supposing that the fermentation of fruits is an ordinary
alcoholic fermentation, identical with that produced by beer
yeast, and that, consequently, the cells of that yeast must,
according to own theory, be always present. There is not the
least authority for such a supposition. When we come to exact
quantitative estimations--and these are to be found in the
figures supplied by Messrs. Lechartier and Bellamy--it will be
seen that the proportions of alcohol and carbonic acid gas
produced in the fermentation of fruits differ widely from those
that we find in alcoholic fermentations properly so called, as
must necessarily be the case since in the former the
fermentaction is effected by the cells of a fruit, but in the
latter by cells of ordinary alcoholic ferment. Indeed we have a
strong conviction that each fruit would be found to give rise to
special action, the chemical equation of which would be different
from that in the case of other fruits. As for the circumstance
that the cells of these fruits cause fermentation without
multiplying, this comes under the kind of activity which we have
already distinguished by the expression CONTINUOUS LIFE IN CELLS
ALREADY FORMED.
We will conclude this section with a few remarks on the subject
of equations of fermentations, which have been suggested to us
principally in attempts to explain the results derived from the
fermentation of fruits immersed in carbonic acid gas.
Originally, when fermentations were put amongst the class of
decompositions by contact-action, it seemed probable, and, in
fact, was believed, that every fermentation has its own well-
defined equation which never varied. In the present day, on the
contrary, it must be borne in mind that the equation of a
fermentation varies essentially with the conditions under which
that fermentation is accomplished, and that a statement of this
equation is a problem no less complicated than that in the case
of the nutrition of a living being. To every fermentation may be
assigned an equation in a general sort of way, an equation,
however, which, in numerous points of detail, is liable to the
thousand variations connected with the phenomena of life.
Moreover, there will be as many distinct fermentations brought
about by one ferment as there are fermentable substances capable
of supplying the carbon element of the food of that same ferment,
in the same way that the equation of the nutrition of an animal
will vary with the nature of the food which it consumes. As
regards fermentation producing alcohol, which may be effected by
several different ferments, there will be as in the case of a
given sugar, as many general equations as there are ferments,
whether they be ferment-cells properly so called, or cells of the
organs of living beings functioning as ferments. In the same way
the equation of nutrition varies in the case of different animals
nourished on the same food. And it is from the same reason that
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