Spons' Household Manual: A treasury of domestic receipts and a guide for home management
General
Spons' Household Manual: A treasury of domestic receipts and a guide for home management
Home economics
It was formerly the practice to make all gas-burners of metal; the
openings, whether slits or holes, from which the gas issued to be
burned being small, in order to check the rate of flow. This was an
error, for heat and light go together, and the metal, being a good
conductor of heat, kept the lower part of the flame cold. The part
of burners actually in contact with the flame is now invariably of
some non-conducting material, such as steatite; and the effect of
this simple improvement is most noteworthy. Bad burners show a great
proportion of blue at the lower part of the flame, and the upper or
luminous portion is small and irregular in shape, and dull in colour.
These effects are due to gas issuing at too great velocity from small
holes in burners, as well as to improper material in the latter. The
illuminating power of coal gas depends upon the incandescence, at the
greatest possible heat, of infinitesimal particles of carbon which
it contains, invisible until heated. In the lower, or blue portion
of the flame, the heat is not sufficient to render these particles
incandescent; and it is necessary that this effect should be secured
at the nearest point to the burner. Unless this is done, the light
is not only lessened, but the unconsumed carbon passes off and is
deposited as soot on ceilings and furniture. Blackened ceilings are
a measure of the badness of the burners. It will now be seen why
a material which cools the flame should not be used for a burner,
for the hotter the flame, the more perfect is the incandescence of
the carbon for which in reality the consumer pays, and the less
danger there is of blackened ceilings. But in addition to the better
material, the construction of even the cheapest modern burners is
very greatly improved; although even a good burner may be subjected
to such conditions--e.g. allowing gas to be driven through it at
a high velocity, a condition usually accompanied by a hissing or
roaring sound--as to give a bad result. The capacity of burners
should moreover bear a reasonable proportion to the quality of the
gas for which they are required to be used. Thus with rich Scotch
gas, burners with very small holes, consuming only about 1½ cub. ft.
hourly, are sometimes adopted for economical reasons. Occasionally
these burners find their way South, but their use for the ordinary
qualities of English gas is the worst possible economy. It is
difficult to lay down hard and fast rules for the sizes of burners,
the purposes for which gas-light is required being so various. For an
ordinary apartment, however, wherein distributed lights are adopted,
5 ft. burners with 14 or 15 candle gas, 4 ft. burners with 16 or 17
candle gas, 3 or 3½ ft. burners with 18 or 20 candle gas, and 2½ ft.
burners with richer gas will be found to give satisfactory results.
It may be remarked that these figures apply to burners regulated in
some way to the given rates of consumption, and not to those merely
reputed to be of the stated sizes.
Public-domain text, read in full here on John Shaqi.
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