=10. Grinding Apparatus at Halle Station.=—The machine used at the
Halle station for grinding samples for analysis is shown in Fig. 4.[2]
It is so adjusted as to have both the upper and lower grinding surfaces
in motion. The power is transmitted through the pulley D, which is
fixed to an axis carrying also the inner grinding attachment B. Through
C₂, C₃, C₄, and C₁, the reverse motion is transmitted to the outer
grinder A. By means of the lever E the two grinding surfaces can be
separated when the mill is to be cleaned. The dree mill above described
is especially useful for grinding malt, dry brewers’ grains, cereals
for starch determinations and similar dry bodies. It is not suited to
grinding oily seeds and moist samples. These, according to the Halle
methods, are rubbed up in a mortar until of a size suited to analysis,
and samples such as moist residues, wet cereals, mashes, beet cuttings,
silage, etc., are dried before grinding. If it be desired to avoid the
loss of acids which may have been formed during fermentation, about ten
grams of magnesia should be thoroughly incorporated with each kilogram
of the material before drying.
=11. Preliminary Treatment of Fish.=—The method used by Atwater in
preparing fish for analysis is given below.[3] The same process may
also be found applicable in the preparation of other animal tissues.
The specimens, when received at the laboratory, are at once weighed.
The flesh is then separated from the refuse and both are weighed. There
is always a slight loss in the separation, due to evaporation and to
slimy and fatty matters and small fragments of the tissues which adhere
to the hands and the utensils employed in preparing the sample. Perfect
separation of the flesh from the other parts of the fish is difficult,
but the loss resulting from imperfect separation is small. The skin
of the fish, although it has considerable nutritive value, should be
separated with the other refuse.
The partial drying of the flesh for securing samples for analytical
work is accomplished by chopping it as finely as possible and
subjecting from fifty to one hundred grams of it for a day to a
temperature of 96° in an atmosphere of hydrogen. After cooling and
allowing to stand in the open air for twelve hours, the sample is again
weighed, and then ground to a fine powder and made to pass a sieve
with a half millimeter mesh. If the samples be very fat they cannot
be ground to pass so fine a sieve. In such a case a coarser sieve may
be used or the sample reduced to as fine and homogeneous a state as
possible, and bottled without sifting.
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