Assessing the Impact of Hg-Contaminated Sediments Washing through Sentinel Species: A Mesocosm Approach
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P. Viotti | A. Luciano | T. Cappello | M. Maisano | G. De Marco | Giuseppe Mancini | Rosalba Gornati | Simone Cappello | Massimiliano Scalici | D. Fino
[1] D. Fattorini,et al. 10-year time course of Hg and organic compounds in Augusta Bay: Bioavailability and biological effects in marine organisms , 2022, Frontiers in Public Health.
[2] M. Al‐Ghouti,et al. The Causes and Effects of Mercury and Methylmercury Contamination in the Marine Environment: A Review , 2022, Current Pollution Reports.
[3] A. Cristaldi,et al. Trace elements in the muscle tissue of Hemiculter leucisculus and Abramis brama orientalis from the Anzali International wetland, south-west of Caspian Sea: An exposure risk assessment. , 2022, Marine pollution bulletin.
[4] Sabrina Oliva,et al. Assessment of the effectiveness of a novel BioFilm-Membrane BioReactor oil-polluted wastewater treatment technology by applying biomarkers in the mussel Mytilus galloprovincialis. , 2021, Aquatic toxicology.
[5] V. Inglezakis,et al. Mercury (Hg) Contaminated Sites in Kazakhstan: Review of Current Cases and Site Remediation Responses , 2020, International journal of environmental research and public health.
[6] J. Loredo,et al. Mercury and arsenic mobility in resuspended contaminated estuarine sediments (Asturias, Spain): A laboratory-based study. , 2020, The Science of the total environment.
[7] G. Bernardini,et al. Assessing the Effect of Contaminated and Restored Marine Sediments in Different Experimental Mesocosms Using an Integrated Approach and Mytilus galloprovincialis as a Model , 2020, Marine Biotechnology.
[8] C. Gilmour,et al. The assessment and remediation of mercury contaminated sites: A review of current approaches. , 2019, The Science of the total environment.
[9] G. Bernardini,et al. Mesocosm System to Evaluate BF-MBR Efficacy in Mitigating Oily Wastewater Discharges: an Integrated Study on Mytilus galloprovincialis , 2019, Marine Biotechnology.
[10] M. Ferrante,et al. Metals/Metalloids and Oxidative Status Markers in Saltwater Fish from the Ionic Coast of Sicily, Mediterranean Sea , 2019, International Journal of Environmental Research.
[11] M. Genovese,et al. Biodegradation ability of two selected microbial autochthonous consortia from a chronically polluted marine coastal area (Priolo Gargallo, Italy) , 2019, Journal of applied microbiology.
[12] S. Cappello,et al. Carbonic anhydrase integrated into a multimarker approach for the detection of the stress status induced by pollution exposure in Mytilus galloprovincialis: A field case study. , 2019, The Science of the total environment.
[13] D. Amouroux,et al. Assessment of Hg contamination by a Chlor-Alkali Plant in riverine and coastal sites combining Hg speciation and isotopic signature (Sagua la Grande River, Cuba). , 2019, Journal of hazardous materials.
[14] D. Dreisinger,et al. Feasibility study on the use of thiosulfate to remediate mercury-contaminated soil , 2019, Environmental technology.
[15] Zhengcheng Song,et al. Mercury speciation and mobility in salt slurry and soils from an abandoned chlor-alkali plant, Southwest China. , 2019, The Science of the total environment.
[16] J. Dalziel,et al. Bioaccumulation of methylmercury within the marine food web of the outer Bay of Fundy, Gulf of Maine , 2018, PloS one.
[17] M. Mangano,et al. Predicting the effectiveness of oil recovery strategies in the marine polluted environment. , 2018, Journal of environmental management.
[18] G. Bernardini,et al. Evaluation of biomarkers in Mytilus galloprovincialis as an integrated measure of biofilm-membrane bioreactor (BF-MBR) system efficiency in mitigating the impact of oily wastewater discharge to marine environment: a microcosm approach. , 2018, Aquatic toxicology.
