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
After the lye has been skimmed off it is thoroughly agitated and a
sample taken. The amount of lye in the tank is then calculated. Spent
lye is about 1.09 times heavier than water, or weighs about 9 pounds to
the gallon. While the sample is being tested for alkalinity it is
advisable to add sulfate of alumina, which may be dissolving while the
sample is being titrated. This substance should be added in the
proportion of anywhere from 6 to 14 pounds per thousand pounds of lye,
depending upon the amount of impurities contained therein. For a clean
lye six pounds per thousand is sufficient, but for an impure lye a
greater quantity is necessary. The sulfate of alumina used should be
free from arsenic and sulfides and should contain a minimum amount of
grit (silica), as grit reduces the life of the pump valves. This may be
estimated with sufficient accuracy by rubbing the filtered-off portions,
insoluble in water between the fingers and a plate of glass. The object
of adding the sulfate of alumina is to transform the soap contained in
the lye into the insoluble aluminum soaps, and at the same time to
coagulate the albuminous impurities. It must be remembered that the
sulfate of alumina is added only for the fresh lye put into the tank.
Thus if there were 10,000 pounds of lye in the treating tank when the
fresh lye was run in, and 50,000 pounds when the tank is filled, adding
nine pounds of sulfate of alumina per thousand of lye, only 360 pounds
would be added or enough for 40,000 pounds. Sulfate of alumina
neutralizes one-third of its weight of caustic.
To determine the alkali in the sample, 10 cubic centimeters are pipetted
into a beaker, a little distilled water added, then 3 or 4 drops of
phenolphthalein indicator. From a burette, quarter normal (N/4) sulfuric
acid is added until the pink color is just discharged. When this point
is reached 4 to 5 c. c. more of acid are added and the solution is
boiled to expel the carbon dioxide. Should the solution turn pink, it is
necessary to add more acid. After having boiled for 3 to 4 minutes, N/4
caustic soda is added until the pink color just returns and the amount
of caustic soda used is read on the burette. The difference between the
number of cubic centimeters of N/4 sulfuric acid and N/4 caustic soda
gives the amount of alkali in the sample. By using a 10 c. c. sample and
N/4 sulfuric acid and N/4 caustic soda each c. c. obtained by the
difference of these two solutions is equal to one-tenth of one per cent.
(0.1%) of the total alkali in the lye. As an example, say we first used
7.7 c. c. of N/4 sulfuric acid to just discharge the pink, then added 4
c. c. more, or 11.7 c. c. in total. After boiling it required 5.3 c. c.
to bring back a slight pink, the total alkalinity would be 11.7 c. c. -
5.3 c. c. = 6.4 c. c., or 0.64% total alkali in the lye in terms of
caustic soda. If there were 40,000 pounds of lye to be treated then we
should have to neutralize:
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account