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Search Results 1 - 20 of 21
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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
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
Structure and reactivity of oxalate surface complexes on lepidocrocite derived from infrared spectroscopy, DFT-calculations, adsorption, dissolution and photochemical experiments
Borowski, S. C., Biswakarma, J., Kang, K., Schenkeveld, W. D. C., Hering, J. G., Kubicki, J. D., … Hug, S. J. (2018). Structure and reactivity of oxalate surface complexes on lepidocrocite derived from infrared spectroscopy, DFT-calculations, adsorption, dissolution and photochemical experiments. Geochimica et Cosmochimica Acta, 226, 244-262. https://doi.org/10.1016/j.gca.2018.01.024
Arsenate co-precipitation with Fe(II) oxidation products and retention or release during precipitate aging
Senn, A. C., Hug, S. J., Kaegi, R., Hering, J. G., & Voegelin, A. (2018). Arsenate co-precipitation with Fe(II) oxidation products and retention or release during precipitate aging. Water Research, 131, 334-345. https://doi.org/10.1016/j.watres.2017.12.038
Arsenic removal from drinking water: experiences with technologies and constraints in practice
Hering, J. G., Katsoyiannis, I. A., Ahumada Theoduloz, G., Berg, M., & Hug, S. J. (2017). Arsenic removal from drinking water: experiences with technologies and constraints in practice. Journal of Environmental Engineering, 143(5), 03117002 (9 pp.). https://doi.org/10.1061/(ASCE)EE.1943-7870.0001225
Effect of aging on the structure and phosphate retention of Fe(III)-precipitates formed by Fe(II) oxidation in water
Senn, A. C., Kaegi, R., Hug, S. J., Hering, J. G., Mangold, S., & Voegelin, A. (2017). Effect of aging on the structure and phosphate retention of Fe(III)-precipitates formed by Fe(II) oxidation in water. Geochimica et Cosmochimica Acta, 202, 341-360. https://doi.org/10.1016/j.gca.2016.12.033
An American in Zurich: Jerry Schnoor as an ambassador for U.S. environmental science and engineering
Hering, J. G., Giger, W., Hug, S. J., Kohler, H. P. E., Kretzschmar, R., Schwarzenbach, R., … Zobrist, J. (2016). An American in Zurich: Jerry Schnoor as an ambassador for U.S. environmental science and engineering. Environmental Science and Technology, 50(13), 6597-6598. https://doi.org/10.1021/acs.est.5b06233
Composition and structure of Fe(III)-precipitates formed by Fe(II) oxidation in water at near-neutral pH: interdependent effects of phosphate, silicate and Ca
Senn, A. C., Kaegi, R., Hug, S. J., Hering, J. G., Mangold, S., & Voegelin, A. (2015). Composition and structure of Fe(III)-precipitates formed by Fe(II) oxidation in water at near-neutral pH: interdependent effects of phosphate, silicate and Ca. Geochimica et Cosmochimica Acta, 162, 220-246. https://doi.org/10.1016/j.gca.2015.04.032
Tagungsband. Infotag 2014. Wasserversorgung und Uferfiltration – ein System unter Druck?
Hering, J., Schirmer, M., Stamm, C., Hollender, J., Diem, S., Huggenberger, P., … von Gunten, U. (2014). Tagungsband. Infotag 2014. Wasserversorgung und Uferfiltration – ein System unter Druck?. Retrieved from http://www.eawag.ch/de/lehre/weiterbildung/infotag/archiv/
Column studies to assess the effects of climate variables on redox processes during riverbank filtration
Rudolf von Rohr, M., Hering, J. G., Kohler, H. P. E., & von Gunten, U. (2014). Column studies to assess the effects of climate variables on redox processes during riverbank filtration. Water Research, 61, 263-275. https://doi.org/10.1016/j.watres.2014.05.018
Effects of climate change on redox processes during riverbank filtration: Field studies and column experiments
Rudolf von Rohr, M. (2014). Effects of climate change on redox processes during riverbank filtration: Field studies and column experiments (Doctoral dissertation). https://doi.org/10.3929/ethz-a-010223069
NOM degradation during river infiltration: effects of the climate variables temperature and discharge
Diem, S., Rudolf von Rohr, M., Hering, J. G., Kohler, H. P. E., Schirmer, M., & von Gunten, U. (2013). NOM degradation during river infiltration: effects of the climate variables temperature and discharge. Water Research, 47(17), 6585-6595. https://doi.org/10.1016/j.watres.2013.08.028
Qualität des Uferfiltrats. Einfluss der klimabestimmten Variablen Temperatur und Abfluss
Diem, S., Schirmer, M., Rudolf von Rohr, M., Kohler, H. P. E., Hering, J. G., & von Gunten, U. (2013). Qualität des Uferfiltrats. Einfluss der klimabestimmten Variablen Temperatur und Abfluss. Aqua & Gas, 93(11), 14-21.
Manganese oxidation induced by water table fluctuations in a sand column
Farnsworth, C. E., Voegelin, A., & Hering, J. G. (2012). Manganese oxidation induced by water table fluctuations in a sand column. Environmental Science and Technology, 46(1), 277-284. https://doi.org/10.1021/es2027828
Assessing the societal benefits of applied research and expert consulting in water science and technology
Hering, J. G., Hoffmann, S., Meierhofer, R., Schmid, M., & Peter, A. J. (2012). Assessing the societal benefits of applied research and expert consulting in water science and technology. GAIA: Ecological Perspectives for Science and Society, 21(2), 95-101. https://doi.org/10.14512/gaia.21.2.6
Moving targets, long-lived infrastructure, and increasing needs for integration and adaptation in water management: an illustration from Switzerland
Hering, J. G., Hoehn, E., Klinke, A., Maurer, M., Peter, A., Reichert, P., … Wehrli, B. (2012). Moving targets, long-lived infrastructure, and increasing needs for integration and adaptation in water management: an illustration from Switzerland. Environmental Science and Technology, 46(1), 112-118. https://doi.org/10.1021/es202189s
Optimization of co-precipitation processes in apatite-based filter materials for the removal of fluoride from drinking water
Sternitzke, V. A. S. D. C. (2012). Optimization of co-precipitation processes in apatite-based filter materials for the removal of fluoride from drinking water (Doctoral dissertation). https://doi.org/10.3929/ethz-a-007578395
Uptake of fluoride from aqueous solution on nano-sized hydroxyapatite: examination of a fluoridated surface layer
Sternitzke, V., Kaegi, R., Audinot, J. N., Lewin, E., Hering, J. G., & Johnson, C. A. (2012). Uptake of fluoride from aqueous solution on nano-sized hydroxyapatite: examination of a fluoridated surface layer. Environmental Science and Technology, 46(2), 802-809. https://doi.org/10.1021/es202750t
Inorganic geochemistry and redox dynamics in bank filtration settings
Farnsworth, C. E., & Hering, J. G. (2011). Inorganic geochemistry and redox dynamics in bank filtration settings. Environmental Science and Technology, 45(12), 5079-5087. https://doi.org/10.1021/es2001612
Role of coupled redox transformations in the mobilization and sequestration of arsenic
Hering, J. G., Hug, S. J., Farnsworth, C., & O'Day, P. A. (2011). Role of coupled redox transformations in the mobilization and sequestration of arsenic. In P. G. Tratnyek, T. J. Grundl, & S. B. Haderlein (Eds.), ACS Symposium Series: Vol. 1071. Aquatic redox chemistry (pp. 463-476). https://doi.org/10.1021/bk-2011-1071.ch021