Christensen, H. T., Christoffersen, M., Doler, P., Stenberg, C., & Kristensen, P. S. (2009).
Assessment of possibilities for line cultivation of mussels in Nysted Sea Wind Farm. Project
report DTU Aqua.
Chung, I. K., Kang, Y. H., Yarish, C., Kraemer, G. P., & Lee, J. (2002). Application of seaweed
cultivation to the bioremediation of nutrient-rich effluent. Algae, 17, 187–194.
Chung, H., Kim, N. G., Choi, K. J., & Woo, H. C. (2015). Novel ocean system for high density
mass production of seaweed biomass in Korea. In 2015 World Congress on Advances in
Structural Engineering and Mechanics (ASEM15). Retrieved November 15, 2015, from http://
www.i-asem.org/publication_conf/asem15/7.ICOSE15/1w/W1H.HChung.OSE.F1.pdf
Chung, I. K., Oak, J. H., Lee, J. A., Shin, J. A., Kim, J. G., & Park, K.-S. (2013). Installing kelp
forests/seaweed beds for mitigation and adaptation against global warming: Korean project
overview. ICES Journal of Marine Science. doi:10.1093/icesjms/fss206
Clements, J., & Chopin, T. (2016) Ocean acidification and marine aquaculture in North America:
Potential impacts and mitigation strategies. Reviews in Aquaculture, 0, 1–16. doi:10.1111/raq.
12140
Connecticut Department of Energy and Environmental Protection (CT DEEP). (2014). Report of
the Nitrogen credit advisory board for calendar year 2013 to the joint standing environment
committee of the general assembly.
Corey, P., Kim, J. K., Duston, J., & Garbary, D. J. (2014). Growth and nutrient uptake by
Palmaria palmata (Palmariales, Rhodophyta) integrated with Atlantic halibut recirculating
aquaculture. Algae, 29, 35–45.
Corey, P., Kim, J. K., Garbary, D. J., Prithiviraj, B., & Duston, J. (2012). Bioremediation potential
of Chondrus crispus (Basin Head) and Palmaria palmata: Effect of temperature and high
nitrate on nutrient removal. Journal of Applied Phycology, 24, 441–448.
Cornish, M. L., & Garbary, D. J. (2010). Antioxidants from macroalgae: Potential applications in
human health and nutrition. Algae, 25, 155–171.
Costanza, R., d’Arge, R., de Groot, R., Farber, S., Grasso, M., Hannon, B., et al. (1997). The value
of the world’s ecosystem services and natural capital. Nature, 387:253–260.
Costanza, R., de Groot, R., Sutton, P., van der Ploeg, S., Anderson, S. J., Kubiszewski, I., et al.
(2014). Changes in the global value of ecosystem services. Global Environmental Change, 26,
152–158.
CRM. (2001). Wirtschaftliches und ökologisches Potential einer Laminarien-Farm in Deutschland
(Economic and ecologic potentials of algae farming in Germany). Kiel (Germany): Coastal
Research and Management.
Danioux, C., Bompais, X., Paquotte, P., & Loste, C. (2000). Offshore mollusc production in the
Mediterranean Basin. In J. Muir & B. Basurco (Eds.), Mediterranean offshore mariculture
(pp. 115–140). Zaragoza: CIHEAM (Options Méditerranéennes: Série B. Etudes et
Recherches, no 30).
Dean, P. R., & Hurd, C. L. (2007). Seasonal growth, erosion rates, and nitrogen and
photosynthetic ecophysiology of Undaria pinnatifida (Heterokontophyta) in southern New
Zealand. Journal of Phycology, 43, 1138–1148.
Delbare, D. (2001). Pesca-project: Hangmosselcultuur in Belgische kustwateren. Centrum voor
landbouwkundig onderzoek-Gent, Departement Zeevisserij - afdeling Aquacultuur en
Restocking. pp. 14
Dillehay, T. D., Ramrez, C., Pino, M., Collins, M. B., Rossen, J., & Pino-Navarro, J. D. (2008).
Monte Verde: Seaweed, food, medicine, and the peopling of South America. Science, 320,
784–786.
Dong, S., Fang, J., Jansen Henrice, M., & Verreth, J. (2013). Review on integrated mariculture in
China, including case studies on successful polyculture in coastal Chinese waters. Report,
Asem Aquaculture Plaform, 7th framework programme.
Fabi, G., & Spagnola, A. (2001). Artificial reefs and mariculture. In J. Coimbra (Ed.), Modern
aquaculture in the coastal zone (pp. 91–98). IOS Press.
Fabi, G., Manoukian, S., & Spagnolo, A. (2009). Impact of an open-sea suspended mussel culture
on macrobenthic community (Western Adriatic Sea). Aquaculture, 289, 54–63.
