Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
4980124 | Journal of Hazardous Materials | 2017 | 97 Pages |
Abstract
This review focuses on environmental implications and applications of engineered magnetite (Fe3O4) nanoparticles (MNPs) as a single phase or a component of a hybrid nanocomposite that exhibits superparamagnetism and high surface area. MNPs are synthesized via co-precipitation, thermal decomposition and combustion, hydrothermal process, emulsion, microbial process, and green approaches. Aggregation/sedimentation and transport of MNPs depend on surface charge of MNPs and geochemical parameters such as pH, ionic strength, and organic matter. MNPs generally have low toxicity to humans and ecosystem. MNPs are used for constructing chemical/biosensors and for catalyzing a variety of chemical reactions. MNPs are used for air cleanup and carbon sequestration. MNP nanocomposites are designed as antimicrobial agents for water disinfection and flocculants for water treatment. Conjugated MNPs are widely used for adsorptive/separative removal of organics, dyes, oil, arsenic, phosphate, molybdate, fluoride, selenium, Cr(VI), heavy metal cations, radionuclides, and rare earth elements. MNPs can degrade organic/inorganic contaminants via chemical reduction or catalyze chemical oxidation in water, sediment, and soil. Future studies should further explore mechanisms of MNP interactions with other nanomaterials and contaminants, economic and green approaches of MNP synthesis, and field scale demonstration of MNP utilization.
Keywords
PEIPVABPAHNTsCMCCTABQACMWCNTsBTEXCNTSPVPTCEXANESDCPDSERSPolypyrrolePVDFtetrabromobisphenol AAASPDAZVIPMSPPyPFOSCbzCQDsSPENMSTEPAMCsPCPPQAPZCβ-CyclodextrinHUVECCNFFlumequineTBBPAAPAPMAADCPDMSABMCsMNCsMCMPHQβ-CDDSPETCLPrHbCSNbenzene, toluene, ethylbenzene and xylenesDicyclopentadiene4-n-NonylphenolDissimilatory iron reducing bacteriaAQDSDIRB2,4-D2,4-dichlorophenoxyacetic acid4-NitrophenolXASMNPsNPs4-NPrGOROSTetraethylenepentamineZerovalent ironcetyltrimethylammonium bromideEthylene glycolAcetaminophenSolid-phase extractionAAS, atomic absorption spectrometrydimercaptosuccinic acidMethacrylic acidHumic acidRemediationMagnetic graphene oxideReduced graphene oxideTemBromothymol blueBisphenol ATetracyclineTrichloroetheneQuaternary ammonium compoundsSPIONTETAnZVIDichlorophenolRhodamine BToxicity characteristic leaching procedureContact anglegreen rustFluSurface enhanced Raman spectroscopyHuman umbilical vein endothelial cellsBacterial celluloseX-ray absorption spectroscopyinductively coupled plasma-mass spectrometryX-ray photoelectron spectroscopyXPSICP-MSNanofibrous membranesSuperparamagneticLDHMethylene blueSEMMgONatural organic matterFe3O4scanning electron microscopeTransmission electron microscopyNOMHalloysite nanotubesNanomaterialsNanoparticlesSuperparamagnetic iron oxide nanoparticlesMagnetite nanoparticlesCarbon nanofiberMulti-walled carbon nanotubesCarbon nanotubesMagnetic nanocompositesHybrid nanocompositesCarbon quantum dotspoint of zero chargeAnaerobic digestionPolycyclic aromatic hydrocarbonsPAHsLayered double hydroxidePETXRDX-ray diffractionPeroxymonosulfatePoly(urea-urethane)PMMAPoly(methylmethacrylate)PolyethyleniminePolyethylene terephthalatepolyethylene glycolPoly(vinylpyrrolidone)Polyvinylidene fluoridePEGPentachlorophenolPolydopamineCatalystcarbamazepineActivated carbonCarboxymethyl cellulosehigh performance liquid chromatographyHPLCGallic acidReactive oxygen species
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Authors
Chunming Su,