The Natural History of ClaySearle, Alfred B. (Alfred Broadhead)
Science
The Natural History of Clay
Searle, Alfred B. (Alfred Broadhead)
Clay
_Stones_, _gravel_ and _sand_ are most noticeable in the boulder clays,
but they occur in clays of most geological ages, though in very varying
proportions. Sometimes the stones are so large that they may be readily
picked out by hand; in any case the stones, gravel and most of the sand
may be removed by mixing the material with a sufficient quantity of
water and passing the 'slip' through a fine sieve, or by allowing it to
remain stationary for a few moments and then allowing the supernatant
liquid to run off into a settling tank. Some clays contain sand grains
which are so fine that they cannot be removed in this manner and the
clay must then be washed out by a stream of water with a velocity not
exceeding 2 ft. per hour. Even then, the clay so removed may be found to
contain minute grains of silt, much of which may be removed by a series
of sedimentations for various periods, though a material perfectly free
from non-plastic granules may be unattainable.
Most of the sand found associated with clays is in the form of fragments
of _quartz_ crystals (fig. 1), though it may be composed of irregular
particles of other minerals or of amorphous silica.
_Felspar_, _mica_ and other adventitious silicates occur in many natural
clays in so fine a state of division that their removal would be
unremunerative. In addition to this they act as fluxes when the clays
are heated in kilns, binding the less fusible particles together and
forming a far stronger mass than would otherwise be produced.
Consequently, they are valuable constituents in clays used for the
manufacture of articles in which strength or imperviousness is
important. If these minerals are present in the form of particles which
are sufficiently large to be removed by elutriation in the manner
described on the previous page, the purification of the clay is not
difficult. Usually, however, the most careful treatment fails to remove
all these minerals; their presence may then be detected by
microscopical examination and by chemical analysis. For most of the
purposes for which clays are used, small proportions of these silicates
are unimportant, but where clays of a highly refractory nature are
required; and for most of the purposes for which china clays (kaolins)
are employed, they must not be present to the extent of more than 5 per
cent., smaller proportions being preferable.
[Illustration: Fig. 1. Quartz crystals, natural size. (From Miers'
Mineralogy _by permission of Macmillan & Co._)]
_Oxides_, _sulphides_, _sulphates_ and _carbonates_ of various metals
form the third class of impurities in clays. Of these, the most
important are calcium oxide (lime), calcium carbonate (chalk and
limestone), calcium sulphate (gypsum and selenite), the corresponding
magnesia, magnesium carbonate, and sulphate, the various iron oxides,
ferrous carbonate and iron sulphides (pyrite and marcasite) (p. 13).
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