Hydrocarbons in size-fractionated plankton of the Mediterranean Sea (MERITE-HIPPOCAMPE campaign).
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F. Carlotti | M. Tedetti | M. Pagano | C. Guigue | D. Bănaru | J. Tronczyński | L. Chouba | D. Malengros | S. Chifflet | Javier A. Tesán-Onrubia | Léa Guyomarc'h | J. A. Tesán-Onrubia
[1] F. Carlotti,et al. Zooplankton biomass, size structure, and associated metabolic fluxes with focus on its roles at the chlorophyll maximum layer during the plankton-contaminant MERITE-HIPPOCAMPE cruise. , 2023, Marine pollution bulletin.
[2] M. Thyssen,et al. Contamination of planktonic food webs in the Mediterranean Sea: Setting the frame for the MERITE-HIPPOCAMPE oceanographic cruise (spring 2019). , 2023, Marine pollution bulletin.
[3] F. Carlotti,et al. Spatial variations of biochemical content and stable isotope ratios of size-fractionated plankton in the Mediterranean Sea (MERITE-HIPPOCAMPE campaign). , 2023, Marine pollution bulletin.
[4] M. Tedetti,et al. Distribution and accumulation of metals and metalloids in planktonic food webs of the Mediterranean Sea (MERITE-HIPPOCAMPE campaign). , 2022, Marine pollution bulletin.
[5] C. Leboulanger,et al. Effects of polycyclic aromatic hydrocarbons on marine and freshwater microalgae - A review. , 2022, Journal of hazardous materials.
[6] Xuejun Wang,et al. Characteristics of plankton Hg bioaccumulations based on a global data set and the implications for aquatic systems with aggravating nutrient imbalance , 2021, Frontiers of Environmental Science & Engineering.
[7] B. Jiménez,et al. Persistent Organic Pollutants Burden, Trophic Magnification and Risk in a Pelagic Food Web from Coastal NW Mediterranean Sea. , 2021, Environmental science & technology.
[8] M. J. Rocha,et al. Concentrations, sources and risks of PAHs in dissolved and suspended material particulate fractions from the Northwest Atlantic Coast of the Iberian Peninsula. , 2021, Marine pollution bulletin.
[9] Xiaolong Yao,et al. The biological pump effects of phytoplankton on the occurrence and benthic bioaccumulation of hydrophobic organic contaminants (HOCs) in a hypereutrophic lake. , 2021, Ecotoxicology and environmental safety.
[10] D. Valentine,et al. Microbial production and consumption of hydrocarbons in the global ocean , 2021, Nature Microbiology.
[11] P. Testor,et al. Abrupt warming and salinification of intermediate waters interplays with decline of deep convection in the Northwestern Mediterranean Sea , 2020, Scientific Reports.
[12] P. Grathwohl,et al. Impact of trophic levels on partitioning and bioaccumulation of polycyclic aromatic hydrocarbons in particulate organic matter and plankton. , 2020, Marine pollution bulletin.
[13] M. Pirsaheb,et al. Evaluation of polycyclic aromatic hydrocarbons (PAHs) in fish: a review and meta-analysis , 2020, Toxin Reviews.
[14] N. Suzuki,et al. Toxicities of Polycyclic Aromatic Hydrocarbons for Aquatic Animals , 2020, International journal of environmental research and public health.
[15] M. Harmelin-Vivien,et al. Patterns of trace metal bioaccumulation and trophic transfer in a phytoplankton-zooplankton-small pelagic fish marine food web. , 2019, Marine pollution bulletin.
[16] S. Tian,et al. Distribution, sources and ecological risk assessment of PAHs in surface seawater from coastal Bohai Bay, China. , 2019, Marine pollution bulletin.
[17] S. Dahech,et al. Synthesis review of the Gulf of Gabes (eastern Mediterranean Sea, Tunisia): Morphological, climatic, physical oceanographic, biogeochemical and fisheries features , 2019, Estuarine, Coastal and Shelf Science.
[18] D. Lundin,et al. Biodegradation as an important sink of aromatic hydrocarbons in the oceans , 2019, Nature Geoscience.
[19] J. Tronczyński,et al. Polycyclic aromatic hydrocarbons in surface sediments of the mid-Adriatic and along the Croatian coast: Levels, distributions and sources. , 2018, Environmental pollution.
