Références bibliographiques
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115
ANDI (2015). Agence Nationale de Développement de l’Investissement.
http://www.andi.dz/index.php/fr/
Amlund H, Berntssen MHG, Lunestad BT, Lundebye A-K (2012). Aquaculture feed contamination by
persistent organic pollutants, heavy metals, additives and drug residues. Anim Feed Contam 205Ŕ229.
https://doi.org/10.1533/9780857093615.2.205
Amouroux I, Claisse D (2016). AQUAREF - Opérations d’échantillonnage en milieu marin dans le
cadre des programmes de surveillance DCE (matrices : eau, sédiment et biote) - Recommandations
techniques Ŕ Edition 2015.
Andrási N, Molnár B, Dobos B, et al (2013). Determination of steroids in the dissolved and in the
suspended phases of wastewater and Danube River samples by gas chromatography, tandem mass
spectrometry. Talanta 115:367Ŕ373. https://doi.org/10.1016/j.talanta.2013.05.029
Apostolaki ET, Holmer M, Marbà N, Karakassis I (2010). Degrading seagrass (Posidonia oceanica)
ecosystems: A source of dissolved matter in the Mediterranean. Hydrobiologia 649:13Ŕ23.
https://doi.org/10.1007/s10750-010-0255-2
Apostolaki ET, Marbà N, Holmer M, Karakassis I (2009). Ecology Fish farming impact on
decomposition of Posidonia oceanica litter. J Exp Mar Bio Ecol 369:58Ŕ64.
https://doi.org/10.1016/j.jembe.2008.10.022
Apostolaki ET, Tsagaraki T, Tsapakis M, Karakassis I (2007). Fish farming impact on sediments and
macrofauna associated with seagrass meadows in the Mediterranean. 75:408Ŕ416.
https://doi.org/10.1016/j.ecss.2007.05.024
AQUAREF (2015). Plan stratégique 2015-2018 pour faire évoluer la surveillance.
https://www.aquaref.fr/system/files/AQUAREF_Plan_strategique_20152018_signe_19juin2015_1.pdf
Arfuso F, Guerrera MC, Fortino G, et al (2017). Water temperature influences growth and gonad
differentiation in European sea bass (Dicentrarchus labrax, L. 1758). Theriogenology 88:145Ŕ151.
https://doi.org/10.1016/J.THERIOGENOLOGY.2016.09.028
Arias-Andrés M, Mena F (2014). Ecotoxicological evaluation of aquaculture and agriculture
sediments with biochemical biomarkers and bioassays: antimicrobial potential exposure. Journal of
Environmental Biology, Vol 35. Special issue, 107- 117.
Artigas ML, Llebot C, Ross ON, et al (2014). Understanding the spatio-temporal variability of
phytoplankton biomass distribution in a microtidal Mediterranean estuary. Deep Res Part II Top Stud
Oceanogr 101:180Ŕ192. https://doi.org/10.1016/j.dsr2.2014.01.006
Ashfaq M, Verma N, Khan S (2016). Copper/zinc bimetal nanoparticles-dispersed carbon nanofibers:
A novel potential antibiotic material. Mater Sci Eng C 59:938Ŕ947.
https://doi.org/10.1016/J.MSEC.2015.10.079
Aslam SN, Navada S, Bye GR, et al (2019). Effect of CO2 on elemental concentrations in
recirculating aquaculture system tanks. Aquaculture 511:734254.
https://doi.org/10.1016/j.aquaculture.2019.734254
Page
115
ANDI (2015). Agence Nationale de Développement de l’Investissement.
http://www.andi.dz/index.php/fr/
Amlund H, Berntssen MHG, Lunestad BT, Lundebye A-K (2012). Aquaculture feed contamination by
persistent organic pollutants, heavy metals, additives and drug residues. Anim Feed Contam 205Ŕ229.
https://doi.org/10.1533/9780857093615.2.205
Amouroux I, Claisse D (2016). AQUAREF - Opérations d’échantillonnage en milieu marin dans le
cadre des programmes de surveillance DCE (matrices : eau, sédiment et biote) - Recommandations
techniques Ŕ Edition 2015.
Andrási N, Molnár B, Dobos B, et al (2013). Determination of steroids in the dissolved and in the
suspended phases of wastewater and Danube River samples by gas chromatography, tandem mass
spectrometry. Talanta 115:367Ŕ373. https://doi.org/10.1016/j.talanta.2013.05.029
Apostolaki ET, Holmer M, Marbà N, Karakassis I (2010). Degrading seagrass (Posidonia oceanica)
ecosystems: A source of dissolved matter in the Mediterranean. Hydrobiologia 649:13Ŕ23.
https://doi.org/10.1007/s10750-010-0255-2
Apostolaki ET, Marbà N, Holmer M, Karakassis I (2009). Ecology Fish farming impact on
decomposition of Posidonia oceanica litter. J Exp Mar Bio Ecol 369:58Ŕ64.
https://doi.org/10.1016/j.jembe.2008.10.022
Apostolaki ET, Tsagaraki T, Tsapakis M, Karakassis I (2007). Fish farming impact on sediments and
macrofauna associated with seagrass meadows in the Mediterranean. 75:408Ŕ416.
https://doi.org/10.1016/j.ecss.2007.05.024
AQUAREF (2015). Plan stratégique 2015-2018 pour faire évoluer la surveillance.
https://www.aquaref.fr/system/files/AQUAREF_Plan_strategique_20152018_signe_19juin2015_1.pdf
Arfuso F, Guerrera MC, Fortino G, et al (2017). Water temperature influences growth and gonad
differentiation in European sea bass (Dicentrarchus labrax, L. 1758). Theriogenology 88:145Ŕ151.
https://doi.org/10.1016/J.THERIOGENOLOGY.2016.09.028
Arias-Andrés M, Mena F (2014). Ecotoxicological evaluation of aquaculture and agriculture
sediments with biochemical biomarkers and bioassays: antimicrobial potential exposure. Journal of
Environmental Biology, Vol 35. Special issue, 107- 117.
Artigas ML, Llebot C, Ross ON, et al (2014). Understanding the spatio-temporal variability of
phytoplankton biomass distribution in a microtidal Mediterranean estuary. Deep Res Part II Top Stud
Oceanogr 101:180Ŕ192. https://doi.org/10.1016/j.dsr2.2014.01.006
Ashfaq M, Verma N, Khan S (2016). Copper/zinc bimetal nanoparticles-dispersed carbon nanofibers:
A novel potential antibiotic material. Mater Sci Eng C 59:938Ŕ947.
https://doi.org/10.1016/J.MSEC.2015.10.079
Aslam SN, Navada S, Bye GR, et al (2019). Effect of CO2 on elemental concentrations in
recirculating aquaculture system tanks. Aquaculture 511:734254.
https://doi.org/10.1016/j.aquaculture.2019.734254
