Sewage and sewerage of farm homes [1922]Warren, George M. (George Milton)
Science
Sewage and sewerage of farm homes [1922]
Warren, George M. (George Milton)
Sewage disposal, Rural; Sewerage, Rural
In September and October, 1899, 63 cases of typhoid fever, resulting
in 5 deaths, occurred at the Northampton (Mass.) insane hospital. This
epidemic was conclusively traced to celery, which was eaten freely in
August and was grown and banked in a plot that had been fertilized in the
late winter or early spring with the solid residue and scrapings from a
sewage filter bed situated on the hospital grounds.
Some years ago Dr. W. W. Skinner, Bureau of Chemistry, Department of
Agriculture, investigated the cause of an outbreak of typhoid fever in
southwest Virginia. A small stream meandered through a narrow valley
in which five 10-inch wells about 450 feet deep had been drilled in
limestone formation. The wells were from 50 to 400 feet from the stream,
from which, it was suspected, pollution was reaching the wells. In a pool
in the stream bed approximately one-fourth mile above the wells several
hundred pounds of common salt were dissolved. Four of the wells were cut
off from the pump and the fifth was subjected to heavy pumping. The water
discharged by the pump was examined at 15-minute intervals and its salt
content determined over a considerable period of time. After the lapse of
several 15-minute intervals the salt began to rise and continued to rise
until the maximum was approximately seven times that at the beginning of
the test, thus proving the facility with which pollution may pass a long
distance underground and reach deep wells.
Probably no epidemic in American history better illustrates the dire
results that may follow one thoughtless act than the outbreak of typhoid
fever at Plymouth, Pa., in 1885. In January and February of that year the
night discharges of one typhoid fever patient were thrown out upon the
snow near his home. These, carried by spring thaws into the public water
supply, caused an epidemic running from April to September. In a total
population of about 8,000, 1,104 persons were attacked by the disease and
114 died.
Like plants and animals, disease germs vary in their powers of resistance.
Some are hardy, others succumb easily. Outside the body most of them
probably die in a few days or weeks. It is never certain when such germs
may not lodge where the immediate surroundings are favorable to their life
and reproduction. Milk is one of the common substances in which germs
multiply rapidly. The experience at Northampton shows that typhoid-fever
germs may survive several months in garden soil. Laboratory tests by the
United States Public Health Service showed that typhoid-fever germs had
not all succumbed after being frozen in cream 74 days. (Public Health
Reports, Feb. 8, 1918, pp. 163-166.) Ravenel kept the spores of anthrax
immersed for 244 days in the strongest tanning fluids without perceptible
change in their vitality or virulence. (Annual Report, State Department of
Health, Mass., 1916, p. 494.)
Public-domain text, read in full here on John Shaqi.
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