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RESEARCH PRODUCT
Elimination of cyanobacteria and microcystins in irrigation water—effects of hydrogen peroxide treatment
Kerstin HäggqvistSauli JaakkolaLisa SpoofTeija KirkkalaZorica SvirčevZorica SvirčevJussi MeriluotoJussi MeriluotoTerhi KirkkalaAnne-mari VenteläTamara Važićsubject
CyanobacteriaIrrigationAgricultural IrrigationMicrocystinsHydrogenHealth Toxicology and Mutagenesis0208 environmental biotechnologychemistry.chemical_element02 engineering and technologyMicrocystin010501 environmental sciencesCyanobacteriaWaste Disposal Fluid01 natural scienceschemistry.chemical_compoundPhytoplanktonAnimalsHumansEnvironmental ChemistryEcotoxicologyHydrogen peroxideFinland0105 earth and related environmental scienceschemistry.chemical_classificationbiologyfungiSpinachHydrogen PeroxideGeneral MedicineIrrigation waterbiology.organism_classificationPollution6. Clean water020801 environmental engineeringLakeschemistryEnvironmental chemistrySpinachWater MicrobiologyResearch Articledescription
AbstractCyanobacterial blooms pose a risk to wild and domestic animals as well as humans due to the toxins they may produce. Humans may be subjected to cyanobacterial toxins through many routes, e.g., by consuming contaminated drinking water, fish, and crop plants or through recreational activities. In earlier studies, cyanobacterial cells have been shown to accumulate on leafy plants after spray irrigation with cyanobacteria-containing water, and microcystin (MC) has been detected in the plant root system after irrigation with MC-containing water. This paper reports a series of experiments where lysis of cyanobacteria in abstracted lake water was induced by the use of hydrogen peroxide and the fate of released MCs was followed. The hydrogen peroxide–treated water was then used for spray irrigation of cultivated spinach and possible toxin accumulation in the plants was monitored. The water abstracted from Lake Köyliönjärvi, SW Finland, contained fairly low concentrations of intracellular MC prior to the hydrogen peroxide treatment (0.04 μg L−1 in July to 2.4 μg L−1 in September 2014). Hydrogen peroxide at sufficient doses was able to lyse cyanobacteria efficiently but released MCs were still present even after the application of the highest hydrogen peroxide dose of 20 mg L−1. No traces of MC were detected in the spinach leaves. The viability of moving phytoplankton and zooplankton was also monitored after the application of hydrogen peroxide. Hydrogen peroxide at 10 mg L−1 or higher had a detrimental effect on the moving phytoplankton and zooplankton.
year | journal | country | edition | language |
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2020-01-06 | Environmental Science and Pollution Research |