Magnetically recoverable carbon-coated iron carbide with arsenic adsorptive removal properties
Powell C, Guo S, Godret-Miertschin L, Ventura K, Lounsbury A, Clark C, Villagran D, Zimmerman J, Atkinson A, Westerhoff P, Wong M. Magnetically recoverable carbon-coated iron carbide with arsenic adsorptive removal properties. Discover Applied Sciences 2020, 2: 1690. DOI: 10.1007/s42452-020-03491-7.Peer-Reviewed Original ResearchIron carbideAdsorptive removal propertiesSimulated drinking waterContinuous flow conditionsMagnetic recoverabilityGraphic abstractAMagnetic separabilityChemical stabilityAdsorptive propertiesAdsorption capacityMagnetic removalWater contaminantsGraphitic shellsRemoval propertiesArsenic removalFe3O4Material integrityMagnetic saturationMagnetic particlesCarbideMagnetic characteristicsDrinking waterContaminantsWaterExperimental resultsTunable Molybdenum Disulfide-Enabled Fiber Mats for High-Efficiency Removal of Mercury from Water
Fausey CL, Zucker I, Lee DE, Shaulsky E, Zimmerman J, Elimelech M. Tunable Molybdenum Disulfide-Enabled Fiber Mats for High-Efficiency Removal of Mercury from Water. ACS Applied Materials & Interfaces 2020, 12: 18446-18456. PMID: 32227872, DOI: 10.1021/acsami.9b22823.Peer-Reviewed Original ResearchMercury removalOptimal fabrication techniqueNovel environmental applicationsAqueous mercury removalTimes higher adsorptionPristine carbon fibersNanofibrous matsMercury adsorption capacityMercury removal mechanismHigh-efficiency removalReduction-oxidation reactionsFabrication techniquesHigher mercury removalSolvothermal methodCarbon nanofibersMolybdenum disulfideSelective sensingSitu MoSynthesis methodEnvironmental applicationsPhysicochemical adsorptionAdsorption capacityWater decontaminationHigh adsorptionDifferent morphologies