The manufacture of earth colours : $b With thirty-one illustrations — John Shaqi
The manufacture of earth colours : $b With thirty-one illustrationsBersch, Josef
Science
The manufacture of earth colours : $b With thirty-one illustrations
Bersch, Josef
Coloring matter; Pigments
One of the best-known places where the formation of arragonite can be
observed at the present time is Carlsbad in Bohemia. The hot springs
there deposit a very large amount of lime, which is stained more or
less yellow or red by the presence of varying quantities of iron
oxide, and, under the name of “sprudelstein” is used for producing
various works of art. When the hot springs bring up particles of sand,
the lime substance incrusts these sand grains, forming globular masses
resembling peas, and consequently named pisolite.
In chemical composition, calcite and arragonite consist of a
combination of calcium oxide (lime) and carbonic acid, the formula
being expressed by CaCO{3}. Calcium carbonate is insoluble in pure
water, but dissolves somewhat freely in water charged with free
carbonic acid. It is assumed that a compound is formed, which is known
as calcium bi- (or acid) carbonate, is very unstable and can only exist
in a state of solution. When a solution of calcium bicarbonate--which
can be prepared by passing carbonic acid gas through water containing
finely divided calcium carbonate in suspension--is exposed for some
time to the air, it soon becomes cloudy, and a deposit of calcium
carbonate settles down at the bottom of the vessel, because, in the
air the dissolved calcium bicarbonate is decomposed into free carbonic
acid gas and calcium carbonate, which latter, as has been mentioned,
is quite insoluble in water. It has already been stated that this
phenomenon goes on in Nature in the formation of stalactites, lime
sinter and calcareous tuff.
Calcium carbonate is readily soluble in acids, the contained carbonic
acid being liberated (as carbon dioxide) with effervescence. When such
acids are employed for solution as form readily soluble salts with
lime, such as hydrochloric, nitric, acetic, etc. acids, a perfectly
clear solution is obtained; but if sulphuric acid is used, a white
pulpy mass is formed, consisting of calcium sulphate, or gypsum,
which, owing to its low solubility, separates out as small crystals.
Any sandy residue left when calcium carbonate is dissolved, mostly
consists of quartz sand. In dissolving dark-coloured limestones, grey,
or even black, flakes are left, which consist of organic material
very high in carbon. On limestone being subjected to fairly strong
calcination, all the carbonic acid is expelled, leaving behind the
so-called quick or burnt lime, which is, chemically, calcium oxide:--
CaCO{3} = CaO + CO{2}
Calcium carbonate = Quick lime + Carbon dioxide
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