Researches on Cellulose, 1895-1900Cross, C. F. (Charles Frederick)
Science
Researches on Cellulose, 1895-1900
Cross, C. F. (Charles Frederick)
Cellulose
From such statistics as are recorded the yields are not in accordance
with the above. There is a sensible deficiency. Thus Will and Lenze
record a yield of 170 p.ct. for a product with 13.8 p.ct. N, indicating
a deficiency of about 10 p.ct. As the by-products soluble in the acid
mixture are extremely small, the deficiency represents approximately the
water split off by an internal reaction. In this important point the
celluloses behave as ketoses.
In the lignocelluloses the condensed constituents of the complex are of
well-marked ketonic, i.e. quinonic, type. In 'nitrating' the
lignocelluloses this phenomenon of internal condensation is much more
pronounced (see p. 131). As the reaction is mainly confined to the
cellulose of the fibre, we have this additional evidence that the
typical carbonyl is of ketonic function. It is still an open question
whether the cellulose constituents of the lignocelluloses are
progressively condensed--with progress of 'lignification'--to the
unsaturated or lignone groups. There is much in favour of this view,
the evidence being dealt with in the first edition, p. 180. The
transition from a cellulose-ketone to the lignone-ketone involves a
simple condensation without rearrangement; from which we may argue back
to the greater probability of the ketonic structure of the cellulose. We
must note, however, that the celluloses of the lignocelluloses are
obtained as residues of various reactions, and are not homogeneous. They
yield on boiling with condensing acids from 6 to 9 p.ct. furfural. It is
usual to regard furfural as invariably produced from a pentose residue.
But this interpretation ignores a number of other probable sources of
the aldehyde. It must be particularly remembered that laevulose is
readily condensed (a) to a methylhydroxyfurfural
C_{6}H_{1}O_{6} - 3H_{2}O = C_{6}H_{6}O_{3} = C_{5}(OH).H_{2}.(CH_{3})O_{2}
and (b) by HBr, with further loss of OH, as under:
C_{6}H_{12}O_{6} - 4H_{2}O + HBr = C_{5}H_{3}(CH_{2}Br)O
and generally the ketoses are distinguished from the aldoses by their
susceptibility to condensation. Such condensation of laevulose has been
effected by two methods: (a) by heating the concentrated aqueous
solution with a small proportion of oxalic acid at 3 atm. pressure
[Kiermayer, Chem. Ztg. 19, 100]; (b) by the action of hydrobromic acid
(gas) in presence of anhydrous ether; the actual compound obtained being
the omega-brommethyl derivative [Fenton, J. Chem. Soc. 1899, 423].
This latter method is being extended to the investigation of typical
celluloses, and the results appear to confirm the view that cellulose
may be of ketonic constitution.
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