Références bibliographiques
Page
132
Liberté (2010). Article de presse https://www.liberte-algerie.com/actualite/la-station-delectricitenetait-pas-a-lorigine-de-la-catastrophe-81174/print/1
Lin F, Han B, Ding Y, et al (2018). Distribution characteristics, sources, and ecological risk
assessment of polycyclic aromatic hydrocarbons in sediments from the Qinhuangdao coastal wetland,
China. Mar Pollut Bull 127:788Ŕ793. https://doi.org/10.1016/J.MARPOLBUL.2017.09.054
Liu S, Chen H, Xu X, et al (2015).Steroids in marine aquaculture farms surrounding Hailing Island ,
South China : Occurrence , bioconcentration , and human dietary exposure. Science of the Total
Environment 502:400Ŕ407. https://doi.org/10.1016/j.scitotenv.2014.09.039
Liu S, Yan M, Tai H, et al (2012). Prediction of dissolved oxygen content in aquaculture of hyriopsis
cumingii using elmaneural network. In: IFIP Advances in Information and Communication
Technology. Springer, Berlin, Heidelberg, pp 508Ŕ518
Liu X, Steele JC, Meng XZ (2017). Usage, residue, and human health risk of antibiotics in Chinese
aquaculture: A review. Environ Pollut 223:161Ŕ169. https://doi.org/10.1016/j.envpol.2017.01.003
Liu Z, Li Z, Zhong H, et al (2017).Recent advances in the environmental applications of biosurfactant
saponins: A review. J. Environ. Chem. Eng. 5:6030Ŕ6038. https://doi.org/10.1016/j.jece.2017.11.021.
Long ER, MacDonald DD (1998). Recommended Uses of Empirically Derived, Sediment Quality
Guidelines for Marine and Estuarine Ecosystems. Hum Ecol Risk Assess An Int J 4:1019Ŕ1039.
https://doi.org/10.1080/10807039891284956
Long ER, Macdonald DD, Smith SL, Calder FD (1995). Incidence of adverse biological effects within
ranges of chemical concentrations in marine and estuarine sediments. Environ Manage 19:81Ŕ97.
https://doi.org/10.1007/BF02472006
Lopes-Rocha M, Langone L, Miserocchi S, et al (2017). Spatial patterns and temporal trends of trace
metal mass budgets in the western Adriatic sediments (Mediterranean Sea). Sci Total Environ 599Ŕ
600:1022Ŕ1033. https://doi.org/10.1016/J.SCITOTENV.2017.04.114
Lopes C, Antelo LT, Franco-uría A, et al (2015). Valorisation of fish by-products against waste
management treatments Ŕ Comparison of environmental impacts. Waste management 46:103Ŕ112.
https://doi.org/10.1016/j.wasman.2015.08.017
Lounas R, Kasmi H, Chernai S, Amarni N, Ghebriout L, & Hamdi B. (2021). Heavy metal
concentrations in wild and farmed gilthead sea bream from southern Mediterranean Seaŕhuman
health risk assessment. Environmental Science and Pollution Research. https:// doi. org/ 10.
1007/s11356- 021- 12864-3
Lounas R, Kasmi H, Chernai S, et al (2020). Towards Sustainable Mariculture: some Global Trends.
Thalassas. https://doi.org/10.1007/s41208-020-00206-y
Luo G, Xu G, Gao J, Tan H (2016). Effect of dissolved oxygen on nitrate removal using
polycaprolactone as an organic carbon source and biofilm carrier in fixed-film denitrifying reactors. J
Environ Sci (China) 43:147Ŕ152. https://doi.org/10.1016/j.jes.2015.10.022
Page
132
Liberté (2010). Article de presse https://www.liberte-algerie.com/actualite/la-station-delectricitenetait-pas-a-lorigine-de-la-catastrophe-81174/print/1
Lin F, Han B, Ding Y, et al (2018). Distribution characteristics, sources, and ecological risk
assessment of polycyclic aromatic hydrocarbons in sediments from the Qinhuangdao coastal wetland,
China. Mar Pollut Bull 127:788Ŕ793. https://doi.org/10.1016/J.MARPOLBUL.2017.09.054
Liu S, Chen H, Xu X, et al (2015).Steroids in marine aquaculture farms surrounding Hailing Island ,
South China : Occurrence , bioconcentration , and human dietary exposure. Science of the Total
Environment 502:400Ŕ407. https://doi.org/10.1016/j.scitotenv.2014.09.039
Liu S, Yan M, Tai H, et al (2012). Prediction of dissolved oxygen content in aquaculture of hyriopsis
cumingii using elmaneural network. In: IFIP Advances in Information and Communication
Technology. Springer, Berlin, Heidelberg, pp 508Ŕ518
Liu X, Steele JC, Meng XZ (2017). Usage, residue, and human health risk of antibiotics in Chinese
aquaculture: A review. Environ Pollut 223:161Ŕ169. https://doi.org/10.1016/j.envpol.2017.01.003
Liu Z, Li Z, Zhong H, et al (2017).Recent advances in the environmental applications of biosurfactant
saponins: A review. J. Environ. Chem. Eng. 5:6030Ŕ6038. https://doi.org/10.1016/j.jece.2017.11.021.
Long ER, MacDonald DD (1998). Recommended Uses of Empirically Derived, Sediment Quality
Guidelines for Marine and Estuarine Ecosystems. Hum Ecol Risk Assess An Int J 4:1019Ŕ1039.
https://doi.org/10.1080/10807039891284956
Long ER, Macdonald DD, Smith SL, Calder FD (1995). Incidence of adverse biological effects within
ranges of chemical concentrations in marine and estuarine sediments. Environ Manage 19:81Ŕ97.
https://doi.org/10.1007/BF02472006
Lopes-Rocha M, Langone L, Miserocchi S, et al (2017). Spatial patterns and temporal trends of trace
metal mass budgets in the western Adriatic sediments (Mediterranean Sea). Sci Total Environ 599Ŕ
600:1022Ŕ1033. https://doi.org/10.1016/J.SCITOTENV.2017.04.114
Lopes C, Antelo LT, Franco-uría A, et al (2015). Valorisation of fish by-products against waste
management treatments Ŕ Comparison of environmental impacts. Waste management 46:103Ŕ112.
https://doi.org/10.1016/j.wasman.2015.08.017
Lounas R, Kasmi H, Chernai S, Amarni N, Ghebriout L, & Hamdi B. (2021). Heavy metal
concentrations in wild and farmed gilthead sea bream from southern Mediterranean Seaŕhuman
health risk assessment. Environmental Science and Pollution Research. https:// doi. org/ 10.
1007/s11356- 021- 12864-3
Lounas R, Kasmi H, Chernai S, et al (2020). Towards Sustainable Mariculture: some Global Trends.
Thalassas. https://doi.org/10.1007/s41208-020-00206-y
Luo G, Xu G, Gao J, Tan H (2016). Effect of dissolved oxygen on nitrate removal using
polycaprolactone as an organic carbon source and biofilm carrier in fixed-film denitrifying reactors. J
Environ Sci (China) 43:147Ŕ152. https://doi.org/10.1016/j.jes.2015.10.022
