A system of pyrotechny : $b Comprehending the theory and practice, with the application of chemistry; designed for exhibition and for war.Cutbush, James
History
A system of pyrotechny : $b Comprehending the theory and practice, with the application of chemistry; designed for exhibition and for war.
Cutbush, James
Fireworks; Military fireworks
M. Proust considers, that nitrite of potassa, prussiate of potassa,
charcoal, sulphuretted hydrogen gas, carburetted hydrogen gas,
nitrous gas, and carbonic oxide gas may be generated or result, as
the products of the combustion, when the materials have not been
properly mixed. Our object in all cases should be to render the
materials pure, and the proportions so accurate, as to produce the
greatest possible effect, which, of course, must depend on the
formation and the consequent expansion of the gases. The effect of
fired gunpowder is owing in a great degree to the generation of
carbonic acid gas; for while the charcoal acts primarily in the
combustion, by taking a greater part of the oxygen from the nitric
acid of the nitre, with which we have said it produces carbonic
acid; the sulphur has a secondary influence, by forming sulphurous
acid gas, although it renders the combustion more rapid, and in this
respect enables the charcoal to act at once on the nitric acid of the
saltpetre.
We learn then, that in gunpowder, the quantity of charcoal should
be such as to effect the decomposition; and, that while the sulphur
has a secondary effect, in the formation of sulphurous acid gas,
it promotes, if so we may term it, the _rapid_ combustion, and
consequent action of the charcoal.
MM. Bottée and Riffault (_Traité de l'art de Fabriqué la poudre à
canon, p. 197_,) after making some observations on the constitution
of powder, and the action which takes place when it is burnt,
with the aeriform products that result, give some remarks on the
proportion of charcoal necessary to decompose a given quantity of
nitric acid; and conclude generally, that in the production of
carbonic acid gas, the principal gas which is formed, while the
nitric acid is decomposed, and gives up its oxygen to the carbon,
the azote is liberated in the state of gas, and at the same time
caloric is evolved. They observe then, that the ancient formula
for the manufacture of gunpowder, as used in France, consists of
the following proportions, _viz_: 0.750 saltpetre, 0.125 charcoal,
and 0.125 sulphur, which agrees with modern experiments, although
chemistry at that period was in its infancy. M. Pelletier, a member
of the National Institute, and M. Riffault made several experiments
at Essonne, on different proportions of nitre, charcoal, and
sulphur in the fabrication of powder. It is unnecessary to state
the different proportions, made use of, or the experiments on the
strength of the powder made with the eprouvette. They observe,
however, that powder made in the following proportions, was more
satisfactory, _viz._ 0.76 saltpetre, 0.15 charcoal, 0.09 sulphur, and
0.76 saltpetre, 0.14 charcoal, and 0.10 sulphur.
Public-domain text, read in full here on John Shaqi.
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