Flux data of NU2_trap (Table A1)

Romero, Oscar E;Boeckel, Babette;Donner, Barbara;Lavik, Gaute;Fischer, Gerhard;Wefer, Gerold

Description

Flux of bulk components, carbonate- and silicate-bearing skeleton organisms, and the d15N-isotopic signal were investigated on a 1-year time-series sediment trap deployed at the pelagic NU mooring site (Namibia Upwelling, ca. 29°S, 13°E) in the central Benguela System. The flux of bulk components mostly shows bimodal seasonality with major peaks in austral summer and winter, and moderate to low export in austral fall and spring. The calcium carbonate fraction dominates the export of particulates throughout the year, followed by lithogenic and biogenic opal. Planktonic foraminifera and coccolithophorids are major components of the carbonate fraction, while diatoms clearly dominate the biogenic opal fraction. Bulk d15N isotopic composition of particulate matter is positively correlated with the total mass flux during summer and fall, while negatively correlated during winter and spring. Seasonal changes in the intensity of the main oceanographic processes affecting the NU site are inferred from variations in bulk component flux, and in the flux and diversity patterns of individual species or group of species. Influence from the Namaqua (Hondeklip) upwelling cell through offshore migration of chlorophyll filaments is stronger in summer, while the winter flux maximum seems to reflect mainly in situ production, with less influence from the coastal and shelf upwelling areas. On a yearly basis, dominant microorganisms correspond well with the flora and fauna of tropical/subtropical waters, with minor contribution of near-shore organisms. The simultaneous occurrence of species with different ecological affinities mirrors the fact that the mooring site was located in a transitional region with large hydrographic variability over short-time intervals.

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Metrics

Dataset Index

95.6

FAIR Score

88%

Citations

145

Mentions

0

Metrics Over Time

Publication Details

DOI

Publisher

PANGAEA

License

Creative Commons Attribution 3.0 Unported

Assigned Domain

Subfield

Atomic and Molecular Physics, and Optics

Field

Physics and Astronomy

Domain

Physical Sciences

Confidence Score

99%

Source

Open Alex

Keywords

DEPTH, waterDATE/TIMEDate/time endDuration, number of daysSample code/labelTotal mass, flux per dayCalcium carbonate, fluxLithogenic, fluxOpal, fluxCarbon, organic, particulate, fluxCalcium carbonate, flux of total fluxLithogenic, flux of total fluxOpal, flux of total fluxCarbon, organic, particulate, flux of total fluxδ15N, gasCoccolith, fluxesEmiliania huxleyi, fluxElphidium advenumCalcidiscus leptoporus, fluxCalcidiscus leptoporusSyracosphaera lamina, fluxSyracosphaera laminaGladiolithus flabellatus, fluxGladiolithus flabellatusCoccospheres, fluxEmiliania huxleyiOolithotus fragilisOolithotus fragilis, fluxForaminifera, planktic, fluxGloborotalia inflataGloborotalia inflata, fluxNeogloboquadrina pachyderma dextralNeogloboquadrina pachyderma dextral, fluxGlobigerina bulloidesGlobigerina bulloides, fluxOrbulina universaOrbulina universa, fluxGlobigerinoides ruber whiteGlobigerinoides ruber white, fluxDiatom valves, fluxFragilariopsis doliolusFragilariopsis doliolus, fluxActinocyclus curvatulusActinocyclus curvatulus, fluxAzpeitia spp.Azpeitia spp., fluxCoscinodiscus radiatusCoscinodiscus radiatus, fluxActinocyclus octonariusActinocyclus octonarius, fluxThalassionema nitzschioides var. inflataThalassionema nitzschioides, fluxTrap, sedimentCalculatedCalculated, see reference(s)Element analyser CHN, HeraeusOpal, auto analysis (Müller & Schneider, 1993)Mass spectrometer Finnigan Delta PlusM20/2Meteor (1986)Center for Marine Environmental Sciences (MARUM)

Normalization Factors

FT

57.69

CTw

1.00

MTw

1.00