Search results for "Arsenates"

showing 7 items of 7 documents

Investigating the emerging role of comparative proteomics in the search for new biomarkers of metal contamination under varying abiotic conditions

2016

13 pages; International audience; This study aims at investigating the potential use of comparative proteomics as a multi-marker approach of metal contamination, taking into account the potential confounding effect of water temperature. The major objective was to identify combinations of proteins specifically responding to a given metal, even if included in a metal mixture. The diagnostic approach was performed via the comparative analysis of protein expression on spot mapping provided by adult males of Gammarus pulex (Amphipoda, Crustacea) respectively exposed to arsenate (As), cadmium (Cd) or a binary mixture of these metals (AsCd) at three realistic temperatures (5, 10 and 15 °C). Proteo…

0301 basic medicineMaleProteomicsEnvironmental EngineeringProteomechemistry.chemical_element[ SDV.TOX.ECO ] Life Sciences [q-bio]/Toxicology/Ecotoxicology010501 environmental sciencesProteomics01 natural sciences03 medical and health scienceschemistry.chemical_compoundGammarus[SDV.BBM.GTP]Life Sciences [q-bio]/Biochemistry Molecular Biology/Genomics [q-bio.GN]Environmental ChemistryAnimalsSample preparationAmphipodaWaste Management and DisposalEcotoxicological impact0105 earth and related environmental sciencesMetal interactionCadmiumChromatographybiologyArsenateTemperaturebiology.organism_classificationPollutionElectrophoresisGammarus pulex030104 developmental biologyPulexchemistryArsenate13. Climate action[ SDV.BBM.GTP ] Life Sciences [q-bio]/Biochemistry Molecular Biology/Genomics [q-bio.GN]Arsenates[SDV.TOX.ECO]Life Sciences [q-bio]/Toxicology/EcotoxicologyGammarusBiomarkersWater Pollutants ChemicalCadmium
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Toxicity of binary mixtures of Cu, Cr and As to the earthworm Eisenia andrei

2020

AbstractChromated copper arsenate (CCA) mixtures were used in the past for wood preservation, leading to large scale soil contamination. This study aimed at contributing to the risk assessment of CCA-contaminated soils by assessing the toxicity of binary mixtures of copper, chromium and arsenic to the earthworm Eisenia andrei in OECD artificial soil. Mixture effects were related to reference models of Concentration Addition (CA) and Independent Action (IA) using the MIXTOX model, with effects being related to total and available (H2O and 0.01 M CaCl2 extractable) concentrations in the soil. Since only in mixtures with arsenic dose-related mortality occurred (LC50 92.5 mg/kg dry soil), it wa…

ChromiumDendrodrilus rubidusLUMBRICUS-RUBELLUSBioavailabilityHealth Toxicology and Mutagenesismixture toxicity.0211 other engineering and technologiesMIXTOX model02 engineering and technology010501 environmental sciencesCOCOON PRODUCTIONToxicology01 natural sciencesraskasmetallitchemistry.chemical_compoundSoil PollutantsSEXUAL DEVELOPMENTbiosaatavuusmaaperäbiologyChemistryCopper toxicityGeneral MedicineFreundlich sorption isothermsCONTAMINATED SOILSLumbricus rubellusCOPPER TOXICITYSoil contaminationFOLSOMIA-CANDIDAekotoksikologiaEnvironmental chemistryArsenates/dk/atira/pure/sustainabledevelopmentgoals/good_health_and_well_beingmaaperän saastuminenlierotEisenia andreichemistry.chemical_elementManagement Monitoring Policy and LawmyrkyllisyysArticleArsenicHEAVY-METALSSDG 3 - Good Health and Well-beingENCHYTRAEUS-ALBIDUSToxicity TestsmedicineAnimalsOligochaetaChromated copper arsenateArsenic1172 Environmental sciences0105 earth and related environmental sciences021110 strategic defence & security studiesMixture toxicityCCA metalsEarthwormbiology.organism_classificationmedicine.diseaseEISENIA-FOETIDApuunsuoja-aineetDENDRODRILUS-RUBIDUSbioavailabilityCopper
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An uptake and elimination kinetics approach to assess the bioavailability of chromium, copper, and arsenic to earthworms (Eisenia andrei) in contamin…

