A treatise on the origin, progress, prevention, and cure of dry rot in timber : $b with remarks on the means of preserving wood from destruction by sea worms, beetles, ants, etc.Britton, Thomas Allen
Science
A treatise on the origin, progress, prevention, and cure of dry rot in timber : $b with remarks on the means of preserving wood from destruction by sea worms, beetles, ants, etc.
Britton, Thomas Allen
Dry-rot; Wood -- Preservation
In considering the subject of Timber trees, we commence with their
Elementary Tissues, and first in order is the _Formative Fluid_, which
is the sole cause of production of every tissue found in trees. It
is semi-fluid, and semi-transparent, and in this condition is found
abundantly between the bark and the wood of all trees in early spring;
and thus separates those parts so as to permit the bundles of young wood
to pass down from the leaves, and thus enable the tree to grow. It is
under these conditions that the woodman strips the bark from trees which
are to be cut down, since then it does not adhere to the wood.
The first step in the formation of any tissue from the formative fluid
is the production of a solid structureless fabric called _Elementary
Membrane_, and a modification of that fabric termed _Elementary Fibre_.
The structures which are produced from the above-mentioned “raw
material” are very varied in appearance, and are called _Cellular
Tissues_, to signify that they are made up of hollow cells. The spaces
between the cells are called _Intercellular Spaces_, which are of vital
importance, as they contain air. _Woody fibre_ constitutes the mass of
the stems of our forest trees. Its peculiar characteristic is that of
great tenacity, and power of resistance, and for this its structure is
admirably adapted: it consists of bundles of very narrow fibres, with
tapering extremities, and is so placed from end to end, that the pointed
ends overlap each other. Each fibre is very short, and the partitions
which result from the apposition of the fibres, end to end, do not
interfere with the circulation through them. The tube is not composed
of simple thin membranes only; but in addition has a deposit within it,
which, without filling the tube, adds very greatly to the strength of
the fibre: an arrangement whereby the greatest strength and power of
resistance and elasticity shall be obtained; and, at the same time, the
functions of circulation uninterruptedly maintained. The strength is
mainly due to the shortness of each fibre, the connection by opposite
ends of many fibres, almost in one direct line, from the root upwards;
and lastly, to the deposit on the inner side of the membrane. The uses
of woody fibre are very varied and most important; it is the chief organ
of circulation in all wooded plants, and, for this purpose, pervades
the plant from the root to the branches. The current in this tissue
is directed upwards from the shoot, through the stem to the leaves,
and downwards from the leaves through the bark to the root. Thus, its
current has a twofold tendency; the ascending and chief one being for
the purpose of taking the raw, or what is called the _common sap_, from
the ground to be digested in the leaves, and the descending being devoted
to the removal from the leaves of the digested, or what is termed the
_proper sap_, to be applied to the purposes of the tree, and also of the
Public-domain text, read in full here on John Shaqi.
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