The Principles of Chemistry, Volume IIMendeleyev, Dmitry Ivanovich
Science
The Principles of Chemistry, Volume II
Mendeleyev, Dmitry Ivanovich
Argon; Chemistry; Periodic law
As in the first group lithium is followed by sodium, giving a more basic
oxide, so in the second group beryllium is followed by magnesium, and so
also in the third group there is, besides the lightest element, boron,
whose basic character is scarcely defined, _aluminium_, Al = 27, whose
oxide, alumina, has somewhat distinct basic properties, which, although
not so powerful as in magnesium oxide, are more distinct than in boric
anhydride. Among the elements of the third group, aluminium is the most
widely distributed in nature; it will be sufficient to mention that it
enters into the composition of clay to demonstrate the universal
distribution of aluminium in the earth's crust.
Alumina is so named from its being the metal of alums (_alumen_).
_Clay_, which is so widely distributed and familiar to everybody, is the
insoluble residue obtained after the action of water containing carbonic
acid on many rocks, and especially on the felspars contained in some of
them. Felspar is a compound containing potash or soda, alumina, and
silica. The primary rocks, like granite, contain many similar compounds
(_see_ Chapter XVIII.: Felspars). Felspar is acted on by water containing
carbonic acid, all the alkalis (potash and soda), and a portion of the
silica passing into the water as substances which are soluble and carried
away by it, whilst the alumina and silica left from the felspar remain on
the spot where the solution has taken place. This is the original method
of the formation of clay in its primary deposits among rocks along whose
crevices the atmospheric water has permeated. Such primary deposits often
contain a white pure clay, termed _kaolin_ or _porcelain clay_. But such
clay is a rarity, because the conditions for its formation are rarely met
with. The water, whilst acting chemically on rocks, at the same time
destroys them _mechanically_, and carries off the finely divided residues
of disintegration with it. Clay is most easily subjected to this
mechanical action of water, because it is composed of grains of
exceedingly small size and void of any visible crystalline structure,
which easily remain suspended in water. The cloudy water of running
mountain streams generally contains particles of clay in suspension,
owing to the above-described chemical and mechanical action of the water
on the minerals contained in the mountain rocks. Together with these
minute particles of clay the water carries away the coarser components on
which it is not able to act--for example, splinters of rock, grains of
mica, quartz, &c. They were originally held together by those minerals
which form clay. When the water acts on these binding minerals, a sandy
mass is formed which water bears away. The cloudy water in which the
particles of clay and sand are held in suspension carries them to, and
deposits them at, the estuaries of rivers, lakes, seas, and oceans. The
coarser particles are first deposited and form sand and similar
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