Winter and Spring Characterization of Particulate and Dissolved Organic Matter in the Danube–Black Sea Mixing Zone

The mixing zone between the Danube and the Black Sea was investigated at the front of the Chilia and Sulina branches of the Danube delta, in April–May 1997, during two periods corresponding to conditions at the end of winter (Chilia and Sulina branches) and the beginning of spring (Sulina branch). T...

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Veröffentlicht in:Estuarine, coastal and shelf science coastal and shelf science, 2002-03, Vol.54 (3), p.355-367
Hauptverfasser: Saliot, A., Derieux, S., Sadouni, N., Bouloubassi, I., Fillaux, J., Dagaut, J., Momzikoff, A., Gondry, G., Guillou, C., Breas, O., Cauwet, G., Deliat, G.
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Sprache:eng
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Zusammenfassung:The mixing zone between the Danube and the Black Sea was investigated at the front of the Chilia and Sulina branches of the Danube delta, in April–May 1997, during two periods corresponding to conditions at the end of winter (Chilia and Sulina branches) and the beginning of spring (Sulina branch). The distribution of the organic matter in the particulate, colloidal and truly dissolved pools along the salinity gradient was characterized at both global and molecular levels using biochemical parameters. The distribution of particulate organic carbon (POC) paralleled that of total suspended matter in winter, whereas decoupling was observed in spring, reflecting active biological mechanisms in the mixing zone off the Sulina branch during this period. This is supported by distribution patterns of polyunsaturated fatty acids (PUFA) and branched fatty acids (BrFA), which are indicators of phytoplankton and bacteria activities, respectively. The δ 13C isotopic signature of POC in the Danube–Black Sea mixing zone varied of between −29·1 and −24·6‰, which is consistent with the usual temperate range of estuarine systems. In spring, the observed shift towards lower values in the area of salinity 0–5 suggested a gradual change in the composition of POC, such as that caused by cell lysis of riverine planktonic populations induced by a salinity increase. A subsequent increase of δ 13C values towards higher salinities indicated phytoplankton growth in the estuarine/marine zone, as assessed by high concentrations of PUFA. Indirect evidence of sedimentation of terrestrial particles in the upper part of the salinity gradient in the range of 2–3 was suggested by the decrease of the content of particles and POC in fatty acids (C 24–C 32) and n-alkanes (C 25–C 35), both constituents of cuticular waxes of higher plants. A tight coupling was suggested between phytoplankton and bacteria by similar distributions of PUFA and BrFA along the salinity gradient. The distribution of dissolved organic carbon (DOC) varied according to the season. In spring, the DOC concentrations remained constant across the salinity gradient in front of the Sulina branch at about 2·7 mg l −1, whereas higher concentrations, >4 mg l −1, were observed in winter at stations located in the low salinity (2–4 and 5–8) area. A few data were obtained for δ 13C of the DOC pool, with an average of −26·9‰ in the Danube River end-member and values close to those of POC off the various branches. The low molecular weigh
ISSN:0272-7714
1096-0015
DOI:10.1006/ecss.2000.0652