2019

The aim of this study was to determine the bioavailability of metals in field soils contaminated with chromated copper arsenate (CCA) mixtures. The uptake and elimination kinetics of chromium, copper, and arsenic were assessed in the earthworm Eisenia andrei exposed to soils from a gradient of CCA wood preservative contamination near Hartola, Finland. In soils contaminated with 1480–1590 mg Cr/kg dry soil, 642–791 mg Cu/kg dry soil, and 850–2810 mg Ag/kg dry soil, uptake and elimination kinetics patterns were similar for Cr and Cu. Both metals were rapidly taken up and rapidly excreted by Eisenia andrei with equilibrium reached within 1 day. The metalloid As, however, showed very slow uptak…

ChromiumLUMBRICUS-RUBELLUSBioavailabilityEisenia andreiHealth Toxicology and Mutagenesis010501 environmental sciences01 natural sciencesTOXICITYchemistry.chemical_compoundSoilbiosaatavuusmetallitFinlandbiologyGeneral MedicineLumbricus rubellusPollutionBioaccumulationFOLSOMIA-CANDIDACDbioaccumulationMetalsEnvironmental chemistryBioaccumulationuptake and elimination kineticsArsenatesMetalloidmaaperän saastuminenCUResearch ArticlelierotMetals and metalloidsmetals and metalloidsEisenia andreiMETAL ACCUMULATIONchemistry.chemical_elementBiological AvailabilityArsenicHEAVY-METALSEnvironmental ChemistryAnimalsChromated copper arsenateOligochaetaSPECIATION1172 Environmental sciencesArsenic0105 earth and related environmental sciencesCCA-contaminated soilEarthwormbiology.organism_classificationFOETIDABioavailabilityKineticschemistrykertyminenZNUptake and elimination kineticspuunsuoja-aineetEnvironmental PollutionCopperEnvironmental science and pollution research international
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Adsorption mechanism of arsenate by zirconyl-functionalized activated carbon

2007

Arsenate [As(V)] and arsenite [As(III)] sorption at the solid-water interface of activated carbon impregnated with zirconyl nitrate (Zr-AC) was investigated using X-ray absorption spectroscopy (XAS) and surface complexation modeling. The XAS data at the Zr K-edge suggest that the structure of the zirconyl nitrate coating is built from chains of edge-sharing ZrO8 trigonal dodecahedra bound to each other through two double hydroxyl bridges. The 8-fold coordination of each Zr atom is completed by four O atoms, which share a bit less than the two theoretically possible bidentate nitrate groups. On impregnation, two of the O atoms may lose their nitrate group and be transformed to hydroxyl group…

DenticityArsenitesSurface PropertiesInorganic chemistrychemistry.chemical_elementchemistry [Arsenites]Biomaterialschemistry.chemical_compoundColloid and Surface ChemistryAdsorptionOxidation statechemistry [Arsenates]medicineArsenicchemistry [Zirconium]ArseniteNitrateschemistry [Nitrates]Extended X-ray absorption fine structureSpectrum AnalysisX-Rayschemistry [Water]arsenic acidArsenateWaterCarbonchemistry [Carbon]Surfaces Coatings and FilmsElectronic Optical and Magnetic Materialsarsenitechemistryddc:540PotentiometryArsenatesAdsorptionZirconiumActivated carbonmedicine.drugJournal of Colloid and Interface Science
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Extractability of metals and ecotoxicity of soils from two old wood impregnation sites in Finland

