The Chemistry of Hat Manufacturing: Lectures Delivered Before the Hat Manufacturers' AssociationSmith, Watson
Science
The Chemistry of Hat Manufacturing: Lectures Delivered Before the Hat Manufacturers' Association
Smith, Watson
Hats
_Filtration._--We hear a great deal about filtration or filters as
universal means of purifying water. Filtration, we must remember, will,
as a rule, only remove solid or suspended impurities in water. For
example, if we take some ivory black or bone black, and mix it with
water and afterwards filter the black liquid through blotting-paper, the
bone black remains on the paper, and clear, pure water comes through.
Filtering is effective here. If we take some indigo solution, however,
and pour it on to the filter, the liquid runs through as blue as it was
when poured upon the filter. Filtering is ineffective here, and is so
generally with liquids containing matters dissolved in them. But I said
"generally," and so the question is suggested--Will filtration of any
kind remove matters in solution? This question I will, in conclusion,
try to answer. Bone charcoal, or bone black, has a wonderful attraction
for many organic matters such as colours, dyes, and coloured impurities
like those in peat water, raw sugar solutions, etc. For example, if we
place on a paper filter some bone black, and filter through it some
indigo solution, after first warming the latter with some more of the
bone black, the liquid comes through clear, all the indigo being
absorbed in some peculiar way, difficult to explain, by the bone black,
and remaining on the filter. This power of charcoal also extends to
gases, and to certain noxious dissolved organic impurities, but it is
never safe to rely too much on such filters, since the charcoal can at
length become charged with impurities, and gradually cease to act. These
filters need cleaning and renewing from time to time.
LECTURE V
ACIDS AND ALKALIS
_Properties of Acids and Alkalis._--The name acids is given to a class
of substances, mostly soluble in water, having an acid or sour taste,
and capable of turning blue litmus solution red. All acids contain one
or more atoms of hydrogen capable of being replaced by metals, and when
such hydrogen atoms are completely replaced by metals, there result
so-called neutral or normal salts, that is, neutral substances having no
action on litmus solution. These salts can also be produced by the union
of acids with equivalent quantities of certain metallic oxides or
hydroxides, called bases, of which those soluble in water are termed
alkalis. Alkalis have a caustic taste, and turn red litmus solution
blue.
In order to explain what is called the law of equivalence, I will remind
you of the experiment of the previous lecture, when a piece of bright
iron, being placed in a solution of copper sulphate, became coated with
metallic copper, an equivalent weight of iron meanwhile suffering
solution as sulphate of iron. According to the same law, a certain
weight of soda would always require a certain specific equivalent weight
of an acid, say hydrochloric acid, to neutralise its alkaline or basic
properties, producing a salt.
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