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 following experiments were undertaken to solve this double
problem:—We took a double-necked flask, of three litres (five pints)
capacity, one of the tubes being curved and forming an escape for the
gas; the other one, on the right hand side (Fig. 59), being furnished
with a glass tap. We filled this flask with pure yeast-water, sweetened
with 5 per cent. of sugar candy, the flask being so full that there was
not the least trace of air remaining above the tap or in the escape
tube; this artificial wort had, however, been itself aerated. The curved
tube was plunged in a porcelain vessel full of mercury, resting on a
firm support. In the small cylindrical funnel above the tap, the
capacity of which was from 10 c.c. to 15 c.c. (about half a fluid ounce)
we caused to ferment, at a temperature of 20° or 25° C. (about 75° F.),
five or six cubic centimetres of the saccharine liquid, by means of a
trace of yeast, which multiplied rapidly, causing fermentation, and
forming a slight deposit of yeast at the bottom of the funnel above the
tap. We then opened the tap, and some of the liquid in the funnel
entered the flask, carrying with it the small deposit of yeast, which
was sufficient to impregnate the saccharine liquid contained in the
flask. In this manner it is possible to introduce as small a quantity of
yeast as we wish, a quantity the weight of which, we may say, is hardly
appreciable. The yeast sown multiplies rapidly and produces
fermentation, the carbonic acid gas from which is expelled into the
mercury. In less than twelve days all the sugar had disappeared, and the
fermentation had finished. There was a sensible deposit of yeast
adhering to the sides of the flask; collected and dried it weighed 2·25
grammes (34 grains). It is evident that in this experiment the total
amount of yeast formed, if it required oxygen to enable it to live,
could not have absorbed, at most, more than the volume which was
originally held in solution in the saccharine liquid, when that was
exposed to the air before being introduced into the flask.
[Illustration: Fig. 59.]
[Illustration: Fig. 60.]
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