Every reference with a DOI in the deposited reference list resolved to a known
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The 77 checked references that resolve
resolves10.1021/acs.est.6b03484Quantifying Cr(VI) Production and Export from Serpentine Soil of the California Coast Range
resolves10.1191/096032701682693062Mechanisms of chromium toxicity, carcinogenicity and allergenicity: Review of the literature from 1985 to 2000
resolves10.1007/s10953-007-9179-5Chromium(III) Hydroxide Solubility in the Aqueous K+-H+-OH−-CO2-HCO 3 − -CO 3 2− -H2O System: A Thermodynamic Model
resolves10.1039/C6EW00214EEmerging investigators series: frontier review: occurrence and speciation of chromium in drinking water distribution systems
resolves10.1021/es00025a006Chromium(III) oxidation by .delta.-manganese oxide (MnO2). 1. Characterization
resolves10.1021/es970932bInfluence of Organic Ligands on Chromium(VI) Reduction by Iron(II)
resolves10.1021/es960672iKinetics and pH Dependence of Chromium(VI) Reduction by Iron(II)
resolves10.1021/es960868iSurface Passivation of Magnetite by Reaction with Aqueous Cr(VI): XAFS and TEM Results
resolves10.1016/j.gca.2014.02.040Reduction and immobilization of hexavalent chromium by microbially reduced Fe-bearing clay minerals
resolves10.1016/S0016-7037(99)00372-5Using X-ray photoelectron spectroscopy to discriminate among different sorption sites of micas: with implications for heterogeneous reduction of chromate at the mica-water interface
resolves10.1346/CCMN.2000.0480606Chromate Removal by Dithionite-Reduced Clays: Evidence from Direct X-Ray Adsorption Near Edge Spectroscopy (XANES) of Chromate Reduction at Clay Surfaces
resolves10.1346/CCMN.1996.0440603Morphology of Lead(II) and Chromium(III) Reaction Products on Phyllosilicate Surfaces As Determined By Atomic Force Microscopy
resolves10.1021/es5031849Redox Interactions Between Cr(VI) and Fe(II) in Bioreduced Biotite and Chlorite
resolves10.1039/C5EM00286ABiological versus mineralogical chromium reduction: potential for reoxidation by manganese oxide
resolves10.1021/es5060918Linear Free Energy Relationships for the Biotic and Abiotic Reduction of Nitroaromatic Compounds
resolves10.1897/02-574Linear free-energy relationship analysis of the fate of chlorinated 1- and 2-carbon compounds by redox-manipulated smectite clay minerals
resolves10.1016/0016-7037(94)90113-9Chromium sorption by phlogopite and biotite in acidic solutions at 25°C: Insights from X-ray photoelectron spectroscopy and electron microscopy
resolves10.1016/S0016-7037(97)00185-3The catalytic effect of sodium and lithium ions on coupled sorption-reduction of chromate at the biotite edge-fluid interface
resolves10.1021/es00051a015Mechanisms of chromium(III) sorption on silica. 1. Chromium(III) surface structure derived by extended x-ray absorption fine structure spectroscopy
resolves10.1021/es9914285Structural Evolution of Cr(III) Polymeric Species at the γ-Al<sub>2</sub>O<sub>3</sub>/Water Interface
resolves10.1021/es981297sInfluence of Mineral Surfaces on Chromium(VI) Reduction by Iron(II)
resolves10.1021/jp3110776Electron Exchange and Conduction in Nontronite from First-Principles
resolves10.1346/CCMN.2009.0570609Crystallographic site distribution and redox activity of Fe in nontronites determined by optical spectroscopy
resolves10.1021/jp4073125Insights into the Mechanism of Fe(II) Adsorption and Oxidation at Fe–Clay Mineral Surfaces from First-Principles Calculations
resolves10.1021/es304744vSpectroscopic Evidence for Fe(II)–Fe(III) Electron Transfer at Clay Mineral Edge and Basal Sites
resolves10.1021/es3020138Redox Properties of Structural Fe in Clay Minerals. 1. Electrochemical Quantification of Electron-Donating and -Accepting Capacities of Smectites
