Effect of nutrient enrichment on the distribution and sedimentation of polychlorinated biphenyls (PCBs) in seawater

被引:1
作者
A. Andersson
P. Wallberg
J. Nordbäck
P.-A. Bergqvist
E. Selstam
机构
来源
Hydrobiologia | 1998年 / 377卷
关键词
microbial food web; lipids; polychlorinated biphenyl's; PCB; residence time; mesocosm experiments;
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摘要
The effect of nutrient enrichment on the distribution of polychlorinated biphenyl's (PCBs) in the microbial food web and the residence time of PCBs in seawater was studied in an experimental mesocosm system. Two 5 m high temperature and light controlled mesocosm tubes (⊘ = 0,5 m) were filled with seawater from the northern Baltic Sea. Inorganic phosphorus and nitrogen were added daily to one mesocosm, while the other served as a control. Experiments were conducted at 5, 10 and 20°>C. Three 14C-labelled PCBs of different degree of chlorination were added to subsamples of the mesocosms: 4 chlorobiphenyl (MCB), IUPAC # 3; 2,2′,5,5′-tetrachlorobiphenyl (TCB), IUPAC # 52 and 2,2′, 4,4′,5,5′-hexachlorobiphenyl (HCB) IUPAC # 153. The biomasses and growth rates of the microorganisms as well as the sedimentation rate of particulate organic material increased with nutrient enrichment. The size distribution of the microorganisms changed with nutrient status, from dominance of picoplankton (< 2 μm) in the control towards increased importance of micro (> 10 μm) and nanoplankton (2– 10 μm) in nutrient enrichment. The specific growth rate of the bacterial community was found to be more temperature dependent than that of the phytoplankton community. The relative proportion of PCBs in the >2 μm fraction was observed to be in the order MCB < TCB < HCB, while the opposite distribution prevailed in the < 2 μm fraction. We hypothesize that this is due to the combined effect of the different Kow values of the PCBs and a different composition of the particulate organic carbon in the > 2 μm and < 2 μm fractions (e.g. different lipid composition). The residence time of the PCBs in the mesocosm generally decreased with nutrient enrichment, but was dependent on the degree of chlorination of the PCB. Our results indicate that the transport of organic pollutants up through the food web is more important in nutrient poor than in nutrient rich waters and that the importance of sedimentation is higher in eutrophic ecosystems.
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页码:45 / 56
页数:11
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共 68 条
[1]  
Andersson A.(1993)Vertical transport of lipid in seawater Mar. Ecol. Prog. Ser. 98 149-155
[2]  
Selstam E.(1988)Major role of bacteria in biogeochemical fluxes in the ocean's interior Nature 332 441-443
[3]  
Hagström Å.(1994)Partitioning of 14C-labelled 2,2′, 4,4′-tetrachlorobiphenyl between water and fish lipids Envir. Toxicol. Chem. 13 1577-1580
[4]  
Cho B.(1957)A simple method for the isolation and purification of total lipids from animal tissues J. Biol. Chem. 226 497-509
[5]  
Azam F.(1982)Thymidine incorporation as a measure of heterotrophic bacterioplankton production in marine surface waters: evaluation and field results Mar. Biol. 66 109-120
[6]  
Ewald G.(1990)Light and nutrient limitation of sea-ice microalgae (Hudson Bay, Canadian Arctic) J. Phycol. 26 220-232
[7]  
Larsson P.(1977)Use of nucleopore filters for counting bacteria by fluorescence microscopy Appl. Envir. Microbiol. 33 1225-1228
[8]  
Folch J.(1995)Relative importance of trophic and direct pathways on PCB contamination in the rotifer species Hydrobiologia 313 249-257
[9]  
Lees M.(1992) (Pallas) Envir. Sci. Technol. 26 346-352
[10]  
Stanley G. H. S.(1995)Lake productivity and water chemistry as governors of the uptake of persistent pollutants in fish Ophelia 41 153-172