The Elements of Agriculture: A Book for Young Farmers, with Questions Prepared for the Use of SchoolsWaring, George E. (George Edwin)
Science
The Elements of Agriculture: A Book for Young Farmers, with Questions Prepared for the Use of Schools
Waring, George E. (George Edwin)
Agriculture
It will be recollected that, in addition to its mineral portions, the
soil contains organic matter in varied quantities. It may be fertile
with but one and a half per cent. of organic matter, and some peaty
soils contain more than fifty per cent. or more than one half of the
whole.
The precise amount necessary cannot be fixed at any particular sum;
perhaps five parts in a hundred would be as good a quantity as could be
recommended.
The soil obtains its organic matter in two ways. First, by the decay of
roots and dead plants, also of leaves, which have been brought to it by
wind, etc. Second, by the application of organic manures.
[When organic matter decays in the soil, what becomes of it?
Is charcoal taken up by plants?
Are humus and humic acid of great practical importance?]
When a crop of clover is raised, it obtains its carbon from the
atmosphere; and, if it be plowed under, and allowed to decay, a portion
of this carbon is deposited in the soil. Carbon constitutes nearly the
whole of the dry weight of the clover, aside from the constituents of
water; and, when we calculate the immense quantity of hay, and roots
grown on an acre of soil in a single season, we shall find that the
amount of carbon thus deposited is immense. If the clover had been
removed, and the roots only left to decay, the amount of carbon
deposited would still have been very great. The same is true in all
cases where the crop is removed, and the roots remain to form the
organic or vegetable part of the soil. While undergoing decomposition, a
portion of this matter escapes in the form of gas, and the remainder
chiefly assumes the form of carbon (or charcoal), in which form it will
always remain, without loss, unless driven out by fire. If a bushel of
charcoal be mixed with the soil now, it will be the same bushel of
charcoal, neither more nor less, a thousand years hence, unless some
influence is brought to bear on it aside from the growth of plants. It
is true that, in the case of the decomposition of organic matter in the
soil, certain compounds are formed, known under the general names of
_humus_ and _humic acid_, which may, in a slight degree, affect the
growth of plants, but their practical importance is of too doubtful a
character to justify us in considering them. The application of manures,
containing organic matter, such as peat, muck, animal manure, etc.,
supplies the soil with carbon on the same principle, and the decomposing
matters also generate[Q] carbonic acid gas while being decomposed. The
agricultural value of carbon in the soil depends (as we have stated),
not on the fact that it enters into the composition of plants, but on
certain other important offices which it performs, as follows:--
[On what does the agricultural value of the carbon in the soil
depend?
Why does it make the soil more retentive of manure?
What is the experiment with the barrels of sand?]
1. It makes the soil more retentive of manures.
Public-domain text, read in full here on John Shaqi.
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