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fe/fes nanoparticles (24) 24
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Environmental Science and Technology, ISSN 0013-936X, 12/2016, Volume 50, Issue 23, pp. 12992 - 13001
Journal Article
Industrial and Engineering Chemistry Research, ISSN 0888-5885, 07/2013, Volume 52, Issue 27, pp. 9343 - 9350
The reactivity of FeS-coated iron nanoparticles (nFe/FeS) toward trichloroethylene (TCE) reduction was examined in both synthetic and real groundwater matrices... 
ENGINEERING, CHEMICAL | FE/FES NANOPARTICLES | ZERO-VALENT IRON | TCE DECHLORINATION | ZEROVALENT IRON | ORGANIC-MATTER | CARBON-TETRACHLORIDE | ENVIRONMENTAL APPLICATIONS | SILVER NANOPARTICLES | HUMIC-ACID | REDUCTIVE DECHLORINATION | Nanoparticles | Reduction | Groundwater | Surface chemistry | Trichloroethylene | Iron | Humic acids
Journal Article
Science of the Total Environment, ISSN 0048-9697, 10/2017, Volume 595, pp. 743 - 751
FeS-coated iron (Fe/FeS) magnetic nanoparticles were easily prepared, characterized, and applied for Cr(VI) removal in simulated groundwater. TEM, XRD, and BET... 
Cr(VI) removal | Remediation | Groundwater | Fe/FeS nanoparticles | ZERO-VALENT IRON | MACKINAWITE FES | HEXAVALENT CHROMIUM | AQUEOUS-SOLUTION | ENVIRONMENTAL SCIENCES | FACILE SYNTHESIS | METAL-ORGANIC FRAMEWORKS | X-RAY PHOTOELECTRON | NANOSCALE ZEROVALENT IRON | S-NZVI | WATER-TREATMENT | Nanoparticles | Water, Underground | Leaching | Analysis
Journal Article
Environmental Progress & Sustainable Energy, ISSN 1944-7442, 11/2016, Volume 35, Issue 6, pp. 1673 - 1678
In this study, we have developed a novel and simple method to prepare Fe/FeS core‐shell nanoparticles using thioacetamide. The Fe/FeS nanoparticles were... 
degradation | rhodamine B | Fe/FeS nanoparticles | dioxygen activation | hydroxyl radicals | OXIDATION | GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY | REACTIVITY | IONS | ENGINEERING, CHEMICAL | ENVIRONMENTAL SCIENCES | REDUCTION | DECHLORINATION | ENGINEERING, ENVIRONMENTAL | CHEMISTRY | Nanoparticles | Biodegradation | Oxygen | Pollution control
Journal Article
ENVIRONMENTAL SCIENCE & TECHNOLOGY, ISSN 0013-936X, 05/2013, Volume 47, Issue 10, pp. 5302 - 5310
Under anoxic conditions, soluble pertechnetate ((TcO4-)-Tc-99) can be reduced to less soluble TcO2 center dot nH(2)O, but the oxide is highly susceptible to... 
RAY-ABSORPTION SPECTROSCOPY | ENVIRONMENTAL SCIENCES | TECHNETIUM | FE/FES NANOPARTICLES | ZERO-VALENT IRON | ENGINEERING, ENVIRONMENTAL | PERMEABLE REACTIVE BARRIERS | CRYSTAL-STRUCTURE | REDOX PRODUCTS | DISORDERED MACKINAWITE | HYDROGEN-SULFIDE | METALLIC IRON
Journal Article
by Du, JK and Bao, JG and Lu, CH and Werner, D
WATER RESEARCH, ISSN 0043-1354, 10/2016, Volume 102, pp. 73 - 81
Nanoscale Fe-0 (nFe(0)) can detoxify Cr(VI)-bearing wastewater and groundwater, but rapid passivation is a negative factor for large-scale remediation... 
PERMEABLE REACTIVE BARRIER | AQUEOUS-SOLUTIONS | FE/FES NANOPARTICLES | ZERO-VALENT IRON | WATER RESOURCES | MACKINAWITE FES | FeS@Fe-0 hybrid particles | HEXAVALENT CHROMIUM | ENVIRONMENTAL SCIENCES | Reduction | Cr(VI) | ENGINEERING, ENVIRONMENTAL | Nanoscale zerovalent iron | WASTE-WATER | EFFICIENT REMOVAL | ENHANCED CR(VI) REMOVAL
Journal Article
Water Research, ISSN 0043-1354, 05/2018, Volume 135, pp. 1 - 10
Sulfide-modified nanoscale zero-valent iron (S/NZVI) has been considered as an efficient material to degrade trichloroethylene (TCE) in groundwater. However,... 
Nanoscale zero-valent iron | Dechlorination | Sulfidation | Ferrous sulfide | TCE | FE/FES NANOPARTICLES | ZEROVALENT IRON | REACTIVITY | WATER RESOURCES | SIMULATED GROUNDWATER | REDUCTIVE DECHLORINATION | ENVIRONMENTAL SCIENCES | REMOVAL | ENGINEERING, ENVIRONMENTAL | KINETICS | PHYSICOCHEMICAL TRANSFORMATION | METAL | WATER | Water, Underground | Sulfides | Iron compounds
Journal Article
Environmental Science and Technology, ISSN 0013-936X, 10/2017, Volume 51, Issue 19, pp. 11269 - 11277
Journal Article
Environmental Science and Technology, ISSN 0013-936X, 11/2016, Volume 50, Issue 21, pp. 11879 - 11887
Applications of zerovalent iron (ZVI) for water treatment under aerobic conditions include sequestration of metals (e.g., in acid mine drainage) and... 
