Scientific American Supplement, No. 275, April 9, 1881Various
Science
Scientific American Supplement, No. 275, April 9, 1881
Various
Science -- Periodicals
I now return to the embryous membrane. Various causes increase or decrease
the action of this tissue, but it may be said in general that all the
agents that kill the embryous membrane will also kill the cerealine. This
was the reason why I at first attributed the production of dark bread
exclusively to the latter ferment, but it was easy to observe that during
the baking, decompositions resulted at over 158° Fah., while the cerealine
was still coagulated, and that bread containing bran, submitted to 212° of
heat, became liquefied in water at 104°. It was now easy to determine
that dark flours, from which the cerealine had been removed by repeated
washings, still produced dark bread. It was at this time, in remembering
my experiences with organic bodies, I determined the properties of the
insoluble tissue, deprived of the soluble cerealine, with analogous
properties, but distinguished not alone by its solid organization and state
of insolubility, but also by its resistance to heat, which acts as on
yeast. There exists, in reality, I repeat, a resemblance between the
embryous membrane and the yeast; they have the same immediate composition;
they are destroyed by the same poisons, deadened by the same temperatures,
annihilated by the same agents, propagated in an analogous manner, and
it might be said that the organic tissues endowed with life are only an
agglomeration of fixed cells of ferments. At all events, when the blades of
the embryous membrane, prepared as already stated, are exposed to a water
bath at 212°, this tissue, in contact with the diluted starch, produces
the same decomposition; the contact, however, should continue two or three
hours in place of one. If, instead of placing these membranes in the water
bath, they are enveloped in two pounds of dough, and this dough put in the
oven, after the baking the washed membranes produce the same results, which
especially proves that this membrane can support a temperature of 212° Fah.
without disorganization. We shall refer to this property in speaking of the
phenomena of panification.
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