Alcoholic Fermentation: Second Edition, 1914Harden, Arthur
Science
Alcoholic Fermentation: Second Edition, 1914
Harden, Arthur
Fermentation
These methods are only suitable for observations at considerable
intervals of time. For the continuous observation of the course
of fermentation Harden, Thompson and Young [1910] connect the
fermentation flask with a Schiff's azotometer filled with mercury and
measure the volume of gas evolved, the liquid having been previously
saturated with carbon dioxide (Fig. 3). The level of the mercury in
the reservoir is kept constant by a syphon overflow, as shown in the
figure, or, according to a modification introduced by S. G. Paine,
by a specially constructed bottle provided with two tubulures near
the bottom. This ensures that no change in the pressure in the flask
occurs, and the volume of gas observed is reduced to normal pressure
by means of a table. Before making a reading it is necessary to shake
the fermenting mixture thoroughly, as the albuminous liquid very
readily becomes greatly supersaturated with carbon dioxide, so much
so in fact that very little gas is evolved in the intervals between
the shakings. The exact procedure in making an observation consists in
shaking the flask [p029] thoroughly, replacing in the thermostat,
allowing to remain for one minute, and then reading the level of the
mercury in the azotometer. After the required time, say five minutes,
has elapsed from the time at which the flask was first shaken, it is
again removed from the bath, shaken as before, replaced, allowed to
remain for one minute and the reading then taken. In this way readings
can be conveniently made at intervals of three or five minutes or even
less, and much more detailed information obtained about the course
of the reaction than is possible by means of observations made at
intervals of several hours.
Another form of volumetric apparatus, designed by Walton [1904], has
been used by Lebedeff [1909].
An apparatus on a different principle has been designed by Slator
[1906] for use with living yeast, but is equally applicable to
yeast-juice, and a very similar form has been more recently employed
by Iwanoff [1909, 2]. In this apparatus the change of pressure
produced by the evolution of carbon dioxide is measured at constant
volume, and comparative rates of evolution can be obtained with
considerable accuracy, although the method has the disadvantage that
the absolute volume of gas evolved is not measured. The apparatus
consists of a bottle or flask connected with a mercury manometer. The
fermenting mixture is placed in the bottle along with glass beads to
facilitate agitation, the pressure is reduced to a small amount by the
water-pump, and the rise of pressure is then observed at intervals,
this being proportional to the volume of gas produced. As in the
preceding case, the liquid must be well shaken before a reading is
made.
THE ALCOHOLIC FERMENTATION OF THE SUGARS BY YEAST-JUICE.
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