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Missing atmospheric noble gases in a large, tropical lake: the case of Lake Kivu, East-Africa
Bärenbold, F., Schmid, M., Brennwald, M. S., & Kipfer, R. (2020). Missing atmospheric noble gases in a large, tropical lake: the case of Lake Kivu, East-Africa. Chemical Geology, 532, 119374 (9 pp.). https://doi.org/10.1016/j.chemgeo.2019.119374
Linking isotope exchange with Fe(II)-catalyzed dissolution of iron(hydr)oxides in the presence of the bacterial siderophore desferrioxamine-B
Biswakarma, J., Kang, K., Schenkeveld, W. D. C., Kraemer, S. M., Hering, J. G., & Hug, S. J. (2020). Linking isotope exchange with Fe(II)-catalyzed dissolution of iron(hydr)oxides in the presence of the bacterial siderophore desferrioxamine-B. Environmental Science and Technology. https://doi.org/10.1021/acs.est.9b04235
Time resolved <em>in situ</em> X-Ray tomographic microscopy unraveling dynamic processes in geologic systems
Marone, F., Schlepütz, C. M., Marti, S., Fusseis, F., Velásquez-Parra, A., Griffa, M., … Stampanoni, M. (2020). Time resolved in situ X-Ray tomographic microscopy unraveling dynamic processes in geologic systems. Frontiers in Earth Science, 7, 346 (20 pp.). https://doi.org/10.3389/feart.2019.00346
Verminderung der Bromatbildung. Mögliche Strategien zur Minimierung der Bromatbildung bei der Abwasserbehandlung mit Ozon
Soltermann, F., Abegglen, C., Tschui, M., Götz, C., Zimmermann-Steffens, S., & von Gunten, U. (2019). Verminderung der Bromatbildung. Mögliche Strategien zur Minimierung der Bromatbildung bei der Abwasserbehandlung mit Ozon. Aqua & Gas, 99(1), 14-21.
Reactions of aliphatic amines with ozone: kinetics and mechanisms
Lim, S., McArdell, C. S., & von Gunten, U. (2019). Reactions of aliphatic amines with ozone: kinetics and mechanisms. Water Research, 157, 514-528. https://doi.org/10.1016/j.watres.2019.03.089
Reductive dissolution of As(V)-bearing Fe(III)-precipitates formed by Fe(II) oxidation in aqueous solutions
Voegelin, A., Senn, A. C., Kaegi, R., & Hug, S. J. (2019). Reductive dissolution of As(V)-bearing Fe(III)-precipitates formed by Fe(II) oxidation in aqueous solutions. Geochemical Transactions, 20(2), (13 pp.). https://doi.org/10.1186/s12932-019-0062-2
Geochemical characterization of the Nirano mud volcano, Italy
Sciarra, A., Cantucci, B., Ricci, T., Tomonaga, Y., & Mazzini, A. (2019). Geochemical characterization of the Nirano mud volcano, Italy. Applied Geochemistry, 102, 77-87. https://doi.org/10.1016/j.apgeochem.2019.01.006
Noble gas composition and <sup>3</sup>H/<sup>3</sup>He groundwater ages in the Gardermoen Aquifer, Norway: improved understanding of flow dynamics as a tool for water management
Sundal, A., Brennwald, M. S., Aagaard, P., & Kipfer, R. (2019). Noble gas composition and 3H/3He groundwater ages in the Gardermoen Aquifer, Norway: improved understanding of flow dynamics as a tool for water management. Science of the Total Environment, 660, 1219-1231. https://doi.org/10.1016/j.scitotenv.2018.12.456
Effect of arsenic risk assessment in Pakistan on mitigation action
Podgorski, J. E., Eqani, S. A. M. A. S., & Berg, M. (2019). Effect of arsenic risk assessment in Pakistan on mitigation action. In Y. G. Zhu, H. Guo, P. Bhattacharya, J. Bundschuh, A. Ahmad, & R. Naidu (Eds.), Arsenic in the environment - proceedings. Environmental arsenic in a changing world (pp. 541-542). https://doi.org/10.1201/9781351046633
Exploring arsenic and other geogenic groundwater contaminants in the vast and scarcely studied Amazon Basin
de Meyer, C. M. C., Berg, M., Rodriguez, J., Carpio, E., Garcia, P., & Wahnfried, I. (2019). Exploring arsenic and other geogenic groundwater contaminants in the vast and scarcely studied Amazon Basin. In Y. G. Zhu, H. Guo, P. Bhattacharya, J. Bundschuh, A. Ahmad, & R. Naidu (Eds.), Arsenic in the environment - proceedings. Environmental arsenic in a changing world (pp. 50-51). https://doi.org/10.1201/9781351046633
Electrochemical analysis of changes in iron oxide reducibility during abiotic ferrihydrite transformation into goethite and magnetite
