Document Vj8Xyk1ovLO0qJYJad66zy6oq
i.3iEHAL IBB CO,
Patented Oct. 4, 1949
2,483,469
UNITED STATES PATENT OFFICE
2,483,469
BASIC LEAD PHOSPHITE PIGMENTS
Leonard M, Kebrlch, Brooklyn, N. I, assignor to National Lead Company, New York, N. Y., a corporation of New Jersey
No Drawing. Application February 14,1947, i Serial No. 728,721
4 Claims. (CL 106--297)
1 This invention relates to basic lead phosphite
compositions useful as pigments and more par
2
tion catalyst, namely lead acetate, to facilitate the reaction.
ticularly to the preparation and use of dibasic
When the dilute phosphorous acid Is added to
lead phosphite and combinations of this com
the aqueous suspension which has a pH value of
pound with monobasic lead phosphite.
approximately 9.3, no change in the pH value
Monobasic lead phosphite is known and has occurs until, on the addition of sufficient phos
been previously prepared by prolonged digestion phorous acid the suspension turns white. At
of normal lead phosphite with ammonium hy
this point a lowering of the pH value to 6.9
droxide and by reacting a solution of basic lead place and the white solid phase is found to con
acetate with ammonium phosphite. The prod 10 tain on analysis 90.17% PbO, 4.18% P and 2.43%
ucts thus obtained by the prior art methods have HsO, corresponding to the compound dibasic lead
been identified as monobasic phosphites and were phosphite, 2PbO.PbHPCh.l/2HjO. This com
found to contain a maximum of 85.9% lead oxide pound is constituted of well defined aclcular crys
PbO, corresponding approximately to the formula tals which are anisotropic in character. Due to
for monobasic lead phosphite hemi-hydrate, 15 the difficulties of obtaining proper optical orien
Pb0PbHP03.1/2H30. Other basic lead phos
tation, the several indices of refraction were not
phite compounds have not been described previ
easily determined, but one of the refractive in
ously, so far as is known.
dices was found to be about 2.25. The tinting
A principal object of this invention is to pro
strength of this pigment was found to be un
vide a white basic lead phosphite composition 20 usually high, approaching a value of 300 in com
useful for pigment purposes containing more parison to 100 for Dutch process white lead,
than 85.9% PbO. Another object of this inven
when tested by the method described in "Exami
tion is to provide a new chemical compound, di
nation of Paints, Varnishes, Lacquers and Colors,"
basic lead phosphite, corresponding to the for
by H. A. Gardner, 6th edition, p. 65.
mula 2Pb0JPbHP03. 1/2Hj O. Another object of 25 On further treatment with phosphorous acid,
this invention is to provide basic lead phosphite the dibasic lead phosphite is converted to mono
pigments characterized by high tinting strength basic lead phosphite, PbOPbHP03.1/2HjO, dur
and opacity. A further object is to provide sur
ing which conversion the pH value of the sus
face coating compositions containing basic lead pension remains constant at about 6.9. Thus, by phosphite having excellent opacity and covering 30 maintaining the pH value of the suspension at
power and further characterized by excellent re
about 6.9, it is possible, by using calculated
sistance to weathering. A still further object of amounts of materials, to produce mixtures of di
this invention is to provide white rust inhibiting basic and monobasic lead phosphite. These pig
surface coating compositions especially valuable ments are insoluble In water and desirable from
for protection of metal surfaces against corro
the standpoint of their pigment properties.
sion. These and other objects will be apparent
For the purpose of being more clearly under
from the following description of the invention. stood, the preparation of dibasic lead phosphite
This invention in its broadest aspects contem
and mixtures of the dibasic and monobasic lead
plates the preparation of a new chemical com pound, dibasic lead phosphite, and also coalesced
in phosphite will be illustrated by the following ex-
""P181
Ex a mp l e I
mixtures of this compound with monobasic lead
phosphite, in finely divided form, adapted for
Dibasic lead phosphite
use as a pigment. The primary product of this invention, dibasic lead phosphite, represented by the formula 2PbO.PbHPC>3.1/2HjO, is in the form of fine aclcular crystals, is of good white color, and possesses high tinting strength and covering
43
1200 grams of finely powdered litharge were suspended in 6 liters of water containing 1.2
grams of glacial acetic acid. The suspension was heated to about 50* C. and vigorously agitated
while 507.1 grams of a 29% phosphorous acid
power. A general method for preparing dibasic lead
phosphite is first to prepare a finely powdered suspension of lead monoxide or litharge in warm water containing a rnan quantity of lead acetate and then while agitating, slowly adding dilute phosphorous acid, using amounts sufficient to pro
50
solution was slowly added over a period of 5% hours. The white solid obtained on filtration was found on analysis to contain 89.9% lead oxide, 7.30% phosphorous trioxide and 2.8% com bined water corresponding to the formula
2PbOPbHPOj.l/2HjO.
