Soils, their formation, properties, composition, and relations to climate and plant growth in the humid and arid regionsHilgard, Eugene W. (Eugene Woldemar)
Science
Soils, their formation, properties, composition, and relations to climate and plant growth in the humid and arid regions
Hilgard, Eugene W. (Eugene Woldemar)
Soils
_Schöne’s Elutriator_ is the one commonly used in Europe; in it the
upward current ascends in a conical glass tube, (see figure 6) entering
through a narrow, curved inlet tube, in which the soil sample is kept
agitated by the current itself. The objection to this plan is twofold:
first, the narrow, curved inlet-tube is readily clogged by the soil
mass at the lower velocities, which are thereby changed, so that,
unless a very small amount of soil only is employed, the whole mass is
not kept properly stirred; second, the circulating currents brought
about by the conical shape of the tube cause the sediment-particles to
coalesce into complex, larger ones (floccules), which will then settle
down and fail to pass over at the current-velocity corresponding to
their individual component parts.
[Illustration: FIG. 7.—The Churn Elutriator (Hilgard’s) for the
physical analysis of soils.]
_Churn Elutriator with Cylindrical Tube._—The errors just alluded
to are obviated by an arrangement devised by the writer, in which
a rapidly revolving stirrer, placed at the base of a cylindrical
tube in which the washing process is conducted and which eliminates
counter-currents, continually disintegrates these compound particles,
and thus enables the entire quantity of the sediment corresponding to
the prevailing current-velocity to pass off with a comparatively slight
expenditure of time on the part of the operator (see figure 7). A wire
screen interposed between the churn and cylindrical glass tube prevents
communication of the whirling motion to the column. As the apparatus
works automatically, the analyst has only to observe from time to time
whether or not the turbidity near the top of the tube has disappeared;
and as the sediment accumulates at the bottom of the tall receiver
bottle,[25] no harm is done if the attendant should neglect to change
the velocity in time, except that water will run to waste.
[25] The figure given of this elutriator in Bulletin No. 24, on
physical soil analysis, published by the U. S. Bureau of Soils, shows
as the receiver a bottle entirely too low to insure the complete
retention of the sediments by settling. The receiving bottle should not
be less than twelve inches high and five inches wide.
The conical relay glass below the churn serves to retain the coarser
grades of sediments which are not concerned in the velocities employed
in the elutriator tube, and thus prevents injurious attrition. But
these sediments can at any time be stirred up by the incoming current
and brought into the washing tube if desired. In the same manner the
passing-off of the finer sediments can be materially accelerated by
running off rapidly about two-thirds of the turbid column of water
every twenty minutes.
It should be fully understood that prior to attempting such separation,
the “colloidal clay” must first be removed by the subsidence or
centrifugal method, since otherwise much larger grain-sizes may be
carried off at a given velocity.
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