Beech, I. B., & Campbell, S. A. (2008). Accelerated low water corrosion of carbon steel in the
presence of a biofilm harbouring sulphate-reducing and sulphur-oxidising bacteria recovered
from a marine sediment. Electrochimica Acta, 54, 14–21.
Buck, B. H., Ebeling, M. W., & Michler-Cieluch, T. (2010). Mussel cultivation as a co-use in
offshore wind farms: Potential and economic feasibility. Aquaculture Economics &
Management, 14(4): 255–281.
Burak Cakaloz, A. (2011). Fish cage construction. Presentation at the FAO Regional Training on
the Principles of Cage Culture in Reservoirs. Issyk-Kul, Kyrgyzstan, 22–24 June 2011.
Retrieved July 27, 2016 from http://www.fao.org/fileadmin/templates/SEC/docs/Fishery/
Fisheries_Events_2012/Principles_of_cage_culture_in_reservoirs/Fish_Cage_Construction.pdf.
Buzovkina, T. B., Aleksandrov, V. A., & Shlyaga, L. I. (1992). Influence of the initial fouling on
the marine corrosion of steel. 3, 501–503.
Callow, J. A., & Callow, M. E. (2011). Trends in the development of environmentally friendly
fouling resistant marine coatings. Nature Communications, doi:10.1038/ncomms1251. www.
nature.com/naturecommunications.
Dean, R. J., Shimmield, T. M., & Black, K. D. (2007). Copper, zinc and cadmium in marine cage
fish farm sediments: An extensive survey. Environmental Pollution, 145, 84–95.
Janssen, M. M. H. H., & van der Putten, S. (2013). Mechanical risks involved with aqua farming
on offshore wind farm sites. TNO-MEM-2013–0100000996.
Kalantzi, I., Shimmield, T. M., Pergantis, S. A., Papageorgiou, N., Black, K. D., & Karakassis, I.
(2013). Heavy metals, trace elements and sediment geochemistry at four mediterranean fish
farms. Science of the Total Environment, 444, 128–137.
Kawahara, N., Shigematsu, K., Miura, S., Miyadai, T., & Kondo, R. (2008). Distribution of
sulfate-reducing bacteria in fish farm sediments on the coast of southern fukui prefecture,
Japan. Plankton and Benthos Research, 3, 42–45.
Lagerveld, S., Röckmann, C., & Scholl, M. (2014). A study on the combination of offshore wind
energy with offshore aquaculture. IMARES Report C056/14. Retrieved October 12, 2015,
from http://edepot.wur.nl/318329
Loucks, R. H., Smith, R. E., Fisher, C. V., & Fisher, E. B. (2012). Copper in the sediment and sea
surface microlayer near a fallowed, open-net fish farm. Marine Pollution Bulletin, 64, 1970–
1973.
Mantzavrakos, E., Kornaros, M., Lyberatos, G., & Kaspiris, P. (2007). Impacts of a marine fish
farm in Argolikos Gulf (Greece) on the water column and the sediment. Desalination, 210,
110–124.
Msuya, F. E., & Neori, A. (2008). Effect of water aeration and nutrient load level on biomass yield,
N-uptake and protein content of the seaweed Ulva lactuca cultured in seawater tanks. Journal
of Applied Phycology, 20, 1021–1031.
Noël, N. (2015). Microbial influenced corrosion (MIC): Assessing and reducing the risk. Invited
presentation at 2nd Annual Integrity and Corrosion of Offshore Wind Structures Forum, June
1–3, London, UK.
Nordvarg, L., & Johansson, T. (2002). The effects of fish farm effluents on the water quality in the
Aaland Archipelago, Baltic Sea. Aquacultural Engineering, 25, 253–279.
Robertson-Andersson, D. V., Potgieter, M., Hansen, J., Bolton, J. J., Troell, M., Anderson, R. J.,
et al. (2008). Integrated seaweed cultivation on an abalone farm in South Africa. Journal of
Applied Phycology, 20, 579–595.
Valdemarsen, T., Bannister, R. J., Hansen, P. K., Holmer, M., & Ervik, A. (2012). Biogeochemical
malfunctioning in sediments beneath a deep-water fish farm. Environmental Pollution, 170,
15–25.
