History, Modern -- 19th century; Nineteenth century
The falls of Niagara early attracted the attention of engineers to
the possibility of utilizing at least a fraction of the power. It
was seen that several hundred thousand horse-power might be drawn
from it without materially affecting the fall, itself equivalent to
several millions of horse-power. A gigantic power-station has lately
been established at Niagara, taking water from a distance above the
falls and delivering it below the falls through a long tunnel which
forms the tail race. Ten water-wheels, located in an immense wheel-pit
about two hundred feet deep, each wheel of a capacity of five thousand
horse-power, drive large vertical shafts, at the upper end of which
are located the large two-phase dynamos, each of five thousand
horse-power. The electric energy from these machines is in part raised
in pressure by huge transformers for transmission to distant points,
such as the city of Buffalo, and a large portion is delivered to the
numerous manufacturing plants located at moderate distances from the
power-station. Besides the supply of energy for lighting, and for
motors, including railways, other recent uses of electricity to which
we have not yet alluded are splendidly exemplified at Niagara. Davy’s
brilliant discovery of the alkali metals, sodium and potassium, at
the opening of the century, showed the great chemical energy of the
electric current. Its actions were afterwards carefully studied,
notably by the illustrious Faraday, whose discoveries in connection
with magnetism and magneto-electricity have been briefly described.
The electric current was found to act as a most potent chemical force,
decomposing and recomposing many chemical compounds, dissolving and
depositing metals. Hence, early in the century arose the art of
electroplating of metals, such as electro-gilding, silver-plating,
nickel-plating, and copper deposition as in electrotyping. These arts
are now practised on a very large scale, and naturally have affected
the whole course of manufacturing methods during the century. Moreover,
since the introduction of dynamo current, electrolysis has come to
be employed in huge plants, not only for separating metals from each
other, as in refining them, but in addition for separating them from
their ores, for the manufacture of chemical compounds before unknown,
and for the cheap production of numerous substances of use in the
various arts on a large scale. Vast quantities of copper are refined,
and silver and gold often obtained from residues in sufficient amount
to pay well for the process.
Public-domain text, read in full here on John Shaqi.
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