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Monitoring real time, in-line variations of noble gas concentrations during CO<sub>2</sub> capture operations by means of a portable mass spectrometer
Sundal, A., Weber, U. W., Brennwald, M. S., Ringrose, P., Enaasen Flø, N., Johnsen, K., … Kipfer, R. (2020). Monitoring real time, in-line variations of noble gas concentrations during CO2 capture operations by means of a portable mass spectrometer. In GHGT-14 proceedings. https://doi.org/10.2139/ssrn.3366166
Pseudo contour maps from logistic regression modelling: case study of groundwater arsenic distribution in Gujarat state, India
Wu, R., Podgorski, J., Berg, M., & Polya, D. A. (2023). Pseudo contour maps from logistic regression modelling: case study of groundwater arsenic distribution in Gujarat state, India. In A. van der Wal, A. Ahmad, B. Petrusevski, J. Weijma, D. Savic, P. van der Wens, … R. Naidu (Eds.), Arsenic in the environment. Proceedings. Proceedings of the 8th international congress and exhibition on arsenic in the environment (As2021) (pp. 95-96). https://doi.org/10.1201/9781003317395-40
Interplay of As (im)mobilisation processes in groundwater: learning from hydrochemical investigations
Stopelli, E., Duyen, V. T., Mai, T. T., Trang, P. T. K., Viet, P. H., Lightfoot, A., … Berg, M. (2023). Interplay of As (im)mobilisation processes in groundwater: learning from hydrochemical investigations. In A. van der Wal, A. Ahmad, B. Petrusevski, J. Weijma, D. Savic, P. van der Wens, … R. Naidu (Eds.), Arsenic in the environment. Proceedings. Proceedings of the 8th international congress and exhibition on arsenic in the environment (As2021) (pp. 21-22). https://doi.org/10.1201/9781003317395-9
Second-generation global risk map of groundwater arsenic contamination
Podgorski, J., & Berg, M. (2023). Second-generation global risk map of groundwater arsenic contamination. In A. van der Wal, A. Ahmad, B. Petrusevski, J. Weijma, D. Savic, P. van der Wens, … R. Naidu (Eds.), Arsenic in the environment. Proceedings. Proceedings of the 8th international congress and exhibition on arsenic in the environment (As2021) (pp. 3-4). https://doi.org/10.1201/9781003317395-1
Freshwater ecosystem responses to climate change: the Euro-limpacs project
Battarbee, R. W., Kernan, M., Livingstone, D. M., Nickus, U., Verdonschot, P., Hering, D., … Skeffington, R. A. (2008). Freshwater ecosystem responses to climate change: the Euro-limpacs project. In P. Quevauviller, U. Borchers, C. Thompson, & T. Simonart (Eds.), Water quality measurements series. The water framework directive. Ecological and chemical status monitoring (pp. 313-354). https://doi.org/10.1002/9780470716090.ch20
Recent studies on sources and sinks of methane in the Black Sea
Schubert, C. J., Durisch-Kaiser, E., Klauser, L., Vazquez, F., Wehrli, B., Holzner, C. P., … Kuypers, M. M. M. (2006). Recent studies on sources and sinks of methane in the Black Sea. In L. N. Neretin (Ed.), NATO science series IV: Earth and environmental sciences: Vol. 64. Past and present water column anoxia. https://doi.org/10.1007/1-4020-4297-3_16
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
Do downwelling streams have a natural attenuation potential for perfluorinated chemicals?
Hoehn, E., Plumlee, M. H., & Reinhard, M. (2008). Do downwelling streams have a natural attenuation potential for perfluorinated chemicals? In C. Abesser, T. Wagener, & G. Nuetzmann (Eds.), IAHS-AISH Publication: Vol. 321. Groundwater-surface water interaction: process understanding, conceptualization and modelling. Proceedings of symposium HS1002 at IUGG2007 (pp. 141-147). IAHS Press.
Oxidation processes in water treatment: options and limitations for micropollutant elimination
Von Gunten, U. (2008). Oxidation processes in water treatment: options and limitations for micropollutant elimination. In Preprints of extended abstracts: Vol. 48. American Chemical Society. Division of Environmental Chemistry. Preprints of extended abstracts (pp. 496-500). American Chemical Society.
Assessing abiotic reduction of nitroaromatic groundwater contaminants in using compound-specific stable isotope analysis
Hofstetter, T. B., Hartenbach, A. E., Neumann, A., Sander, M., Berg, M., Arnold, W. A., … Schwarzenbach, R. P. (2008). Assessing abiotic reduction of nitroaromatic groundwater contaminants in using compound-specific stable isotope analysis. In Preprints of extended abstracts: Vol. 48. American Chemical Society. Division of Environmental Chemistry. Preprints of extended abstracts (pp. 501-505). American Chemical Society.
