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AdvectAs challenge: multidisciplinary research on groundwater arsenic dissolution, transport, and retardation under advective flow conditions
Stopelli, E., Lightfoot, A., Kipfer, R., Berg, M., Winkel, L. H. E., Glodowska, M., … Viet, P. H. (2019). AdvectAs challenge: multidisciplinary research on groundwater arsenic dissolution, transport, and retardation under advective flow conditions. 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. 29-31). https://doi.org/10.1201/9781351046633-9
An alternative interpretation of plasma selenium data from endangered Patagonian huemul deer (<em>Hippocamelus bisulcus</em>)
Flueck, W. T., Smith-Flueck, J. A. M., Mincher, B. J., & Winkel, L. H. E. (2014). An alternative interpretation of plasma selenium data from endangered Patagonian huemul deer (Hippocamelus bisulcus). Journal of Wildlife Diseases, 50(4), 1003-1004. https://doi.org/10.7589/2014-03-077
Arsenic adsorption and iron mineralogy in an arsenic contaminated aquifer: field experiments
Frising, A. (2014). Arsenic adsorption and iron mineralogy in an arsenic contaminated aquifer: field experiments [Master thesis].
Arsenic adsorption on iron mineral phases under reducing conditions: results from an <em>in-situ</em> field experiment
Neidhardt, H., Berg, M., Stengel, C., Winkel, L. H. E., Kaegi, R., Trang, P. T. K., … Viet, P. H. (2014). Arsenic adsorption on iron mineral phases under reducing conditions: results from an in-situ field experiment. In M. I. Litter, H. B. Nicolli, M. Meichtry, N. Quici, J. Bundschuh, P. Bhattacharya, & R. Naidu (Eds.), One century of the discovery of Arsenicosis in Latin America (1914-2014) (pp. 83-84). CRC Press.
Arsenic in Bangladeshi soils related to physiographic region, paddy management, and mirco- and macro-elemental status
Deacon, C. M., Chowdhury, M. T. A., Jones, G. D., Imamul Huq, S. M., Williams, P. N., Manzurul Hoque, A. F. M., … Meharg, A. A. (2017). Arsenic in Bangladeshi soils related to physiographic region, paddy management, and mirco- and macro-elemental status. Science of the Total Environment, 590-591, 406-415. https://doi.org/10.1016/j.scitotenv.2016.11.191
Arsenic pollution of groundwater in Vietnam exacerbated by deep aquifer exploitation for more than a century
Winkel, L. H. E., Trang, P. T. K., Lan, V. M., Stengel, C., Amini, M., Ha, N. T., … Berg, M. (2011). Arsenic pollution of groundwater in Vietnam exacerbated by deep aquifer exploitation for more than a century. Proceedings of the National Academy of Sciences of the United States of America PNAS, 108(4), 1246-1251. https://doi.org/10.1073/pnas.1011915108
Assessing global cycling of selenium: analytical tools to quantify volatile species and their fluxes
Vriens, B., Winkel, L. H. E., Lenz, M., & Berg, M. (2014). Assessing global cycling of selenium: analytical tools to quantify volatile species and their fluxes. In G. S. Bañuelos, Z. Q. Lin, & X. Yin (Eds.), Selenium in the environment and human health. Proceedings of the 3rd international conference on selenium in the environment and human health, Hefei, China, 10-14 November 2013 (pp. 5-6). CRC Press.
