Ancient Plants: Being a Simple Account of the past Vegetation of the Earth and of the Recent Important Discoveries Made in This Realm of Nature — John Shaqi
Ancient Plants: Being a Simple Account of the past Vegetation of the Earth and of the Recent Important Discoveries Made in This Realm of NatureStopes, Marie Carmichael
Science
Ancient Plants: Being a Simple Account of the past Vegetation of the Earth and of the Recent Important Discoveries Made in This Realm of Nature
Stopes, Marie Carmichael
Paleobotany
[Illustration: Fig. 15.—Part of a Coal Ball, showing the concentric
bandings in it which are characteristic of concretions]
[Illustration: Fig. 16.—Mass of Coal with Coal Balls, A and B both
enclosing part of the same stem L]
Still a further witness may be found in the structure of the “coal balls”
described in the last chapter. These stony masses, lying in the pure
coal, might well be considered as apart from it and bearing no relation
to its structure; but recent work has shown that they were actually
formed at the same time as the coal, developing in its mass as mineral
concretions round some of the plants in the soft, saturated, peaty mass
which was to be hardened into coal later on.[3] All “coal balls” do not
show their concretionary structure so clearly, but sometimes it can be
seen that they are made with concentric bands or markings like those
characteristic of ordinary mineral concretions (see fig. 15). Concretions
are formed by the crystallization of minerals round some centre, and it
must have happened that in the coal seams in which the coal-ball
concretions are found that this process took place in the soft plant mass
before it hardened. Recent research has found that there is good evidence
that those seams[4] resulted from the slow accumulation of plant débris
under the salt or brackish water in whose swamps the plants were growing,
and that as they were collecting the ground slowly sank till they were
quite below the level of the sea and were covered by marine silt. At the
same time some of the minerals present in the sea water, which must have
saturated the mass, crystallized partly and deposited themselves round
centres in the plant tissues, and by enclosing them and penetrating them
preserved them from decay till the mineral structure entirely replaced
the cells, molecule by molecule. Evidence is not wanting that this
process went on without disturbance, for in fig. 16 is shown a mass of
coal in which lie several coal balls, two of which enclose parts of the
same plant. This means that round different centres in the same stem two
of the concretions were forming and preserving the tissues; the two stone
masses, however, did not enlarge enough to unite, but left a part of the
tissue unmineralized, which is now seen as a streak of coal. We have here
the most important proof that the coal balls are actually formed in the
coal and of the plants making the coal, for had those coal balls come in
as pebbles, or in any way from the outside into the coal, they could not
have remained in such a position as to lie side by side enclosing part of
the same stem. There are many other details which may be used in this
proof, but this one illustration serves to show the importance of coal
balls when dealing with the theories of the origin of coal, for they are
perfectly preserved samples of what the whole coal mass was at one time.
Public-domain text, read in full here on John Shaqi.
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