duce the dibasic salt. It will be noted that the 55
Ex a mp l e n
process of this invention differs from the proc esses of the prior art in that lead oxide and phos
Equimolecular mixture of dibasic and monobasic lead phosphites
3,483,489
of glacial acetic acid. The suspension was heated proper drying after each coat. The panels were
to about 50 C. and while stirring, 113.1 grains of a 29% phosphorous acid solution was gradu
exposed to natural weather conditions on ver tical test fences with a southern exposure. After
ally added over a 5% hour period. The white 33 months the relative ratings of the two paints,
product after being filtered and dried, was found with 10 the optimum, were as follows:
to contain 88.4% lead oxide and 8.70% phos
phorous trioxide and 2.9% combined water. The methods described in the preceding ex
1
amples are convenient for laboratory procedures. A method more adapted to commercial practice, however, Is to mix the components in their proper
rihflclring
8 7
10 1
proportions with water and to grind them to
10 8
gether in a- ball mill or other conventional grind
ing mill for several hours In which case a com
It is thus evident that outside white paints
plete reaction Is effected at normal room tempera 15 prepared from dibasic lead phosphite are ap
ture. Such a procedure is Illustrated by the fol
proximately the equivalent, in respect to weath
lowing example: Ex ampl e HI
ering, of those prepared from basic carbonate white lead which has long been recognized as the standard pigment for exterior paints.
Dibasic lead phosphite
20 That dibasic lead phosphite is also suitable as
A mixture consisting of 1200 grams litharge, 507.1 grams of a 29% phosphorous acid solution,
a rust inhibiting or anti-corrosion paint as illus trated by the following:
1.2 grams of glacial acetic acid and 6 liters of
Ex amp l e V
water was placed in a 5 gallon porcelain lined ball 25 The following paints were prepared in the mill with 14 lbs. of flint pebbles. The mill was usual manner. sealed and rotated for several hours at room
temperature. The reaction product, a suspen sion of fine acicular crystals, was transferred to a
34
tray and dried at about 60 C. The dried product
was found to be dibasic lead phosphite, compara
ble to the product of Example I. Lead phosphite pigments prepared as outlined
above may be made into surface coating compo
34.1
Iron oxide.-___7.____-............................................. do-----
Cuinarone-Indeiie coal tar resin............................ do___ Coal tar naphtha.....................................................do------
7.1 10.6 25.6 22.6
42.4
6.9
10.3 24.9
15.5
sitions, such as paint, by ordinary well known methods. The physical and chemical properties,
35
These paints were equivalent in composition
useful for compounding paint formulations, for on a volume basis when corrected for the volatile
both dibasic and monobasic lead phosphite are thinner content.
tabulated below. Compositions consisting of
They were applied to hot-rolled steel panels,
coalesced mixtures of the dibasic and monobasic salts will show properties dependent on the pro
40
both sides, two coats being employed. A cover coat of a suitable anti-fouling paint was then
portionate amount of each present in the com
applied. The panels were tested by immersion
position.
in marine waters. After 13 months immersion
the two paints were examined. The results are
Dibasic Lead Phosphite
Monobasic Lead Phosphite
noted below, where a rating of 10 indicates opti45 mum resistance to the type of failure under
question.
Percent PbO___ Specific gravitycrystal Habit...
Tintinz strength. Oil absorption .. Solubility in
water.
2PbO.PbHPOi.l/2HjO.. 90.2%................................. 6.95-'-.-................ ............
250-300.............................. 17 ..............................
PbO.PbHPO.l/2HtO.
85.9% 6.95. acicular. white, about 220. 15. Insoluble.
Paint No.
50
General appearance--blistering Peeling from metal base. ....... General rusting________ ______
The paint containing dibasic lead phosphite
By way of illustration of the utility of dibasic 55 has shown superior resistance to the corrosive
lead phosphite in coating compositions, the fol
effects of sea water immersion, as shown by these
lowing examples are cited.
tests.
Ex amp l e IV
The lead phosphite compositions of this inven tion may be used generally for applications where
The following paints were prepared in the 8 lead pigments are valuable. These will include
usual manner.
use in surface coating compositions, printing inks
of various kinds, pigmentation of rubber, plastics
12
and other materials. Also the lead phosphite
products of this invention will be found to be use
1,437.5
65 ful in applications where finely divided lead com
Alkali refined linssed oil...............................do___ Acid refined linseed ofl ................................do___ Heat bodied linseed oil (Q)........................... do-- Liquid drier.,...................... -......................... do.... Mineral spirits................................................. do___
Yield..................................................... gallons..
102.0 288.0 32.5 15.5 65.0
103.73
1,483.7 192.0 288.0
pounds are used because of certain chemical or physical properties, such, for instance, as high
32.5 15.5
65.0
PbO content and high specific gravity. Such in clude use in ceramics, rubber compounding, heat
103.73 70 stabilization of vinylite resins, and other applica
tions which will become apparent from the chem
These paints were applied to wooden panels of ical and physical properties shown.
four different woods, white pine, yellow pine,
The basic phosphite pigments of this invention
cedar and cypress.
have several advantages over previously known
Three coats of each paint were applied with 75 lead compounds used as pigments. The excep-
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0000-NLI-000018997