=125. The Analytical Process.=—As in the case of fehling solution a
great many methods of conducting the analysis with the soldaini reagent
have been proposed. The general principle of all these processes is
the one already described for the alkaline copper tartrate solution,
_viz._, the addition of the reducing sugar solution to the boiling
reagent, and the determination of the end of the reaction by the
disappearance of the copper.[88]
Practically, however, these methods have had no general application,
and the use of the soldaini reagent has been confined chiefly to the
determination of invert sugar in presence of a large excess of sucrose.
For this purpose the sugar solution is not added until the blue color
of the reagent has been destroyed, but on the other hand, the reagent
has been used in excess, and the cuprous oxid formed collected and
weighed as metallic copper. The weight of the metallic copper found,
multiplied by the factor 0.3546, gives the weight of invert sugar in
the volume of the sugar solution used. According to Preuss, the factor
is not a constant one, but varies with the quantity of invert sugar
present, as is seen in the formula _y_ = 2.2868 + 3.3_x_ + 0.0041_x_²,
in which _x_ = the invert sugar, and _y_ the metallic copper.[89]
=126. Tenth Normal Copper Carbonate Solution.=—In the study of some
of the solutions of copper carbonate, proposed for practical work,
Ettore Soldaini was impressed with the difficulty of dissolving so
large a quantity of carbonate in the solvent employed.[90] The solution
recommended by Bodenbender and Scheller,[91] in which forty grams
of the crystallized copper sulfate were used, failed to disclose
an equivalent amount of copper in the reagent ready for use. For
this reason a tenth-normal copper solution is prepared by Soldaini
containing the equivalent of 3.464 grams of copper sulfate in one
liter. The reagent is easily prepared by adding slowly the dissolved
or finely powdered copper salt to a solution of 297 grams of potassium
bicarbonate, and after complete solution of the copper carbonate
formed, completing the volume to one liter. With this reagent as little
as one-quarter of a milligram of reducing sugar can be easily detected.
For the quantitive estimation of sugar a solution of the above strength
is to be preferred to the other forms of the soldaini reagent by reason
of the ease of direct comparison with standard fehling solutions.
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