REFERENCE BIBLIOGRAPHIQUE
149
Baque, D., (2006) Perturbations anthropiques du réseau hydrographique du bassin de la
Garonne, cas des métaux et des nitrates. Thèse de doctorat, Université Paul Sabatier-Toulouse
III, p. 476.
Barnhart, J. (1997) Occurrences, Uses, and Properties of Chromium. Regulatory Toxicology
and Pharmacology 26, S3-S7.
Barreto, S.R.G., Barreto, W.J., Deduch, E.M. (2011) Determination of partition coefficients of
metals in natural tropical water. CLEAN–Soil, Air, Water 39, 362-367.
Benabdelkader, A., (2019) Sources et transferts des éléments majeurs et traces dans le bassin
versant de la Tafna (Algérie) : approches géochimiques et hydrochimiques. Université de
toulouse; université Abou Beker Belkaid (Tlemcen), p. 270.
Benedicto, J., Andral, B., Martínez-Gómez, C., Guitart, C., Deudero, S., Cento, A., Scarpato,
A., Caixach, J., Benbrahim, S., Chouba, L., Boulahdid, M., Galgani, F. (2011) A large scale
survey of trace metal levels in coastal waters of the Western Mediterranean basin using caged
mussels (Mytilus galloprovincialis). Journal of Environmental Monitoring 13, 1495-1505.
Benhalima, M., Boulahdid, M., Guendouzi, Y., Radakovitch, O., Aroua, M., Fowler, S.W.,
Ambrosi, J.-P., Angeletti, B. (2022) Occurrence, contamination level and ecological risk
assessment of dissolved and particulate trace elements in rivers entering the southwestern
Mediterranean Sea. Marine Pollution Bulletin 180, 113723.
Benoit, G., Oktay-Marshall, S., Cantu Ii, A., Hood, E., Coleman, C., Corapcioglu, M., Santschi,
P. (1994) Partitioning of Cu, Pb, Ag, Zn, Fe, Al, and Mn between filter-retained particles,
colloids, and solution in six Texas estuaries. Marine Chemistry 45, 307-336.
Berner, E.K., Berner, R.A. (1987) The global water cycle. Geochemistry and environment.
Prentice Hall, Englewood Cliffs.
Bettiol, C., Collavini, F., Guerzoni, S., Molinaroli, E., Rossini, P., Zaggia, L., Zonta, R. (2005)
Atmospheric and riverine inputs of metals, nutrients and persistent organic pollutants into the
lagoon of Venice. Hydrobiologia 550, 151-165.
Bianchi, C.N., Morri, C. (2000) Marine biodiversity of the Mediterranean Sea: situation,
problems and prospects for future research. Marine Pollution Bulletin 40, 367-376.
Birch, G. (2017) Determination of sediment metal background concentrations and enrichment
in marine environments–a critical review. Science of the Total Environment 580, 813-831.
Birch, G. (2022) A review and critical assessment of sedimentary metal indices used in
determining the magnitude of anthropogenic change in coastal environments. Science of the
Total Environment, 158129.
Bonnet, C., (2000) Développement de bioessais sur sédiments et applications à l’étude, en
laboratoire, de la toxicité de sédiments dulçaquicoles contaminés. Thèse de doctorat, université
de Metz, p. 326.
Bouchelouche, D., Arab, A. (2020) Bioaccumulation of heavy metals in an aquatic insect
(Baetis pavidus; Baetidae; Ephemeroptera) in the El Harrach Wadi (Algeria). Arabian Journal
of Geosciences 13, 1-14.
Bouchoucha, M., Tomasino, C., Brach-Papa, C., (2018) Rapport de synthèse de la campagne
d'évaluation de la qualité chimique de sédiments (ROCCHSED) 2016 en Méditerranée, p. 39.
Bouhnik-Le Coz, M., Petitjean, P., Serrat, E., Gruau, G., (2001) Validation d'un protocole
permettant le dosage simultané des cations majeurs et traces dans les eaux douces naturelles par
ICP-MS, p. 78.
Boulahdid, M., Errahmani, D.T., Noureddine, A., Hocini, N., Ounadi, F. (2013) Les métaux
traces dans les sédiments de la baie d'Alger. Rapp. Comm. int. Mer. M ‚dit. 40, 833p.
Bouragba, S., Komai, K., Nakayama, K. (2017) Heavy metals transport simulation by
physically based distributed modeling approach (case study: Harrach River, Algeria). Journal
of Japan Society of Civil Engineers, Ser. B1 (Hydraulic Engineering) 73, I_1159-I_1164.