[20] S. Ross,et al. Decadal Assessment of Polycyclic Aromatic Hydrocarbons in Mesopelagic Fishes from the Gulf of Mexico Reveals Exposure to Oil-Derived Sources. , 2018, Environmental science & technology.
[21] B. Xue,et al. Factors affecting annual occurrence, bioaccumulation, and biomagnification of polycyclic aromatic hydrocarbons in plankton food webs of subtropical eutrophic lakes. , 2018, Water research.
[22] F. D’Ortenzio,et al. Regionalisation of the Mediterranean basin, a MERMEX synthesis , 2017 .
[23] M. Tedetti,et al. Remobilization of polycyclic aromatic hydrocarbons and organic matter in seawater during sediment resuspension experiments from a polluted coastal environment: Insights from Toulon Bay (France). , 2017, Environmental pollution.
[24] J. Rontani,et al. Identification of di- and triterpenoid lipid tracers confirms the significant role of autoxidation in the degradation of terrestrial vascular plant material in the Canadian Arctic , 2017 .
[25] F. Carlotti,et al. Modeling of PCB trophic transfer in the Gulf of Lions; 3D coupled model application. , 2017, Marine pollution bulletin.
[26] S. Sayadi,et al. Origin and distribution of hydrocarbons and organic matter in the surficial sediments of the Sfax-Kerkennah channel (Tunisia, Southern Mediterranean Sea). , 2017, Marine pollution bulletin.
[27] B. Xue,et al. Effects of climate change on bioaccumulation and biomagnification of polycyclic aromatic hydrocarbons in the planktonic food web of a subtropical shallow eutrophic lake in China. , 2017, Environmental pollution.
[28] B. Xue,et al. Precipitation and temperature drive seasonal variation in bioaccumulation of polycyclic aromatic hydrocarbons in the planktonic food webs of a subtropical shallow eutrophic lake in China. , 2017, The Science of the total environment.
[29] N. Garcia,et al. Sources and spatial distribution of dissolved aliphatic and polycyclic aromatic hydrocarbons in surface coastal waters of the Gulf of Gabès (Tunisia, Southern Mediterranean Sea) , 2017 .
[30] R. Duran,et al. Role of environmental factors and microorganisms in determining the fate of polycyclic aromatic hydrocarbons in the marine environment , 2016, FEMS microbiology reviews.
[31] E. Balcıoğlu. Potential effects of polycyclic aromatic hydrocarbons (PAHs) in marine foods on human health: a critical review , 2016 .
[32] J. Beuvier,et al. New insights into the organic carbon export in the Mediterranean Sea from 3-D modeling , 2015 .
[33] E. Abad,et al. Oceanic Sink and Biogeochemical Controls on the Accumulation of Polychlorinated Dibenzo-p-dioxins, Dibenzofurans, and Biphenyls in Plankton. , 2015, Environmental science & technology.
[34] Colin R. Janssen,et al. Multidecadal Field Data Support Intimate Links between Phytoplankton Dynamics and PCB Concentrations in Marine Sediments and Biota. , 2015, Environmental science & technology.
[35] M. Harmelin-Vivien,et al. 210Po and 210Pb trophic transfer within the phytoplankton-zooplankton-anchovy/sardine food web: a case study from the Gulf of Lion (NW Mediterranean Sea). , 2015, Journal of environmental radioactivity.
[36] K. Maiti,et al. Vertical fluxes of polycyclic aromatic hydrocarbons in the northern Gulf of Mexico , 2015 .
[37] F. Carlotti,et al. PCB concentrations in plankton size classes, a temporal study in Marseille Bay, Western Mediterranean Sea. , 2014, Marine pollution bulletin.
[38] N. Garcia,et al. Seasonal survey of the composition and degradation state of particulate organic matter in the Rhône River using lipid tracers , 2014 .
[39] David A. Siegel,et al. Global assessment of ocean carbon export by combining satellite observations and food‐web models , 2014 .
[40] R. Macdonald,et al. Partitioning and bioaccumulation of PCBs and PBDEs in marine plankton from the Strait of Georgia, British Columbia, Canada , 2013 .
[41] F. Pomati,et al. Biological pump control of the fate and distribution of hydrophobic organic pollutants in water and plankton. , 2012, Environmental science & technology.
