Dynamics of total suspended matter and phytoplankton loads in the river Elbe

被引:15
作者
Hillebrand, Gudrun [1 ]
Hardenbicker, Paulin [2 ]
Fischer, Helmut [2 ]
Otto, Wilfried [1 ]
Vollmer, Stefan [1 ]
机构
[1] Fed Inst Hydrol, Dept Groundwater Geol River Morphol, Koblenz, Germany
[2] Fed Inst Hydrol, Dept Ecol Interact, Koblenz, Germany
关键词
Long-term trends; Phytoplankton; Seasonality; Suspended matter load; Suspended sediments; SEDIMENT; TRANSPORT; BIOMASS; SYSTEMS; GROWTH; RHINE; WATER; CONTAMINANTS; ECOLOGY; CLIMATE;
D O I
10.1007/s11368-018-1943-1
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Purpose Identifying sources and fluxes of suspended matter within the catchment is vitally important for the water quality of rivers and for establishing sediment management plans. Constituents of suspended particles are of abiotic and biotic origin. In the Elbe, the biotic fraction of suspended particles is mainly composed of phytoplankton biomass. In this study, total seston and phytoplankton are analyzed for their seasonality, their interdependence and temporal trends over three or five decades, respectively. Materials and methods The biotic load was separated from the total suspended matter load, and time series of total suspended substances (seston) (1964 to 2015) and chlorophyll a values (1985 to 2015) were analyzed. Our analyses focused on the seasonal dynamics, long-term trends, and the correlation to hydrological events. Results and discussion The mean share of phytoplankton in total seston accounted for 24% in summer months (April-September), with a negative correlation between discharge and total seston, and 11% in winter months (October-March), with a weak positive correlation between discharge and total seston. The long-term trend of seston load was decreasing, while phytoplankton load did not show a significant trend. Conclusions Autochthonous biogenic portions should not be neglected in the budget of total suspended matter loads in the Elbe catchment. Our results indicate that land-use and industrial changes subsequent to the German reunification mainly caused the observed trend. Phytoplankton growth superimposes the seasonal dynamics of seston in summer, whereas in the long term, decreasing mineral fraction dominates the significantly decreasing trend.
引用
收藏
页码:3104 / 3113
页数:10
相关论文
共 68 条
[51]  
Newson M., 2007, RIVER RES APPL, V23, P123
[52]  
Pettitt A. N., 1979, Applied Statistics, V28, P126, DOI 10.2307/2346729
[53]  
Pohlert T, 2011, TREND NONPARAMETRIC
[54]   Trends of persistent organic pollutants in the suspended matter of the River Rhine [J].
Pohlert, Thorsten ;
Hillebrand, Gudrun ;
Breitung, Vera .
HYDROLOGICAL PROCESSES, 2011, 25 (24) :3803-3817
[55]  
Pusch M., 2006, Stoffdynamik und Habitatstruktur in der Elbe
[56]   Influence of global change on phytoplankton and nutrient cycling in the Elbe River [J].
Quiel, Katrin ;
Becker, Annette ;
Kirchesch, Volker ;
Schoel, Andreas ;
Fischer, Helmut .
REGIONAL ENVIRONMENTAL CHANGE, 2011, 11 (02) :405-421
[57]  
Reynolds C. S., 1996, Archiv fuer Hydrobiologie Supplement, V113, P161
[58]  
Ritz S, 2016, THESIS, P136
[59]  
Schol A., 2014, Kuste, P203
[60]  
Skoog DA, 2003, FUNDAMENTALS ANAL CH