Tomato products: pulp, ketchup, and chili sauce.Bigelow, W. D. (Willard Dell)
Science
Tomato products: pulp, ketchup, and chili sauce.
Bigelow, W. D. (Willard Dell)
Tomato products
Fill the flask shown in Figure 1 with the sample of pulp and place
in the centrifuge (the Babcock milk tester mentioned above). Place a
suitable counterpoise[16] in the other receptacle of the centrifuge.
Whirl for from one-half to one minute at a speed of about 1,000
revolutions per minute, that is with the handle turning about 100
revolutions per minute. Because of the air bubbles removed by
whirling, the surface of the pulp will now be considerably below the
top of the flask. Fill the flask and whirl in the centrifuge again.
Repeat this filling and whirling until the flask is practically full
of pulp after whirling. Ordinarily two or three separate whirlings are
sufficient. Then add a few more drops of pulp so that the pulp comes
above the top of the flask, and strike off flush with the top of the
flask with a straight edge. Wash the outside of the flask, wipe dry,
and weigh. Then read the specific gravity of the pulp from a table
prepared, giving the weight of the flask full of pulp and the specific
gravity of the pulp in parallel columns, or calculate the specific
gravity as described below.
[16] This counterpoise may be prepared with a can or bottle weighted
with some heavy material such as solder or shot, until it balances
approximately the weight of the can full of pulp. The counterpoise,
once prepared, may be left in the centrifuge.
[Illustration: Fig. 3. Special Head and Flask Receptacles for Babcock
Milk Tester.]
While the weight is being taken a thermometer may be placed in the
pulp remaining in the can or dipper from which the flask was filled.
If the temperature varies from 68° F. the specific gravity may be
corrected by Table 8. In order to use this method the temperature of
the pulp should not be below 50° F., or above 86° F.; otherwise, it
should be warmed or cooled, as described above.
The method is accurate, simple, easily operated and fairly rapid. To
calculate the specific gravity from the weights obtained, the weight
of the clean, dry flask and of the water it contains at 68° F. are
necessary. The weight of the clean, dry flask is then subtracted from
the weight of the flask full of pulp to obtain the net weight of the
pulp. This divided by the weight of the water the flask will contain at
68° F., gives the specific gravity.
A table can be constructed readily for each flask, which will
give in parallel columns the weight of the flask full of pulp and
the corresponding specific gravity. This greatly simplifies the
determination, as it eliminates all calculation. When such a table is
employed a balance giving actual weights is practically as convenient
as one reading specific gravity directly. It has the very important
advantage that the balance, weights, and flask may be tested from time
to time.
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