Mäder, U.

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Mäder, U.; Wersin, P. (2023). Reference porewaters for SGT Stage 3 of the Opalinus Clay for the siting regions Jura Ost (JO), Nördlich Lägern (NL) and Zürich Nordost (ZNO) (Arbeitsbericht NAB 22-47). Wettingen, Switzerland: Nagra

Kiczka, M.; Wersin, P.; Mazurek, M.; Zwahlen, C.; Jenni, A.; Mäder, U.; Traber, D. (2023). Porewater composition in clay rocks explored by advective displacement and squeezing experiments. Applied geochemistry, 159, p. 105838. Elsevier 10.1016/j.apgeochem.2023.105838

Wersin, P.; Pekala, M.; Mazurek, M.; Gimmi, T.; Mäder, U.; Jenni, A.; Rufer, D.; Aschwanden, L. (2020). Porewater Chemistry of Opalinus Clay: Methods, Data, Modelling & Buffering Capacity (Technical Report, Nagra 18-01). NAGRA, National Cooperative for the Disposal of Radioactive Waste

Wanner, C.; Zink, S.; Eggenberger, U.; Kurz, D.; Mäder, U. (2012). A chromate-contaminated site in southern Switzerland - Part 1: Site characterization and the use of Cr isotopes to delineate fate and transport. Applied geochemistry, 27(3), pp. 644-654. Oxford: Pergamon 10.1016/j.apgeochem.2011.11.009

Wanner, C.; Eggenberger, U.; Mäder, U. (2012). A chromate-contaminated site in southern Switzerland - Part 2: Reactive transport modeling to optimize remediation options. Applied geochemistry, 27(3), pp. 655-662. Oxford: Pergamon 10.1016/j.apgeochem.2011.11.008

Wanner, C.; Zink, S.; Eggenberger, U.; Mäder, U. (2012). Assessing the Cr(VI) reduction efficiency of a permeable reactive barrier using Cr isotope measurements and 2D reactive transport modeling. Journal of contaminant hydrology, 131(1-4), pp. 54-63. Amsterdam: Elsevier 10.1016/j.jconhyd.2012.01.007

Leupin, O.; Wersin, P.; Mettler, S.; Mäder, U.; Gaucher, E. C.; Vinsot, A.; De Cannière, P.; Gäbler, H.E.; Eichinger, L.; Kunimaro, T.; Kiho, K. (2012). PC (Porewater chemistry) Experiment: Synthesis report (Mont Terri Technical Report TR 2009-06). Mont Terri Project

Wanner, C.; Eggenberger, U.; Mäder, U. (2011). Reactive transport modeling of Cr(VI) treatment under fast flow conditions. Applied geochemistry, 26(8), pp. 1513-1523. Oxford: Pergamon 10.1016/j.apgeochem.2011.06.015

Wersin, Paul; Leupin, X.O.; Mettler, S.; Gaucher, E. C.; Mäder, U.; Vinsot, A.; De Canni re, P.; Gäbler, H.E.; Kunimaro, T.; Kiho, K. (2011). Biogeochemical processes in a clay formation in-situ experiment: Part A - Overview, experimental design and water data of an experiment in the Opalinus Clay at the Mont Terri Underground Research Laboratory, Switzerland. Applied geochemistry, 26(6), pp. 931-953. Oxford: Pergamon 10.1016/j.apgeochem.2011.03.004

Aimoz, Laure; Curti, Enzo; Mäder, U. (2011). Iodide interaction with natural pyrite. Journal of Radioanalytical and Nuclear Chemistry, 288(2), pp. 517-524. Berlin: Springer Netherlands 10.1007/s10967-010-0959-9

Traber, D.; Mäder, U.; Eggenberger, U. (2002). Petrology and geochemistry of a municipal solid waste incinerator residue treated at high temperature. Schweizerische Mineralogische und Petrographische Mitteilungen, 82(1), pp. 1-14. Stäubli

Mäder, U.; Adler, M.; Steefel, C.I.; Waber, Niklaus; Traber, D. (2002). Core infiltration experiment and modelling of reactive transport of high-pH solutions in clay stone. Geochimica et cosmochimica acta, 66(Supplement 1), A473-A473. Elsevier Science

Adler, M.; Mäder, U.; Waber, Niklaus (2001). Core infiltration experiment investigating high-pH alteration of low-permeability argillaceous rock at 30˚C. In: Cidu, R. (ed.) Water-Rock Interaction: Proceedings of the 10th International Symposium on Water-Rock Interaction, WRI-10 (pp. 1299-1302). A.A. Balkema

Adler, M.; Mäder, U.; Waber, Niklaus (1999). High-pH Alteration of Argillaceous Rocks: An Experimental Study. Schweizerische Mineralogische und Petrographische Mitteilungen, 79(3), pp. 445-454. Stäubli

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