In dyeing for pale shades it is best to add the dye-stuff in small
quantities at intervals during the process of dyeing, and to run the
goods quickly through the bath, so as not to give the dye-stuff too
much opportunity to become absorbed by a portion of the goods only.
Working according to the hints given above, the dyeing of wool with
the basic coal-tar colours may be carried out in a very satisfactory
manner.
_Third Method_.--This method consists in dyeing the wool in a bath
containing the dye-stuff, a little acid (usually sulphuric) with the
addition of Glauber's salt, or some other alkaline salt, the essential
feature or principle being that the bath is an acid one. This method
is applicable to the large group of azo dye-stuffs derived from coal
tar, and also to the acid dyes prepared from the basic coal-tar
colours by the process of sulphonation.
It is also used to apply indigo carmine to wool, probably the only
good example of a natural dye-stuff applied by this process. Most of
the natural colouring matters, such as logwood and fustic, belong to
another group of dye-stuffs.
The simple azo dyes are combinations of two or more organic bases,
united together by a peculiar and characteristic group of nitrogen
atoms. Such azo colours are, however, insoluble in water, and
therefore they cannot be used in dyeing and textile colouring,
although the firm of Messrs. Read Holliday & Sons years ago patented a
process whereby these insoluble azo colours could be developed on the
cotton fibre direct, and thus fabrics made from that fibre could be
dyed in fast colours. When these insoluble azo colours are treated
with sulphuric acid they are converted into sulpho acids, undergoing
what is called sulphonation, an operation of the greatest (p. 067)
importance and value in the preparation of dye-stuffs. The preparation
of indigo extract or indigo carmine from indigo is also a case of
sulphonation. The sulpho-acids of the azo colours, of the basic dyes,
and of indigo are usually insoluble in water, although there are great
differences in their properties in this respect. They will combine
with bases such as soda, calcium and potash to form salts which are
soluble in water, and it is usually in the form of sodium salts that
these azo and acid dye-stuffs are sold to the dyer and calico printer.
It is this power of combination with bases that makes them of value in
wool dyeing. As Knecht and other authorities have pointed out, the
wool fibre contains a basic principle capable of combining with acid
bodies, and in wool dyeing with the colouring matters under
discussion, this combination occurs between the sulpho-acid of the
dye-stuff and the basic principle of the wool fibre.
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