HR: 1340h
AN: V33A-1162 [Abstracts]
TI: Sulfur Earth
AU: * de Jong, B H
EM: bernard@geo.uu.nl
AF: Utrecht University, Budapestlaan 4, Utrecht, 3584CD, Netherlands
AB:
Variations in surface tension affect the buoyancy of objects floating in a liquid. Thus an object floating in water will
sink deeper in the presence of dishwater fluid. This is a very minor but measurable effect. It causes for instance
ducks to drown in aqueous solutions with added surfactant. The surface tension of liquid iron is very strongly
affected by the presence of sulfur which acts as a surfactant in this system varying between 1.9 and 0.4 N/m at 10
mass percent Sulfur (Lee & Morita (2002), This last value is inferred to be the maximum value for Sulfur inferred to
be present in the liquid outer core. Venting of Sulfur from the liquid core manifests itself on the Earth surface by
the 105 to 106 ton of sulfur vented into the atmosphere annually (Wedepohl, 1984). Inspection of surface Sulfur
emission indicates that venting is non-homogeneously distributed over the Earth's surface. The implication of
such large variation in surface tension in the liquid outer core are that at locally low Sulfur concentration, the liquid
outer core does not wet the predominantly MgSiO3 matrix with which it is in contact. However at a local high in
Sulfur, the liquid outer core wets this matrix which in the fluid state has a surface tension of 0.4 N/m (Bansal &
Doremus, 1986), couples with it, and causes it to sink. This differential and diapiric movement is transmitted
through the essentially brittle mantle (1024 Pa.s, Lambeck & Johnson, 1998; the maximum value for ice being
about 1030 Pa.s at 0 K, in all likely hood representing an upper bound of viscosity for all materials) and manifests
itself on the surface by the roughly 20 km differentiation, about 0.1 % of the total mantle thickness, between
topographical heights and lows with concomitant lateral movement in the crust and upper mantle resulting in thin
skin tectonics. The brittle nature of the medium though which this movement is transmitted suggests that the
extremes in topography of the D" layer are similar in range to those observed on the Earth's surface and are
mimicked by lows under the oceans and highs under the altiplanos. Careful and area selective S wave core
mantle ellipsometry might be able to discern these core-mantle topographic variations.
As such this process demonstrates the validity of the Gaia hypothesis enunciated by Baas Becking(1931) that no
ecological niche on our planet is closed off from other niches "nothing in the world is single".
DE: 1038 Mantle processes (3621)
DE: 3621 Mantle processes (1038)
DE: 8125 Evolution of the Earth (0325)
SC: Volcanology, Geochemistry, Petrology [V]
MN: 2007 Fall Meeting