Search results for "Arsenate"

showing 10 items of 34 documents

Competitive arsenate and phosphate adsorption on α-FeOOH, LaOOH, and nano-TiO2: Two-dimensional correlation spectroscopy study

2021

Abstract Competitive adsorption of arsenate (AsO43−) and phosphate (PO43−) on α-FeOOH, LaOOH, and nano-TiO2 was studied using batch adsorption experiments and in-situ flow cell ATR-FTIR coupled with two-dimensional correlation spectroscopy (2D-COS) for the first time. With a higher temporal resolution, our results found a highly dynamic adsorption sequence for AsO43− and PO43−. When AsO43− and PO43− were simultaneously exposed to the adsorbents at the same concentrations, AsO43− was preferentially adsorbed by α-FeOOH and TiO2, but PO43− adsorption was dominant on LaOOH. The results implied that the PO43− adsorbed on LaOOH had to be remobilized to allow for AsO43− adsorption, but that PO43− …

Environmental EngineeringHealth Toxicology and MutagenesisPopulationInorganic chemistry0211 other engineering and technologies02 engineering and technology010501 environmental sciences01 natural sciencesCrystalMetalchemistry.chemical_compoundAdsorptionEnvironmental ChemistryeducationWaste Management and Disposal0105 earth and related environmental sciences021110 strategic defence & security studieseducation.field_of_studyChemistryArsenatePollutionChemical bondvisual_artvisual_art.visual_art_mediumTernary operationTwo-dimensional nuclear magnetic resonance spectroscopyJournal of Hazardous Materials
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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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Predicting breakthrough of vanadium in fixed-bed absorbent columns with complex groundwater chemistries: A multi-component granular ferric hydroxide−…

2020

Granular ferric hydroxide (GFH) is often used for fixed bed adsorbent (FBA) columns in groundwater purification units around the world to remove arsenate contaminations. Groundwater can contain also other toxic (e.g., antimonite and vanadate) and non-toxic oxo-anions (phosphate and silicic acid) that are known to affect FBA lifetimes. Therefore, understanding the breakthrough of toxic compounds intended for removal by FBA is essential to their design, and is important to predict accurately breakthrough curves (BTCs) for FBAs in waterworks to plan future operating costs. Rapid small-scale column tests (RSCCT) and pilot-scale FBA were used to simulate vanadate BTCs for complex groundwater che…

Full PaperChemistryEcological ModelingInorganic chemistryArsenateVanadiumchemistry.chemical_elementPollutionlcsh:TD1-1066HSDMchemistry.chemical_compoundRSCCTAdsorptionCD-MUSICMass transferVanadateFBAFreundlich equationVanadateAdsorptionSilicic acidlcsh:Environmental technology. Sanitary engineeringWaste Management and DisposalGroundwaterWater Science and TechnologyWater Research X
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Ecological risks of an old wood impregnation mill: application of the triad approach.

2010

Although many studies deal with the distribution and mobility of chromated copper arsenate (CCA) metals in soil, the ecotoxicity of CCA-contaminated soils is rarely studied. The Triad approach was applied to determine the ecological risks posed by a CCA mixture at a decommissioned wood impregnation mill in southern Finland. A combination of (1) chemical analyses; (2) toxicity tests with plants (aquatic: Lemna minor; terrestrial: Lactuca sativa), earthworms (Lumbricus rubellus), and enchytraeids (Enchytraeus albidus) conducted on contaminated soils, their aqueous extracts, and well water collected from the site; and (3) determination of the abundance of enchytraeids and nematodes and the bio…

Geography Planning and Development010501 environmental sciences01 natural sciencesArsenicals/dk/atira/pure/sustainabledevelopmentgoals/clean_water_and_sanitationSoilchemistry.chemical_compoundRisk FactorsAquatic plantAnimalsAraceaeIndustryChromated copper arsenate0105 earth and related environmental sciencesGeneral Environmental SciencebiologyChemistryEcologyWaterSoil classification04 agricultural and veterinary sciencesGeneral MedicineLettuceLumbricus rubellusbiology.organism_classificationInvertebratesWoodSoil contamination6. Clean water13. Climate actionBioaccumulationEnvironmental chemistrySoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesBiological AssayEnvironmental PollutantsEcotoxicitySDG 6 - Clean Water and SanitationCopperEnvironmental Monitoring
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Synthesis, Structure, and Properties of BaVO2(AsO4):  a New Vanadium Arsenate Containing the V2O42+ Core

1997

The new vanadium arsenate BaAsVO6 has been synthesized hydrothermally and structurally characterized by single-crystal X-ray diffraction, IR spectroscopy, and magnetic susceptibility measurements. It crystallizes in the monoclinic system, space group P21/c with unit cell parameters a = 5.645(1) A, b = 10.243(1) A, c = 8.945(1) A, β = 90.60(1)°, and Z = 2. The layered structure is built up from V2O42+ units and AsO43- anions, the AsO43- ligands being coordinated to two (V2O4)2+ units in both, terminal and bridging μ2-AsO43- fashion. The [VO2(AsO4)]2- layers are separated by Ba2+ cations. The V2O42+ unit has no precedence in oxo-vanadium chemistry.

