Phytoplankton Sensitivity to Heavy Metals in Baltic Coastal Lakes.
Monika Szymańska-WalkiewiczKatarzyna Glińska-LewczukPaweł BurandtKrystian ObolewskiPublished in: International journal of environmental research and public health (2022)
This study aimed to compare concentrations of chlorophyll-a between individual phytoplankton groups for four shallow Baltic coastal lakes, varying in type of connection with the sea. For two years, the research focused on quantifying the effects of abiotic factors-concentrations of heavy metals (Ba, Bi, Cr, Cu, Mn, Fe, Ni, Pb, and Zn) and hydrological connectivity-on phytoplankton composition, biomass, and photosynthetic activity. Our results show that hydrological factors are the main predictors of phytoplankton structure. The lakes differed in salinity: freshwater vs. brackish vs. transitional lakes. Irrespective of lake type, the dominant group was that of Cyanobacteria (~80%), but their percentage contribution was lower in the brackish lake. Baltic seawater intrusion resulted in a decrease in heavy-metal concentrations in lake water for Fe, Zn, Pb, and Bi. Redundancy analysis (RDA) suggested positive effects of some heavy metals on the biomass of the Chlorophyta and Bacillariophyta. For the Cryptophyta only, a slight decrease in biomass was linked with increased metal concentrations in open water.
Keyphrases
- heavy metals
- water quality
- risk assessment
- health risk assessment
- health risk
- metal organic framework
- wastewater treatment
- minimally invasive
- microbial community
- aqueous solution
- mass spectrometry
- transcription factor
- climate change
- molecularly imprinted
- room temperature
- multiple sclerosis
- ionic liquid
- resting state
- simultaneous determination
- functional connectivity