A Manual of Photographic Chemistry, Including the Practice of the Collodion ProcessHardwich, T. Frederick
Science
A Manual of Photographic Chemistry, Including the Practice of the Collodion Process
Hardwich, T. Frederick
Photographic chemistry; Photography
A third impurity of Iodide of Potassium is _Chloride_ of Potassium; it is
detected as follows:--Precipitate the salt by an equal weight of Nitrate
of Silver, and treat the yellow mass with solution of Ammonia; if any
Chloride of Silver is present, it dissolves in the Ammonia, and, after
filtration, is precipitated in white curds by the addition of an excess of
pure Nitric Acid. If the Nitric Acid employed is not pure, but contains
traces of free Chlorine, the Iodide of Silver must be well washed with
distilled water before treating it with Ammonia, or the excess of free
Nitrate of Silver dissolving in the Ammonia would, on neutralizing,
produce Chloride of Silver, and so cause an error.
_Iodate of Potash_ is a fourth impurity often found in Iodide of
Potassium: to detect it, add a drop of dilute Sulphuric Acid, or a crystal
of Citric Acid, to the solution of the Iodide; when, if much Iodate be
present, the liquid will become yellow from liberation of free Iodine. The
rationale of this reaction is as follows:--The Sulphuric Acid unites with
the base of the salt, and liberates Hydriodic Acid (HI), _a colourless
compound;_ but if Iodic Acid (IO{5}) be also present, it decomposes the
Hydriodic Acid first formed, oxidizing the Hydrogen into Water (HO), and
setting free the Iodine. The immediate production of a yellow colour
on adding a weak acid to aqueous solution of Iodide of Potassium, is
therefore a proof of the presence of an Iodate. As Iodate of Potash
renders Collodion insensitive, this point should be attended to.
Iodide of Potassium may be rendered very pure by recrystallizing from
Spirit, or by dissolving in strong Alcohol of sp. gr. ·823, in which
Sulphate, Carbonate, and Iodate of Potash are insoluble. The proportion of
Iodide of Potassium contained in saturated Alcoholic solutions varies with
the strength of the spirit (_vide_ Part III., article Iodide of Potassium).
Solution of Chloride of Barium is commonly used to detect impurities in
Iodide of Potassium; it forms a white precipitate if Carbonate, Iodate,
or Sulphate be present. In the two former cases the precipitate dissolves
on the addition of pure dilute Nitric Acid, but in the latter it is
insoluble. The commercial Iodide however is rarely so pure as to remain
quite clear on the addition of Chloride of Barium.
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