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Sediment trap studies

Sediment trap studies in the open ocean show that the flux of organic carbon at any depth is directly proportional to the rate of primary productivity in the surface water and inversely proportional to the depth of the water column (Suess, 1980) ... [Pg.252]

Evidence for seasonal fluctuations in the export of sinking POM from the euphotic zone has been obtained from sediment trap studies. As shown in Figure 23.3, seasonal variations in the flux of sinking biogenic hard and soft parts are detectable even in the deep zone. Furthermore, interannual variations in POC and PIC production lead to similar shifts in the deepwater fluxes of these particles. [Pg.621]

Broman D, Naef C, Zebuehr Y, et al. 1989. The composition, distribution, and flux of PCDDs and PCDFs in settling particulate matter (SPM) A sediment trap study in the northern Baltic. Chemosphere 19 445-450. [Pg.593]

The most important contribution of sediment trap studies to the chemical perspective of oceanography is the vast amount that has... [Pg.190]

TOC, TN, and TP. Data from the sediment trap study have been used to characterize the... [Pg.409]

Struck, U., Pollehne, E, Bauerfeind, E., v. Bodungen, B., 2004. Sources of nitrogen for the vertical particle flux in the Gotland Sea (Baltic Proper) results from sediment trap studies. Journal of Marine Systems, 45, 91-101. [Pg.479]

Daily gross deposition (0.3 cm/day, sediment trap studies)... [Pg.275]


See other pages where Sediment trap studies is mentioned: [Pg.503]    [Pg.439]    [Pg.3247]    [Pg.3249]    [Pg.3249]    [Pg.3250]    [Pg.3250]    [Pg.3251]    [Pg.4485]    [Pg.384]    [Pg.404]    [Pg.410]    [Pg.439]    [Pg.438]    [Pg.341]    [Pg.336]    [Pg.409]   
See also in sourсe #XX -- [ Pg.384 ]




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