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Wersin, Paul; Aschwanden, Lukas; Kiczka, Mirjam (2024). Cation exchange parameters for Opalinus Clay and its confining units. Applied geochemistry, 167 Elsevier 10.1016/j.apgeochem.2024.106003
Eichinger, Florian; Waber, H. Niklaus; Aschwanden, Lukas; Lippman-Pipke, Johanna; Rufer, Daniel; Bath, Adrian (2024). Best practice methods for the chemical and isotopic characterisation of porewater in low-permeability bedrock. Grundwasser Springer 10.1007/s00767-023-00563-4
Akker, Ismay Vénice; Schneeberger, Raphael; Herwegh, Marco; Looser, Nathan; Aschwanden, Lukas; Mazurek, Martin; Decker, Kurt; Ebert, Andreas; Guillong, Marcel; Bernasconi, Stefano M.; Schrank, Christoph; Jones, Michael W. M.; Langendam, Andrew; Madritsch, Herfried (2023). Microstructural characterization of natural fractures and faults in the Opalinus Clay: insights from a deep drilling campaign across central northern Switzerland. Swiss journal of geosciences, 116(1) Springer 10.1186/s00015-023-00438-z
Wersin, Paul; Gimmi, Thomas; Ma, Jin; Mazurek, Martin; Zwahlen, Carmen; Aschwanden, Lukas; Gaucher, Eric; Traber, Daniel (2023). Porewater profiles of Cl and Br in boreholes penetrating the Mesozoic sequence in northern Switzerland. Applied geochemistry, 159, p. 105845. Elsevier 10.1016/j.apgeochem.2023.105845
Aschwanden, Lukas; Wersin, Paul; Debure, Mathieu; Traber, Daniel (2023). Experimental study of water-extractable sulphate in Opalinus Clay and implications for deriving porewater concentrations. Applied geochemistry, 160, p. 105837. Elsevier 10.1016/j.apgeochem.2023.105837
Mazurek, M.; Gimmi, T.; Zwahlen, C.; Aschwanden, L.; Gaucher, E.C.; Kiczka, M.; Rufer, D.; Wersin, P.; Marques Fernandes, M.; Glaus, M.A.; Van Loon, L.R.; Traber, D.; Schnellmann, M.; Vietor, Tim (2023). Swiss deep drilling campaign 2019–2022: Geological overview and rock properties with focus on porosity and pore-space architecture. Applied geochemistry, 159, p. 105839. Elsevier 10.1016/j.apgeochem.2023.105839
Aschwanden, Lukas; Diamond, Larryn W.; Mazurek, Martin; Davis, Donald W. (2019). Creation of secondary porosity in dolostones by upwelling basement water in the foreland of the Alpine orogen. Geofluids, 2019, pp. 1-23. Hindawi 10.1155/2019/5210404
Adams, Arthur; Diamond, Larryn William; Aschwanden, Lukas (2019). Dolomitization by hypersaline reflux into dense groundwaters as revealed by vertical trends in strontium and oxygen isotopes: Upper Muschelkalk, Switzerland. Sedimentology, 66(1), pp. 362-390. Blackwell Science 10.1111/sed.12530
Aschwanden, Lukas; Diamond, Larryn William; Adams, Arthur (2019). Effects of progressive burial on matrix porosity and permeability of dolostones in the foreland basin of the Alpine Orogen, Switzerland. Marine and petroleum geology, 100, pp. 148-164. Elsevier 10.1016/j.marpetgeo.2018.10.055
Petts, D.C.; Saso, J.K.; Diamond, Larryn William; Aschwanden, Lukas; Al, T.A.; Jensen, M. (2017). The source and evolution of paleofluids responsible for secondary minerals in low-permeability Ordovician limestones of the Michigan Basin. Applied geochemistry, 86, pp. 121-137. Elsevier 10.1016/j.apgeochem.2017.09.011
Aschwanden, Lukas; Diamond, Larryn William; Adams, Arthur; Mazurek, Martin (2017). Anhydrite-dissolution Porosity in the Upper Muschelkalk Carbonate Aquifer, NE-Switzerland: Implications for Geothermal Energy and Geological Storage of Gas. Procedia earth and planetary science, 17, pp. 897-900. Elsevier 10.1016/j.proeps.2017.01.011
Nägler, Thomas; Pierret, Marie-Claire; Vögelin, Andrea; Pettke, Thomas; Aschwanden, Lukas; Villa, Igor Maria (2020). Small catchment scale Mo isotope balance and its implications for global Mo isotope cycling. In: Dontsova, Katerina; Balogh-Brunstad, Zsuzsanna; Le Roux, Gaël (eds.) Biogeochemical Cycles: Ecological Drivers and Environmental Impact. Geophysical Monograph Series: Vol. 251 (pp. 163-189). American Geophysical Union 10.1002/9781119413332.ch8
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