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
If from a defect in the construction of the instrument, or from other
causes which will be pointed out more particularly in the Second Part
of this work, diffused white light gains entrance into the Camera, it
produces indistinctness of the image by affecting the Iodide more or less
universally.
The luminous image of the Camera not being perfectly pure, mere
_over-exposure_ of the sensitive plate will usually have the same effect.
In such a case, when the developer is poured on, a faint image first
appears, and is followed by a general cloudiness.
The clearness of the developed Collodion picture is much influenced by the
condition of all the solutions employed, but particularly so by that of
the Nitrate Bath. If this liquid be in the state termed alkaline (p. 88),
it will be impossible to obtain a good picture; and even when neutral,
care and avoidance of all disturbing causes will be required to prevent
a deposition of Silver upon the shadows of the image: especially so when
Nitrite of Silver or Acetate of Silver are present, both of these salts
being more easily reduced than the Nitrate of Silver.
The use of _Acid_ is the principal resource in obviating cloudiness of the
image. Acids lessen the facility of reduction of the Salts of Silver by
developing agents (p. 98), and hence when they are present the metal is
deposited more slowly, and only on the parts where the action of the light
has so modified the particles of Iodide as to favour the decomposition:
whereas if acids be absent or present in insufficient quantity, the
equilibrium of the mixture of Nitrate of Silver and reducing agent which
constitutes the developer is so unstable, that any rough point or sharp
edge is likely to become a centre from which the chemical action, once
started, radiates to all parts of the plate.
Various acids have been employed, such as Acetic acid, Citric acid,
Tartaric acid, etc. Nitric acid is the most effectual of all, but is
seldom used, because, although the image can often be developed with great
clearness when the Bath contains a small quantity of Nitric acid, yet
such a condition is not favourable to _intensity_; on the other hand,
films which are prone to irregular reduction, such as those prepared in a
chemically neutral bath or a bath containing Acetate or Nitrite of Silver,
are likely to give the greatest vigour of impression. Hence, when this
quality is desired, the use of Nitric Acid will be adopted cautiously.
The state of the Collodion must be attended to as well as that of the
bath; it should be either acid or neutral, not alkaline. Colourless
Collodion may be used successfully as a rule, but sometimes a little
free Iodine is advantageously added. Care should be taken in introducing
organic substances, many of which dissolve out into the bath, and spoil it
for giving clear pictures. Glycyrrhizine, however, which is recommended
to produce intensity of Negatives, has no effect of that kind, and may be
employed with safety.
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