The Student's Elements of GeologyLyell, Charles, Sir
Science
The Student's Elements of Geology
Lyell, Charles, Sir
Geology
Pot-stones.—A more difficult enigma is presented by the occurrence of
certain huge flints, or pot-stones, as they are called in Norfolk,
occurring singly, or arranged in nearly continuous columns at right
angles to the ordinary and horizontal layers of small flints. I visited
in the year 1825 an extensive range of quarries then open on the river
Bure, near Horstead, about six miles from Norwich, which afforded a
continuous section, a quarter of a mile in length, of white chalk,
exposed to the depth of about twenty-six feet, and covered by a bed of
gravel. The pot-stones, many of them pear-shaped, were usually about
three feet in height and one foot in their transverse diameter, placed
in vertical rows, like pillars, at irregular distances from each other,
but usually from twenty to thirty feet apart, though sometimes nearer
together, as in Figure 237. These rows did not terminate downward in
any instance which I could examine, nor upward, except at the point
where they were cut off abruptly by the bed of gravel. On breaking open
the pot-stones, I found an internal cylindrical nucleus of pure chalk,
much harder than the ordinary surrounding chalk, and not crumbling to
pieces like it, when exposed to the winter’s frost. At the distance of
half a mile, the vertical piles of pot-stones were much farther apart
from each other. Dr. Buckland has described very similar phenomena as
characterising the white chalk on the north coast of Antrim, in
Ireland.[2]
View of a chalk-pit at Horstead, near Norwich, showing the position of
the pot-stones.
Vitreous Sponges of the Chalk.—These pear-shaped masses of flint often
resemble in shape and size the large sponges called Neptune’s Cups
(_Spongia patera,_ Hardw.), which grow in the seas of Sumatra; and if
we could suppose a series of such gigantic sponges to be separated from
each other, like trees in a forest, and the individuals of each
successive generation to grow on the exact spot where the parent sponge
died and was enveloped in calcareous mud, so that they should become
piled one above the other in a vertical column, their growth keeping
pace with the accumulation of the enveloping calcareous mud, a
counterpart of the phenomena of the Horstead pot-stones might be
obtained.
Fig. 238: Ventriculites radiatus. White chalk.
Professor Wyville Thomson, describing the modern soundings in 1869 off
the north coast of Scotland, speaks of the ooze or chalk mud brought
from a depth of about 3000 feet, and states that at one haul they
obtained forty specimens of vitreous sponges buried in the mud. He
suggests that the Ventriculites of the chalk were nearly allied to
these sponges, and that when the silica of their spicules was removed,
and was dissolved out of the calcareous matrix, it set into flint.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account