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Environmental Science & Technology Letters|November 18, 2024
Redox Dynamic Interactions of Arsenic(III) with Green Rust Sulfate in the Presence of CitrateJagannath Biswakarma, Molly Matthews, James M ByrneEnvironmental Science & Technology|February 8, 2024
Deforestation as an Anthropogenic Driver of Mercury PollutionAryeh Feinberg, Martin Jiskra, Pasquale Borrelli, et al.Environmental Science. Nano|January 12, 2026
The removal of Zn from complex circumneutral pH mine waters using magnetic nanoparticles (MNPs)Katie E B O'Neill, Jagannath Biswakarma, Rich Crane, et al.Environmental Science. Nano|March 3, 2025
Recovery of Co(ii), Ni(ii) and Zn(ii) using magnetic nanoparticles (MNPs) at circumneutral pHKatie E B O'Neill, Jagannath Biswakarma, Rich Crane, et al.Chemosphere|December 10, 2020
Catalytic effects of photogenerated Fe(II) on the ligand-controlled dissolution of Iron(hydr)oxides by EDTA and DFOBJagannath Biswakarma, Kyounglim Kang, Walter D C Schenkeveld, et al.Environmental Science & Technology|December 18, 2019
Linking Isotope Exchange with Fe(II)-Catalyzed Dissolution of Iron(hydr)oxides in the Presence of the Bacterial Siderophore Desferrioxamine-BJagannath Biswakarma, Kyounglim Kang, Walter D C Schenkeveld, et al.The Science of the Total Environment|June 20, 2020
Arsenic removal with zero-valent iron filters in Burkina Faso: Field and laboratory insightsAnja Bretzler, Julien Nikiema, Franck Lalanne, et al.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.Pageof 1