HR: 16:15h
AN: OS14A-02 INVITED [Abstracts]
TI: Phosphorus in the ocean and marine sediments: similarities between present and past
processes
AU: * Tamburini, F
EM: federica.tamburini@erdw.ethz.ch
AF: ETH-Zentrum, Sonneggstrasse 5, Zurich, 8092
Switzerland
AB:
Because phosphorus (P) is an essential nutrient, geochemical research has focused over the years on understanding the
different aspects of the P cycle in the oceans, from the global to microbial scale. In the last 40 years, giant phosphorite
deposits were largely studied, and their episodic occurrence in the geological record was alternatively interpreted as the
product of shallow water environments, high productivity, low-sedimentation rates, and/or changes in sea level. Although
research has focused more recently on the oceanic burial fluxes and residence time of P, there is still a general agreement
on the need for more data.
Thanks to new analytical techniques, allowing the detection of small quantities of phosphate (on the order of ?mol/g), and to
the increased availability of sediment cores, P-bearing sediments have been found everywhere beneath the ocean floor. This
finding has changed our understanding of P behavior in the ocean, and is redefining the role of P as an important nutrient,
for example, over glacial-interglacial time scales. I will present glacial-interglacial reconstructions of burial and benthic
fluxes of P, with the goal of understanding to which extent the P cycle is linked to global processes. The data, averaged to
the whole ocean, indicate that burial fluxes of reactive P during glacial times are not considerably lower than during
interglacials. This observation could lead to the conclusion that no changes occurred in P cycle on glacial-interglacial
timescales and, therefore, that C cycle and climate variations were independent of P cycle.
However, when the benthic flux estimates are taken into account, a different picture arises. During low sea level periods,
the redistribution of sediments from shallow to deep waters, due to the reduction of the continental margin surface, fostered
P regeneration during settling of organic matter. Even if P burial fluxes remain fairly constant, the oceanic phosphate
inventory of glacial bottom waters was probably higher. On a different time scale, the shift in P behavior between glacial
and interglacial periods could have been promoted by conditions similar to those that led to the formation of phosphorite
deposits, which are abundant in the geological past but rare today.
DE: 4835 Inorganic marine chemistry
DE: 3022 Marine sediments--processes and transport
SC: Ocean Sciences [OS]
MN: 2004 AGU Fall Meeting