Studies on Fermentation: The diseases of beer, their causes, and the means of preventing themPasteur, Louis
Science
Studies on Fermentation: The diseases of beer, their causes, and the means of preventing them
Pasteur, Louis
Beer; Fermentation
The experiments to which Dr. Brefeld alludes, consisted in keeping under
continued study with the microscope, in a room specially prepared for
the purpose, one or more cells of ferment in wort, in an atmosphere of
carbonic acid gas, free from the least traces of free oxygen. We have,
however, recognized the fact that the increase of a ferment out of
contact with air is only possible in the case of a very young specimen;
but our author employed brewer’s yeast taken after fermentation, and to
this fact we may attribute the non-success of his growths. Dr. Brefeld,
without knowing it, operated on yeast in one of the states in which it
requires gaseous oxygen to enable it to germinate again. A perusal of
what we have previously written on the subject of the revival of yeast,
according to its age, will show how widely the time required for such
revival may vary in different cases. What may be perfectly true of the
state of a yeast to-day may not be so to-morrow, since yeast is
continually undergoing modifications. We have already shown the energy
and activity with which a ferment can vegetate in the presence of free
oxygen, and we have pointed out the great extent to which a very small
quantity of oxygen held in solution in fermenting liquids can operate at
the beginning of fermentation. It is this oxygen that produces revival
in the cells of the ferment and enables them to resume the faculty of
germinating and continuing their life, and of multiplying when deprived
of air.
In our opinion, a simple reflection should have guarded Dr. Brefeld
against the interpretation which he has attached to his observations. If
a cell of ferment cannot bud or increase without absorbing oxygen,
either free or held in solution in the liquid, the ratio between the
weight of ferment formed during fermentation and that of oxygen used up
must be constant. We had, however, clearly established, as far back as
1861, the fact that this ratio is extremely variable, a fact, moreover,
which is placed beyond doubt by the experiments described in the
preceding paragraph. Though but small quantities of oxygen are absorbed,
a considerable weight of ferment may be generated; whilst if the ferment
has abundance of oxygen at its disposal, it will absorb much, and the
weight of yeast formed will be still greater. The ratio between the
weight of ferment formed and that of sugar decomposed may pass through
all stages between certain very wide limits, the variations depending on
the greater or less absorption of free oxygen. And in this fact, we
believe, lies one of the most essential supports of the theory which we
advocate. In denouncing the impossibility, as he considered it, of a
ferment living without air or oxygen, and so acting in defiance of that
law which governs all living beings, animal or vegetable, Dr. Brefeld
ought also to have borne in mind the fact which we have pointed out,
that alcoholic yeast is not the only organized ferment which lives in an
anaërobian state.
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