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Temperature as a driving factor in aquatic ecosystems
De Stasio, B. T., Golemgeski, T., Li, X., Larosiliere, M. J., & Livingstone, D. M. (2022). Temperature as a driving factor in aquatic ecosystems. In T. Mehner, K. Tockner, L. Rudstam, D. Bouffard, & M. E. Perga (Eds.), Vol. 1. Encyclopedia of inland waters (pp. 257-269). https://doi.org/10.1016/B978-0-12-819166-8.00062-1
Currents in stratified water bodies 1: density-driven flows
Peeters, F., & Kipfer, R. (2022). Currents in stratified water bodies 1: density-driven flows. In T. Mehner, K. Tockner, D. Bouffard, M. E. Perga, & L. R. Poff (Eds.), Vol. 1. Encyclopedia of inland waters (pp. 525-533). https://doi.org/10.1016/B978-0-12-819166-8.02010-7
Cosmogenic isotopes as proxies for solar energetic particles
Jull, T., Baroni, M., Feinberg, A., Kovaltsov, G., Mekhaldi, F., Muscheler, R., … Usoskin, I. G. (2020). Cosmogenic isotopes as proxies for solar energetic particles. In F. Miyake, I. Usoskin, & S. Poluianov (Eds.), AAS–IOP Astronomy. Extreme solar particle storms. The hostile sun (pp. 4-1-4-59). IOP Publishing.
Possible impacts
Rozanov, E., Dyer, C., Sukhodolov, T., & Feinberg, A. (2020). Possible impacts. In F. Miyake, I. Usoskin, & S. Poluianov (Eds.), AAS-IOP Astronomy. Extreme solar particle storms. The hostile sun (pp. 8-1-8-32). https://doi.org/10.1088/2514-3433/ab404ach8
Multi-scale factors and processes controlling selenium distributions in soils
Jones, G. D., & Winkel, L. H. E. (2017). Multi-scale factors and processes controlling selenium distributions in soils. In E. A. H. Pilon-Smits, L. H. E. Winkel, & Z. Q. Lin (Eds.), Plant ecophysiology: Vol. 11. Selenium in plants (pp. 3-20). https://doi.org/10.1007/978-3-319-56249-0_1
Radionuklide in Sedimenten des Bielersees
Röllin, S., Beer, J., Balsiger, B., Brennwald, M., Estier, S., Klemt, E., … Steinmann, P. (2014). Radionuklide in Sedimenten des Bielersees. In Umweltradioaktivität und Strahlendosen in der Schweiz (pp. 72-77). BAG.
Noble gases as environmental tracers in sediment porewaters and stalagmite fluid inclusions
Brennwald, M. S., Vogel, N., Scheidegger, Y., Tomonaga, Y., Livingstone, D. M., & Kipfer, R. (2013). Noble gases as environmental tracers in sediment porewaters and stalagmite fluid inclusions. In P. Burnard (Ed.), Advances in isotope geochemistry. The noble gases as geochemical tracers (pp. 123-153). https://doi.org/10.1007/978-3-642-28836-4_6
Incineration: solid residues
Hjelmar, O., Johnson, A., & Comans, R. (2011). Incineration: solid residues. In T. H. Christensen (Ed.), Solid waste technology & management. Volume 1 (pp. 430-462). https://doi.org/10.1002/9780470666883.ch29
The impact of the changing climate on the thermal characteristics of lakes
Arvola, L., George, G., Livingstone, D. M., Järvinen, M., Blenckner, T., Dokulil, M. T., … Weyhenmeyer, G. A. (2010). The impact of the changing climate on the thermal characteristics of lakes. In G. George (Ed.), Aquatic ecology series: Vol. 4. The impact of climate change on European lakes (pp. 85-101). https://doi.org/10.1007/978-90-481-2945-4_6
The impact of climate change on lakes in Central Europe
Dokulil, M. T., Teubner, K., Jagsch, A., Nickus, U., Adrian, R., Straile, D., … Padisák, J. (2010). The impact of climate change on lakes in Central Europe. In G. George (Ed.), Aquatic ecology series: Vol. 4. The impact of climate change on European lakes (pp. 387-409). https://doi.org/10.1007/978-90-481-2945-4_20
Lake ice phenology
Livingstone, D. M., Adrian, R., Blenckner, T., George, G., & Weyhenmeyer, G. A. (2010). Lake ice phenology. In G. George (Ed.), Aquatic ecology series: Vol. 4. The impact of climate change on European lakes (pp. 51-61). https://doi.org/10.1007/978-90-481-2945-4_4
