Miniero, R., V. Abate, G. Brambilla, E. Davoli, E. De Felip, S. P. De Filippis, E. Dellatte, et al.
2014. Persistent toxic substances in mediterranean aquatic species. Science of the Total
Environment 494–495:18–27. doi:10.1016/j.scitotenv.2014.05.131. �
Müller, G. 1969. Index of geoaccumulation in sediments of the Rhine River. GeoJournal
2:109–18.
Muñoz-Barbosa, A., E. A. Gutiérrez-Galindo, L. W. Daesslé, M. V. Orozco-Borbón, and
J. A. Segovia-Zavala. 2012. Relationship between metal enrichments and a biological adverse
effects index in sediments from Todos Santos Bay, Northwest Coast of Baja California,
México. Marine Pollution Bulletin 64 (2):405–09. doi:10.1016/j.marpolbul.2011.11.023.
Nasyitah Sobihah, N., A. A. Zaharin, M. K. Nizam, L. L. Juen, and K. Kyoung-Woong. 2018.
Bioaccumulation of heavy metals in maricultured fish, Lates calcarifer (Barramudi),
Lutjanus campechanus (Red Snapper) and Lutjanus griseus (Grey Snapper). Chemosphere
197 (April):318–24. doi:10.1016/J.CHEMOSPHERE.2017.12.187.
Nimptsch, J., S. Woel, S. Osorio, J. Valenzuela, P. Ebersbach, W. Von Tuempling, R. Palma,
F. Encina, D. Figueroa, N. Kamjunke, et al. 2015. Tracing dissolved organic matter (DOM)
from land-based aquaculture systems in north patagonian streams. Science of the Total
Environment 537 (August):129–38. doi:10.1016/j.scitotenv.2015.07.160.
Nour, H. E., A. S. El-Sorogy, M. Abdel-Wahab, S. Almadani, H. Alfaifi, and M. Youssef. 2018.
Assessment of sediment quality using different pollution indicators and statistical analyses,
Hurghada Area, Red Sea Coast, Egypt. Marine Pollution Bulletin 133 (August):808–13.
doi:10.1016/j.marpolbul.2018.06.046.
Ogunlaja, A., O. O. Ogunlaja, D. M. Okewole, and O. A. Morenikeji. 2019. Risk assessment and
source identification of heavy metal contamination by multivariate and hazard index
analyses of a pipeline vandalised area in Lagos State, Nigeria. Science of the Total
Environment 651:2943–52. doi:10.1016/j.scitotenv.2018.09.386.
Otansev, P., H. Taşkın, A. Başsarı, and A. Varinlioğlu. 2016. Distribution and environmental
impacts of heavy metals and radioactivity in sediment and seawater samples of the Marmara
Sea. Chemosphere 154 (July):266–75. doi:10.1016/J.CHEMOSPHERE.2016.03.122.
Ouali, N., B.-E. Belabed, and H. Chenchouni. 2018. Modelling environment contamination
with heavy metals in flathead grey mullet Mugil cephalus and upper sediments from North
African coasts of the mediterranean sea. Science of the Total Environment 639:156–74.
doi:10.1016/j.scitotenv.2018.04.377.
Poole, K. 2017. At the nexus of antibiotics and metals: The impact of Cu and Zn on antibiotic
activity and resistance. Trends in Microbiology 25 (10):820–32. doi:10.1016/J.
TIM.2017.04.010.
Pourabadehei, M., and C. N. Mulligan. 2016. Resuspension of sediment, a new approach for
remediation of contaminated sediment *. Environmental Pollution 213:63–75. doi:10.1016/j.
envpol.2016.01.082.
Puttiwongrak, A., T. Suteerasak, P. K. Mai, K. Hashimoto, J. C. Gonzalez, R. Rattanakom, and
K. Prueksakorn. 2019. Application of multi-monitoring methods to investigate the contamination levels and dispersion of Pb and Zn from tin mining in coastal sediments at Saphan
Hin, Phuket, Thailand. Journal of Cleaner Production 218 (May):108–17. doi:10.1016/j.
jclepro.2019.01.254.
Qiu, Y. W. 2015. Bioaccumulation of heavy metals both in wild and mariculture food chains in
Daya Bay, South China. Estuarine, Coastal and Shelf Science 163 (PB):7–14. doi:10.1016/j.
ecss.2015.05.036.
Ravindra, K., and S. Mor. 2019. Distribution and health risk assessment of arsenic and selected
heavy metals in groundwater of Chandigarh, India. Environmental Pollution 250
(July):820–30. doi:10.1016/J.ENVPOL.2019.03.080.