ENVIRONMENTAL SCIENCES | LABORATORY EVALUATION | FE/FES NANOPARTICLES | ZERO-VALENT IRON | ORANGE II | ENGINEERING, ENVIRONMENTAL | FIELD | CORROSION ELECTROCHEMISTRY | ARSENITE REMOVAL | DEGRADATION | ACID-MINE DRAINAGE | AQUEOUS-SOLUTION | Azo Compounds - chemistry | Waste Water | Water Purification | Coloring Agents | Iron - chemistry
Journal Article
Environmental Science and Technology, ISSN 0013-936X, 12/2017, Volume 51, Issue 23, pp. 13533 - 13544
Sulfidation has gained increasing interest in recent years for improving the sequestration of contaminants by zerovalent iron (ZVI). In view of the bright... 
ENVIRONMENTAL SCIENCES | FE/FES NANOPARTICLES | ENVIRONMENTAL REMEDIATION | ZERO-VALENT IRON | ENGINEERING, ENVIRONMENTAL | WASTE-WATER | NANO-IRON | AQUEOUS-MEDIA | CORROSION ELECTROCHEMISTRY | POROUS-MEDIA | GROUNDWATER REMEDIATION | REDUCTIVE DECHLORINATION
Journal Article
Environmental Science and Technology, ISSN 0013-936X, 09/2016, Volume 50, Issue 17, pp. 9558 - 9565
The high reactivity of nano zerovalent iron (nZVI) leads to inefficient treatment due to competition with various natural reductant demand (NRD) processes,... 
ENVIRONMENTAL SCIENCES | FE/FES NANOPARTICLES | ZERO-VALENT IRON | PARTICLES | TRICHLOROETHYLENE | ENGINEERING, ENVIRONMENTAL | FIELD | REACTIVITY | POROUS-MEDIA | GROUNDWATER REMEDIATION | HYDROGEN-SULFIDE | ENVIRONMENTAL APPLICATIONS | Kinetics | Iron - chemistry | Halogenation | Sulfides - chemistry | Trichloroethylene - chemistry
Journal Article
Environmental Science and Technology, ISSN 0013-936X, 11/2017, Volume 51, Issue 21, pp. 12653 - 12662
In water treatment processes that involve contaminant reduction by zerovalent iron (ZVI), reduction of water to dihydrogen is a competing reaction that must be... 
ELEMENTAL SULFUR | GROUNDWATER TREATMENT | ENVIRONMENTAL SCIENCES | ELECTRON EFFICIENCY | FE/FES NANOPARTICLES | SOLUTION CHEMISTRY | ENGINEERING, ENVIRONMENTAL | NANO ZEROVALENT IRON | CORROSION ELECTROCHEMISTRY | CARBON-TETRACHLORIDE | ENVIRONMENTAL APPLICATIONS | REDUCTIVE DECHLORINATION | Trichloroethylene | Iron | Kinetics | Water Purification | Halogenation
Journal Article
Environmental Science and Technology, ISSN 0013-936X, 08/2018, Volume 52, Issue 15, pp. 8627 - 8637
Nanoscale zerovalent iron (nZVI) likely finds its application in source zone remediation. Two approaches to modify nZVI have been reported: bimetal (Fe-Me) and... 
HYDROGEN EVOLUTION | ENVIRONMENTAL SCIENCES | FE/FES NANOPARTICLES | ENVIRONMENTAL REMEDIATION | ENGINEERING, ENVIRONMENTAL | NANO ZEROVALENT IRON | CARBOXYMETHYL CELLULOSE | CORROSION ELECTROCHEMISTRY | PALLADIUM NANOPARTICLES | WATER-TREATMENT | FE-PD NANOPARTICLES | REDUCTIVE DECHLORINATION
Journal Article
CHEMICAL ENGINEERING JOURNAL, ISSN 1385-8947, 05/2017, Volume 315, pp. 426 - 436
Implications of sulfidized Fe-0(nFe/FeS) for the abatement of pollutants of various categories are widely established. In this study, degradation of one of the... 
Advanced oxidation processes | Benzoic acid | FE/FES NANOPARTICLES | ZEROVALENT IRON | SPECTROPHOTOMETRIC DETERMINATION | HETEROGENEOUS CATALYSIS | AQUEOUS-SOLUTION | ENGINEERING, CHEMICAL | HYDROXYL RADICALS | Sulfidation | ENGINEERING, ENVIRONMENTAL | FeS | ORANGE 7 | Persulfate | Zero-valent iron | HYDROGEN-PEROXIDE | ACTIVATED PERSULFATE
Journal Article
Science of the Total Environment, ISSN 0048-9697, 05/2019, Volume 665, pp. 235 - 245
Journal Article