Imagine the industrial revolution which would be caused by the discovery
of a process for obtaining indigo synthetically from a coal-tar
hydrocarbon, at a price which would compare favourably with that of the
natural product. This has not actually been done as yet, but chemists have
attempted to compete with Nature in this direction, and the present state
of the competition is that the natural product can be cultivated and made
more cheaply. Nevertheless the dye can be synthesised from a coal-tar
hydrocarbon, and this is one of the greatest achievements of modern
chemistry in connection with the tar-products. For more than half a
century indigo had been undergoing investigation by chemists, and at
length the work culminated in the discovery of a method for producing it
artificially. This discovery was the outcome of the labour of Adolf v.
Baeyer, who commenced his researches upon the derivatives of indigo in
1866, and who in 1880 secured the first patents for the manufacture of the
colouring-matter. It is to the laborious and brilliant investigations of
this chemist that we owe nearly all that is at present known about the
chemistry of indigo and allied compounds.
[Illustration: FIG. 8.--WOAD (_Isatis tinctoria_).]
Two methods have been used for the production of artificial indigo--benzal
chloride being the starting-point in one of these, and nitrobenzoic
aldehyde in the other. The generating hydrocarbon is therefore toluene. By
heating benzal chloride with dry sodium acetate there is formed an acid
known as cinnamic acid, a fragrant compound which derives its name from
cinnamon, because the acid was prepared by the oxidation of oil of
cinnamon by Dumas and Peligot in 1834. The acid and its ethers occur also
in many balsams, so that we have here another instance of the synthesis of
a natural vegetable product from a coal-tar hydrocarbon. The subsequent
steps are--(1) the nitration of the acid to produce nitrocinnamic acid;
(2) the addition of bromine to form a dibromide of the nitro-acid; (3) the
action of alkali on the dibromide to produce what is known as "propiolic
acid." The latter, under the influence of mild alkaline reducing agents,
is transformed into indigo-blue. The process depending on the use of
nitrobenzoic aldehyde is much simpler; but the particular nitro-derivative
of the aldehyde which is required is at present difficult to make, and
therefore expensive. If the production of this compound could be
cheapened, the competition between artificial and natural indigo would
assume a much more serious aspect.[5]
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account