remainder is converted into more soluble salts which remain in solution
in the boiler until blown out. The water is filtered before being pumped
into the boiler. The quantity and kind of chemical employed is
determined according to the nature and amount of the impurity in the
"hard" feed-water.
_Thermal Storage._--In some cases where the work required is very
intermittent, "thermal storage" is employed. Above the boiler a large
cylindrical storage vessel is placed, having sufficient capacity to
contain enough feed-water to supply the boiler throughout the periods
when the maximum output is required. The upper part of this storage
vessel is always in free communication with the steam space of the
boiler, and from the lower part of it the feed-water may be run into the
boiler when required. The feed-water is delivered into the upper part of
the vessel, and arrangements are made by which before it falls to the
bottom of the chamber it runs over very extended surfaces exposed to the
steam, its temperature being thus raised to that of the steam. At times
when less than the normal supply of steam is required for the engine
more than the average quantity of feed-water is pumped into the chamber,
and the excess accumulates with its temperature raised to the
evaporation point. When an extra supply of steam is required, the
feed-pump is stopped and the boiler is fed with the hot water stored in
the chamber. Besides the "storage" effect, it is found that many of the
impurities of the feed become deposited in the chamber, where they are
comparatively harmless and from which they are readily removable.
[Illustration: Longitudinal section.
Section at AB--Front elevation.
FIG. 17.--Bobcock & Wilcox Water-tube Boiler (marine type).]
_Oil Separators._--When the steam from the engines is condensed and used
as feed-water, as is the case with marine boilers, much difficulty is
often experienced with the oil which passes over with the steam.
Feed-filters are employed to stop the coarser particles of the oil, but
some of the oil becomes "emulsified" or suspended in the water in such
extremely minute particles that they pass through the finest filtering
materials. On the evaporation of the water in the boiler, this oil is
left as a thin film upon the heating surfaces, and by preventing the
actual contact of water with the plates has been the cause of serious
trouble. An attempt has been made to overcome the emulsion difficulty by
uniformly mixing with the water a small quantity of solution of lime. On
the water being raised in temperature the lime is precipitated, and the
minute particles separated apparently attract the small globules of oil
and become aggregated in sufficient size to deposit themselves in quiet
parts of the boiler, whence they can be occasionally removed either by
blowing out or by cleaning. Much, however, still remains to be done
before the oil difficulty will be thoroughly removed.
Public-domain text, read in full here on John Shaqi.
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