Literature DB >> 28040101

Termination of a toxic Alexandrium bloom with hydrogen peroxide.

Amanda Burson1, Hans C P Matthijs1, Wilco de Bruijne2, Renee Talens2, Ron Hoogenboom3, Arjen Gerssen3, Petra M Visser1, Maayke Stomp1, Kees Steur4, Yvonne van Scheppingen4, Jef Huisman5.   

Abstract

The dinoflagellate Alexandrium ostenfeldii is a well-known harmful algal species that can potentially cause paralytic shellfish poisoning (PSP). Usually A. ostenfeldii occurs in low background concentrations only, but in August of 2012 an exceptionally dense bloom of more than 1millioncellsL-1 occurred in the brackish Ouwerkerkse Kreek in The Netherlands. The A. ostenfeldii bloom produced both saxitoxins and spirolides, and is held responsible for the death of a dog with a high saxitoxin stomach content. The Ouwerkerkse Kreek routinely discharges its water into the adjacent Oosterschelde estuary, and an immediate reduction of the bloom was required to avoid contamination of extensive shellfish grounds. Previously, treatment of infected waters with hydrogen peroxide (H2O2) successfully suppressed cyanobacterial blooms in lakes. Therefore, we adapted this treatment to eradicate the Alexandrium bloom using a three-step approach. First, we investigated the required H2O2 dosage in laboratory experiments with A. ostenfeldii. Second, we tested the method in a small, isolated canal adjacent to the Ouwerkerkse Kreek. Finally, we brought 50mgL-1 of H2O2 into the entire creek system with a special device, called a water harrow, for optimal dispersal of the added H2O2. Concentrations of both vegetative cells and pellicle cysts declined by 99.8% within 48h, and PSP toxin concentrations in the water were reduced below local regulatory levels of 15μgL-1. Zooplankton were strongly affected by the H2O2 treatment, but impacts on macroinvertebrates and fish were minimal. A key advantage of this method is that the added H2O2 decays to water and oxygen within a few days, which enables rapid recovery of the system after the treatment. This is the first successful field application of H2O2 to suppress a marine harmful algal bloom, although Alexandrium spp. reoccurred at lower concentrations in the following year. The results show that H2O2 treatment provides an effective emergency management option to mitigate toxic Alexandrium blooms, especially when immediate action is required.
Copyright © 2013 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Alexandrium ostenfeldii; Coastal management; Harmful algal blooms; Hydrogen peroxide; Saxitoxin; Spirolides

Year:  2013        PMID: 28040101     DOI: 10.1016/j.hal.2013.10.017

Source DB:  PubMed          Journal:  Harmful Algae        ISSN: 1568-9883            Impact factor:   4.273


  4 in total

1.  Combining hydrogen peroxide addition with sunlight regulation to control algal blooms.

Authors:  Qichao Zhou; Lin Li; Licheng Huang; Liangliang Guo; Lirong Song
Journal:  Environ Sci Pollut Res Int       Date:  2017-11-08       Impact factor: 4.223

2.  Toxin Variability Estimations of 68 Alexandrium ostenfeldii (Dinophyceae) Strains from The Netherlands Reveal a Novel Abundant Gymnodimine.

Authors:  Helge Martens; Urban Tillmann; Kirsi Harju; Carmela Dell'Aversano; Luciana Tartaglione; Bernd Krock
Journal:  Microorganisms       Date:  2017-05-26

3.  A Kinetic and Factorial Approach to Study the Effects of Temperature and Salinity on Growth and Toxin Production by the Dinoflagellate Alexandrium ostenfeldii from the Baltic Sea.

Authors:  Pablo Salgado; José A Vázquez; Pilar Riobó; José M Franco; Rosa I Figueroa; Anke Kremp; Isabel Bravo
Journal:  PLoS One       Date:  2015-12-04       Impact factor: 3.240

Review 4.  Insights into toxic Prymnesium parvum blooms: the role of sugars and algal viruses.

Authors:  Ben A Wagstaff; Edward S Hems; Martin Rejzek; Jennifer Pratscher; Elliot Brooks; Sakonwan Kuhaudomlarp; Ellis C O'Neill; Matthew I Donaldson; Steven Lane; John Currie; Andrew M Hindes; Gill Malin; J Colin Murrell; Robert A Field
Journal:  Biochem Soc Trans       Date:  2018-03-14       Impact factor: 4.919

  4 in total

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