Foods and Their Adulteration: Origin, Manufacture, and Composition of Food Products; Description of Common Adulterations, Food Standards, and National Food Laws and RegulationsWiley, Harvey Washington
Science
Foods and Their Adulteration: Origin, Manufacture, and Composition of Food Products; Description of Common Adulterations, Food Standards, and National Food Laws and Regulations
Wiley, Harvey Washington
Food; Food adulteration and inspection
=Skimmed Milk.=--The residue which is left from the removal of cream
is known as skimmed milk. Skimmed milk contains the principle part
of the nitrogenous constituents of milk, the greater quantity of its
sugar and a very large quantity of its mineral matter. It is still a
very valuable food product, lacking only the element of fat. When eaten
with nuts or other oily food skimmed milk would complete the ration and
make a well balanced food. The chief prejudice against skimmed milk is
that it has been so often sold for whole milk. When sold and consumed
under its own name it is not a fraudulent body and is deserving of a
higher place in the dietary than has been ascribed to it. In the large
creameries of the country the skimmed milk is usually fed to animals.
It is one of the most highly esteemed foods for pigs and poultry, and
is largely used for those purposes.
_Composition of Skimmed Milk._--Naturally the composition of skimmed
milk would be that of milk corrected for the abstraction of fat. It
contains some little fat when prepared by the gravity method and only a
very small portion when separated mechanically. The abstraction of the
fat increases the relative proportions of sugar and casein.
=Curd Test for Purity of Milk.=--The Wisconsin curd test is conducted
as follows: 1. Sterilize milk containers so as to destroy all bacteria
in vessels. This step is very important, and can be done by heating
cans in boiling water or steam for not less than one-half hour.
2. Place about one pint of milk in covered jar and heat to about 98
degrees F. (Figs. 15 and 16).
3. Add ten drops of standard rennet extract and mix thoroughly with the
milk to quickly coagulate.
4. After coagulation, cut curd fine with case knife to facilitate
separation of whey; leave curd in whey one-half hour to an hour; then
drain off whey at frequent intervals until curd is well matted.
5. Incubate curd mass at 98 to 102 degrees F. by immersing jar in warm
water. Keep jars covered to retain odors.
6. After 6 to 9 hours incubation, open jar and observe odor; examine
curds by cutting the same with sharp knife and observe texture as to
presence of pin holes or gas holes. Observe odor.
7. Very bad milks will betray presence of gas-producing bacteria by the
spongy texture of the curd and will have an off flavor.
8. If more than one sample is tested at the same time, dip knife and
thermometer in hot water before each time used.
“Normal milk contains practically no organisms but the straight lactic
acid bacteria. These germs produce no gas and no bad odors, but purely
lactic acid and the curd formed therefrom is such as is represented in
Fig. 17.
[Illustration: FIG. 15.--IMPROVISED WISCONSIN CURD TEST.
C, Can used to hold sample; P, pipette for measuring rennet; K, knife
for breaking curd.]
[Illustration: FIG. 16.--A, MILK; B, BROKEN CURD IN WHEY; C, MATTED
CURD.]
[Illustration: FIG. 17.--CURD FROM A GOOD MILK. LARGE, IRREGULAR HOLES
MECHANICAL.]
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