62
B.H. Buck et al.
Assessment of possibilities for line cultivation of mussels in Nysted Sea Wind Farm. Project
report DTU Aqua.
Chung, I. K., Kang, Y. H., Yarish, C., Kraemer, G. P., & Lee, J. (2002). Application of seaweed
cultivation to the bioremediation of nutrient-rich effluent. Algae, 17, 187–194.
Chung, H., Kim, N. G., Choi, K. J., & Woo, H. C. (2015). Novel ocean system for high density
mass production of seaweed biomass in Korea. In 2015 World Congress on Advances in
Structural Engineering and Mechanics (ASEM15). Retrieved November 15, 2015, from http://
www.i-asem.org/publication_conf/asem15/7.ICOSE15/1w/W1H.HChung.OSE.F1.pdf
Chung, I. K., Oak, J. H., Lee, J. A., Shin, J. A., Kim, J. G., & Park, K.-S. (2013). Installing kelp
forests/seaweed beds for mitigation and adaptation against global warming: Korean project
overview. ICES Journal of Marine Science. doi:10.1093/icesjms/fss206
Clements, J., & Chopin, T. (2016) Ocean acidification and marine aquaculture in North America:
Potential impacts and mitigation strategies. Reviews in Aquaculture, 0, 1–16. doi:10.1111/raq.
12140
Connecticut Department of Energy and Environmental Protection (CT DEEP). (2014). Report of
the Nitrogen credit advisory board for calendar year 2013 to the joint standing environment
committee of the general assembly.
Corey, P., Kim, J. K., Duston, J., & Garbary, D. J. (2014). Growth and nutrient uptake by
Palmaria palmata (Palmariales, Rhodophyta) integrated with Atlantic halibut recirculating
aquaculture. Algae, 29, 35–45.
Corey, P., Kim, J. K., Garbary, D. J., Prithiviraj, B., & Duston, J. (2012). Bioremediation potential
of Chondrus crispus (Basin Head) and Palmaria palmata: Effect of temperature and high
nitrate on nutrient removal. Journal of Applied Phycology, 24, 441–448.
Cornish, M. L., & Garbary, D. J. (2010). Antioxidants from macroalgae: Potential applications in
human health and nutrition. Algae, 25, 155–171.
Costanza, R., d’Arge, R., de Groot, R., Farber, S., Grasso, M., Hannon, B., et al. (1997). The value
of the world’s ecosystem services and natural capital. Nature, 387:253–260.
Costanza, R., de Groot, R., Sutton, P., van der Ploeg, S., Anderson, S. J., Kubiszewski, I., et al.
(2014). Changes in the global value of ecosystem services. Global Environmental Change, 26,
152–158.
CRM. (2001). Wirtschaftliches und ökologisches Potential einer Laminarien-Farm in Deutschland
(Economic and ecologic potentials of algae farming in Germany). Kiel (Germany): Coastal
Research and Management.
Danioux, C., Bompais, X., Paquotte, P., & Loste, C. (2000). Offshore mollusc production in the
Mediterranean Basin. In J. Muir & B. Basurco (Eds.), Mediterranean offshore mariculture
(pp. 115–140). Zaragoza: CIHEAM (Options Méditerranéennes: Série B. Etudes et
Recherches, no 30).
Dean, P. R., & Hurd, C. L. (2007). Seasonal growth, erosion rates, and nitrogen and
photosynthetic ecophysiology of Undaria pinnatifida (Heterokontophyta) in southern New
Zealand. Journal of Phycology, 43, 1138–1148.
Delbare, D. (2001). Pesca-project: Hangmosselcultuur in Belgische kustwateren. Centrum voor
landbouwkundig onderzoek-Gent, Departement Zeevisserij - afdeling Aquacultuur en
Restocking. pp. 14
Dillehay, T. D., Ramrez, C., Pino, M., Collins, M. B., Rossen, J., & Pino-Navarro, J. D. (2008).
Monte Verde: Seaweed, food, medicine, and the peopling of South America. Science, 320,
784–786.
Dong, S., Fang, J., Jansen Henrice, M., & Verreth, J. (2013). Review on integrated mariculture in
China, including case studies on successful polyculture in coastal Chinese waters. Report,
Asem Aquaculture Plaform, 7th framework programme.
Fabi, G., & Spagnola, A. (2001). Artificial reefs and mariculture. In J. Coimbra (Ed.), Modern
aquaculture in the coastal zone (pp. 91–98). IOS Press.
Fabi, G., Manoukian, S., & Spagnolo, A. (2009). Impact of an open-sea suspended mussel culture
on macrobenthic community (Western Adriatic Sea). Aquaculture, 289, 54–63.
62
B.H. Buck et al.
