_Determination of Albuminoid Nitrogen._—To from seven-tenths to
eight-tenths gram of the substance in a beaker add 100 cubic
centimeters of water, heat to boiling, or in the case of substances
rich in starch, heat on the water-bath ten minutes, and add a quantity
of cupric hydroxid mixture containing from one-half to six-tenths
gram of the hydroxid; stir thoroughly, filter when cold, wash with
cold water, and put the filter and its contents into the concentrated
sulfuric acid for the determination of nitrogen. The filter-papers used
must be practically free of nitrogen. Add sufficient potassium sulfid
solution to completely precipitate all copper and mercury, and proceed
as in the moist combustion process for nitrogen. If the substance
examined consist of seed of any kind, or residues of seeds, such as
oil-cake or anything else rich in alkaline phosphates, add a few cubic
centimeters of a concentrated solution of alum just before adding the
cupric hydroxid, and mix well by stirring. This serves to decompose
the alkaline phosphates. If this be not done cupric phosphate and free
alkali may be formed, and the protein-copper may be partially dissolved
in the alkaline liquid.
_Cupric Hydroxid._—Prepare the cupric hydroxid as follows: Dissolve
100 grams of pure cupric sulfate in five liters of water, and add
twenty-five cubic centimeters of glycerol; add a dilute solution
of sodium hydroxid until the liquid is alkaline; filter, rub the
precipitate up with water containing five cubic centimeters of glycerol
per liter, and then wash by decantation or filtration until the
washings are no longer alkaline. Rub the precipitate up again in a
mortar with water containing ten per cent of glycerol, thus preparing
a uniform gelatinous mass that can be measured out with a pipette.
Determine the quantity of cupric hydroxid per cubic centimeter of this
mixture.
_Amid Nitrogen._—The albuminoid nitrogen determined as above subtracted
from the total, gives that part of the organic nitrogen existing in the
sample as amids and in other allied forms.
=204. Separation of Nitric and Ammoniacal from Organic Nitrogen.=—The
nitrogen being present in three forms, _viz._, organic, ammoniacal,
and nitric, the separation of the latter two may be accomplished by
the following procedure:[173] One gram of the fertilizer is exhausted
on a small filter with a two per cent solution of tannin, using from
thirty to forty cubic centimeters in small portions. This is sufficient
to dissolve all the nitrates and the greater portion of the ammoniacal
salts, while the tannin renders insoluble all the organic nitrogenous
compounds. The filter and its contents are treated for nitrogen by the
kjeldahl process. When the distillation and titration are completed
the solution obtained by the aqueous tannin is added to the distilling
flask and the operation continued. This represents the ammoniacal
nitrogen.
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