JOURNAL OF APPLIED AQUACULTURE
15
2014. Persistent toxic substances in mediterranean aquatic species. Science of the Total
Environment 494–495:18–27. doi:10.1016/j.scitotenv.2014.05.131. �
Müller, G. 1969. Index of geoaccumulation in sediments of the Rhine River. GeoJournal
2:109–18.
Muñoz-Barbosa, A., E. A. Gutiérrez-Galindo, L. W. Daesslé, M. V. Orozco-Borbón, and
J. A. Segovia-Zavala. 2012. Relationship between metal enrichments and a biological adverse
effects index in sediments from Todos Santos Bay, Northwest Coast of Baja California,
México. Marine Pollution Bulletin 64 (2):405–09. doi:10.1016/j.marpolbul.2011.11.023.
Nasyitah Sobihah, N., A. A. Zaharin, M. K. Nizam, L. L. Juen, and K. Kyoung-Woong. 2018.
Bioaccumulation of heavy metals in maricultured fish, Lates calcarifer (Barramudi),
Lutjanus campechanus (Red Snapper) and Lutjanus griseus (Grey Snapper). Chemosphere
197 (April):318–24. doi:10.1016/J.CHEMOSPHERE.2017.12.187.
Nimptsch, J., S. Woel, S. Osorio, J. Valenzuela, P. Ebersbach, W. Von Tuempling, R. Palma,
F. Encina, D. Figueroa, N. Kamjunke, et al. 2015. Tracing dissolved organic matter (DOM)
from land-based aquaculture systems in north patagonian streams. Science of the Total
Environment 537 (August):129–38. doi:10.1016/j.scitotenv.2015.07.160.
Nour, H. E., A. S. El-Sorogy, M. Abdel-Wahab, S. Almadani, H. Alfaifi, and M. Youssef. 2018.
Assessment of sediment quality using different pollution indicators and statistical analyses,
Hurghada Area, Red Sea Coast, Egypt. Marine Pollution Bulletin 133 (August):808–13.
doi:10.1016/j.marpolbul.2018.06.046.
Ogunlaja, A., O. O. Ogunlaja, D. M. Okewole, and O. A. Morenikeji. 2019. Risk assessment and
source identification of heavy metal contamination by multivariate and hazard index
analyses of a pipeline vandalised area in Lagos State, Nigeria. Science of the Total
Environment 651:2943–52. doi:10.1016/j.scitotenv.2018.09.386.
Otansev, P., H. Taşkın, A. Başsarı, and A. Varinlioğlu. 2016. Distribution and environmental
impacts of heavy metals and radioactivity in sediment and seawater samples of the Marmara
Sea. Chemosphere 154 (July):266–75. doi:10.1016/J.CHEMOSPHERE.2016.03.122.
Ouali, N., B.-E. Belabed, and H. Chenchouni. 2018. Modelling environment contamination
with heavy metals in flathead grey mullet Mugil cephalus and upper sediments from North
African coasts of the mediterranean sea. Science of the Total Environment 639:156–74.
doi:10.1016/j.scitotenv.2018.04.377.
Poole, K. 2017. At the nexus of antibiotics and metals: The impact of Cu and Zn on antibiotic
activity and resistance. Trends in Microbiology 25 (10):820–32. doi:10.1016/J.
TIM.2017.04.010.
Pourabadehei, M., and C. N. Mulligan. 2016. Resuspension of sediment, a new approach for
remediation of contaminated sediment *. Environmental Pollution 213:63–75. doi:10.1016/j.
envpol.2016.01.082.
Puttiwongrak, A., T. Suteerasak, P. K. Mai, K. Hashimoto, J. C. Gonzalez, R. Rattanakom, and
K. Prueksakorn. 2019. Application of multi-monitoring methods to investigate the contamination levels and dispersion of Pb and Zn from tin mining in coastal sediments at Saphan
Hin, Phuket, Thailand. Journal of Cleaner Production 218 (May):108–17. doi:10.1016/j.
jclepro.2019.01.254.
Qiu, Y. W. 2015. Bioaccumulation of heavy metals both in wild and mariculture food chains in
Daya Bay, South China. Estuarine, Coastal and Shelf Science 163 (PB):7–14. doi:10.1016/j.
ecss.2015.05.036.
Ravindra, K., and S. Mor. 2019. Distribution and health risk assessment of arsenic and selected
heavy metals in groundwater of Chandigarh, India. Environmental Pollution 250
(July):820–30. doi:10.1016/J.ENVPOL.2019.03.080.
JOURNAL OF APPLIED AQUACULTURE
15
