HR: 0800h
AN: PP51B-1336 [Abstracts]
TI: Radiolarian and Sedimentologic Paleoproductivity Proxy Record From the Benguela Upwelling System, DSDP
Site 532, 0-6 Ma
AU: Bittniok, B
EM: beatrice.bittniok@museum.hu-berlin.de
AF: Museum f. Naturkunde, Invalidenstraáe 43, Berlin, 10115
Germany
AU: * Lazarus, D B
EM: david.lazarus@rz.hu-berlin.de
AF: Museum f. Naturkunde, Invalidenstraáe 43, Berlin, 10115
Germany
AU: Diester-Haass, L
EM: A.L.Haass@t-online.de
AF: Universitaet des Saarlandes, Universitaet, Saarbruecken, 66041
Germany
AU: Billups, K
EM: kbillups@udel.edu
AF: University of Delaware, 700 Pilottown Rd, Lewes, DE 19958
United States
AU: Meyers, P
EM: pameyers@umich.edu
AF: University of Michigan, 425 E. University Ave, Ann Arbor, MI 48109
United States
AU: Kiessling, W
EM: wolfgang.kiessling@museum.hu-berlin.de
AF: Museum f. Naturkunde, Invalidenstraáe 43, Berlin, 10115
Germany
AB:
The Neogene history of the Benguela upwelling system is fundamental to better understand both regional climate change and how
the global ocean cycles nutrients, including carbon. We examined the 0-6 my record of the system at ca. 400 kyr spacing from
Walvis Ridge DSDP Leg 75 Site 532.
More than 70 radiolarian taxa were counted and two indices computed: a water depth ratio index reflecting mid water export
productivity, and the URI index of species that are biogeographically restricted to tropical upwelling regions. Both proxies
have been applied so far only to the late Pleistocene. Other proxies measured on the samples include BFAR, TOC, % and MAR
carbonate, bulk opal and radiolarian presevation (semiquantitative), foraminiferal dissolution indices, and stable isotopes
of oxygen and carbon.
The radiolarian water depth index, and to a lesser degree the URI, show gradually increasing productivity in the early
Pliocene and high productivity through the late Pleistocene. This general productivity pattern for the region has been
established by numerous prior studies. The radiolarian water depth index is strongly correlated to TOC, and importantly is
not affected by low opal concentration and poor radiolarian preservation in the basal Pliocene and late Pleistocene.
Carbonate, and carbonate microfossil based indices such as BFAR by contrast show largely inverse trends to radiolarians and
TOC, but are interpreted as being predominantly dissolution controlled, as indicated by the carbonate dissolution proxies.
Our results show that radiolarian faunas yield useful productivity proxies in these upwelling sediments as far back as the
latest Miocene. Further, radiolarian based productivity proxies are relatively robust to preservation or the supply of silica
to surface waters, which is thought to affect bulk opal based measures of productivity in the region.
DE: 4806 Carbon cycling
DE: 4855 Plankton
DE: 4863 Sedimentation
DE: 4267 Paleoceanography
DE: 4279 Upwelling and convergences
SC: Paleoceanography and Paleoclimatology [PP]
MN: 2004 AGU Fall Meeting