The Student's Elements of GeologyLyell, Charles, Sir
Science
The Student's Elements of Geology
Lyell, Charles, Sir
Geology
Boulders and Groups of Pebbles in Chalk.—The occurrence here and there,
in the white chalk of the south of England, of isolated pebbles of
quartz and green schist has justly excited much wonder. It was at first
supposed that they had been dropped from the roots of some floating
tree, by which means stones are carried to some of the small coral
islands of the Pacific. But the discovery in 1857 of a group of stones
in the white chalk near Croydon, the largest of which was syenite and
weighed about forty pounds, accompanied by pebbles and fine sand like
that of a beach, has been shown by Mr. Godwin Austen to be inexplicable
except by the agency of floating ice. If we consider that icebergs now
reach 40 degrees north latitude in the Atlantic, and several degrees
nearer the equator in the southern hemisphere, we can the more easily
believe that even during the Cretaceous epoch, assuming that the
climate was milder, fragments of coast ice may have floated
occasionally as far as the south of England.
Distinctness of Mineral Character in Contemporaneous Rocks of the
Cretaceous Period.—But we must not imagine that because pebbles are so
rare in the white chalk of England and France there are no proofs of
sand, shingle, and clay having been accumulated contemporaneously even
in European seas. The siliceous sandstone called “upper quader” by the
Germans overlies white argillaceous chalk or “pläner-kalk,” a deposit
resembling in composition and organic remains the chalk marl of the
English series. This sandstone contains as many fossil shells common to
our white chalk as could be expected in a sea-bottom formed of such
different materials. It sometimes attains a thickness of 600 feet, and,
by its jointed structure and vertical precipices, plays a conspicuous
part in the picturesque scenery of Saxon Switzerland, near Dresden. It
demonstrates that in the Cretaceous sea, as in our own, distinct
mineral deposits were simultaneously in progress. The quartzose
sandstone alluded to, derived from the detritus of the neighbouring
granite, is absolutely devoid of carbonate of lime, yet it was formed
at the distance only of four hundred miles from a sea-bottom now
constituting part of France, where the purely calcareous white chalk
was forming. In the North American continent, on the other hand, where
the Upper Cretaceous formations are so widely developed, true white
chalk, in the ordinary sense of that term, does not exist.
Fig. 239: Ananchytes ovatus. White chalk, upper and lower.
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