Search results for "aquatic system"

showing 3 items of 3 documents

Management and research on plastic debris in Uruguayan Aquatic Systems: update and perspectives

2015

Synthetic plastics have become an indispensable component of modern life, and the amount of plastics disposal has increased dramatically as a result. With human population increasing, it is expected that the prevalence of plastic debris in the environment will also increase, unless sustainable daily habits are incorporated, waste management improved, and new alternative materials are discovered and popularized. To date, several reports show negative effects of plastic debris on marine and freshwater fauna (e.g. invertebrates, birds, turtles, marine mammals). Plastic are ubiquitous in the water column, deposited in fine sediments and enter the guts, respiratory structures and tissues of diff…

Gestão Costeira IntegradaContaminação por plásticos e microplásticosAquatic systemsManagement Monitoring Policy and LawAquatic ScienceOceanographyRío de la PlataGeographyGestão de resíduosRio de la PlataIntegrated Coastal Zone ManagementUruguayWaste managementPlastic and microplastic pollutionWater Science and Technology
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THE FATE OF ZR AND HF IN AQUATIC SYSTEMS UNDER THE EFFECTS OF SOLID-LIQUID INTERFACE PROCESSES, INTERPRETED IN THE LIGHT OF BEHAVIOUR OF RARE EARTHS …

2012

LIGHT OF BEHAVIOUR OF RARE EARTHS ELEMENTS AND YTTRIUM.THE EFFECTS OF SOLID-LIQUID INTERFACE PROCESSESTHE FATE OF ZR AND HF IN AQUATIC SYSTEMSSettore GEO/08 - Geochimica E Vulcanologia
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A novel TiO2-assisted magnetic nanoparticle separator for treatment and inactivation of bacterial contaminants in aquatic systems

2014

Ferromagnetic nanoparticles (Fe-nanoparticles) have been functionalized with recombinant poly- Glu [glutamic acid]-tagged silicatein, a biomineral-synthesizing enzyme from siliceous sponges that forms the inorganic silica skeleton of those animals. The biocatalytic activity of silicatein was used to form a titania (TiO2) shell around the iron nanoparticle core, using the water-soluble non- natural substrate titanium bis(ammonium lactato)-dihydroxide (TiBALDH). Thereby the diameter of the nanoparticles increases from 7 nm to ≈22 nm. This procedure also allows the layer-by-layer fabrication of titania/silica- Fe-nanoparticles. SEM/EDX analysis confirmed the presence of the Ti and Si signals i…

aquatic system; bacterial contaminants; magnetic nano-particles; TiOAqueous solutionFabricationMaterials scienceFerromagnetic material propertiesGeneral Chemical EngineeringInorganic chemistrySubstrate (chemistry)chemistry.chemical_elementNanoparticleGeneral ChemistrychemistryPhotocatalysisSeparator (electricity)TitaniumRSC Adv.
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