Regional and supra-regional coherence in limnological variables
Livingstone, D. M., Adrian, R., Arvola, L., Blenckner, T., Dokulil, M. T., Hari, R. E., … Weyhenmeyer, G. A. (2010). Regional and supra-regional coherence in limnological variables. In G. George (Ed.), Aquatic ecology series: Vol. 4. The impact of climate change on European lakes (pp. 311-337). https://doi.org/10.1007/978-90-481-2945-4_17
Direct impacts of climate change on freshwater ecosystems
Nickus, U., Bishop, K., Erlandsson, M., Evans, C. D., Forsius, M., Laudon, H., … Thies, H. (2010). Direct impacts of climate change on freshwater ecosystems. In M. Kernan, R. W. Battarbee, & B. Moss (Eds.), Climate change impacts on freshwater ecosystems (pp. 38-64). https://doi.org/10.1002/9781444327397.ch3
The impact of variations in the climate on seasonal dynamics of phytoplankton
Nõges, P., Adrian, R., Anneville, O., Arvola, L., Blenckner, T., George, G., … Weyhenmeyer, G. (2010). The impact of variations in the climate on seasonal dynamics of phytoplankton. In G. George (Ed.), Aquatic ecology series: Vol. 4. The impact of climate change on European lakes (pp. 253-274). https://doi.org/10.1007/978-90-481-2945-4_14
Transport and fate of xenobiotics in the urban water cycle: studies in Halle/Saale and Leipzig (Germany)
Schirmer, M., Reinstorf, F., Leschik, S., Musolff, A., Krieg, R., Osenbrück, K., … Strauch, G. (2010). Transport and fate of xenobiotics in the urban water cycle: studies in Halle/Saale and Leipzig (Germany). In D. Fatta-Kassinos, K. Bester, & K. Kümmerer (Eds.), Environmental pollution: Vol. 16. Xenobiotics in the urban water cycle. Mass flows, environmental processes, mitigation and treatment strategies (pp. 213-226). https://doi.org/10.1007/978-90-481-3509-7_12
Trace element-deficient soils
Schulin, R., Johnson, A., & Frossard, E. (2010). Trace element-deficient soils. In P. S. Hooda (Ed.), Trace elements in soils (pp. 175-197). https://doi.org/10.1002/9781444319477.ch9
Water chemistry of Swiss alpine rivers
Zobrist, J. (2010). Water chemistry of Swiss alpine rivers. In U. Bundi (Ed.), The handbook of environmental chemistry: Vol. 6. Alpine waters (pp. 95-118). https://doi.org/10.1007/978-3-540-88275-6_5
Das regionale Grundwassermodell - ein Instrument für die nachhaltige Bewirtschaftung des Thurtaler Grundwassers
Baumann, M., Hoehn, E., Holzschuh, R., Jordan, P., Kuratli, E., & Rist, O. (2009). Das regionale Grundwassermodell - ein Instrument für die nachhaltige Bewirtschaftung des Thurtaler Grundwassers. In M. Baumann, P. Jordan, E. Hoehn, & H. Geisser (Eds.), Mitteilungen der Thurgauischen Naturforschenden Gesellschaft: Vol. 63. Ein neues Grundwassermodell für das Thurtal (pp. 217-230). Thurgauische Naturforschende Gesellschaft.
Die 2. Thurgauer Thurkorrektion erfordert einen neuen Blick auf das Thurtaler Grundwasser
Baumann, M., Hoehn, E., & Jordan, P. (2009). Die 2. Thurgauer Thurkorrektion erfordert einen neuen Blick auf das Thurtaler Grundwasser. In M. Baumann, P. Jordan, E. Hoehn, & H. Geisser (Eds.), Mitteilungen der Thurgauischen Naturforschenden Gesellschaft: Vol. 63. Ein neues Grundwassermodell für das Thurtal (pp. 7-15). Thurgauische Naturforschende Gesellschaft.
Einsatz des neuen Grundwassermodells im Rahmen der 2. Thurgauer Thurkorrektion
Baumann, M., Hoehn, E., & Jordan, P. (2009). Einsatz des neuen Grundwassermodells im Rahmen der 2. Thurgauer Thurkorrektion. In M. Baumann, P. Jordan, E. Hoehn, & H. Geisser (Eds.), Mitteilungen der Thurgauischen Naturforschenden Gesellschaft: Vol. 63. Ein neues Grundwassermodell für das Thurtal (pp. 189-199). Thurgauische Naturforschende Gesellschaft.