Carbon and methane cycling in arsenic-contaminated aquifers
Stopelli, E., Duyen, V. T., Prommer, H., Glodowska, M., Kappler, A., Schneider, M., … Berg, M. (2021). Carbon and methane cycling in arsenic-contaminated aquifers. Water Research, 200, 117300 (8 pp.). https://doi.org/10.1016/j.watres.2021.117300
Colloidal properties of nanoparticular biogenic selenium govern environmental fate and bioremediation effectiveness
Buchs, B., Evangelou, M. W. H., Winkel, L. H. E., & Lenz, M. (2013). Colloidal properties of nanoparticular biogenic selenium govern environmental fate and bioremediation effectiveness. Environmental Science and Technology, 47(5), 2401-2407. https://doi.org/10.1021/es304940s
Constraining atmospheric selenium emissions using observations, global modeling, and Bayesian inference
Feinberg, A., Stenke, A., Peter, T., & Winkel, L. H. E. (2020). Constraining atmospheric selenium emissions using observations, global modeling, and Bayesian inference. Environmental Science and Technology, 54(12), 7146-7155. https://doi.org/10.1021/acs.est.0c01408
Contamination of drinking water resources in the Mekong delta floodplains: arsenic and other trace metals pose serious health risks to population
Buschmann, J., Berg, M., Stengel, C., Winkel, L., Sampson, M. L., Trang, P. T. K., & Hung Viet, P. (2008). Contamination of drinking water resources in the Mekong delta floodplains: arsenic and other trace metals pose serious health risks to population. Environment International, 34(6), 756-764. https://doi.org/10.1016/j.envint.2007.12.025
Decomposition of copper concentrates at high-temperatures: an efficient method to remove volatile impurities
Winkel, L., Wochele, J., Ludwig, C., Alxneit, I., & Sturzenegger, M. (2008). Decomposition of copper concentrates at high-temperatures: an efficient method to remove volatile impurities. Minerals Engineering, 21(10), 731-742. https://doi.org/10.1016/j.mineng.2008.02.003
Delineating areas of groundwater arsenic contamination from surface parameters and geology at depth
Berg, M., Amini, M., Hug, S. J., Johnson, C. A., & Winkel, L. (2010). Delineating areas of groundwater arsenic contamination from surface parameters and geology at depth. 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. 79-81).
Environmental selenium research: from microscopic processes to global understanding
Winkel, L. H. E., Johnson, C. A., Lenz, M., Grundl, T., Leupin, O. X., Amini, M., & Charlet, L. (2012). Environmental selenium research: from microscopic processes to global understanding. Environmental Science and Technology, 46(2), 571-579. https://doi.org/10.1021/es203434d
Ermittlung der Konzentrationsbereiche von Spurenelementen in Abwasserreinigungsanlagen. Zusammenfassender Schlussbericht
Vriens, B., Berg, M., Hug, S., Kägi, R., Voegelin, A., & Winkel, L. (2016). Ermittlung der Konzentrationsbereiche von Spurenelementen in Abwasserreinigungsanlagen. Zusammenfassender Schlussbericht. Eawag.
Examining continental and marine sources of selenium in rainfall
Blazina, T., Winkel, L. H. E., Läderach, A., Wernli, H., & Kirchner, J. (2016). Examining continental and marine sources of selenium in rainfall. In G. S. Banuelos, L. Zhi-Qing, M. Ferreira Moraes, L. R. Guimarães Guilherme, & A. Rodrigues dos Reis (Eds.), Global advances in selenium research from theory to application (pp. 7-8). Taylor & Francis.
Formation and transformation of Fe(III)- and Ca-precipitates in aqueous solutions and effects on phosphate retention over time
Nenonen, V. V., Kaegi, R., Hug, S. J., Göttlicher, J., Mangold, S., Winkel, L. H. E., & Voegelin, A. (2023). Formation and transformation of Fe(III)- and Ca-precipitates in aqueous solutions and effects on phosphate retention over time. Geochimica et Cosmochimica Acta, 360, 207-230. https://doi.org/10.1016/j.gca.2023.09.004
Geogene Verunreinigungen
Johnson, A., Abbaspour, K., Amini, M., Bader, H. P., Berg, M., Hoehn, E., … Zurbrügg, C. (2008). Geogene Verunreinigungen. Eawag News [dtsch. Ausg.], 65, 16-19.
Geostatistical analysis for the delineation of potential groundwater as contamination
Johnson, C. A., Bretzler, A., Amini, M., Winkel, L. H. E., Berg, M., & Rodriguez-Lado, L. (2014). Geostatistical analysis for the delineation of potential groundwater as contamination. In M. I. Litter, H. B. Nicolli, M. Meichtry, N. Quici, J. Bundschuh, P. Bhattacharya, & R. Naidu (Eds.), One century of the discovery of arsenicosis in Latin America (1914-2014) (pp. 46-48). CRC Press.
Geostatistical modelling of arsenic hazard in groundwater
Bretzler, A., Berg, M., Winkel, L., Amini, M., Rodriguez-Lado, L., Sovann, C., … Johnson, A. (2017). Geostatistical modelling of arsenic hazard in groundwater. In P. Bhattacharya, D. A. Polya, & D. Jovanovic (Eds.), Metals and related substances in drinking water: Vol. 6. Best practice guide on the control of arsenic in drinking water (pp. 153-160). IWA Publishing.
 

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