In such cases, the best the analyst can do is to conduct the hydrolysis
in as nearly as possible constant conditions, and to assume that the
percentage of dextrose present at a given time bears a constant ratio
to the quantity of starch hydrolyzed. In reality almost all the starch
appears finally as dextrose, and by proceeding on the assumption noted
above a fairly satisfactory accounting may be made of the remainder.
Starch being insoluble, it cannot be determined directly by its
rotatory power. When heated for a few hours in contact with water at a
high pressure, starch becomes soluble, and in this state has a fairly
constant gyrodynat, _viz._, [_a_]_{D} = 197°.
Starch is also rendered soluble by rubbing it in a mortar for about ten
minutes with an excess of strong hydrochloric acid, and in this way
a quick approximate idea may be obtained of the percentage present.
Starch prepared in this manner, however, has a strong reducing power on
metallic salts, showing that a part of it has already, even in so short
a time, assumed the state of maltose or dextrose. The gyrodynat of
pure anhydrous starch in such conditions varies from [_a_]_{D} = 197°
to [_a_]_{D} = 194°. Starch is also rendered soluble by boiling with
salicylic acid, whereby a solution is obtained having a gyrodynat of
[_a_]_{D} = 200°(circa). The methods of procedure for the analysis of
starch will be set forth in detail in the following paragraphs.
=183. Estimation of Water.=—In prepared or commercial starches the
water may be determined by heating in a partial vacuum. The temperature
at first should be low, not exceeding 60°. After drying for an hour
at that heat the temperature may be gradually increased. The last
traces of water come off from starch with difficulty, and the final
temperature may be carried a little beyond 100° without danger of
decomposition.
Ost recommends the use of an atmosphere of hydrogen or illuminating
gas.[148] One and a half grams of the finely powdered sample are
placed in the drying tube described in paragraph =23=, and heated in
a stream of dry hydrogen. The temperature at first is kept at about
60° for several hours and is then gradually increased to 120°. Ost
states that even at 150° the sample preserves its pure white color,
but so high a temperature is not necessary. Maercker, at the Halle
station, makes use of the same process, but employs illuminating gas
instead of hydrogen. The importance of beginning the desiccation at
a low temperature arises from the fact that at a higher temperature,
before the greater part of the water is driven off, the starch will
suffer a partial fusion and form a paste which is very difficult to
dry. The dried sample must be kept in a stoppered vessel to prevent the
absorption of hygroscopic moisture.
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