Manures and the principles of manuringAikman, Charles Morton
Science
Manures and the principles of manuring
Aikman, Charles Morton
Fertilizers; Manures
In this connection the action of plant-roots in permitting a more
abundant access of air to the lower layers of the soil, and thus
promoting nitrification, is worth noticing. This has been observed in
the case of different crops. Thus the action of nitrification has been
found to be more marked in the lower layers of a soil on which a
leguminous crop was growing than on that on which a gramineous. "The
conditions which would favour nitrification in the subsoil are such as
would enable air to penetrate it, as artificial drainage, a dry season,
the growth of a luxuriant crop causing much evaporation of the water in
the soil. Such conditions, by removing the water that fills the pores of
the subsoil, will cause the air to penetrate more or less deeply and
render nitrification possible. Subsoil nitrification will thus be most
active in the drier periods of the year" (Warington).
_Nature of Substances capable of Nitrification._
What kinds of nitrogenous substances are capable of undergoing this
process of nitrification are not yet well known. The question is, of
course, one of great importance, as the rapidity with which a
nitrogenous body nitrifies will be an important factor in determining
its value as a manure. Unfortunately, on this subject we know, as yet,
very little. We are well aware that the nitrogen present in the humic
matter of the soil is readily nitrifiable. In the experiments on
nitrification the nitrogenous bodies used have been chiefly ammonia
salts, so that it is difficult to say whether, in the case of other
nitrogenous substances, micro-organic life of a different sort has not
also been active and has converted the nitrogen into ammonia, and
thereby prepared the way for the process of nitrification.
That various manures, such as bones, horn, wool, and rape-cake are
readily nitrifiable, has been shown by experiment. Laboratory
experiments have also been carried out on such different nitrogenous
substances as ethylamine, thiocyanates, gelatin, urea, asparagin, and
albuminoids of milk. But in all these experiments, how far these bodies
have been directly acted upon by the nitrifying organisms, or how far
they have first undergone a preparatory change in which their nitrogen
has been first converted into ammonia, is impossible to say. It is at
least quite probable that all the organic forms of nitrogen have first
to be converted into ammonia ere they are nitrified.
_Rate at which Nitrification takes place_.
Public-domain text, read in full here on John Shaqi.
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