A new system of chemical philosophy, Volume 2, Part 1Dalton, John
Science
A new system of chemical philosophy, Volume 2, Part 1
Dalton, John
Atomic theory; Chemistry, Inorganic
From its combinations with sulphuric and carbonic acids, I find the
weight of an atom of the protoxide to be 32, or the same as that of
iron. Dr. John, a German chemist, who seems to have investigated these
salts with more attention than any other person, has deduced nearly the
same results. (Annals of Philos. 2-172). He finds 33⅔ sulphuric acid +
31 oxide, and 34.2 carbonic acid + 55.8 oxide; that is, when reduced
to compare with my results, 34 sulphuric acid + 31.3 oxide, and 19.4
carbonic acid + 32 oxide. This near agreement may be considered as a
confirmation of the accuracy of both. Dr. John finds, as I have done,
three distinct oxides of manganese, the greyish green, the brown, and
the black. The first of these is the only one that combines with acids;
but we differ materially as to the quantity of oxygen in each. He found
manganese decompose water at the ordinary temperature; by oxidizing
the metal this way, 100 metal acquired 15 oxygen to constitute the
protoxide; according to this, 28 metal + 4 oxygen would make 32
protoxide; but this conclusion would be so contrary to all analogy,
that it cannot be admitted as satisfactory. The probability is, that
the manganese must have contained a little oxygen at the commencement
of the experiment. The general analogy of manganese to iron, lead, &c.
requires that 32 protoxide should contain 7 oxygen. If this be allowed,
we have the atom of manganese = 25, and not 40, (as at page 266, VOL.
1), the same as that of iron: and this conclusion is corroborated by
what follows.
2. _Intermediate or olive brown oxide._ This may be formed by combining
oxygen directly with the buff or protoxide recently precipitated,
and still remaining in the liquor; simple agitation in oxygenous gas
or common air for a few minutes, is all that is requisite. Or it may
be instantly formed by treating the same moist protoxide with liquid
oxymuriate of lime. Or it may be had by exposing the purest black oxide
to a bright red heat for some time, when it will lose 9 or 10 per cent.
and there will remain the olive brown oxide.
To find the proportion of oxygen absorbed, I precipitated 3.2 grains
of the protoxide by lime water; the liquid containing the oxide was
put into a well stoppered bottle of oxygen gas; on agitation the oxide
changed colour fast, from buff to brown; in a short time it absorbed
260 grain measures of gas = .35 of a grain in weight, and then ceased
to absorb. In another experiment, 3.2 grains of precipitated protoxide,
took 100 measures of a solution of oxymuriate of lime, containing .35
per cent. of oxygen, (that is, 1.45 oxymuriatic acid). Hence as 32
take 3.5, 64 must take 7; which shews the brown oxide to be a compound
of 1 atom of oxygen, and 2 of the protoxide.
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