Late Miocene Mediterranean desiccation: topography and significance of the 'Salinity Crisis' erosion surface on-land in southeast Spain: Comment
Publication date
2000-02-21
Authors
Fortuin, A.R.
Krijgsman, W.
Hilgen, F.J.
Sierro, F.J.
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Abstract
One of the most striking aspects of the Mediterranean
"Messinian Salinity Crisis" as observed in landbased
sections, is the basin-wide synchronicity in
facies change (Krijgsman et al., 1999a). The Messinian
succession of the Caltanisetta Basin on Sicily
serves as the classical standard for these facies
changes, which can also be recognised elsewhere in
the Mediterranean, i.e. on Cyprus, Crete, northern
Italy and southern Spain. It starts with an alternation
of open marine marls and sapropels, passes via diatomites
into evaporitic limestones, gypsum and halite of
the "Lower Evaporites" (of marine origin) and,
following an erosional unconformity, ends with the
"Upper Evaporites" and associated fresh to brackish
water deposits of the Lago Mare that are essentially of
non-marine origin and contain a caspi-brackish ostracode
fauna. The erosional unconformity between the
"Lower and Upper Evaporites" is assumed to reflect
the phase of most extreme sea level drawdown in the
Mediterranean that caused significant erosion and
localised channel entrenchment on the continental
shelves and slopes.