126
J. Klijnstra et al.
presence of a biofilm harbouring sulphate-reducing and sulphur-oxidising bacteria recovered
from a marine sediment. Electrochimica Acta, 54, 14–21.
Buck, B. H., Ebeling, M. W., & Michler-Cieluch, T. (2010). Mussel cultivation as a co-use in
offshore wind farms: Potential and economic feasibility. Aquaculture Economics &
Management, 14(4): 255–281.
Burak Cakaloz, A. (2011). Fish cage construction. Presentation at the FAO Regional Training on
the Principles of Cage Culture in Reservoirs. Issyk-Kul, Kyrgyzstan, 22–24 June 2011.
Retrieved July 27, 2016 from http://www.fao.org/fileadmin/templates/SEC/docs/Fishery/
Fisheries_Events_2012/Principles_of_cage_culture_in_reservoirs/Fish_Cage_Construction.pdf.
Buzovkina, T. B., Aleksandrov, V. A., & Shlyaga, L. I. (1992). Influence of the initial fouling on
the marine corrosion of steel. 3, 501–503.
Callow, J. A., & Callow, M. E. (2011). Trends in the development of environmentally friendly
fouling resistant marine coatings. Nature Communications, doi:10.1038/ncomms1251. www.
nature.com/naturecommunications.
Dean, R. J., Shimmield, T. M., & Black, K. D. (2007). Copper, zinc and cadmium in marine cage
fish farm sediments: An extensive survey. Environmental Pollution, 145, 84–95.
Janssen, M. M. H. H., & van der Putten, S. (2013). Mechanical risks involved with aqua farming
on offshore wind farm sites. TNO-MEM-2013–0100000996.
Kalantzi, I., Shimmield, T. M., Pergantis, S. A., Papageorgiou, N., Black, K. D., & Karakassis, I.
(2013). Heavy metals, trace elements and sediment geochemistry at four mediterranean fish
farms. Science of the Total Environment, 444, 128–137.
Kawahara, N., Shigematsu, K., Miura, S., Miyadai, T., & Kondo, R. (2008). Distribution of
sulfate-reducing bacteria in fish farm sediments on the coast of southern fukui prefecture,
Japan. Plankton and Benthos Research, 3, 42–45.
Lagerveld, S., Röckmann, C., & Scholl, M. (2014). A study on the combination of offshore wind
energy with offshore aquaculture. IMARES Report C056/14. Retrieved October 12, 2015,
from http://edepot.wur.nl/318329
Loucks, R. H., Smith, R. E., Fisher, C. V., & Fisher, E. B. (2012). Copper in the sediment and sea
surface microlayer near a fallowed, open-net fish farm. Marine Pollution Bulletin, 64, 1970–
1973.
Mantzavrakos, E., Kornaros, M., Lyberatos, G., & Kaspiris, P. (2007). Impacts of a marine fish
farm in Argolikos Gulf (Greece) on the water column and the sediment. Desalination, 210,
110–124.
Msuya, F. E., & Neori, A. (2008). Effect of water aeration and nutrient load level on biomass yield,
N-uptake and protein content of the seaweed Ulva lactuca cultured in seawater tanks. Journal
of Applied Phycology, 20, 1021–1031.
Noël, N. (2015). Microbial influenced corrosion (MIC): Assessing and reducing the risk. Invited
presentation at 2nd Annual Integrity and Corrosion of Offshore Wind Structures Forum, June
1–3, London, UK.
Nordvarg, L., & Johansson, T. (2002). The effects of fish farm effluents on the water quality in the
Aaland Archipelago, Baltic Sea. Aquacultural Engineering, 25, 253–279.
Robertson-Andersson, D. V., Potgieter, M., Hansen, J., Bolton, J. J., Troell, M., Anderson, R. J.,
et al. (2008). Integrated seaweed cultivation on an abalone farm in South Africa. Journal of
Applied Phycology, 20, 579–595.
Valdemarsen, T., Bannister, R. J., Hansen, P. K., Holmer, M., & Ervik, A. (2012). Biogeochemical
malfunctioning in sediments beneath a deep-water fish farm. Environmental Pollution, 170,
15–25.
126
J. Klijnstra et al.
