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Environmental Science & Technology|December 21, 2018
Fe(II)-Catalyzed Ligand-Controlled Dissolution of Iron(hydr)oxidesJagannath Biswakarma, Kyounglim Kang, Susan C Borowski, et al.
Environmental Science & Technology|December 13, 2018
Low Fe(II) Concentrations Catalyze the Dissolution of Various Fe(III) (hydr)oxide Minerals in the Presence of Diverse Ligands and over a Broad pH RangeKyounglim Kang, Walter D C Schenkeveld, Jagannath Biswakarma, et al.
The New Phytologist|June 4, 2014
Root exudation of phytosiderophores from soil-grown wheatEva Oburger, Barbara Gruber, Yvonne Schindlegger, et al.
The Science of the Total Environment|May 29, 2013
The influence of pH on iron speciation in podzol extracts: iron complexes with natural organic matter, and iron mineral nanoparticlesElisabeth Neubauer, Walter D C Schenkeveld, Kelly L Plathe, et al.
Geobiology|June 18, 2022
Copper mobilisation from Cu sulphide minerals by methanobactin: Effect of pH, oxygen and natural organic matterDanielle D Rushworth, Iso Christl, Naresh Kumar, et al.
Environmental Science & Technology|September 25, 2023
Mercury Isotope Fractionation during Dark Abiotic Reduction of Hg(II) by Dissolved, Surface-Bound, and Structural Fe(II)Lorenz Schwab, Niklas Gallati, Sofie M Reiter, et al.
Chemical Research in Toxicology|November 21, 2022
The Potential Contribution of Hexavalent Chromium to the Carcinogenicity of Chrysotile AsbestosMartin Walter, Walter D C Schenkeveld, Maura Tomatis, et al.
The Science of the Total Environment|May 12, 2024
Solid phase speciation controls copper mobilisation from marine sediments by methanobactinDanielle D Rushworth, Walter D C Schenkeveld, Naresh Kumar, et al.
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