=111. Sachsse’s Solution.=—The solution of mercuric salts proposed
by Sachsse, is made by dissolving eighteen grams of mercuric iodid
in twenty-five cubic centimeters of an aqueous solution of potassium
iodid. To this solution are added 200 cubic centimeters of potash lye,
containing eighty grams of caustic potash. After mixing the solution,
the volume is completed to one liter. The sugar solutions used to
reduce this mixture, should be more dilute than those employed with
the mercuric cyanid, and should not be over one-half per cent in
strength. The end of the reduction is determined as already described.
After a preliminary trial, nearly all the sugar necessary to complete
reduction, should be added at once, and the end of the reduction then
determined by the addition of successive small quantities. One hundred
cubic centimeters of the mercuric iodid solution prepared as directed
above, require the following quantities of sugar to effect a complete
reduction:
325 milligrams of dextrose,
269 ” ” invert sugar,
213 ” ” levulose,
491 ” ” maltose,
387 ” ” lactose.
By reason of the great difference between the reducing power of
dextrose and levulose in this solution, it has been used in combination
with the copper reduction method, to be described, to determine the
relative proportion of dextrose and levulose in a mixture.[71]
It is now known that copper solutions require slightly different
quantities of dextrose, levulose, or invert sugar to effect complete
reduction, but the variations are not great and in the calculation
above mentioned, it may be assumed that these differences do not exist.
Instead of using stannous chlorid as an indicator, the end of the
reaction may be determined as follows: A disk of filtering paper is
placed over a small beaker containing some ammonium sulfid. A drop of
the clear hot solution is placed on this disk, and if salts of mercury
be still present a dark stain will be produced; or a drop of the
ammonium sulfid may be brought near the moist spot formed by the drop
of mercury salt. An alkaline solution of zinc oxid may also be used.
The methods depending on the use of mercuric salts have, of late, been
supplanted by better processes, and space will not be given here to
their further discussion.
=112. The Volumetric Copper Methods.=—The general principle on which
these methods depend, is found in the fact that certain sugars,
notably, dextrose, (glucose), levulose, (fructose), maltose and
lactose, have the property of reducing an alkaline solution of copper
to a lower state of combination, in which the copper is separated as
cuprous oxid. The end of the reaction is either determined by the
disappearance of the blue color of the solution, or by the reaction
produced by a drop of the hot filtered solution, when placed in contact
with a drop of potassium ferrocyanid acidified with acetic.
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