[42] M. Tedetti,et al. Occurrence and distribution of hydrocarbons in the surface microlayer and subsurface water from the urban coastal marine area off Marseilles, Northwestern Mediterranean Sea. , 2011, Marine pollution bulletin.
[43] J. Zaldívar,et al. Biogeochemical and physical controls on concentrations of polycyclic aromatic hydrocarbons in water and plankton of the Mediterranean and Black Seas , 2011 .
[44] N. Mzoughi,et al. Distribution and partitioning of aliphatic hydrocarbons and polycyclic aromatic hydrocarbons between water, suspended particulate matter, and sediment in harbours of the West coastal of the Gulf of Tunis (Tunisia). , 2011, Journal of environmental monitoring : JEM.
[45] J. Ras,et al. Methyl mercury distributions in relation to the presence of nano- and picophytoplankton in an oceanic water column (Ligurian Sea, North-western Mediterranean) , 2010 .
[46] T. Martellini,et al. n-Alkanes, PAHs and surfactants in the sea surface microlayer and sea water samples of the Gerlache Inlet sea (Antarctica). , 2009 .
[47] S. Lacorte,et al. Accumulation and cycling of polycyclic aromatic hydrocarbons in zooplankton. , 2009, Environmental science & technology.
[48] F. D’Ortenzio,et al. On the trophic regimes of the Mediterranean Sea: a satellite analysis , 2008 .
[49] P. Herckes,et al. PAHs in air and seawater along a North-South Atlantic transect: trends, processes and possible sources. , 2008, Environmental science & technology.
[50] L. Asia,et al. Hydrocarbons in coastal sediments from the Mediterranean sea (Gulf of Fos area, France). , 2007, Marine pollution bulletin.
[51] Frank A. P. C. Gobas,et al. A review of bioconcentration factor (BCF) and bioaccumulation factor (BAF) assessments for organic chemicals in aquatic organisms , 2006 .
[52] J. Albaigés,et al. Fingerprinting petroleum hydrocarbons in plankton and surface sediments during the spring and early summer blooms in the Galician coast (NW Spain) after the Prestige oil spill. , 2006, Marine environmental research.
[53] I. Bouloubassi,et al. PAH transport by sinking particles in the open Mediterranean Sea: a 1 year sediment trap study. , 2006, Marine pollution bulletin.
[54] Richard F. Lee,et al. Lipid storage in marine zooplankton , 2006 .
[55] K. Hylland. Polycyclic Aromatic Hydrocarbon (PAH) Ecotoxicology in Marine Ecosystems , 2006, Journal of toxicology and environmental health. Part A.
[56] J. Villeneuve,et al. Aliphatic and aromatic hydrocarbons in marine biota and coastal sediments from the Gulf and the Gulf of Oman. , 2005, Marine pollution bulletin.
[57] Md. Shahidul Islam,et al. Impacts of pollution on coastal and marine ecosystems including coastal and marine fisheries and approach for management: a review and synthesis. , 2004, Marine pollution bulletin.
[58] J. Reinfelder,et al. Phenanthrene accumulation kinetics in marine diatoms. , 2003, Environmental science & technology.
[59] R. Macdonald,et al. PAHs in the Fraser River basin: a critical appraisal of PAH ratios as indicators of PAH source and composition , 2002 .
[60] J. Albaigés,et al. Biogeochemical evolution of the outflow of the Mediterranean deep-lying particulate organic matter into the northeastern Atlantic , 2001 .
[61] D. Mackay,et al. Kenneth Mellanby Review Award. Bioaccumulation of persistent organic chemicals: mechanisms and models. , 2000, Environmental pollution.
[62] N. Garcia,et al. Wet-oxidation and automated colorimetry for simultaneous determination of organic carbon, nitrogen and phosphorus dissolved in seawater , 1999 .
[63] M. Fingas,et al. Oil spill identification , 1999 .
[64] P. Garrigues,et al. Polycyclic aromatic hydrocarbons in sediments and mussels of the western Mediterranean sea , 1998 .
[65] B. Simoneit,et al. Even N-Alkane Predominances on the Amazon Shelf and A Northeast Pacific Hydrothermal System , 1997, Naturwissenschaften.
[66] Joseph V. Mullin,et al. Using systematic and comparative analytical data to identify the source of an unknown oil on contaminated birds , 1997 .
