Keyphrases
Spatial Distribution
100%
Speciation
100%
Reaction Mechanism
100%
Sunlight
100%
Oxalic Acid
100%
Cr(III)
100%
Transformation Reactions
100%
Schwertmannite
100%
Dissolved Organic Matter
42%
Solar Radiation
28%
Goethite
28%
Acid Concentration
28%
Acid Mine Drainage
28%
Dissolution Process
28%
Photoreductive Dissolution
28%
Humboldtine
28%
Synergize
14%
Superoxide
14%
In Situ
14%
Aerobic Conditions
14%
Orbitrap MS
14%
Natural Systems
14%
Elemental Distribution
14%
Iron Minerals
14%
Fourier Transform Infrared Spectroscopy (FT-IR)
14%
Photoreduction
14%
Contaminated Environment
14%
Dominant Pathways
14%
Iron Reduction
14%
Oxalate
14%
Ultra-performance Liquid Chromatography
14%
Aberration-corrected Scanning Transmission Electron Microscopy
14%
Photoaging
14%
Acidic Conditions
14%
Attenuated Total reflectance-Fourier Transform Infrared Spectroscopy (ATR-FTIR)
14%
Ligand-to-metal Charge Transfer
14%
Contaminated Areas
14%
Interfacial Reaction
14%
FEniCS
14%
Conversion Rate
14%
Solar Irradiation
14%
Fe-bearing Minerals
14%
UPLC-Q-Orbitrap-MS
14%
Heavy Metal Elements
14%
Cs-STEM
14%
Light-transmitting
14%
Engineering
Nanoscale
100%
Combined Effect
100%
Solar Radiation
100%
Dissolution Process
100%
Acid Concentration
100%
Spatial Distribution
100%
Iron
100%
Natural System
50%
Heavy Metal
50%
Acidic Condition
50%
Solar Irradiation
50%
Conversion Rate
50%
Bearing Mineral
50%
Ultra High Performance Liquid Chromatography
50%
Fourier Transform
50%
Reflectance
50%
Earth and Planetary Sciences
Spatial Distribution
100%
Schwertmannite
100%
Oxalic Acid
100%
Organic Matter
42%
Solar Radiation
42%
Goethite
28%
Iron
28%
Acid Mine Drainage
28%
Heavy Metal
14%
Quadrupole
14%
Mass Spectroscopy
14%
Transmission Electron Microscopy
14%
Reflectance
14%
Oxic Condition
14%
Contaminated Area
14%
Fourier Transform Infrared Spectroscopy
14%
Chemical Element
14%
Photochemical Reaction
14%
Liquid Chromatography
14%
Chemistry
Oxalic Acid
100%
Dissolved Organic Matter
50%
Solar Radiation
50%
Scanning Transmission Electron Microscopy
33%
Acid Mine Drainage
33%
Ultra Performance Liquid Chromatography
33%
Chemical Element
16%
Quadrupole
16%
Surface Chemistry
16%
Heavy Metal
16%
Acidic Condition
16%
Orbitrap Mass Spectrometry
16%
Attenuated Total Reflectance Fourier Transform Infrared Spectrometry
16%
Photochemical Reaction
16%
Inorganic Peroxide
16%
Material Science
Acid Mine Drainage
100%
Heavy Metal
50%
Scanning Transmission Electron Microscopy
50%
Fourier Transform Infrared Spectroscopy
50%
Superoxide
50%
Surface (Surface Science)
50%
Ultra High Performance Liquid Chromatography
50%
Orbitrap Mass Spectrometry
50%
Chemical Engineering
Oxalic Acid
100%
Heavy Metal
16%
Mass Spectrometry
16%
Spectrometry
16%
Ultra High Performance Liquid Chromatography
16%
Chemical Element
16%