Science in Short ChaptersWilliams, W. Mattieu (William Mattieu)
Science
Science in Short Chapters
Williams, W. Mattieu (William Mattieu)
Science
We know that the lava, scoriæ, dust and other products of volcanic
action on this earth are mainly composed of mixed silicates—those of
alumina and lime preponderating. When we consider that the solid crust
of the Earth is chiefly composed of silicic acid, and of basic oxides
and carbonates which combine with silicic acid when heated, a natural
necessity for such a composition of volcanic products becomes evident.
If the Moon is composed of similar materials to those of the Earth, the
fusion of its crust must produce similar compounds, as they are formed
independently of any atmospheric or aqueous agency.
This being the case, the phenomena presented by the cooling of
fused masses of mixed silicates in the absence of water become very
interesting. Opportunities of studying such phenomena are offered at
our great iron-works, where fused masses of iron cinder, composed
mainly of mixed silicates, are continually to be seen in the process of
cooling under a variety of circumstances.
I have watched the cooling of such masses very frequently, and have
seen abundant displays of miniature volcanic phenomena, especially
marked where the cooling has occurred under conditions most nearly
resembling those of a gradually cooling planet or satellite; that
is, when the fused cinder has been enclosed by a solid resisting and
contracting crust.
The most remarkable that I have seen are those presented by the cooling
of the “tap cinder” from puddling furnaces. This, as it flows from the
furnace, is received in stout iron boxes (“cinder-bogies”) of circular
or rectangular horizontal section. The following phenomena are usually
observable on the cooling of the fused cinder in a circular bogie.
First a thin solid crust forms on the red-hot surface. This speedily
cools sufficiently to blacken. If pierced by a slight thrust from
an iron rod, the red-hot matter within is seen to be in a state of
seething activity, and a considerable quantity exudes from the opening.
If a bogie filled with fused cinder is left undisturbed, a veritable
spontaneous volcanic eruption takes place through some portion,
generally near the centre, of the solid crust. In some cases, this
eruption is sufficiently violent to eject small spurts of molten cinder
to a height equal to four or five diameters of the whole mass.
The crust once broken, a regular crater is rapidly formed, and
miniature streams of lava continue to pour from it; sometimes slowly
and regularly, occasionally with jerks and spurts due to the bursting
of bubbles of gas. The accumulation of these lava-streams forms a
regular cone, the height of which goes on increasing. I have seen a
bogie about 10 or 12 inches in diameter, and 9 or 10 inches deep,
thus surmounted by a cone above 5 inches high, with a base equal to
the whole diameter of the bogie. These cones and craters could be but
little improved by a modeler desiring to represent a typical volcano in
miniature.
Public-domain text, read in full here on John Shaqi.
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