resolves10.1021/es302014uRedox Properties of Structural Fe in Clay Minerals. 2. Electrochemical and Spectroscopic Characterization of Electron Transfer Irreversibility in Ferruginous Smectite, SWa-1
resolves10.1021/es403824xRedox Properties of Structural Fe in Clay Minerals: 3. Relationships between Smectite Redox and Structural Properties
resolves10.2172/920478SUMMARY CONCLUSIONS FOR THE PILOT IN-SITU CHROMIUM REDUCTION TEST AT RIVERBANK ARMY AMMUNITIONS PLANT
resolves10.1021/es070025zIn Situ Chemical Reduction of Cr(VI) in Groundwater Using a Combination of Ferrous Sulfate and Sodium Dithionite: A Field Investigation
resolves10.1007/s00269-002-0286-yIron distribution in the octahedral sheet of dioctahedral smectites. An Fe K-edge X-ray absorption spectroscopy study
resolves10.1021/es102560mSpectroscopic Evidence for Interfacial Fe(II)−Fe(III) Electron Transfer in a Clay Mineral
resolves10.1346/CCMN.2001.0490504Baseline Studies of the Clay Minerals Society Source Clays: Chemical Analyses of Major Elements
resolves10.1346/CCMN.2001.0490507Baseline Studies of the Clay Minerals Society Source Clays: Powder X-Ray Diffraction Analyses
resolves10.1346/CCMN.2000.0480506Geology and Characterization of Two Hydrothermal Nontronites from Weathered Metamorphic Rocks at the Uley Graphite Mine, South Australia
resolves10.1021/es501902fFe(II) Uptake on Natural Montmorillonites. II. Surface Complexation Modeling
resolves10.1351/PAC-CON-08-11-16Comparisons of structural iron reduction in smectites by bacteria and dithionite: II. A variable-temperature Mössbauer spectroscopic study of Garfield nontronite
resolves10.1346/CCMN.2000.0480204A Model for the Mechanism of Fe<sup>3+</sup> to Fe<sup>2+</sup> Reduction in Dioctahedral Smectites
resolves10.1016/j.clay.2004.01.001Colloidal behavior of aqueous montmorillonite suspensions: the specific role of pH in the presence of indifferent electrolytes
resolves10.1107/S0909049505012719<i>ATHENA</i>,<i>ARTEMIS</i>,<i>HEPHAESTUS</i>: data analysis for X-ray absorption spectroscopy using<i>IFEFFIT</i>
resolves10.2138/am-2004-0412X-ray absorption spectroscopic study of Fe reference compounds for the analysis of natural sediments
resolves10.1021/es801840xAssessing the Redox Reactivity of Structural Iron in Smectites Using Nitroaromatic Compounds As Kinetic Probes
resolves10.1021/es9001967Reduction of Polychlorinated Ethanes and Carbon Tetrachloride by Structural Fe(II) in Smectites
resolves10.1021/je980080aCritical Evaluation and Selection of Standard State Thermodynamic Properties for Chromium Metal and Its Aqueous Ions, Hydrolysis Species, Oxides, and Hydroxides
resolves10.1080/00206810109465060Sorption of Trace Elements on Mineral Surfaces: Modern Perspectives from Spectroscopic Studies, and Comments on Sorption in the Marine Environment
resolves10.1021/acs.est.5b00006Electrochemical Analyses of Redox-Active Iron Minerals: A Review of Nonmediated and Mediated Approaches
resolves10.1063/1.1696792On the Theory of Electron-Transfer Reactions. VI. Unified Treatment for Homogeneous and Electrode Reactions
resolves10.1021/es9016848Redox Behavior of Magnetite: Implications for Contaminant Reduction
resolves10.1021/es00009a036Reduction of Substituted Nitrobenzenes by Fe(II) in Aqueous Mineral Suspensions
resolves10.2138/am-2000-0115Oxidation-reduction mechanism of iron in dioctahedral smectites: II. Crystal chemistry of reduced Garfield nontronite
resolves10.1346/CCMN.2008.0560204Partitioning of Fe(II) in reduced nontronite (NAu-2) to reactive sites: Reactivity in terms of Tc(VII) reduction
resolves10.1080/01490451.2016.1174758Interactions Between Fe(III)-oxides and Fe(III)-phyllosilicates During Microbial Reduction 2: Natural Subsurface Sediments
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