_Cost of Construction._ According to the replies received by
the Committee on Water Supplies of the American Public Health
Association[10] the total cost of equipment for disinfection varies
widely and bears no apparent relation to the capacity of the equipment.
This is due to the temporary nature of the plants erected in many cities
and the necessity of erecting expensive structures in others. The cost
of construction varies also in different localities. The cost of
equipping hypochlorite plants with standard concrete tanks and dosage
regulators would be more uniform and for capacities between 10 and 50
million gallons per day would approximate $15 to $50 per million
gallons.
_The operating cost_ of bleach plants shows similar wide variations. In
some cases the labour required for mixing and supervision can be
obtained without extra cost whilst in others the labour charge exceeds
the cost of hypochlorite.
The price of bleach has shown violent fluctuations during the last three
years (see Diagram IX, page 125) but is now (1918) comparatively steady
at $2.25 to $2.75 per 100 pounds. Assuming that 33.3 per cent of
available chlorine can be extracted, each pound of chlorine costs
6.75-7.25 cents as compared with 15-25 cents for liquid chlorine. The
fixed charges on the capital expenditures together with the labour and
incidental charges almost invariably make the total cost of operation of
a straight bleach plant higher than that of a liquid chlorine plant. The
tendency during the last four years has been to substitute liquid
chlorine for hypochlorite and the majority of the plants are now of the
former type.
"ANTICHLORS"
Substances used for the removal of excess chlorine are usually known as
"antichlors" and those that have been most frequently employed are
sodium bisulphite, NaHSO_{3}, and sodium thiosulphate Na_{2}S_{2}O_{3}.
The reactions with chlorine are:
(i) NaHSO_{3} + Cl_{2} + H_{2}O = NaHSO_{4} + 2HCl.
(ii) Na_{2}S_{2}O_{3} + Cl_{2} = Na_{2}S_{4}O_{6} + 2NaCl.
Sodium bisulphite is a very efficient "antichlor," only 1.46 parts being
required to remove 1 part of chlorine, but owing to its instability the
action is uncertain. Sodium thiosulphate is a comparatively stable
cheap salt, containing 5 molecules of water of crystallization,
Na_{2}S_{2}O_{3} · 5H_{2}O but 7 parts are necessary to remove 1 part by
weight of chlorine.
"Antichlors" are used as aqueous solutions and the dosage controlled in
the same manner as for bleach solutions. The action is an instantaneous
one and it is consequently necessary that the germicidal action should
be complete before the "antichlor" is added.
Public-domain text, read in full here on John Shaqi.
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