Soap-Making Manual: A Practical Handbook on the Raw Materials, Their Manipulation, Analysis and Control in the Modern Soap Plant.Thomssen, Edgar George
Science
Soap-Making Manual: A Practical Handbook on the Raw Materials, Their Manipulation, Analysis and Control in the Modern Soap Plant.
Thomssen, Edgar George
Soap
Hence to arrive at the alkalinity we multiply the number of cubic
centimeters, read on the burette, by the factor opposite the terms in
which we desire to express the alkalinity, divide the weight in grams
thus obtained by the original weight taken, and multiply the result by
100, which gives the percentage of alkali in the proper terms. For
example, say, we took the 0.505 grams of caustic potash as explained
above and required 8.7 cubic centimeter normal acid to neutralize the
solution, then
8.7 x .05616 = .4886 grams KOH in sample
.4886
----- x 100 = 96.73% KOH in sample.
.505
Caustic potash often contains some caustic soda, and while it is
possible to express the results in terms of KOH, regardless of any
trouble that may be caused by this mixture in soap making, an error is
introduced in the results, not all the alkali being caustic potash. In
such cases it is advisable to consult a book on analysis as the analysis
is far more complicated than those given we will not consider it. The
presence of carbonates, as already stated, also causes an error. To
overcome this the alkali is titrated in absolute alcohol, filtering off
the insoluble carbonate. The soluble portion is caustic hydrate and may
be titrated as such. The carbonate remaining on the filter paper is
dissolved in water and titrated as carbonate.
SOAP ANALYSIS.
To obtain a sample of a cake of soap for analysis is a rather difficult
matter as the moisture content of the outer and inner layer varies
considerably. To overcome this difficulty a borer or sampler may be run
right through the cake of soap, or slices may be cut from various parts
of the cake, or the cake may be cut and run through a meat chopper
several times and mixed. A sufficient amount of a homogeneous sample
obtained by any of these methods is preserved for the entire analysis by
keeping the soap in a securely stoppered bottle.
The more important determinations of soap are moisture, free alkali, or
fatty acid, combined alkali and total fatty matter. Besides these it is
often necessary to determine insoluble matter, glycerine, unsaponifiable
matter, rosin and sugar.
MOISTURE.
The analysis of soap for moisture, at its best, is most unsatisfactory,
for by heating it is impossible to drive off all the water, and on the
other hand volatile oils driven off by heat are a part of the loss
represented as moisture.
The usual method of determining moisture is to weigh 2 to 3 grams of
finely shaved soap on a watch glass and heat in an oven at 105 degrees
C. for 2 to 3 hours. The loss in weight is represented as water,
although it is really impossible to drive off all the water in this way.
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