The Journal of Geology, January-February 1893: A Semi-Quarterly Magazine of Geology and Related SciencesVarious
Science
The Journal of Geology, January-February 1893: A Semi-Quarterly Magazine of Geology and Related Sciences
Various
Geology -- Periodicals
In view of what has been said, it is evident that the absence of beds
of subaërially stratified silt, sand, and gravel, between beds of till
can not be brought in evidence against separate ice epochs. It would
rarely be true that topographic and hydro-*graphic conditions would
make possible the construction of plains of sufficient extent to serve
as criteria for the purpose here indicated, and few of those formed
would escape such a degree of destruction as to leave them demonstrably
continuous. There is also the further possibility that such beds exist,
even though their continuity be not known. To prove the continuity of
a buried bed of stratified and incoherent drift, even if it existed,
would be a most difficult task.
(6) _Differential Weathering._ If, after covering a given region, the
ice retreated, the drift which it left in the area which it previously
covered would be subject to oxidation, leaching and disintegration.
The depth to which this oxidation, leaching and disintegration would
extend, would be dependent upon the length of time during which the
drift was exposed, and upon the climate which affected the region
during its exposure. The longer the exposure and the warmer the
climate, the deeper would the weathering extend. If, subsequently,
the ice extended over the same region, it might, in some places,
override and bury the old surface without destroying it. The earlier
oxidized and leached drift would thus come to be buried by the newer,
unoxidized, unleached drift. If, therefore, beneath the newer drift
of any given locality there be found a lower drift, the surface of
which is oxidized and leached to a considerable depth, the evidence
is strong that the lower drift was exposed for a long period of time
before the upper drift was deposited upon it. Within certain limits a
similar result might be brought about, it is true, if the ice, after
having reached a certain maximum stage of advance, were to retreat for
a short distance only and there remain for a very long period of time.
A subsequent minor advance might bury the oxidized surface of the drift
beyond the position of the long ice-halt. Under these conditions, the
climate which would have obtained in the area of the drift exposed
during the minor retreat would have been cold, and oxidation, leaching,
and disintegration would have proceeded slowly. If they reached
considerable depths, the time involved must have been very long. If
this surface of oxidized and leached and disintegrated drift were found
to reach far to the northward beneath the layer of newer and upper
drift, it would indicate a great recession of the ice. We maintain that
if it were found sufficiently far north of the margin of the overlying
drift, and if its depth were sufficiently great, extending well down
below any possible accumulation of superglacial till, it might be a
positive criterion of so great a recession of the ice, protracted
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