Soils, their formation, properties, composition, and relations to climate and plant growth in the humid and arid regionsHilgard, Eugene W. (Eugene Woldemar)
Science
Soils, their formation, properties, composition, and relations to climate and plant growth in the humid and arid regions
Hilgard, Eugene W. (Eugene Woldemar)
Soils
It is hardly necessary to insist farther upon the need of the
examination of land to be occupied, for the existence of hardpan or
other faulty subsoil, which may totally defeat for the time being the
farmer’s efforts, or make him lose his investment in plantations after
a few years. Probing by means of the steel rod described above (p. 177)
or boring with a post-hole auger; or finally, if necessary, digging a
pit to the proper depth (from four to six feet in the arid region),
should precede every purchase of new or unexplored agricultural land.
_Marly Substrata._—Among the causes of failure occasionally found in
the case of the “going-back” of orchards, is the occurrence of strongly
calcareous or marly substrata, at depths which in the humid region
would not be reached by the roots, but in the course of a few years are
inevitably penetrated by the roots of trees in the arid region. Then
there appears a stunting of the growth, and sometimes a yellowing of
leaves, or chlorosis, due to the influence of excessive calcareousness
at the depth of four or five feet. For this of course there is no
remedy except the planting of crops which, like the mulberry, Texas
grapes, Chickasaw plum and others, are at home on such lands; which in
the Eastern states are naturally occupied by the crab apple, honey
locust and wild plums.
CHAPTER XI.
THE WATER OF SOILS.
HYGROSCOPIC AND CAPILLARY MOISTURE.
When it is remembered that from 65 to over 90% of the fresh substance
of plants consists of water, the importance of an adequate and regular
supply of the same to growing plants is readily understood. But it
seems desirable, before discussing the relations of water to the soil
and to plant life, to consider first the physical peculiarities which
distinguish it from nearly all other substances known. That it is
colorless, tasteless, inodorous, and also chemically neutral, alone
constitutes a group of properties scarcely found in any other fluid.
But its special adaptation to its functions in relation to vegetable
and animal life are much more fundamental, as is shown in the table of
its physical constants as compared with other well-known substances,
given below.
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