[19] D. Fino,et al. Feasibility of treating emulsified oily and salty wastewaters through coagulation and bio-regenerated GAC filtration. , 2017, Journal of environmental management.
[20] Sabrina Oliva,et al. Effects of petrochemical contamination on caged marine mussels using a multi-biomarker approach: Histological changes, neurotoxicity and hypoxic stress. , 2017, Marine environmental research.
[21] G. Guerriero,et al. Shell fluctuating asymmetry in the sea-dwelling benthic bivalve Mytilus galloprovincialis (Lamarck, 1819) as morphological markers to detect environmental chemical contamination , 2017, Ecotoxicology.
[22] G. Bernardini,et al. Evaluation of tissue morphology and gene expression as biomarkers of pollution in mussel Mytilus galloprovincialis caging experiment. , 2016, Aquatic toxicology.
[23] S. Mazzola,et al. Fluxes and the mass balance of mercury in Augusta Bay (Sicily, southern Italy) , 2016 .
[24] M. Yakimov,et al. Oil-degrading bacteria from a membrane bioreactor (BF-MBR) system for treatment of saline oily waste: Isolation, identification and characterization of the biotechnological potential , 2016 .
[25] M. Yakimov,et al. Bioremediation of oil polluted marine sediments: A bio-engineering treatment. , 2015, International microbiology : the official journal of the Spanish Society for Microbiology.
[26] A. Marchetti,et al. Tracing mercury pathways in Augusta Bay (southern Italy) by total concentration and isotope determination. , 2015, Environmental pollution.
[27] Giuseppe Mancini,et al. The “SYSTEMS BIOLOGY” in the study of xenobiotic effects on marine organisms for evaluation of the environmental health status: biotechnological applications for potential recovery strategies , 2015, Reviews in Environmental Science and Bio/Technology.
[28] M. Yakimov,et al. Biodegradation of crude oil by individual bacterial strains and a mixed bacterial consortium , 2015, Brazilian journal of microbiology : [publication of the Brazilian Society for Microbiology].
[29] D. Reible,et al. Electro-bioremediation of contaminated sediment by electrode enhanced capping. , 2015, Journal of environmental management.
[30] M. Yakimov,et al. Quick stimulation of Alcanivorax sp. by bioemulsificant EPS2003 on microcosm oil spill simulation , 2015, Brazilian journal of microbiology : [publication of the Brazilian Society for Microbiology].
[31] Salvatore Fasulo,et al. Neurotoxicological effects on marine mussel Mytilus galloprovincialis caged at petrochemical contaminated areas (eastern Sicily, Italy): ¹H NMR and immunohistochemical assays. , 2015, Comparative biochemistry and physiology. Toxicology & pharmacology : CBP.
[32] R. Marotta,et al. Simulated solar photocatalytic processes for the simultaneous removal of EDDS, Cu(II), Fe(III) and Zn(II) in synthetic and real contaminated soil washing solutions , 2014 .
[33] Salvatore Fasulo,et al. Impact of environmental pollution on caged mussels Mytilus galloprovincialis using NMR-based metabolomics. , 2013, Marine pollution bulletin.
[34] S. Orecchio,et al. Fractionation of mercury in sediments during draining of Augusta (Italy) coastal area by modified Tessier method , 2013 .
[35] P. Randall,et al. Mercury contaminated sediment sites-an evaluation of remedial options. , 2013, Environmental research.
[36] R. Caricato,et al. Acetylcholinesterase as a Biomarker in Environmental and Occupational Medicine: New Insights and Future Perspectives , 2013, BioMed research international.
[37] E. Fabbri,et al. Cyclic-AMP Mediated Regulation of ABCB mRNA Expression in Mussel Haemocytes , 2013, PloS one.
[38] M. Yakimov,et al. Biological Approaches to the Treatment of Saline Oily Waste(waters) Originated from Marine Transportation , 2012 .
