306
43. Cheng, D, Rogan J, Schneider L, & Cochrane M (2013) Evaluating MODIS active fire
products in subtropical Yucatán forest. Remote Sensing Letters, 4(5), 455-464.
https://doi.org/10.1080/2150704X.2012.749360
44. Comeau J. F (1992) Impacts des déversements d'hydrocarbures sur les écosystèmes
marins (Doctoral dissertation, éditeur non identifié)
45. Cusson M, Archambault P, Lemarchand K, Verreault J & Pelletier É (2017) Toxic ité
des hydrocarbures et impacts des déversements sur les organis mes marins et leur
environnemen
46. Dávid T, Magura T, Simon E (2019) Pollution intensity-dependent metal accumula tio n
in ground beetles : a meta-analysis. Environmental Science and Pollution Research,
26(31), 32092-32102.https://doi.org/10.1007/s11356-019-06294-5
47. De Senerpont Domis LN, Elser JJ, Gsell AS (2013) Plankton dynamics under differe nt
climatic conditions in space and time. Freshwater Biology 58:463–482.
doi:10.1111/fwb.12053
48. Di Matteo A, Milli M (2008) Morphological, bathymetric and sedimentological surveys
used to assess the coastline defensive measures. Int J Environ Sci Technol 5:415–424.
https://doi.org/10.1007/BF03326037
49. Driss MH, Salah MB-B, Spatiales CT, Oran A (2019) Etude du phenomene
d’ensablement dans la region de gourara, wilaya d’adrar, en utilisant l’outil teledetectio n
et sig. https://doi.org/DOI: 10.13140/RG.2.2.24743.06569
50. Duran R, Romeo L, Whiting J (2018) Simulation of the 2003 Foss Barge - Point wells
oil spill: A comparison between BLOSOM and GNOME oil spill models. J Mar Sci Eng
6. https://doi.org/10.3390/JMSE6030104
51. El N, Bachari I, Abdellaoui A, Houma F (2011) Modélisation des données multisources
pour l ‘étude de la pollution de la baie d ‘Alger à base d ‘ un système d ‘ informa tio n
géographique. 283–288. https://doi.org/10.5150/cmcm.2011.059
52. Fernandez F & Quigley R M (2014) Hydraulic conductivity of natural clays permeated
with simple liquid hydrocarbons. Canadian Geotechnical Journal, 22(2), 205-214
53. Fouzia, H., Larbi, B. R., Amina, A., Nacera, C., & El Islam, B. N. (2019). Introductory
Chapter: Marine Monitoring Pollution. In Monitoring of Marine Pollution. IntechOpen.
54. Galindez J (2019) Prix de transfert et l’exportation de brut amélioré. Le Cas du
Venezuela. Doctoral dissertation, Université Paris sciences et lettres. HAL Id: tel03222149 https://theses.hal.science/tel-03222149
55. Gambino E, Chandrasekhar K, Nastro RA (2021) SMFC as a tool for the removal of
hydrocarbons and metals in the marine environment: a concise research update. Enviro n
Sci Pollut Res 28:30436–30451. https://doi.org/10.1007/s11356-021-13593-3
56. Gbadamosi AO, Junin R, Manan MA (2019) Hybrid suspension of polymer and
nanoparticles
for enhanced
oil recovery.
Polym
Bull
76:6193–6230.
https://doi.org/10.1007/s00289-019-02713-2
57. Gentil É. L (2006) Les effets des accidents sur la mise en œuvre de la Conventio n
Marpol 73/78 (annexe 1) et l’évolution des rejets opérationnels d’hydrocarbures des
navires au large de la Bretagne. Norois, 198(1), 49-62
58. Gług M, Wąs J (2018) Modeling of oil spill spreading disasters using combination of
Langrangian discrete particle algorithm with Cellular Automata approach. Ocean Eng
43. Cheng, D, Rogan J, Schneider L, & Cochrane M (2013) Evaluating MODIS active fire
products in subtropical Yucatán forest. Remote Sensing Letters, 4(5), 455-464.
https://doi.org/10.1080/2150704X.2012.749360
44. Comeau J. F (1992) Impacts des déversements d'hydrocarbures sur les écosystèmes
marins (Doctoral dissertation, éditeur non identifié)
45. Cusson M, Archambault P, Lemarchand K, Verreault J & Pelletier É (2017) Toxic ité
des hydrocarbures et impacts des déversements sur les organis mes marins et leur
environnemen
46. Dávid T, Magura T, Simon E (2019) Pollution intensity-dependent metal accumula tio n
in ground beetles : a meta-analysis. Environmental Science and Pollution Research,
26(31), 32092-32102.https://doi.org/10.1007/s11356-019-06294-5
47. De Senerpont Domis LN, Elser JJ, Gsell AS (2013) Plankton dynamics under differe nt
climatic conditions in space and time. Freshwater Biology 58:463–482.
doi:10.1111/fwb.12053
48. Di Matteo A, Milli M (2008) Morphological, bathymetric and sedimentological surveys
used to assess the coastline defensive measures. Int J Environ Sci Technol 5:415–424.
https://doi.org/10.1007/BF03326037
49. Driss MH, Salah MB-B, Spatiales CT, Oran A (2019) Etude du phenomene
d’ensablement dans la region de gourara, wilaya d’adrar, en utilisant l’outil teledetectio n
et sig. https://doi.org/DOI: 10.13140/RG.2.2.24743.06569
50. Duran R, Romeo L, Whiting J (2018) Simulation of the 2003 Foss Barge - Point wells
oil spill: A comparison between BLOSOM and GNOME oil spill models. J Mar Sci Eng
6. https://doi.org/10.3390/JMSE6030104
51. El N, Bachari I, Abdellaoui A, Houma F (2011) Modélisation des données multisources
pour l ‘étude de la pollution de la baie d ‘Alger à base d ‘ un système d ‘ informa tio n
géographique. 283–288. https://doi.org/10.5150/cmcm.2011.059
52. Fernandez F & Quigley R M (2014) Hydraulic conductivity of natural clays permeated
with simple liquid hydrocarbons. Canadian Geotechnical Journal, 22(2), 205-214
53. Fouzia, H., Larbi, B. R., Amina, A., Nacera, C., & El Islam, B. N. (2019). Introductory
Chapter: Marine Monitoring Pollution. In Monitoring of Marine Pollution. IntechOpen.
54. Galindez J (2019) Prix de transfert et l’exportation de brut amélioré. Le Cas du
Venezuela. Doctoral dissertation, Université Paris sciences et lettres. HAL Id: tel03222149 https://theses.hal.science/tel-03222149
55. Gambino E, Chandrasekhar K, Nastro RA (2021) SMFC as a tool for the removal of
hydrocarbons and metals in the marine environment: a concise research update. Enviro n
Sci Pollut Res 28:30436–30451. https://doi.org/10.1007/s11356-021-13593-3
56. Gbadamosi AO, Junin R, Manan MA (2019) Hybrid suspension of polymer and
nanoparticles
for enhanced
oil recovery.
Polym
Bull
76:6193–6230.
https://doi.org/10.1007/s00289-019-02713-2
57. Gentil É. L (2006) Les effets des accidents sur la mise en œuvre de la Conventio n
Marpol 73/78 (annexe 1) et l’évolution des rejets opérationnels d’hydrocarbures des
navires au large de la Bretagne. Norois, 198(1), 49-62
58. Gług M, Wąs J (2018) Modeling of oil spill spreading disasters using combination of
Langrangian discrete particle algorithm with Cellular Automata approach. Ocean Eng
