The Student's Elements of GeologyLyell, Charles, Sir
Science
The Student's Elements of Geology
Lyell, Charles, Sir
Geology
It is probable that many strata became solid at the time when they
emerged from the waters in which they were deposited, and when they
first formed a part of the dry land. A well-known fact seems to confirm
this idea: by far the greater number of the stones used for building
and road-making are much softer when first taken from the quarry than
after they have been long exposed to the air; and these, when once
dried, may afterwards be immersed for any length of time in water
without becoming soft again. Hence it is found desirable to shape the
stones which are to be used in architecture while they are yet soft and
wet, and while they contain their “quarry-water,” as it is called; also
to break up stone intended for roads when soft, and then leave it to
dry in the air for months that it may harden. Such induration may
perhaps be accounted for by supposing the water, which penetrates the
minutest pores of rocks, to deposit, on evaporation, carbonate of lime,
iron, silex, and other minerals previously held in solution, and
thereby to fill up the pores partially. These particles, on
crystallising, would not only be themselves deprived of freedom of
motion, but would also bind together other portions of the rock which
before were loosely aggregated. On the same principle wet sand and mud
become as hard as stone when frozen; because one ingredient of the
mass, namely, the water, has crystallised, so as to hold firmly
together all the separate particles of which the loose mud and sand
were composed.
Dr. MacCulloch mentions a sandstone in Skye, which may be moulded like
dough when first found; and some simple minerals, which are rigid and
as hard as glass in our cabinets, are often flexible and soft in their
native beds: this is the case with asbestos, sahlite, tremolite, and
chalcedony, and it is reported also to happen in the case of the
beryl.[1]
The marl recently deposited at the bottom of Lake Superior, in North
America, is soft, and often filled with fresh-water shells; but if a
piece be taken up and dried, it becomes so hard that it can only be
broken by a smart blow of the hammer. If the lake, therefore, was
drained, such a deposit would be found to consist of strata of
marlstone, like that observed in many ancient European formations, and,
like them, containing fresh-water shells.
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