Pigments, Paint and Painting: A practical book for practical menTerry, George
Science
Pigments, Paint and Painting: A practical book for practical men
Terry, George
Paint; Painting, Industrial; Pigments
A pigment with good body can be made in the following manner. To 100
lb. of the thick magma of basic oxychloride add a concentrated solution
of 7 lb. sulphate of copper, and then 40 lb. of a concentrated caustic
lye (32°-36° B,), with vigorous and rapid stirring, finally adding
about 150 lb. of caustic lye at 20° B. When the decomposition is quite
complete, the precipitate is carefully washed, passed through a fine
hair sieve, and filtered. Drying is effected at a low temperature, to
ensure that the hydrated state of the oxide is not changed; and the air
of the drying chamber must be free from acid or sulphuretted vapours.
(2) If neutral nitrate of copper be decomposed by an insufficiency
of potash carbonate solution, the flocculent precipitate of copper
carbonate resulting is by degrees transformed into a sub-nitrate of
copper, which goes down as a heavy green powder. On treating this
sub-nitrate with a potassic solution of zinc oxide, a dark-blue
coloured pigment is formed, which is apparently a zincate of copper
mixed with a very small proportion of a highly basic nitrate of
copper. Though very light it has great covering power. In practice the
manufacture is conducted as follows.
Calcine copper scales in a reverberatory or muffle furnace till the
sub-oxide is entirely converted into protoxide, or until it dissolves
in nitric acid without evolving red nitrous fumes. Heat is applied to
the solution of nitrate of copper, which is decomposed by addition of a
clear solution of potash carbonate. After effervescence has subsided,
small doses of potash carbonate solution are added till but little
undecomposed copper is left. This residue is recovered by decanting the
clear liquor, and repeatedly washing the green precipitate with small
quantities of clean water, collecting all the washings, and finally
precipitating by potash solution. On introducing the green carbonate of
copper into a new solution of copper nitrate, it is transformed into a
basic salt. Crystals of nitrate of potash are obtained by evaporating
the previous liquors.
To obtain an economic solution of zinc oxide, clippings of metallic
zinc are treated with a solution of caustic potash or soda in a
cast-iron vessel. The immediate result is a disengagement of hydrogen,
and saturation of the alkali with zinc oxide, which behaves as an acid.
The cleared liquor serves for decomposing the basic nitrate of copper.
The pigment produced is a handsome blue, and the potash liquor can be
evaporated down till it yields crystals of saltpetre. The economy of
this method lies in producing nitric acid cheaply from soda nitrate and
obtaining saltpetre as a bye-product.
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