It appears, then, that dead leaves, etc., slowly change into a black or
brown substance, shrinking very much as they do so. For this reason
they do not go on piling up year after year till finally they fill the
wood; instead they decay or "rot down" to form leaf mould: the big pile
of the autumn has changed by the next summer to a thin layer which
mixes with the soil.
We want now to see what happens on a common or a piece of waste ground
that is not cultivated. Grass and wild plants grow up in summer and
die during winter; their stems and roots are not taken away, but
clearly they do not remain where they are, because next year new plants
grow up. We may suppose that the dead roots and stems decay like the
leaves did, and change to a brown or black mould. It looks as if we
are right, because on digging a hole or examining the side of a freshly
cut ditch we shall find that the top layer of soil, just so far as the
living roots go, is darker in colour than the layer below.
We must, however, try and get some more proof, and to do this we must
study some of our specimens a little {35} more closely. We will take
some leaf mould, some black mould from a hollow in the bank, some from
a tree, soils from a wood, a well-manured garden, a field and some
subsoil. All except the subsoil have a dark colour, but the wood and
garden soils are probably darker than the field soil. Now weigh out 2
grains of each of these and heat in a dish as you did the soil on p. 4;
notice that all except the subsoil go black and then begin to smoulder,
but the moulds smoulder more than the soils. Then weigh again and
calculate how much has burnt away in each case. Here are some results
that have been obtained at Harpenden:--
Amount Percentage
Colour before of loss on Colour of
burning smouldering burning residue
Leaf mould dark brown much 78.3 light grey
Mould from
dead tree black much 60.6 light grey
Soil from
wood dark brown less 43.4[1] white
Soil from
garden almost black less 10.1 red
Soil from
field brownish still less 5.4 red
Subsoil red none 2.0 red
The mould nearly all burns away and its dark colour entirely goes, so
also does the dark colour of the soil.
Our supposition explains why, in the case of soils, the less the
blackness, the less the loss on burning. If the {36} brown or black
combustible part is really mould formed by the decay of plant roots,
etc., then we should expect that as the percentage of mould in the soil
increased, so its blackness would increase and its loss on burning
would become greater. This actually happens.
Public-domain text, read in full here on John Shaqi.
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