The filtration of public water-supplies: Third edition, revised and enlarged.Hazen, Allen
Science
The filtration of public water-supplies: Third edition, revised and enlarged.
Hazen, Allen
Filters and filtration; Water-supply
The fæces from a man contain on an average perhaps 1,000,000,000
bacteria per gram,[47] most of them being the normal bacilli of
the intestines, _Bacillus coli communis_. Assuming that a man
discharges 200 grams or about 7 ounces of fæces daily, this would give
200,000,000,000 bacteria discharged daily per person. The number of
bacteria actually found in American sewage is usually higher, often
double this number per person; but there are other sources of bacteria
in sewage, and in addition growths or the reverse may take place in the
sewers, according to circumstances.
This number of bacteria in sewage is so enormously large that the
addition of the sewage from a village or city to even a large river
is capable of affecting its entire bacterial composition. Thus taking
the population of Lowell in 1892 at 85,000, and the average daily
flow of the Merrimac at 6000 cubic feet per second, and assuming that
200,000,000,000 bacteria are discharged daily in the sewage from each
person, they would increase the number in the river by 1160
per cubic centimeter, or about 300,000 in an ordinary glass of water.
The average number found in the water eight miles below, at the intake
of the Lawrence water-works, was more than six times as great as this,
due in part to the sewage of other cities higher up.
There is every reason to believe that the bulk of these bacteria were
harmless to the people of Lawrence, who drank them; but some of them
were not. Fæces of people suffering from typhoid fever contain the
germs of that disease. What proportion of the total number of bacteria
in such fæces are injurious is not known; but assuming that one fourth
only of the total number are typhoid germs, and supposing the fæces of
one man to be evenly mixed with the whole daily average flow of the
river, it would put one typhoid germ into every glass of water at the
Lawrence intake, and at low water several times as many proportionately
would be added. This gives some conception of the dilution required to
make a polluted water safe.
One often hears of the growth of disease-germs in water, but as far
as the northern United States and Europe are concerned there is no
evidence whatever that this ever takes place. There are harmless forms
of bacteria which are capable of growing upon less food than the
disease-germs require and they often multiply in badly-polluted waters.
Typhoid-fever germs live for a longer or shorter period, and finally
die without growth. The few laboratory experiments which have seemed
to show an increase of typhoid germs in water have been made under
conditions so widely different from those of natural watercourses that
they have no value.[48]
Public-domain text, read in full here on John Shaqi.
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