The manufacture of mineral and lake pigments : $b Containing directions for the manufacture of all artificial artists' and painters' colours, enamel colours, soot and metallic pigmentsBersch, Josef
Science
The manufacture of mineral and lake pigments : $b Containing directions for the manufacture of all artificial artists' and painters' colours, enamel colours, soot and metallic pigments
Bersch, Josef
Dyes and dyeing; Pigments
Occasionally white lead which has been ground in oil and used for
painting turns perceptibly yellow, the colouration being similar to
that observed on a surface painted with white lead from which light
is almost excluded. The yellow colouration is due to lead oxide. This
has been proved by suspending such a white lead in water and treating
it with carbonic acid, after which a surface painted with it remains
permanently white.
(f) OXYCHLORIDE WHITE LEAD.
Under the name of white lead, but differing from it in composition,
various products are found which consist of lead oxychloride. This
compound is also known as Pattison’s white lead.
Pattison’s white lead can be much more cheaply manufactured than
real white lead, the raw material employed being the cheap galena.
The finely-powdered mineral is boiled with strong hydrochloric acid
in closed lead vessels. Sulphuretted hydrogen is evolved, which may
be burnt to sulphur dioxide and so used to make sulphuric acid. A
hot saturated solution of lead chloride remains, from which the salt
separates in small crystals on cooling. The crystals are drained in a
basket and washed with cold water to remove the acid. The pure lead
chloride is then dissolved in hot water and mixed with lime water.
Pattison obtained lime water from dolomite by burning it, treating
with a little water to remove the easily soluble salts, and, after
the removal of this wash water, treating the residue repeatedly with
water in order to obtain a clear solution of pure hydrate of lime. When
pure limestone is used, it may be treated with water immediately after
burning without any preliminary preparation.
Two equivalents of lead chloride are used to one equivalent of calcium
hydroxide. Practical experience showed that the best product was
obtained when the precipitation was very rapidly brought about. With
this object, both solutions entered the precipitation tanks through
pipes with narrow slits at the side, so that the liquids met in a thin
layer, in which the precipitation of the pigment was instantaneous. It
is also necessary that lead chloride should be in excess throughout.
The liquid is allowed to stand for the precipitate to settle, which
it does in a brief time on account of its high specific gravity. The
solution now contains the small excess of lead chloride in addition to
calcium chloride; lime water is added until the liquid turns red litmus
paper blue. From the alkaline solution all the lead soon separates as
lead hydroxide, which is dissolved in hydrochloric acid, and thus again
comes into the process.
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