"It may fairly be assumed that in the present world, and in those
geological periods with whose organic remains we are more familiar than
with those of the Laurentian, there is no other source of unoxidized
carbon in rocks than that furnished by organic matter, and that this
has obtained its carbon in all cases, in the first instance, from the
deoxidation of carbonic acid by living plants. No other source of
carbon can, I believe, be imagined in the Laurentian period. We may,
however, suppose either that the graphitic matter of the Laurentian
has been accumulated in beds like those of coal, or that it has
consisted of diffused bituminous matter similar to that in more
modern bituminous shales and bituminous and oil-bearing limestones.
The beds of graphite near St. John, some of those in the gneiss at
Ticonderoga in New York, and at Lochaber and Buckingham and elsewhere
in Canada, are so pure and regular that one might fairly compare them
with the graphitic coal of Rhode Island. These instances, however, are
exceptional, and the greater part of the disseminated and vein graphite
might rather be compared in its mode of occurrence to the bituminous
matter in bituminous shales and limestones.
"We may compare the disseminated graphite to that which we find in
those districts of Canada in which Silurian and Devonian bituminous
shales and limestones have been metamorphosed and converted into
graphitic rocks not dissimilar to those in the less altered portions of
the Laurentian.[17] In like manner it seems probable that the numerous
reticulating veins of graphite may have been formed by the segregation
of bituminous matter into fissures and planes of least resistance, in
the manner in which such veins occur in modern bituminous limestones
and shales. Such bituminous veins occur in the Lower Carboniferous
limestone and shale of Dorchester and Hillsborough, New Brunswick, with
an arrangement very similar to that of the veins of graphite; and in
the Quebec rocks of Point Levi, veins attaining to a thickness of more
than a foot are filled with a coaly matter having a transverse columnar
structure, and regarded by Logan and Hunt as an altered bitumen.
These Palæozoic analogies would lead us to infer that the larger part
of the Laurentian graphite falls under the second class of deposits
above mentioned, and that, if of vegetable origin, the organic matter
must have been thoroughly disintegrated and bituminized before it was
changed into graphite. This would also give a probability that the
vegetation implied was aquatic, or at least that it was accumulated
under water.
[Footnote 17: Granby, Melbourne, Owl's Head, etc., "Geology of Canada,"
1863, p. 599.]
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