WWW.WAS.ORG • WORLD AQUACULTURE • JUNE 2014 27 toxic metals or harmful microbes. To get a better understanding of this, research facilities in the southwest Netherlands are developing a bioaccumulation prediction model based on literature, chemical analyses and experiments with different types of organisms cultured in various groundwater sources in the region. Notes Tony van der Hiele, Jorik Creemers, and Jouke Heringa HZ University of Applied Sciences, P.O. Box 364, NL-4380AJ Vlissingen, The Netherlands jouke.heringa@hz.nl; www.hz.nl Jan W Rijstenbil, AE3 Consultancy, Fuchsialaan 8, NL-4401HV Yerseke, The Netherlands mail@ae3.nl; www.ae3.nl 1Rijstenbil, unpublished results www.a3.nl/profile.htm 2Vansovics, A., J. Wiersma and G. van der Pluijm. 2013. Suitability of different saline groundwater sources for aquaculture in Zeeland. Investigation of saline sources Grovisco, Seafarm and VAM. HZ University of Applied Sciences. Student report. Acknowledgments This work was partially funded by the Dutch Ministry of Education (project RAAK - The Salty Gold) and EU Interreg project AquaVLAN. We thank the Water Management students from the HZ University of Applied Sciences for carrying out the experimental work and the companies Van Antwerpen Milieutechniek, fish farm Seafarm, fish farm Grovisco, shellfish farm Zeeland Aquacultuur and Mussel pilot La Solitude, which provided data. References Andersen, R.A. 2005. Algal Culturing Techniques. Elsevier Academic Press, Burlington, MA, USA. Ardau, C., F. Frau, G. Nieddu and L. Fanfani. 2007. Field evidences on release/removal of arsenic by hydrotalcite-like compounds in mining waters. The example of Baccu Locci mine (Sardinia, Italy). In: R. Cidu and F. Frau, editors. IMWA Symposium: Water in Mining Environments. Cagliari, Italy. Barbosa, M.J., H. Reith, W. Brandenburg and R. Wijffels. 2009. Technical and economical analysis of microalgae and seaweeds as feedstock for biofuels. 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