HR: 08:30h
AN: H41B-01 INVITED [Abstracts]
TI: Soil as the Central Link in the Hydrological Cycle
AU: * Hillel, D
EM: d_hillel@netvision.net.il
AF: Columbia Univ., Center for Climate Systems Research, New York, NY 10027
AB:
We present an overview of the function fulfilled by the soil in the chain of processes constituting the hydrological cycle in the terrestrial domain. Considering the height of the atmosphere, the thickness of the earth's rock mantle, and the depth of the ocean, we note that the soil is amazingly thin -- typically not much more than one meter thick. Yet, with its
sponge-like porosity, internal surface area, and finite capacities to absorb, store, and transmit water and solutes, the soil determines the fate of precipitation reaching the ground surface - whether it flows over the land as runoff, is detained and made available to plant roots, or seeps downward to an aquifer. Without the soil as a buffer, rainfall would produce violent floods rather than sustained stream-flow. The soil also acts as a living filter, in which dissolved and suspended
constituents are retained or transmuted into nutrients for the continual regeneration of life. Energy as well as matter is in constant flux as solar radiation is absorbed by the soil and growing plants and as heat is exchanged in evaporation and
condensation as well as in biochemical reactions. Plant leaves absorb carbon dioxide from the air and synthesize it with
soil-derived water to form the primary compounds of life, while oxygen emitted by the leaves makes the air breathable for
animals, which in turn fertilize the plants. However unique in form and function, the soil is not an isolated body but
interacts with the overlying atmosphere and underlying strata, and with surface and underground bodies of water. Especially
important is the interrelation between the soil and the climate, enhancing or mitigating the greenhouse effect via the soil's uptake or release of radiatively active gases (carbon dioxide, methane, and nitrous oxide). For all these reasons, it is
vital that we give full consideration to the soil's role in the context of hydrology. The problem to overcome, however, is
the disjunct between the characteristic spatial scales of the two disciplines. Whereas hydrology typically operates on the
watershed level, traditional soil science has dealt with phenomena on the scale of a vertical profile or a restricted field.
Recent efforts to define soil processes in a catenary sequence in the landscape and concurrent efforts to define the spatial
variability of soil properties offer a way to close the gap and thus integrate the sister sciences.
DE: 1800 HYDROLOGY
DE: 1866 Soil moisture
DE: 1875 Unsaturated zone
DE: 1899 General or miscellaneous
SC: Hydrology [H]
MN: 2005 Joint Assembly