assessment of benthic sediment-bound heavy metals from coastal ecosystems off the equatorial atlantic ocean. International Journal of Sediment Research 32 (3):410–20. doi:10.1016/
J.IJSRC.2017.07.007.
Boust, D. (1981). Métaux traces dans l’estuaire de la Seine et ses abords (Ph.D. thesis).
University of Caen.
Burton, Jr, and G. Allen. 2002. Sediment quality criteria in use around the world. Limnology 3
(2):65–76. doi:10.1007/s102010200008.
Copat, C., G. O. Conti, R. Fallico, S. Sciacca, and M. Ferrante. 2015 January. Heavy metals in
fish from the mediterranean sea: Potential impact on diet. The Mediterranean Diet 547–62.
doi:10.1016/B978-0-12-407849-9.00049-X.
Cromey, C. J., T. D. Nickell, J. Treasurer, K. D. Black, and M. Inall. 2009. Modelling the impact
of cod (Gadus morhua L) farming in the marine environment — CODMOD. Aquaculture
289 (1–2):42–53. doi:10.1016/j.aquaculture.2008.12.020.
Dalman, Ö., A. Demirak, and A. Balcı. 2006. Determination of heavy metals (Cd, Pb) and trace
elements (Cu, Zn) in sediments and fish of the Southeastern Aegean Sea (Turkey) by atomic
absorption spectrometry. Food Chemistry 95 (1):157–62. doi:10.1016/j.foodchem.2005.02.009.
Farmaki, E. G., N. S. Thomaidis, I. N. Pasias, C. Baulard, L. Papaharisis, and C. E. Efstathiou.
2014. Science of the total environment environmental impact of intensive aquaculture :
Investigation on the accumulation of metals and nutrients in marine sediments of Greece.
Science of the Total Environment, The 485–486:554–62. doi:10.1016/j.scitotenv.2014.03.125.
Gao, X., W. Zhuang, C.-T. A. Chen, and Y. Zhang. 2015. Sediment quality of the SW coastal
Laizhou Bay, Bohai Sea, China : A comprehensive assessment based on the analysis of heavy
metals. PloS One 10 (3):1–27. https://doi.org/10.1371/journal.pone.0122190.
Giri, S. S., J. Graham, N. K. A. Hamid, J. A. Donald, and G. M. Turchini. 2016. Dietary
micronutrients and in vivo n − 3 LC-PUFA biosynthesis in Atlantic Salmon. Aquaculture
452 (February):416–25. doi:10.1016/J.AQUACULTURE.2015.05.022.
Gonzalez-silvera, D., D. Izquierdo-gomez, V. Fernandez-gonzalez, and F. J. Martínez-lópez.
2015. Mediterranean fouling communities assimilate the organic matter derived from
coastal fish farms as a new trophic resource. Marine Pollution Bulletin 91 (1):45–53.
doi:10.1016/j.marpolbul.2014.12.029.
Gu, Y. G., and Q. Lin. 2016. Trace metals in a sediment core from the largest mariculture base
of the Eastern Guangdong coast, South China: Vertical distribution, speciation, and biological risk. Marine Pollution Bulletin 113 (1–2):520–25. doi:10.1016/j.marpolbul.2016.08.029.
Guendouzi, Y., D. L. Soualili, S. W. Fowler, and M. Boulahdid. 2020. Environmental and
human health risk assessment of trace metals in the mussel ecosystem from the southwestern
mediterranean. Marine Pollution Bulletin 151 (February):110820. doi:10.1016/j.
marpolbul.2019.110820.
Herbeck, L. S., D. Unger, Y. Wu, and T. C. Jennerjahn. 2013. Effluent, nutrient and organic
matter export from shrimp and fish ponds causing eutrophication in coastal and back-reef
waters of ne Hainan, tropical China. Continental Shelf Research 57:92–104. doi:10.1016/j.
csr.2012.05.006.
Hu, Z., J. Woo, K. Chandran, S. Kim, K. Sharma, A. Coelho, and S. Kumar. 2013. Bioresource
technology nitrogen transformations in intensive aquaculture system and its implication to
climate change through nitrous oxide emission. Bioresource Technology 130:314–20.
doi:10.1016/j.biortech.2012.12.033.
Ikem, A., and J. Egilla. 2008. Trace element content of fish feed and bluegill sunfish (Lepomis
macrochirus) from aquaculture and wild source in Missouri. Food Chemistry 110 (2):301–09.
doi:10.1016/J.FOODCHEM.2008.02.003.