2003

Abstract Four metal-contaminated soil samples were classified using physical methods, extracted by selective extraction procedures and analyzed for chemical concentrations. De-ionized water, 0.01 mol/l barium chloride, 1 mol/l ammonium acetate and concentrated nitric acid were used as extraction solutions. Ecotoxicity of water extracts and soil samples was analyzed in order to describe the bioavailability of the contaminants. Samples from old wood impregnation plants contained high amounts of As, Cu, Cr and Zn, which originated from chromated copper arsenate, ammoniacal copper–zinc arsenate, and ammoniacal copper quaternary compound. Total As concentrations of the heavily contaminated sampl…

Environmental EngineeringSoil testBiological AvailabilityGerminationSensitivity and SpecificityAlliumchemistry.chemical_compoundMetals HeavyAnimalsAraceaeSoil PollutantsEnvironmental ChemistryChromated copper arsenateArthropodsWaste Management and DisposalFinlandExtraction (chemistry)ArsenateLettuceSoil typeWoodPollutionSoil contaminationchemistryEnvironmental chemistrySeedsSoil waterArsenatesBiological AssayEcotoxicityEnvironmental MonitoringScience of The Total Environment
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The removal of sulphate from mine water by precipitation as ettringite and the utilisation of the precipitate as a sorbent for arsenate removal.

2016

Abstract The aim of this research was to investigate sulphate removal from mine water by precipitation as ettringite (Ca6Al2(SO4)3(OH)12·26H2O) and the utilisation of the precipitate as a sorbent for arsenate removal. The mine water sulphate concentration was reduced by 85–90% from the initial 1400 mg/L during ettringite precipitation depending on the treatment method. The precipitation conditions were also simulated with MINEQL + software, and the computational results were compared with the experimental results. The precipitated solids were characterised with X-ray diffraction and a scanning electron microscope. The precipitated solids were tested as sorbents for arsenate removal from the…

LangmuirEttringiteEnvironmental EngineeringSorbentInorganic chemistrychemistry.chemical_element02 engineering and technology010501 environmental sciencesManagement Monitoring Policy and Law01 natural sciencesMiningWater Purificationchemistry.chemical_compoundX-Ray DiffractionChemical PrecipitationFreundlich equationWaste Management and DisposalArsenic0105 earth and related environmental sciencesMineralsPrecipitation (chemistry)SulfatesArsenateSpectrometry X-Ray EmissionSorptionGeneral MedicineHydrogen-Ion Concentration021001 nanoscience & nanotechnologychemistryArsenatesAdsorption0210 nano-technologyWater Pollutants ChemicalElectron Probe MicroanalysisJournal of environmental management
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Abundant and diverse arsenic‐metabolizing microorganisms in peatlands treating arsenic‐contaminated mining wastewaters

2020

Mining operations produce large quantities of wastewater. At a mine site in Northern Finland, two natural peatlands are used for the treatment of mining‐influenced waters with high concentrations of sulfate and potentially toxic arsenic (As). In the present study, As removal and the involved microbial processes in those treatment peatlands (TPs) were assessed. Arsenic‐metabolizing microorganisms were abundant in peat soil from both TPs (up to 108 cells gdw‐1), with arsenate respirers being about 100 times more abundant than arsenite oxidizers. In uninhibited microcosm incubations, supplemented arsenite was oxidized under oxic conditions and supplemented arsenate was reduced under anoxic con…

PeatkaivoksetArseniteschemistry.chemical_elementjätevesiBiologyWastewaterMicrobiologyMiningbiologinen puhdistusarseeniArsenic03 medical and health scienceschemistry.chemical_compoundSoilturvemaatGroundwaterEcology Evolution Behavior and SystematicsArsenicResearch ArticlesSoil Microbiology030304 developmental biologyArsenite0303 health sciences030306 microbiologyMicrobiotaArsenateAnoxic waters6. Clean waterOxygenBiodegradation EnvironmentalchemistryMicrobial population biologyEnvironmental chemistrymikro-organismitArsenateskaivosvesiMicrocosmSoil microbiologyOxidation-ReductionWater Pollutants ChemicalResearch ArticleEnvironmental Microbiology
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