iifW y0lll
___, of mis work was to iarsoaftigohe te causes of this'"
varlatloa and to improve the method far determining alkali metals*
1) mis variation tore tom observed when using &R #46 be
determine alkali metals in sine yellow*
a) Positive mors are introduced because the alkali metal residue contains varying mmrnts of heavy metals*
I) Vocative errors are mtrodaeed because there is some loss of alkali metals dee to idmrpbioa and operative becissiose* this negative error is m function of me sample weight and also a function of the amount of alkali metal in the sample. For a
a gram sampla* of a normal sine yellow, the negative, error is
shout 14$ relative and drops to about 1*0 for' a 1 pram sample.
For samples loss mam 1 g, the negative error again seems to Increase eilifcfly*
4) aero Is no simple way to eorreet for me negative error*
If the sample contains a harms! amount of alkali metals*. l*$p of the amount found erne he added hot since the proper amount to add will vary somewhat depending on the individual techniqoe of mo operator* type of filtering equipment, et#,, the proper wemst to add should he determined by restniiig controls* mother objection to this method of correction Is mat the percentage adsorption is mot a linear function of the wauat of alkali metal preseat although for small variations in percent alkali metal such can he
5) file positive error cm he reduced to a minimum hy following me procedure outlined in detail in another section of this report* s ee Appendix II.
DUP050150710
3~
m. fable 1 shows typical results
metals fellewimg X #4*
determining alkali
Mtac SC* #4 *
10*
SB-1050-51
I
i
tt
a
fatal
Metals aa^a
Xjstmjmotot--f i mnUt
11*29
9*2 .2 %m $.n
1*3T @*tf ' 13*3 13*39
* ffcIs sample actually contains only traces of alkali metals*
Farm the above table, it earn be mm that although there
are some good creaks* the variation as a wtkale is tom great, the
results are dependent m the staple weight, ami Judging from the
results of sample C, me results are high when the aaomt of
alkali metals preset is small. IrperiMsts that will he described later will substantiate these conclusions.
guall_b_a__t_iv_e___in_&. lye...t.e. _o_f..m....o..agnail metal____ __
mowed me presence of small amouinttss of lead, z&meim& iron,
eatimttve results were obtained era me heavy motels prom
it was obvious that me ssesil remaining varied widely from determination to
So t hut
fhe buffer system used 1st KGR #4 is acetic acid,
acetate and it was observed mat during the course ef the precipi
tation of the sulfides, the pS changed from pi 3* to $1 3*1.
Eire sulfide will precipitate foautitatiwely over this pH range
bat the heat pH range is tetwee pB2 and pB3* If the pi gets
iKsm shove pSly3#, the a$se sulfide precipitate is difficult to
filter* A p. opular buffer system for precipitating sine sulfide la
formio sold.* formate, th is* wt**a*ws twr*i*e*d bu*t sms discarded when it
was observed that me formic acid reduced
of the chromate and
that the final alkali metal residue contained
trivalest
DUP050150711
~4r
mmmm m wmrn-mMmw wam&mUMm of tee sulfide Mm * .
tee assail# acit * acetate buffer swmm* lolteeff i* MAmb O*
^.|y
^
oa tee fMftT preipitatic of sine sulfide* 1'he a44itlo of a small amount of mmmx? wm Mi* as a mus of more efficiently reffi^lsg Hi#~ _M_e* &__$ i_fifi ait.i.fii^:r tee* __ wl atffiittf* mi
m f aserewy *tre deleete* m tee 4MI aHH residue.