[67] J. Albaigés,et al. Spatial, vertical distribution and budget of polycyclic aromatic hydrocarbons in the western Mediterranean seawater , 1997 .
[68] Merv Fingas,et al. Differentiation of the source of spilled oil and monitoring of the oil weathering process using gas chromatography-mass spectrometry , 1995 .
[69] N. Welschmeyer. Fluorometric analysis of chlorophyll a in the presence of chlorophyll b and pheopigments , 1994 .
[70] J. Marty,et al. Sediment trap fluxes of polycyclic aromatic hydrocarbons in the Mediterranean Sea , 1993 .
[71] Deborah L. Swackhamer,et al. Bioaccumulation of PCBs by algae: Kinetics versus equilibrium , 1993 .
[72] J. Volkman,et al. Identification of natural, anthropogenic and petroleum hydrocarbons in aquatic sediments. , 1992, The Science of the total environment.
[73] S. Falk‐Petersen,et al. Ecological investigations on the zooplankton community of Balsfjorden, northern Norway: Lipids in the euphausiids Thysanoessa raschi and T. inermis during spring , 1982 .
[74] S. Falk‐Petersen,et al. Ecological investigations on the zooplankton community in Balsfjorden, Northern Norway: seasonal changes in the lipid class composition of Meganyctiphanes norvegica (M. Sars), Thysanoessa raschii (M. Sars), and T. inermis (Krøyer) , 1981 .
[75] S. Falk‐Petersen,et al. Ecological investigations on the zooplankton community in balsfjorden, northern Norway: Lipids and fatty acids in Meganyctiphanes norvegica, Thysanoessa raschi and T. inermis during mid-winter , 1981 .
[76] M. Goutx,et al. Relationship between dissolved and particulate fatty acids and hydrocarbons, chlorophyll a and zooplankton biomass in Villefranche Bay, Mediterranean Sea , 1980 .
[77] John H. Martin,et al. The elemental composition of plankton , 1973 .
[78] M. Blumer,et al. Hydrocarbons of marine phytoplankton , 1971 .
[79] D. Beach,et al. The polyunsaturated fatty acids of marine dinoflagellates. , 1970, The Journal of protozoology.
[80] M. Kates,et al. Lipid components of diatoms. , 1966, Biochimica et biophysica acta.
[81] M. Blumer,et al. Pristane in Zooplankton , 1963, Science.
[82] S. Sayadi,et al. Natural and anthropogenic particulate-bound aliphatic and polycyclic aromatic hydrocarbons in surface waters of the Gulf of Gabès (Tunisia, southern Mediterranean Sea) , 2017, Environmental Science and Pollution Research.
[83] R. Laane,et al. Source characterization of polycyclic aromatic hydrocarbons by using their molecular indices: an overview of possibilities. , 2015, Reviews of environmental contamination and toxicology.
[84] N. Garcia,et al. Spatial and seasonal variabilities of dissolved hydrocarbons in surface waters from the Northwestern Mediterranean Sea: results from one year intensive sampling. , 2014, The Science of the total environment.
[85] S. Fowler,et al. Effect of the accumulation of polycyclic aromatic hydrocarbons in the sea surface microlayer on their coastal air–sea exchanges , 2010 .
[86] J. Neveux,et al. Dosage rapide de la chlorophylle a et des phéopigments a par fluorimétrie après extraction au méthanol. Comparaison avec la méthode classique d'extraction à l'acétone , 2004 .
[87] I. Tolosa,et al. Mass budget and dynamics of polycyclic aromatic hydrocarbons in the Mediterranean Sea , 1997 .
[88] I. Bouloubassi,et al. Investigation of anthropogenic and natural organic inputs in estuarine sediments using hydrocarbon markers (nah, lab, pah) , 1993 .
[89] M. Graeve. Umsatz und Verteilung von Lipiden in arktischen marinen Organismen unter besonderer Berücksichtigung unterer trophischer Stufen , 1993 .
[90] C. Bergami,et al. Distribution of alphatic hydrocarbons in plankton of Adriatic Sea open waters , 1991 .
[91] L. Conte,et al. Aliphatic hydrocarbon and sterol content of zooplankton of the emilia-romagna coast (northern adriatic) , 1989 .