It may be readily understood how, in their state of aerobian
life, the alcoholic ferments have failed to attract attention.
These ferments are only cultivated out of contract with air, at
the bottom of liquids which soon become saturated with carbonic
acid gas. Air is only present in the earlier developments of
their germs, and without attracting the attention of the
operator, whilst in their state of anaerobian growth their life
and action are of prolonged duration. We must have recourse to
special experimental apparatus to enable us to demonstrate the
mode of life of alcoholic ferments under the influence of free
oxygen; it is their state of existence apart from air, in the
depths of liquids, that attracts all our attention. The results
of their action are, however, marvellous, if we regard the
products resulting from them, in the important industries of
which they are the life and soul. In the case of ordinary moulds,
the opposite holds good. What we want to use special experimental
apparatus for with them, is to enable us to demonstrate the
possibility of their continuing to live for a time out of contact
with air, and all our attention, in their case, is attracted by
the facility with which they develop under the influence of
oxygen. Thus the decomposition of saccharine liquids, which is
the consequence of the life of fungi without air, is scarcely
perceptible, and so is of no practical importance. Their aerial
life, on the other hand, in which they respire and accomplish
their process of oxidation under the influence of free oxygen is
a normal phenomenon, and one of prolonged duration which cannot
fail to strike the least thoughtful of observers. We are
convinced that a day will come when moulds will be utilised in
certain industrial operations, on account of their power in
destroying organic matter. The conversion of alcohol into vinegar
in the process of acetification and the production of gallic acid
by the action of fungi on wet gall nuts, are already connected
with this kind of phenomena. [Footnote: We shall show, some day,
that the processes of oxidation due to growth of fungi cause, in
certain decompositions, liberation of ammonia to a considerable
extent, and that by regulating their action we might cause them
to extract the nitrogen from a host of organic debris, as also,
by checking the production of such organisms, we might
considerably increase the proportion of nitrates in the
artificial nitrogenous substances. By cultivating the various
moulds on the surface of damp bread in a current of air we have
obtained an abundance of ammonia, derived from the decomposition
of the albuminoids effected by the fungoid life. The
decomposition of asparagus and several other animal or vegetable
substances has similar results.] On this last subject, the
important work of M. Van Tieghem (Annales Scientifiques de
l'Ecole Normale, Vol. vi.) may be consulted.
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