Inorganic ChemistryDiffractionchemistry.chemical_compoundCrystallographyChemistryArsenateVanadiumchemistry.chemical_elementInfrared spectroscopyPhysical and Theoretical ChemistryMagnetic susceptibilityMonoclinic crystal systemLayered structureInorganic Chemistry
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Surface complexation modeling of arsenate adsorption by akagenéite (β-FeOOH)-dominant granular ferric hydroxide

2014

Abstract A surface complexation model has been set up for the first time with akaganeite (β-FeOOH), a major compound of granular ferric hydroxide (GFH) used in groundwater purification units worldwide for arsenic and other toxic pollutant removal. Unlike the situation for the α-FeOOH polymorph goethite, there is yet no published surface complexation model to predict competing oxyanion effects. This is due to a linked bulk-surface reactivity by which excess protons released in an unknown amount from tunnel sites hamper quantification of surface protonation by acid titration. The measured proton uptake thus exceeds what can be expected from OH groups active in surface protonation. However, ch…

Inorganic chemistryArsenateProtonationOxyanionChloridechemistry.chemical_compoundFerrihydriteColloid and Surface ChemistryAdsorptionchemistrymedicineTitrationSurface chargemedicine.drugColloids and Surfaces A: Physicochemical and Engineering Aspects
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Designing biochar properties through the blending of biomass feedstock with metals: Impact on oxyanions adsorption behavior

2018

Metal-blending of biomass prior to pyrolysis is investigated in this work as a tool to modify biochar physico-chemical properties and its behavior as adsorbent. Six different compounds were used for metal-blending: AlCl3, Cu(OH)2, FeSO4, KCl, MgCl2 and Mg(OH)2. Pyrolysis experiments were performed at 400 and 700 °C and the characterization of biochar properties included: elemental composition, thermal stability, surface area and pore size distribution, Zeta potential, redox potential, chemical structure (with nuclear magnetic resonance) and adsorption behavior of arsenate, phosphate and nitrate. Metalblending strongly affected biochars' surface charge and redox potential. Moreover, it incre…

LangmuirEnvironmental EngineeringP06 - Sources d'énergie renouvelableHealth Toxicology and Mutagenesishttp://aims.fao.org/aos/agrovoc/c_290360208 environmental biotechnology02 engineering and technology010501 environmental sciences01 natural sciencesRedoxchemistry.chemical_compoundAdsorptionBiocharPhysico-chemicalBiomasseZeta potentialEnvironmental ChemistrySurface chargeBiomassOxydation0105 earth and related environmental scienceshttp://aims.fao.org/aos/agrovoc/c_26874Designer biocharMetalPublic Health Environmental and Occupational HealthArsenateGeneral MedicineGeneral ChemistryOxyanionPore size distributionMétalPollutionMetal-blendingU50 - Sciences physiques et chimie020801 environmental engineeringhttp://aims.fao.org/aos/agrovoc/c_926chemistryChemical engineeringMetalsCharcoalCharbonPyrolyseAdsorptionhttp://aims.fao.org/aos/agrovoc/c_5472Pyrolysishttp://aims.fao.org/aos/agrovoc/c_1693
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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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Evaluation of Arsenate- and Vanadate-Associated Changes of Electrical Membrane Potential and Phosphate Transport inLemna gibbaG1

1989

Interference of arsenate and vanadate with phosphate uptake in Lemna gibba L. was studied by measuring voltage changes and (32P)phosphate uptake. Arsenate proved to be competitive with the highand low-affinity phosphate uptake system. It induced transient membrane potential changes of up to 120 mV which were similar to those induced by phosphate and indicated a cotransport mechanism with at least 2H+/H2As04. The amplitude of the transient arsenate-induced membrane depolarization was strongly influenced by phosphate starvation. A permanent membrane depolarization to the diffusion potential was achieved within 2 to 6 h in P-starved plants. Thus, arsenate is indeed a strongly competitive physi…

Membrane potentialLemnabiologyPhysiologyLemna gibbaATPaseArsenatefood and beveragesDepolarizationPlant SciencePhosphatebiology.organism_classificationchemistry.chemical_compoundchemistryBiochemistrybiology.proteinVanadateJournal of Experimental Botany
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Identification of Resistance Genes and Response to Arsenic in Rhodococcus aetherivorans BCP1

2019

This is the accepted manuscript of the paper "Identification of Resistance Genes and Response to Arsenic in Rhodococcus aetherivorans BCP1", published as final paper in "Frontiers in Microbiology Volume 10, 07 May 2019, Pages 888 https://doi.org/10.3389/fmicb.2019.00888”. Arsenic (As) ranks among the priority metal(loid)s that are of public health concern. In the environment, arsenic is present in different forms, organic or inorganic, featured by various toxicity levels. Bacteria have developed different strategies to deal with this toxicity involving different resistance genetic determinants. Bacterial strains of Rhodococcus genus, and more in general Actinobacteria p…

Microbiology (medical)arsenic resistance geneThioredoxin reductaselcsh:QR1-502chemistry.chemical_elementMicrobiologylcsh:MicrobiologyNO03 medical and health scienceschemistry.chemical_compoundR. aetherivorans BCP1Gene clusterRhodococcusArsenic030304 developmental biologyArseniteOriginal Research0303 health sciencesbiology030306 microbiologyarsenate reductionarsenic resistance genesbiology.organism_classificationActinobacteriaArsenate reductaseBiochemistrychemistryarsenic resistance genes arsenate reduction Rhodococcus R. aetherivorans BCP1 ActinobacteriaThioredoxinEnergy sourceRhodococcusRhodococcuFrontiers in Microbiology
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