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Combining environmental DNA and species distribution modeling to evaluate reintroduction success of a freshwater fish
Riaz, M., Kuemmerlen, M., Wittwer, C., Cocchiararo, B., Khaliq, I., Pfenninger, M., & Nowak, C. (2020). Combining environmental DNA and species distribution modeling to evaluate reintroduction success of a freshwater fish. Ecological Applications, 30(2), e02034 (11 pp.). https://doi.org/10.1002/eap.2034
Future water quality monitoring: improving the balance between exposure and toxicity assessments of real-world pollutant mixtures
Altenburger, R., Brack, W., Burgess, R. M., Busch, W., Escher, B. I., Focks, A., … Krauss, M. (2019). Future water quality monitoring: improving the balance between exposure and toxicity assessments of real-world pollutant mixtures. Environmental Sciences Europe, 31(1), 12 (17 pp.). https://doi.org/10.1186/s12302-019-0193-1
Advancing the use of molecular methods for routine freshwater macroinvertebrate biomonitoring - the need for calibration experiments
Blackman, R., Mächler, E., Altermatt, F., Arnold, A., Beja, P., Boets, P., … Deiner, K. (2019). Advancing the use of molecular methods for routine freshwater macroinvertebrate biomonitoring - the need for calibration experiments. Metabarcoding and Metagenomics, 3, 49-57. https://doi.org/10.3897/mbmg.3.34735
Effect-based methods are key. The European Collaborative project SOLUTIONS recommends integrating effect-based methods for diagnosis and monitoring of water quality
Brack, W., Aissa, S. A., Backhaus, T., Dulio, V., Escher, B. I., Faust, M., … Altenburger, R. (2019). Effect-based methods are key. The European Collaborative project SOLUTIONS recommends integrating effect-based methods for diagnosis and monitoring of water quality. Environmental Sciences Europe, 31(1), 10 (6 pp.). https://doi.org/10.1186/s12302-019-0192-2
LaRiMo - a simple and efficient GIS-based approach for large-scale morphological assessment of large European rivers
Bechter, T., Baumann, K., Birk, S., Bolik, F., Graf, W., & Pletterbauer, F. (2018). LaRiMo - a simple and efficient GIS-based approach for large-scale morphological assessment of large European rivers. Science of the Total Environment, 628–629, 1191-1199. https://doi.org/10.1016/j.scitotenv.2018.02.084
The SOLUTIONS project: challenges and responses for present and future emerging pollutants in land and water resources management
Brack, W., Altenburger, R., Schüürmann, G., Krauss, M., López Herráez, D., van Gils, J., … de Aragão Umbuzeiro, G. (2015). The SOLUTIONS project: challenges and responses for present and future emerging pollutants in land and water resources management. Science of the Total Environment, 503-504, 22-31. https://doi.org/10.1016/j.scitotenv.2014.05.143
The European technical report on aquatic effect-based monitoring tools under the Water Framework Directive
Wernersson, A. S., Carere, M., Maggi, C., Tusil, P., Soldan, P., James, A., … Kase, R. (2015). The European technical report on aquatic effect-based monitoring tools under the Water Framework Directive. Environmental Sciences Europe, 27, 7 (11 pp.). https://doi.org/10.1186/s12302-015-0039-4
The method matters: a guide for indicator aggregation in ecological assessments
Langhans, S. D., Reichert, P., & Schuwirth, N. (2014). The method matters: a guide for indicator aggregation in ecological assessments. Ecological Indicators, 45, 494-507. https://doi.org/10.1016/j.ecolind.2014.05.014
Efficiency of nutrient management in controlling eutrophication of running waters in the Middle Danube Basin
Istvánovics, V., & Honti, M. (2012). Efficiency of nutrient management in controlling eutrophication of running waters in the Middle Danube Basin. Hydrobiologia, 686(1), 55-71. https://doi.org/10.1007/s10750-012-0999-y
Leaf-litter breakdown in pasture and deciduous woodland streams: a comparison among three European regions
Hladyz, S., Tiegs, S. D., Gessner, M. O., Giller, P. S., Rîşnoveanu, G., Preda, E., … Woodward, G. (2010). Leaf-litter breakdown in pasture and deciduous woodland streams: a comparison among three European regions. Freshwater Biology, 55(9), 1916-1929. https://doi.org/10.1111/j.1365-2427.2010.02426.x