The Chemistry of CookeryWilliams, W. Mattieu (William Mattieu)
Science
The Chemistry of Cookery
Williams, W. Mattieu (William Mattieu)
Cooking
After stating, in the latter, the details of the experiments, which
include depth of respiration as well as amount of carbonic acid
respired, he says: ‘Hence it was proved beyond all doubt that tea is
a most powerful respiratory excitant. As it causes an evolution of
carbon greatly beyond that which it supplies, it follows that it must
powerfully promote those vital changes in food which ultimately produce
the carbonic acid to be evolved. Instead, therefore, of supplying
nutritive matter, it causes the assimilation and transformation of
other foods.’
Now, note the following practical conclusions, which I quote in Dr.
Smith’s own words, but take the liberty of rendering in italics those
passages that I wish the reader to specially compare with the preceding
quotations from Johnston: ‘In reference to nutrition, we may say that
_tea increases waste_, since it promotes the transformation of food
without supplying nutriment, and increases the loss of heat without
supplying fuel, and _it is therefore especially adapted to the wants
of those who usually eat too much_, and after a full meal, when the
process of assimilation should be quickened, but _is less adapted to
the poor and ill-fed_, and during fasting.’ He tells us very positively
that ‘to take tea before a meal is as absurd as not to take it after
a meal, unless the system be at all times replete with nutritive
material.’ And, again: ‘Our experiments have sufficed to show how tea
may be _injurious if taken with deficient food, and thereby exaggerate
the evils of the poor_;’ and, again: ‘The conclusions at which we
arrived after our researches in 1858 were, that tea should not be taken
without food, unless after a full meal; or with insufficient food;
or by the young or very feeble; and that _its essential action is to
waste the system or consume food_, by promoting vital action which it
does not support, and they have not been disproved by any subsequent
scientific researches.’
This final assertion may be true, and to those who ‘go in for the last
thing out,’ the latest novelty or fashion in science, literature, or
millinery, the absence of any refutation of later date is quite enough.
But how about the previous ‘scientific researches’ of Lehmann, who,
on all such subjects, is about the highest authority that can be
quoted. His three volumes on ‘Physiological Chemistry,’ translated
and republished by the Cavendish Society, stand pre-eminent as the
best-written, most condensed, and complete work on the subject, and his
original researches constitute a lifetime’s work, not of mere random
change-ringing among the elements of obscure and insignificant organic
compounds, but of judiciously selected chemical work, having definite
philosophical aims and objects.
It is evident from the passages I have emphatically quoted that Dr.
Smith flatly contradicts Lehmann, and arrives at directly contradictory
physiological results and practical inferences.
Public-domain text, read in full here on John Shaqi.
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