首页 | 本学科首页   官方微博 | 高级检索  
     


Vertical Carbon Flux of Biogenic Matter in a Coastal Area of the Aegean Sea: The Importance of Appendicularians
Authors:S. Zervoudaki  C. Frangoulis  C. Svensen  E. D. Christou  E. Tragou  E. G. Arashkevich  T. N. Ratkova  Ι. Varkitzi  E. Krasakopoulou  K. Pagou
Affiliation:1. Institute of Oceanography, Hellenic Centre for Marine Research, P.O. Box 712, 19013, Anavissos, Greece
2. Faculty of Bioscience, Fisheries and Economics, UiT—The Arctic University of Norway, 9037, Troms?, Norway
3. Department of Marine Sciences, University of the Aegean, Aegean, Greece
4. P.P. Shirshov Institute of Oceanology, Russian Academy of Sciences, Nakhimovsky Av. 36, 117997, Moscow, Russia
Abstract:This work focuses on the direct measurement of the vertical flux of appendicularian houses in order to assess their importance as a component of vertical carbon flux in coastal areas. For this purpose, arrays of cylindrical sediment traps were deployed for 5 to 8 days at two depths in a coastal area of the northern Aegean Sea (inner Thermaikos Gulf) during spring. The data support the contention that resuspension was minimal. Fecal pellet (FP) production and grazing experiments with the dominant copepods (Acartia clausi) were conducted to provide additional information on the potential FP contribution to the total carbon flux. The magnitude of the vertical flux of particulate organic carbon (POC) ranged between 310 and 724 mg C m?2 day?1. The proportion of phytoplankton carbon in the POC vertical flux was up to 45 %. The contribution of zooplankton FPs to the total carbon never exceeded 5 %. On the contrary, appendicularian houses were an essential component of the biogenic carbon flux contributing up to 55.3 % of the total vertical carbon flux. Consequently, both phytoplankton and appendicularian houses contributed equally to the biogenic carbon flux exceeding 80 % of the total sinking POC. Taking into account the sinking speed of the particles and the environment in the area, all this carbon probably reaches the seafloor, thus indicating a strong pelagic–benthic coupling.
Keywords:
本文献已被 SpringerLink 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号