Aeppli, M., Kaegi, R., Kretzschmar, R., Voegelin, A., Hofstetter, T. B., & Sander, M. (2019). Electrochemical analysis of changes in iron oxide reducibility during abiotic ferrihydrite transformation into goethite and magnetite. Environmental Science and Technology, 53(7), 3568-3578. https://doi.org/10.1021/acs.est.8b07190
Improved tropospheric and stratospheric sulfur cycle in the aerosol-chemistry-climate model SOCOL-AERv2
Feinberg, A., Sukhodolov, T., Luo, B. P., Rozanov, E., Winkel, L. H. E., Peter, T., & Stenke, A. (2019). Improved tropospheric and stratospheric sulfur cycle in the aerosol-chemistry-climate model SOCOL-AERv2. Geoscientific Model Development, 12(9), 3863-3887. https://doi.org/10.5194/gmd-12-3863-2019
Flow dynamics at the continental scale: streamflow correlation and hydrological similarity
Betterle, A., Schirmer, M., & Botter, G. (2019). Flow dynamics at the continental scale: streamflow correlation and hydrological similarity. Hydrological Processes, 33(4), 627-646. https://doi.org/10.1002/hyp.13350
Gas-phase ozone reactions with a structurally diverse set of molecules: barrier heights and reaction energies evaluated by coupled cluster and density functional theory calculations
Trogolo, D., Arey, J. S., & Tentscher, P. R. (2019). Gas-phase ozone reactions with a structurally diverse set of molecules: barrier heights and reaction energies evaluated by coupled cluster and density functional theory calculations. Journal of Physical Chemistry A, 123(2), 517-536. https://doi.org/10.1021/acs.jpca.8b10323
Micropollutant oxidation studied by quantum chemical computations: methodology and applications to thermodynamics, kinetics, and reaction mechanisms
Tentscher, P. R., Lee, M., & von Gunten, U. (2019). Micropollutant oxidation studied by quantum chemical computations: methodology and applications to thermodynamics, kinetics, and reaction mechanisms. Accounts of Chemical Research, 52(3), 605-614. https://doi.org/10.1021/acs.accounts.8b00610
A tale of two treatments: the multiple barrier approach to removing chemical contaminants during potable water reuse
Marron, E. L., Mitch, W. A., Gunten, U. von, & Sedlak, D. L. (2019). A tale of two treatments: the multiple barrier approach to removing chemical contaminants during potable water reuse. Accounts of Chemical Research, 52(3), 615-622. https://doi.org/10.1021/acs.accounts.8b00612
On-line monitoring of the gas composition in the Full-scale Emplacement experiment at Mont Terri (Switzerland)
Tomonaga, Y., Giroud, N., Brennwald, M. S., Horstmann, E., Diomidis, N., Kipfer, R., & Wersin, P. (2019). On-line monitoring of the gas composition in the Full-scale Emplacement experiment at Mont Terri (Switzerland). Applied Geochemistry, 100, 234-243. https://doi.org/10.1016/j.apgeochem.2018.11.015
Transformation of nanoscale and ionic Cu and Zn during the incineration of digested sewage sludge (biosolids)
Wielinski, J., Gogos, A., Voegelin, A., Müller, C., Morgenroth, E., & Kaegi, R. (2019). Transformation of nanoscale and ionic Cu and Zn during the incineration of digested sewage sludge (biosolids). Environmental Science and Technology, 53(20), 11704-11713. https://doi.org/10.1021/acs.est.9b01983
Determination of the effective viscosity of non-newtonian fluids flowing through porous media
Eberhard, U., Seybold, H. J., Floriancic, M., Jiménez-Martínez, J., Bertsch, P., Andrade, J. S., & Holzner, M. (2019). Determination of the effective viscosity of non-newtonian fluids flowing through porous media. Frontiers in Physics, 7, 71 (9 pp.). https://doi.org/10.3389/fphy.2019.00071
How does environmental inter-annual variability shape aquatic microbial communities? A 40-year annual record of sedimentary DNA from a boreal Lake (Nylandssjön, Sweden)
Capo, E., Rydberg, J., Tolu, J., Domaizon, I., Debroas, D., Bindler, R., & Bigler, C. (2019). How does environmental inter-annual variability shape aquatic microbial communities? A 40-year annual record of sedimentary DNA from a boreal Lake (Nylandssjön, Sweden). Frontiers in Ecology and Evolution, 7, 245 (13 pp.). https://doi.org/10.3389/fevo.2019.00245
 

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