Ml u mIX fMPMd*
wt
sulfides and the solution H ^saturated will HgS, This almost
mert -aiaf
hut ths MMt-t aetil
. elac* mtM ftcKlttm of the reside,
f flXMbMt IM MM^N>Vt*4Ml of the filtrate
- w 4
residue hut wm alnc still
j tHa
*^f**t<
residue wty treated wfte
a few' dress #f iijiaiii^M t^reSSil sstst improweiaeist is
up the alkali metal residue was reted* $. small wt of mmmtmk
carbonate in eenaoetion 4% the amentum hydrosida also helped,
hit till seme si ndsei in tie alkali metal residue* me
mm single treatment M for eleaaiag up the alkali metal
residue, was to 1mA. the gently ig.fSniitteef!t ai lkali metal sulfate
with water, satu...r..a...t.e.....w.._it.h.....le_-d e.n...d.. filter* the evaporation of the
clear filtrate yielded alkali metal sulfaltes that eontatrned only
a tree# of fate*
m wwm'&wv w*
v*> w*ii
wuss ugOH
of potassium chloride, sodium chloride, chromic acid, end s
ossld were -mined mi the alkali metal determined* ftgiga*l
chemicals
used and the alkali metal solutions were accurately
uUP"r*"ewipnfnmaer.-ewd>e iggWWt ;
wed fr use so teat tee amount of alkali metal determination wse always known* the solutions
Wa3P'^e IpUPwPi
?:rr\
ii
1) tlat $ g Ini disse&wed in. a mister of
< V -
,, ** 3.TT2 Had .made accurately to a idM of 100 ml site distilled mater. ( f ml 0*1 g m&)*
- 3*164 g KC1 made accurately to a of 100 ml with distilled water. 0*1 g &2@)*
DU P050150712
5-
imsmts of these n Ik Um ware take to siaKtlate
* *l*e
of eMpealtAft 4^ ft* 4P
and ldgf KjgO,
this was 0oamiliiMMrredc cdloose tBmwq0pi to lmiem actual eooeaasgppoossitistiaii
of a sstac fyeelllloow for me -w--mtmm i*nt"en-d--e--d- . The aemeds
used were basically mat of KCR #4# with aartli&eatftNM
naattrtu 'wi-.t.t. i* etierfited below.
Tills Well--p
'iwoiftmtls @f liter filtration, the solution to a volume of about 100 hi m&
wtm J^p The rout of me to me mm as the rsgulsr iaath.oa.
E) * Ttot isedifteatlo** takes the fSlalSalimelai residue, leaches it wtm
hot water, ml that filters, the filtrate Is evaporate! to depress and gently ignited,
This is the _-- .-----------m$ the solution is
wim &# before filtering*
45 ~ f?bbts is me
same as 2 lot a few drepa Jir SB/jlS are added teefore' filtevteg*
- this takes me
....................................................
similar to- me
regular aM let the excess lead and the alec
ere taken at with O-hydxo^rfaiiiQliii, (30 ail of
5$ alcoholic solution), this latter precipi
tation was carried out in tm raodificatioias,
r, in slight acetic aoi! solution and in
hydroxide soloMm *
_. .
these ehpre aadiU*ti>s were It
U1"ieii**
Mmetissi} mat fl, results m me doable sulfide uetfeed were
obtained with sad without an alkali asftgl 1cam* - Table a
cosaolidates the data.
^
DUP050i 50713
DUP050150714
from the data of table 2 the following observations
can m modes-
1) For normal zinc yellows, using a 2 gram sample, and XCR #46, the negative error is sreater than the positive error, i.e., the result are low, (See series 2,3,4 & 5)
2) For a 1 gram sample, the reverse Is true. The overall
error is about 4t4J high with a large variation (compare ser ies 10 & 11 with theoretical),
3) A double sulfide precipitation 'offers no advantage over the regular VOL #46 (compare series 2,3,3,& 4| alee 10 & 11),
4) An alkali metal Xeaeii *
Is more effective in puri-
lying the alkali metal re
than an alkali metal lafe
(iesjpare series 10 & U)
5) about 0*u g M for a 2 g sample
mi the standard pofcas
chloride elution gives the
theoretical result in the absence of ether lens with
accuracy of about 2% relative* (See series 1, 7, 8, 9)
6) If we assume that an alkali metal leash will remove all
heavy metals from the alkali metal residua (not strictly true), the negative error for a 2 gram sample win he the average of the alkali metal leach determinations of series 3, 4# 5 6, subtracted from their theoretical values* This amounts to -0.0297g or 14*3$ relative. Actually the alkali metal residue still contains scene alkali metals so 14. ^ Is
a minimum figure, the true figure being even hitter*
7) If we assume that an alkali metal leach HgS will remove all heavy metals, and this by qualitative analysis does get very nearly all of the heavy metals, the negative error for a 1 gram sample may fee obtained from series 10. This amounts to - %$% relative. This is the best figure that has been obtained.
8) For a 0,6 g sample, the negative error is about 3$ relative.
This figure was obtained from series 13. Series 12 was not used because the results are abnormal and serve to indicate how KGS #46 cm at times fail and give results that are far too high*
9) S-fiydroagrouinoline in acetic acid solution does not work (see series 14),
10) S-Hydroryqpatnolin in SS4OB solution works better but not as efficiently as Bj>S in removing heavy metals (compare
series 13 & 15).