[39] F. Budillon,et al. The key role played by the Augusta basin (southern Italy) in the mercury contamination of the Mediterranean Sea. , 2011, Journal of environmental monitoring : JEM.
[40] Juan Manuel Paz-Garcia,et al. Feasibility study of the use of different extractant agents in the remediation of a mercury contaminated soil from Almaden , 2011 .
[41] E. Lanciotti,et al. CHEMICAL-PHYSICAL AND BIOLOGICAL TREATMENT OF HIGH SALINITY WASTEWATERS CONTAMINATED BY OILY XENOBIOTIC COMPOUNDS , 2010 .
[42] E. Aneggi,et al. Bench-scale tests on ultrasound-assisted acid washing and thermal desorption of mercury from dredging sludge and other solid matrices. , 2009, Journal of hazardous materials.
[43] A. Bermond,et al. Fractionation studies of mercury in soils and sediments: a review of the chemical reagents used for mercury extraction. , 2009, Analytica chimica acta.
[44] G. Cammarata,et al. Ecotoxicological and human health risk in a petrochemical district of southern Italy. , 2008, Marine environmental research.
[45] T. Larsson,et al. Soil Remediation – Mercury Speciation in Soil and Vapor Phase During Thermal Treatment , 2008 .
[46] Margaret A Carroll,et al. The nervous system control of lateral ciliary activity of the gill of the bivalve mollusc, Crassostrea virginica. , 2007, Comparative biochemistry and physiology. Part A, Molecular & integrative physiology.
[47] A. Schaeffer,et al. Chelate assisted phytoextraction of heavy metals from soil. Effect, mechanism, toxicity, and fate of chelating agents. , 2007, Chemosphere.
[48] M. Marin,et al. Acetylcholinesterase as a biomarker of exposure to neurotoxic compounds in the clam Tapes philippinarum from the Lagoon of Venice. , 2005, Marine pollution bulletin.
[49] S. Ferrando,et al. Stress factors in the gills of Liza aurata (Perciformes, Mugilidae) living in polluted environments , 2005 .
[50] T. Yoshino,et al. Cellular Receptors and Signal Transduction in Molluscan Hemocytes: Connections with the Innate Immune System of Vertebrates1 , 2003, Integrative and comparative biology.
[51] M. Hoop,et al. Vertical profiles of trace metals and acid-volatile sulphide in a dynamic sedimentary environment: Lake Ketel, The Netherlands , 2001 .
[52] P. Spadaro,et al. Sequential risk mitigation and the role of natural recovery in contaminated sediment projects , 1998 .
[53] D. D. Gates,et al. Removal of mercury from solids using the potassium iodide/iodine leaching process , 1997 .
[54] S. Wasay,et al. Remediation of a soil polluted by mercury with acidic potassium iodide , 1995 .
[55] P. Korhonen,et al. A mercury model used for assessment of dredging impacts , 1995 .
[56] Ralph Mitchell,et al. Sulfate stimulation of mercury methylation in freshwater sediments , 1992 .
[57] R. E. Gosselin,et al. The cilioexcitatory activity of serotonin. , 1961, Journal of cellular and comparative physiology.
[58] K. Courtney,et al. A new and rapid colorimetric determination of acetylcholinesterase activity. , 1961, Biochemical pharmacology.
[59] S. Bertilsson,et al. Sources and remediation techniques for mercury contaminated soil. , 2015, Environment international.
[60] S. Mazzola,et al. Analysis and assessment of trace element contamination in offshore sediments of the Augusta Bay (SE Sicily): A multivariate statistical approach based on canonical correlation analysis and mixture density estimation approach , 2014 .
[61] V. Torretta,et al. Numerical approach to modelling pulse-mode soil flushing on a Pb-contaminated soil , 2012, Journal of Soils and Sediments.
[62] A. Selvakumar,et al. Laboratory studies on the remediation of mercury contaminated soils , 2000 .
[63] W. Salomons,et al. Mercury Contaminated Sites , 1999 .