In the case of dextrose, when a one per cent solution is used, eight
and two-tenths cubic centimeters, corresponding to 80.2 milligrams of
dextrose, are required to reduce 100 cubic centimeters of the mixed
reagent. On the other hand, when the sugar solution is diluted to
one-tenth of a per cent strength 82.1 milligrams are required.
With invert sugar slightly larger quantities are necessary, the
reducing power being as 94.9 to 100 as compared with dextrose. With
a one per cent strength of invert sugar it is found that eighty-four
milligrams are required to reduce 100 cubic centimeters of the mixed
reagent and when the strength of the invert sugar is reduced to
one-tenth per cent 87.03 milligrams are required.
=131. Method Of Allein and Gaud.=—Allein and Gaud have proposed a
further modification of the ammonia process which consists essentially
in the suppression of rochelle salt and fixed caustic alkali and the
entire substitution therefor of ammonia. Ammonia acts with much less
vigor upon sugars than the caustic alkalies, and it is therefore
claimed that the decomposition of the sugar due to the alkali is
reduced to a minimum when ammonia is employed.[98] The copper solution
is made as follows:
Dissolve 8.7916 grams of electrolytic copper in ninety-three grams
of concentrated sulfuric acid diluted with an equal volume of water.
Complete the resulting solution to one liter with concentrated ammonia.
Ten cubic centimeters of this solution are equal to fifty grams of
dextrose.
It is recommended that the reduction be accomplished in an atmosphere
of hydrogen, but it is apparent that the use of kerosene is permissible
in this case, and on account of its greater simplicity it is to be
recommended as the best means of excluding the oxygen. The reduction is
accomplished at a temperature of about 80°.
It is also proposed to reoxidize the copper by substituting a current
of air for the hydrogen at the end of the reaction, and thus use the
same copper a number of times. The danger of loss of ammonia, and the
difficulty of determining when the oxidation is complete, render this
regeneration of the reagent undesirable.
=132. Method of Gerrard.=—The method of Gerrard does not depend upon
the use of ammonia, but the principle involved is the same, _viz._, the
holding of the separated cuprous oxid in solution and the determination
of the end of the reaction by the disappearance of the blue color.
As first proposed by Gerrard, the copper sulfate solution is made of
double the strength usually employed and to each 100 cubic centimeters
thereof, before use, three and three-tenths grams of potassium cyanid
are added. This is sufficient to hold the precipitated cuprous oxid in
solution.[99]
The original method of Gerrard is found difficult of execution and the
author, in conjunction with Allen, has lately modified it and reduced
it to a practical working basis.[100]
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