JOURNAL OF APPLIED AQUACULTURE
13
J.IJSRC.2017.07.007.
Boust, D. (1981). Métaux traces dans l’estuaire de la Seine et ses abords (Ph.D. thesis).
University of Caen.
Burton, Jr, and G. Allen. 2002. Sediment quality criteria in use around the world. Limnology 3
(2):65–76. doi:10.1007/s102010200008.
Copat, C., G. O. Conti, R. Fallico, S. Sciacca, and M. Ferrante. 2015 January. Heavy metals in
fish from the mediterranean sea: Potential impact on diet. The Mediterranean Diet 547–62.
doi:10.1016/B978-0-12-407849-9.00049-X.
Cromey, C. J., T. D. Nickell, J. Treasurer, K. D. Black, and M. Inall. 2009. Modelling the impact
of cod (Gadus morhua L) farming in the marine environment — CODMOD. Aquaculture
289 (1–2):42–53. doi:10.1016/j.aquaculture.2008.12.020.
Dalman, Ö., A. Demirak, and A. Balcı. 2006. Determination of heavy metals (Cd, Pb) and trace
elements (Cu, Zn) in sediments and fish of the Southeastern Aegean Sea (Turkey) by atomic
absorption spectrometry. Food Chemistry 95 (1):157–62. doi:10.1016/j.foodchem.2005.02.009.
Farmaki, E. G., N. S. Thomaidis, I. N. Pasias, C. Baulard, L. Papaharisis, and C. E. Efstathiou.
2014. Science of the total environment environmental impact of intensive aquaculture :
Investigation on the accumulation of metals and nutrients in marine sediments of Greece.
Science of the Total Environment, The 485–486:554–62. doi:10.1016/j.scitotenv.2014.03.125.
Gao, X., W. Zhuang, C.-T. A. Chen, and Y. Zhang. 2015. Sediment quality of the SW coastal
Laizhou Bay, Bohai Sea, China : A comprehensive assessment based on the analysis of heavy
metals. PloS One 10 (3):1–27. https://doi.org/10.1371/journal.pone.0122190.
Giri, S. S., J. Graham, N. K. A. Hamid, J. A. Donald, and G. M. Turchini. 2016. Dietary
micronutrients and in vivo n − 3 LC-PUFA biosynthesis in Atlantic Salmon. Aquaculture
452 (February):416–25. doi:10.1016/J.AQUACULTURE.2015.05.022.
Gonzalez-silvera, D., D. Izquierdo-gomez, V. Fernandez-gonzalez, and F. J. Martínez-lópez.
2015. Mediterranean fouling communities assimilate the organic matter derived from
coastal fish farms as a new trophic resource. Marine Pollution Bulletin 91 (1):45–53.
doi:10.1016/j.marpolbul.2014.12.029.
Gu, Y. G., and Q. Lin. 2016. Trace metals in a sediment core from the largest mariculture base
of the Eastern Guangdong coast, South China: Vertical distribution, speciation, and biological risk. Marine Pollution Bulletin 113 (1–2):520–25. doi:10.1016/j.marpolbul.2016.08.029.
Guendouzi, Y., D. L. Soualili, S. W. Fowler, and M. Boulahdid. 2020. Environmental and
human health risk assessment of trace metals in the mussel ecosystem from the southwestern
mediterranean. Marine Pollution Bulletin 151 (February):110820. doi:10.1016/j.
marpolbul.2019.110820.
Herbeck, L. S., D. Unger, Y. Wu, and T. C. Jennerjahn. 2013. Effluent, nutrient and organic
matter export from shrimp and fish ponds causing eutrophication in coastal and back-reef
waters of ne Hainan, tropical China. Continental Shelf Research 57:92–104. doi:10.1016/j.
csr.2012.05.006.
Hu, Z., J. Woo, K. Chandran, S. Kim, K. Sharma, A. Coelho, and S. Kumar. 2013. Bioresource
technology nitrogen transformations in intensive aquaculture system and its implication to
climate change through nitrous oxide emission. Bioresource Technology 130:314–20.
doi:10.1016/j.biortech.2012.12.033.
Ikem, A., and J. Egilla. 2008. Trace element content of fish feed and bluegill sunfish (Lepomis
macrochirus) from aquaculture and wild source in Missouri. Food Chemistry 110 (2):301–09.
doi:10.1016/J.FOODCHEM.2008.02.003.
JOURNAL OF APPLIED AQUACULTURE
13