Removal of low molecular weight organics from natural surface water by nanofiltration
Meylan, S., Hammes, F., Traber, J., Salhi, E., Von Gunten, U., & Pronk, W. (2006). Removal of low molecular weight organics from natural surface water by nanofiltration. In Water quality technology conference and exposition 2006: taking water quality to new heights (pp. 963-967).
As(III) oxidation by chlorine and ozone: using kinetics measurements to model reactions during treatment of natural waters
Dodd, M., Duy Vu, N., Chieu Le, V., Berg, M., & Von Gunten, U. (2006). As(III) oxidation by chlorine and ozone: using kinetics measurements to model reactions during treatment of natural waters. In Water quality technology conference and exposition 2006: taking water quality to new heights (pp. 464-471). American Water Works Association WQTC.
Oxidative treatment of steroid estrogens in water: formation of oxidation products and change of estrogenic activity
Lee, Y., & Von Gunten, U. (2006). Oxidative treatment of steroid estrogens in water: formation of oxidation products and change of estrogenic activity. In Water quality technology conference and exposition 2006: taking water quality to new heights (pp. 519-526). American Water Works Association WQTC.
Simulating environmental tracer transport in unsaturated-saturated porous media
Onnis, G. A., Althaus, R., Klump, S., Hendricks Franssen, H. J. W. M., Stauffer, F., & Kinzelbach, W. (2006). Simulating environmental tracer transport in unsaturated-saturated porous media. In M. F. P. Bierkens, J. C. Gehrels, & K. Kovar (Eds.), IAHS-AISH Publication: Vol. 304. Calibration and reliability in groundwater modelling: from uncertainty to decision making (pp. 38-45). International Association of Hydrological Sciences.
Modeling wind erosion events - bridging the gap between digital soil mapping and digital soil risk assessment
Reuter, H. I., Rodriguez Lado, L., Hengl, T., & Montanarella, L. (2010). Modeling wind erosion events - bridging the gap between digital soil mapping and digital soil risk assessment. In J. L. Boettinger, D. W. Howell, A. C. Moore, A. E. Hartemink, & S. Kienast-Brown (Eds.), Progress in soil science: Vol. 2. Digital soil mapping. Bridging research, environmental application, and operation (pp. 281-293). https://doi.org/10.1007/978-90-481-8863-5_23
Consumer concerns about drinking water in an area with high levels of naturally occurring arsenic in groundwater, and the implications for managing health risks
Leventon, J., & Hug, S. (2012). Consumer concerns about drinking water in an area with high levels of naturally occurring arsenic in groundwater, and the implications for managing health risks. In P. Bhattacharya, I. Rosborg, A. Sandhi, C. Hayes, & M. J. Benoliel (Eds.), Metals and related substances in drinking water. COST Action 637. Proceedings of the 4th international conference (pp. 34-40). IWA Publishing.
Aqueous equilibrium constants of formation for bromamines, chloramines, and bromochloramines: quantum chemistry estimates
Trogolo, D., von Gunten, U., & Arey, J. S. (2016). Aqueous equilibrium constants of formation for bromamines, chloramines, and bromochloramines: quantum chemistry estimates. In C. Thompson, S. Gillespie, & E. Goslan (Eds.), The Royal Society of Chemistry: special publication: Vol. 352. Disinfection by-products in drinking water (pp. 65-69). https://doi.org/10.1039/9781782622710-00065
Computational chemistry investigation of the bromide-catalyzed formation of NDMA from <em>N,N</em>-dimethylsulfamide during ozonation
Trogolo, D., Mishra, B. K., Heeb, M. B., von Gunten, U., & Arey, J. S. (2016). Computational chemistry investigation of the bromide-catalyzed formation of NDMA from N,N-dimethylsulfamide during ozonation. In C. Thompson, S. Gillespie, & E. Goslan (Eds.), The Royal Society of Chemistry: special publication: Vol. 352. Disinfection by-products in drinking water (pp. 262-266). https://doi.org/10.1039/9781782622710-00262
Difference in reactivity and chemistry of NDMA precursors from treated wastewater and from polyamine polymers
Krasner, S. W., Dale, M. S., Lee, C. F. T., Garcia, E. A., Wong, T. M., Mitch, W., & Von Gunten, U. (2010). Difference in reactivity and chemistry of NDMA precursors from treated wastewater and from polyamine polymers. In Vol. 3. Water quality technology conference and exposition 2010 (pp. 2544-2561). American Water Works Association.
Temporal variations in arsenic and <sup>3</sup>H/<sup>3</sup>He ages of groundwater from West Bengal, and their implications
McArthur, J. M., Banerjee, D. M., Sengupta, S., Sarkar, A., Ravenscroft, P., Klump, S., … Disch, B. (2010). Temporal variations in arsenic and 3H/3He ages of groundwater from West Bengal, and their implications. In J. S. Jean, J. Bundschuh, & P. Bhattacharya (Eds.), Arsenic in the environment. Proceedings. Arsenic in geosphere and human diseases. As-2010. Proceedings of the 3rd international congress on arsenic in the environment (pp. 116-117). Taylor & Francis.
 

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