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  • (-) Publication Year = 2019 - 2019
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Fe(II)-catalyzed ligand-controlled dissolution of iron(hydr)oxides
Biswakarma, J., Kang, K., Borowski, S. C., Schenkeveld, W. D. C., Kraemer, S. M., Hering, J. G., & Hug, S. J. (2019). Fe(II)-catalyzed ligand-controlled dissolution of iron(hydr)oxides. Environmental Science and Technology, 53(1), 88-97. https://doi.org/10.1021/acs.est.8b03910
Synergistic effects of redox processes and ligand-controlled dissolution of Fe(III)(hydr)oxide phases
Biswakarma, J. (2019). Synergistic effects of redox processes and ligand-controlled dissolution of Fe(III)(hydr)oxide phases (Doctoral dissertation). https://doi.org/10.3929/ethz-b-000403443
Drink safely with biomimetic nanotechnology. An artificial nanostructure inspired by the sea anemone can be used for efficient removal of wide range of water contaminants
Hering, J. G. (2019). Drink safely with biomimetic nanotechnology. An artificial nanostructure inspired by the sea anemone can be used for efficient removal of wide range of water contaminants. Nature Nanotechnology, 14(1), 5-6. https://doi.org/10.1038/s41565-018-0326-5
From slide rule to big data: how data science is changing water science and engineering
Hering, J. G. (2019). From slide rule to big data: how data science is changing water science and engineering. Journal of Environmental Engineering, 145(8), 02519001 (7 pp.). https://doi.org/10.1061/(ASCE)EE.1943-7870.0001578
Water: the environmental, technological, and societal complexity of a simple substance
Hering, J. G. (2019). Water: the environmental, technological, and societal complexity of a simple substance. In P. A. Maurice (Ed.), Encyclopedia of water: science, technology, and society (pp. 1-9). https://doi.org/10.1002/9781119300762.wsts0038
Women as leaders in academic institutions: personal experience and narrative literature review
Hering, J. G. (2019). Women as leaders in academic institutions: personal experience and narrative literature review. Pure and Applied Chemistry, 91(2), 331-338. https://doi.org/10.1515/pac-2018-0603
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 range
Kang, K., Schenkeveld, W. D. C., Biswakarma, J., Borowski, S. C., Hug, S. J., Hering, J. G., & Kraemer, S. M. (2019). 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 range. Environmental Science and Technology, 53(1), 98-107. https://doi.org/10.1021/acs.est.8b03909