Dry-Farming : A System of Agriculture for Countries under a Low RainfallWidtsoe, John Andreas
Science
Dry-Farming : A System of Agriculture for Countries under a Low Rainfall
Widtsoe, John Andreas
Dry farming
The view that soil fertility is not diminished by dry-farming
appears at first sight to be strengthened by the results obtained by
investigators who have made determinations of the actual plant-food
in soils that have long been dry-farmed. The sparsely settled
condition of the dry-farm territory furnishes as yet an excellent
opportunity to compare virgin and dry-farmed lands and which
frequently may be found side by side in even the older dry-farm
sections. Stewart found that Utah dry-farm soils, cultivated for
fifteen to forty years and never manured, were in many cases richer
in nitrogen than neighboring virgin lands. Bradley found that the
soils of the great dry-farm wheat belt of Eastern Oregon contained,
after having been farmed for a quarter of a century, practically as
much nitrogen as the adjoining virgin lands. These determinations
were made to a depth of eighteen inches. Alway and Trumbull, on the
other hand, found in a soil from Indian Head, Saskatchewan, that in
twenty-five years of cultivation the total amount of nitrogen had
been reduced about one third, though the alternation of fallow and
crop, commonly practiced in dry-farming, did not show a greater loss
of soil nitrogen than other methods of cultivation. It must be kept
in mind that the soil of Indian Head contains from two to three
times as much nitrogen as is ordinarily found in the soils of the
Great Plains and from three to four times as much as is found in the
soils of the Great Basin and the High Plateaus. It may be assumed,
therefore, that the Indian Head soil was peculiarly liable to
nitrogen losses. Headden, in an investigation of the nitrogen
content of Colorado soils, has come to the conclusion that arid
conditions, like those of Colorado, favor the direct accumulation of
nitrogen in soils. All in all, the undiminished crop yield and the
composition of the cultivated fields lead to the belief that
soil-fertility problems under dry-farm conditions are widely
different from the old well-known problems under humid conditions.
Reasons for dry-farming fertility
It is not really difficult to understand why the yields and,
apparently, the fertility of dry-farms have continued to increase
during the period of recorded dry-farm history--nearly half a
century.
First, the intrinsic fertility of arid as compared with humid soils
is very high. (See Chapter V.) The production and removal of many
successive bountiful crops would not have as marked an effect on
arid as on humid soils, for both yield and composition change more
slowly on fertile soils. The natural extraordinarily high fertility
of dry-farm soils explains, therefore, primarily and chiefly, the
increasing yields on dry-farm soils that receive proper cultivation.
Public-domain text, read in full here on John Shaqi.
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