Abstract
Results from the biogeochemical mapping (roots of aquatic plants and Fontinalis antipyretica) conducted by the Geological Survey of Sweden (SGU) reflects the metal load of surface waters draining acid sulphate (AS) soils in Sweden. In this study, results from the biogeochemical, soil geochemical and Quaternary mapping programmes at SGU were used to investigate the impact of fine-grained deposits hosting AS soils on stream water trace element chemistry in two separate areas. In the area around Lake Mälaren, postglacial sediments contain the highest levels of most trace elements studied. Owing to the low pH of AS soils and subsequent leaching, levels of nickel (Ni), cobalt (Co), copper (Cu), sulphur (S), yttrium (Y), uranium (U), tungsten (W), and molybdenum (Mo) were significantly elevated in aquatic roots. Levels were lower in the Skellefteå area, which may be explained by lower concentrations in source deposits. Concentrations of arsenic (As) and lead (Pb) were normal or impoverished in biogeochemical samples from postglacial, finegrained sediment areas. Maps based on ratios (Ni:Pb or Y:Pb) in biogeochemical samples can, together with results from Quaternary mapping, be used to predict areas with AS soils in Sweden.;
Publisher
Agricultural and Food Science
Cited by
9 articles.
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1. Multi-element features of active acid sulfate soils across the Swedish coastal plains;Applied Geochemistry;2023-05
2. A nationwide acid sulfate soil study — A rapid and cost-efficient approach for characterizing large-scale features;Science of The Total Environment;2023-04
3. Acid sulfate soils and their impact on surface water quality on the Swedish west coast;Journal of Hydrology: Regional Studies;2022-04
4. The comparison of Cd, Cu, Fe, Mg, Mn, P, Pb, Zn concentrations in ash of the roots of some
herbaceous plant species (Filipendula ulmaria, Carex species, Urtica dioica);Baltica;2019-01-15
5. Biogeochemical mapping of stream plants to trace acid sulphate soils: a comparison between water geochemistry and metal content in macrophytes;Geochemistry: Exploration, Environment, Analysis;2013-08-16