A single subsidence of the clay water for twenty-four hours will free it
from all particles of sand having a diameter greater than 0.005
millimeter, but in many cases a considerable amount of finer sand will
remain in suspension for many hours or days.
On the other hand, the sediment formed during the twenty-four hours
subsidence will not be free from clay, as may be easily seen by
suspending it in water a second time and allowing it to stand again for
twenty-four hours. Both Hilgard and Schloesing direct attention to these
defects, but assume that they do not usually influence the results to a
sufficient extent to deprive them of value. In many cases this is
undoubtedly true, as, for example, in such soils as that from the garden
of the Experiment Station, at New Haven, in which there is but little
clay and fine sand; but in soils of the opposite character, as in the
North Haven brick clay where exact separations are most desirable, a
very considerable error is thus inevitably encountered.
=238. Effect of Boiling on the Texture of Clayey Soils.=—Most
investigators who have worked upon mechanical soil analysis advise
boiling with water in order to detach clay and sand from each other and
make a good separation of the several mechanical elements practicable or
possible. In general, however, the instructions as to the time and
manner of boiling are rather indefinite, and no definite research as to
the effects of this treatment has been undertaken.
The practice of Hilgard, to boil twenty-four hours or even longer in
case of adhesive clays, according to Osborne[157] appears to be
objectionable in view of the dehydration and change of physical
properties known to occur in case of many hydroxids, especially those of
iron and aluminum, which may be present in the soil. It is a familiar
fact that the hydroxids above named and many other amorphous substances
when precipitated from cold solutions are more bulky and less easily
washed upon a filter than when thrown down hot. It is also well known
that their properties are considerably changed by warming or boiling
with water. Heating with water to boiling for some hours or days
gradually converts the bulky brown-red ferric hydroxid, which when
precipitated cold and air-dried for eighteen days, contains thirty-eight
per cent of water, into a much denser, bright red substance containing
but two per cent of water. St. Gilles has also observed the partial
dehydration of aluminum hydroxid from Al₂O₃.5H₂O to Al₂O₃.2H₂O by
prolonged boiling.
The hydrate of silica and the highly hydrated silicates are most
probably affected in a similar manner, and if such be the case, boiling
would evidently change the constitution of clay in a very essential
degree.
The following experiments throw light on this subject:
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