11) The negative error may be slightly higher when using
8-hydrosyqulnoline (see series 16).
DUP050150716
l) 1m see of a mil
of
to At* til
shroli toe AK*tbv lnv*tlC*teft
mfwTiM iiive~As6
mSSum
iMMlittstsse WwmUmiMmew ofestrvatioiis Indicate that
fhii- ULl pnti sasltol not only lit getting **
separation of the heav_y **MU toot ale i&. ieereasiig
MfptiVt
the Mi of gelatin is inoorperatoi In the
mmM$M
2} try to employ ^toire^Atealln or sw ether preetpitating.
smt mmm^e U0 i mss#, ^iatoatisg
need ter Spl*
imtliAftlssi indicate that
sit* at wlffe stodlfiea
vfcere speed is
at the 9MM of seesrMjr,
organ! preeipl*-
I) weiSer the determination of petssafte* and sodium separately m% in the preaesee of the sine and etomimm. Fotasslma as the perchlorate and smite* as the s-inc or magnesia uraafl aoetat salt shoal# to eaaasideret* Concerning the mresyl aeot&t* reagite for sodim a large MtoUagraptogr elth comments Has feoem eompUMNI toy f*f* Collins, Jr* (3).
4) $h use of a radioactive method, depending on the radio activity of a potassium Isotope nay prove usoful for determining potassium in special eases* (4).
(1) Eolt&eff & Voltsaa* J,Phys* Cham* J, 779 (1936) (*) CafcMl & Soyer* *JU*JU S# W* CTOS) (3) tiieroa f* Cellists, Jr* *eteraiiBati5a of tedium with
Sranyi testate Beagest** Document #179i* teertoaa Document nurt&tute, Washington, DC* <4) Barnes & Saltoy* list* lag* Chen* Mai M* If# 4 (1943)
the experimental record is to to found lot* S.B. S.B* 1030-46
DUP050150717
t a
IbM Ml* *a 1# f (is^)> MI#N$.I
4 he&t until in solution* mi MM t boiling. 44*1
Idcilcu.teltfWf 0
hUae i MtUa* , Filter m& rnrnm well with hot &.
* filtrate with ftp, passing M %1aim0k the
"*%E 222
filter ajaidf
yf tf|
_. the &a).
the fBfeofi1!l
ftoa
expe- "l
M- *. ofM*-H"AlC,,*'3
eo.
^ Mipiftt *wwnd f Sj SQa h 4 boil 4mm to a
small mXwm* tvmsSm tl- a weighed silica m.m md
to
&7a m a hat gift. Beat fa aos^ltt# &!&## m a Swaae
tamr. Md. soil! QKft)4fii| Seat till taSmM Swat
4 flat#, #1 Wed#*# iBli a. fair a*yt#la
m&
again heat till walatiUMd. C1, weigh, end rp&t ti efm$bm%
weight,
$ to tal^g.lteg.l.ineMa'algate
Si E2S4 x .541 * ftp* Ift-port # $ ftp... -
DUP050150718
N41584.01
Acetic acid ** Cl.ll} Sp <W SSsS^ 00^0* (10^ solution)
" <S!iB.1.Affti:^W^
' : dissolve 1#HII $ of Mae follow- in 1# ml ill
eeetlo M'irt ait 25 water* leal wotlX aissol/
mint*
te i 350 Wi am: moot to tenia** m at ml of iSTl: oad acetate
IB*M fcllaMi" -'tfcii Wiftwtf^iiWtiiimlifeW*%m-# <
ta UlUft. ftofetty* aa*i wash mm
,tmt& with hot
filtrate with 1#
% 40 Mm* Md ID
" ` of gelalia asd
Fisted ami. want t
M with a few. irefs of 1*1 imlJtarXe net#*
ml of
e anti to 'the filtrate o..4....h...a...i.l...t..o....a.......... . .. of jt ft *al*
siliea Hat amt *&?** to teymota* eeily igaiio
tilt * Mm off* loaefc the reeisao with hot
,111
. of
fcofovo I oo* of
so Ifeo filtrate asd ovapofgto to dyfaste&s *o<< agffw .tt*,,' Qtirihg tho ig^tlaa^fa i eitohjfc.fe^l ML `aauflBL,mi4M jhf-hfi aw
leeator ssi weigh.
5 total alkali awlfotoe
* total alkali sulfates t ftS41 * alkali metals expressed as Kf8
DUP050150719
N41584.02