149
Baque, D., (2006) Perturbations anthropiques du réseau hydrographique du bassin de la
Garonne, cas des métaux et des nitrates. Thèse de doctorat, Université Paul Sabatier-Toulouse
III, p. 476.
Barnhart, J. (1997) Occurrences, Uses, and Properties of Chromium. Regulatory Toxicology
and Pharmacology 26, S3-S7.
Barreto, S.R.G., Barreto, W.J., Deduch, E.M. (2011) Determination of partition coefficients of
metals in natural tropical water. CLEAN–Soil, Air, Water 39, 362-367.
Benabdelkader, A., (2019) Sources et transferts des éléments majeurs et traces dans le bassin
versant de la Tafna (Algérie) : approches géochimiques et hydrochimiques. Université de
toulouse; université Abou Beker Belkaid (Tlemcen), p. 270.
Benedicto, J., Andral, B., Martínez-Gómez, C., Guitart, C., Deudero, S., Cento, A., Scarpato,
A., Caixach, J., Benbrahim, S., Chouba, L., Boulahdid, M., Galgani, F. (2011) A large scale
survey of trace metal levels in coastal waters of the Western Mediterranean basin using caged
mussels (Mytilus galloprovincialis). Journal of Environmental Monitoring 13, 1495-1505.
Benhalima, M., Boulahdid, M., Guendouzi, Y., Radakovitch, O., Aroua, M., Fowler, S.W.,
Ambrosi, J.-P., Angeletti, B. (2022) Occurrence, contamination level and ecological risk
assessment of dissolved and particulate trace elements in rivers entering the southwestern
Mediterranean Sea. Marine Pollution Bulletin 180, 113723.
Benoit, G., Oktay-Marshall, S., Cantu Ii, A., Hood, E., Coleman, C., Corapcioglu, M., Santschi,
P. (1994) Partitioning of Cu, Pb, Ag, Zn, Fe, Al, and Mn between filter-retained particles,
colloids, and solution in six Texas estuaries. Marine Chemistry 45, 307-336.
Berner, E.K., Berner, R.A. (1987) The global water cycle. Geochemistry and environment.
Prentice Hall, Englewood Cliffs.
Bettiol, C., Collavini, F., Guerzoni, S., Molinaroli, E., Rossini, P., Zaggia, L., Zonta, R. (2005)
Atmospheric and riverine inputs of metals, nutrients and persistent organic pollutants into the
lagoon of Venice. Hydrobiologia 550, 151-165.
Bianchi, C.N., Morri, C. (2000) Marine biodiversity of the Mediterranean Sea: situation,
problems and prospects for future research. Marine Pollution Bulletin 40, 367-376.
Birch, G. (2017) Determination of sediment metal background concentrations and enrichment
in marine environments–a critical review. Science of the Total Environment 580, 813-831.
Birch, G. (2022) A review and critical assessment of sedimentary metal indices used in
determining the magnitude of anthropogenic change in coastal environments. Science of the
Total Environment, 158129.
Bonnet, C., (2000) Développement de bioessais sur sédiments et applications à l’étude, en
laboratoire, de la toxicité de sédiments dulçaquicoles contaminés. Thèse de doctorat, université
de Metz, p. 326.
Bouchelouche, D., Arab, A. (2020) Bioaccumulation of heavy metals in an aquatic insect
(Baetis pavidus; Baetidae; Ephemeroptera) in the El Harrach Wadi (Algeria). Arabian Journal
of Geosciences 13, 1-14.
Bouchoucha, M., Tomasino, C., Brach-Papa, C., (2018) Rapport de synthèse de la campagne
d'évaluation de la qualité chimique de sédiments (ROCCHSED) 2016 en Méditerranée, p. 39.
Bouhnik-Le Coz, M., Petitjean, P., Serrat, E., Gruau, G., (2001) Validation d'un protocole
permettant le dosage simultané des cations majeurs et traces dans les eaux douces naturelles par
ICP-MS, p. 78.
Boulahdid, M., Errahmani, D.T., Noureddine, A., Hocini, N., Ounadi, F. (2013) Les métaux
traces dans les sédiments de la baie d'Alger. Rapp. Comm. int. Mer. M ‚dit. 40, 833p.
Bouragba, S., Komai, K., Nakayama, K. (2017) Heavy metals transport simulation by
physically based distributed modeling approach (case study: Harrach River, Algeria). Journal
of Japan Society of Civil Engineers, Ser. B1 (Hydraulic Engineering) 73, I_1159-I_1164.
