Heroes of Science: ChemistsMuir, M. M. Pattison (Matthew Moncrieff Pattison)
History
Heroes of Science: Chemists
Muir, M. M. Pattison (Matthew Moncrieff Pattison)
Chemistry -- History; Chemists
Graham divided substances into those which diffused easily and quickly into
water, and those which diffused very slowly; he showed that the former
were all crystallizable substances, while the latter were
non-crystallizable jelly-like bodies. Graham called these jelly-like
substances _colloids;_ the easily diffusible substances he called
_crystalloids_. He proved that a colloidal substance acts towards a
crystalloid much as water does; that the crystalloid rapidly diffuses
through the colloid, but that colloids are not themselves capable of
diffusing through other colloids. On this fact was founded Graham's process
of _dialysis_. As colloid he employed a sheet of parchment paper, which he
stretched on a ring of wood or caoutchouc, and floated the apparatus so
constructed--_the dialyser_--on the surface of pure water in a glass dish;
he then poured into the dialyser the mixture of substances which it was
desired to separate. Let us suppose that this mixture contained sugar and
gum; the crystalloidal sugar soon passed through the parchment paper, and
was found in the water outside, but the colloidal gum remained in the
dialyser.
If the mixture in the dialyser contained two crystalloids, the greater part
of the more diffusible of these passed through the parchment in a short
time along with only a little of the less diffusible; a partial separation
was thus effected.
This method of dialysis was applied by Graham to separate and obtain in the
pure state many colloidal modifications of chemical compounds, such as
aluminium and tin hydrates, etc. By his study of these peculiar substances
Graham introduced into chemistry a new class of bodies, and opened up
great fields of research.
Matter in the colloidal state appears to be endowed with properties which
are quite absent, or are hidden, when it is in the ordinary crystalloidal
condition. Colloids are readily affected by the smallest changes in
external conditions; they are eminently unstable bodies; they are, Graham
said, always on the verge of an impending change, and minute disturbances
in the surrounding conditions may precipitate this change at any moment.
Crystalloids, on the other hand, are stable; they have definite properties,
which are not changed without simultaneous large changes in surrounding
conditions. But although, to use Graham's words, these classes of bodies
"appear like different worlds of matter," there is yet no marked separating
line between them. Ice is a substance which under ordinary conditions
exhibits all the properties of crystalloids, but ice formed in contact with
water just at the freezing point is not unlike a mass of partly dried gum;
it shows no crystalline structure, but it may be rent and split like a lump
of glue, and, like glue, the broken pieces may be pressed together again
and caused to adhere into one mass.
Public-domain text, read in full here on John Shaqi.
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