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Effect of aqueous Fe(II) on arsenate sorption on goethite and hematite
Jeffrey G. Catalano
, Yun Luo
, Bamidele Otemuyiwa
Department of Earth & Planetary Sciences
Arts & Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
80
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Scopus citations
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Dive into the research topics of 'Effect of aqueous Fe(II) on arsenate sorption on goethite and hematite'. Together they form a unique fingerprint.
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Keyphrases
Iron Oxide
100%
Fe(II)
100%
Sorption
100%
Arsenate
100%
Goethite
100%
Aqueous Fe(II)
100%
Oxide Structure
33%
Competitive Adsorption
22%
Symplesite
22%
Aqueous Solution
11%
Elevated Concentrations
11%
Substantial Change
11%
Speciation
11%
Redox
11%
Extended X-ray Absorption Fine Structure (EXAFS)
11%
Redox Transformation
11%
Phase Transformation
11%
Ni(II)
11%
Recrystallization
11%
Iron Cycle
11%
Precipitation Regime
11%
Powder X-ray Diffraction
11%
Surface Restructuring
11%
Adsorption Isotherm
11%
Surface Complexation
11%
Fe Oxides
11%
Mineral-water Interface
11%
Circumneutral pH
11%
Repartitioning
11%
Ferric Arsenate
11%
Arsenate Minerals
11%
Sorption Behavior
11%
Iron Oxide Surface
11%
Iron Oxide Phases
11%
Adsorption Process
11%
Complexation Mechanism
11%
Sorption Mechanism
11%
Iron Isotope Fractionation
11%
Material Science
Hematite
100%
Arsenate
100%
Iron Oxide
71%
Oxide Compound
14%
Extended X-Ray Absorption Fine Structure
14%
Powder X-Ray Diffraction
14%
Oxide Surface
14%
Surface Complexation
14%
Biochemistry, Genetics and Molecular Biology
Arsenate
100%
Arsenic Acid
100%
X Ray
14%
Complex Formation
14%
Absorption
14%
Fractionation
14%
Species Differentiation
14%
Aqueous Solution
14%
X Ray Powder Diffraction
14%
Chemistry
Arsenic Acid
100%
Iron Oxide
71%
Fractionation
14%
Aqueous Solution
14%
Extended X Ray Absorption Fine Structure Spectroscopy
14%
Powder X-Ray Diffractometry
14%
Surface Complexation
14%
Sorption Isotherm
14%
Chemical Engineering
Iron Oxide
100%
Competitive Adsorption
40%
Fractionation
20%
Arsenate Mineral
20%