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  • (-) Eawag Departments = Environmental Microbiology UMIK
  • (-) Publication Year = 2006 - 2018
  • (-) Journal ≠ Eawag News [dtsch. Ausg.]
  • (-) Eawag Authors ≠ Schreiber, Frank
  • (-) Keywords ≠ Escherichia coli
  • (-) Publication Status ≠ Published
  • (-) Eawag Authors = Hammes, Frederik
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Biologische Nachbehandlung von kommunalem Abwasser nach Ozonung – ReTREAT. Schlussbericht
Böhler, M., Fleiner, J., Siegrist, H., McArdell, C. S., Teichler, R., Bourgin, M., … Blunschi, M. (2017). Biologische Nachbehandlung von kommunalem Abwasser nach Ozonung – ReTREAT. Schlussbericht. Eawag.
Real-time microbial concentrations by automated on-line flow cytometry for marine coastal monitoring
Casotti, R., Balestra, C., Van Dijk, M., Passarelli, A., Sigrist, J., & Hammes, F. (2017). Real-time microbial concentrations by automated on-line flow cytometry for marine coastal monitoring. In IMEKO TC19 workshop on metrology for the sea (MetroSea 2017). Learning to measure sea health parameters (pp. 50-53). International Measurement Confederation (IMEKO).
Microbiology of household plumbing causes and consequences
Proctor, C. R. (2017). Microbiology of household plumbing causes and consequences [Doctoral dissertation, ETH Zürich]. https://doi.org/10.3929/ethz-b-000255592
Monitoring short-term dynamics of bacterial concentrations in natural and engineered aquatic ecosystems
Besmer, M. D. (2016). Monitoring short-term dynamics of bacterial concentrations in natural and engineered aquatic ecosystems [Doctoral dissertation]. ETH Zürich.
Final report: distribution and elimination of antibiotic resistance genes and antibiotic resistant bacteria in the drinking water supply of lausanne (St. Sulpice), Switzerland
Bürgmann, H., Cáceres, J. S., Beck, K., & Hammes, F. (2015). Final report: distribution and elimination of antibiotic resistance genes and antibiotic resistant bacteria in the drinking water supply of lausanne (St. Sulpice), Switzerland. Eawag.
Biological stability in drinking water distribution systems
Prest, E. I. E. D. (2015). Biological stability in drinking water distribution systems [Doctoral dissertation]. University of Delft.
Initial resource-to-consumer ratio as a key parameter of biological stability in water
Besmer, M. (2012). Initial resource-to-consumer ratio as a key parameter of biological stability in water [Master thesis].
Development of a simplified biodegradeable organic matter quantification technique [project #3128]
Hammes, F., & Egli, T. (2011). Development of a simplified biodegradeable organic matter quantification technique [project #3128]. Water Research Foundation.
Household drinking water in rural Ethiopia - impact of defluoridation filters on microbial drinking water quality in the Rift Valley
Küng, N. (2011). Household drinking water in rural Ethiopia - impact of defluoridation filters on microbial drinking water quality in the Rift Valley [Master thesis].
Origin, function and stability of microbial communities in non-chlorinated public drinking water
Lautenschlager, K. (2011). Origin, function and stability of microbial communities in non-chlorinated public drinking water [Doctoral dissertation, ETH Zürich]. https://doi.org/10.3929/ethz-a-006741838
Low and high nucleic acid content bacteria: reality or just a flow cytometric phenomenon?
Jaiswal, S. (2010). Low and high nucleic acid content bacteria: reality or just a flow cytometric phenomenon? [Master thesis].
Efficiency and limitations of systems based on the ultra-low pressure ultrafiltration technology
Pronk, W., Peter-Varbanets, M., Margot, J., Li, W., Müller, S., Grau, M., … Hammes, F. (2010). Efficiency and limitations of systems based on the ultra-low pressure ultrafiltration technology. TECHNEAU.
Assimilable organic carbon formation and disinfection during oxidative drinking water treatment
Ramseier, M. K. (2010). Assimilable organic carbon formation and disinfection during oxidative drinking water treatment [Doctoral dissertation, ETH Zürich].
Growth of pathogenic bacteria in freshwater and their competition with the autochthonous bacterial flora
Vital, M. (2010). Growth of pathogenic bacteria in freshwater and their competition with the autochthonous bacterial flora [Doctoral dissertation, ETH Zürich].
Mechanisms of biofouling of UF membranes and evaluation of pretreatment on fouling of UF membranes
Peter-Varbanets, M., Pronk, W., Hammes, F., Vital, M., Margot, J., Li, W., & Mudryk, R. (2008). Mechanisms of biofouling of UF membranes and evaluation of pretreatment on fouling of UF membranes. TECHNEAU.
"The unseen majority": heterotrophic bacteria in freshwater, more than just small and non-cultivable
Wang, Y. (2008). "The unseen majority": heterotrophic bacteria in freshwater, more than just small and non-cultivable [Doctoral dissertation, ETH Zürich]. https://doi.org/10.3929/ethz-a-005701575
Simulation of bacterial regrowth in water networks by modelling of Pseudomonas fluorescens growth in a batch and lab biofilm reactor
Rubulis, J., Lukyanetsa, I., Tihomirova, K., Juhna, T., Nazarovs, S., Kolyshkin, A., … Hammes, F. (2007). Simulation of bacterial regrowth in water networks by modelling of Pseudomonas fluorescens growth in a batch and lab biofilm reactor. In B. Ulanicki, K. Vairavamoorthy, D. Butler, P. L. M. Bounds, & F. A. Memon (Eds.), Water management challenges in global change. Proceedings of the combined international conference of computing and control for the water industry (CCWI2007) and sustainable urban water management (SUWM2007) (pp. 229-236). Taylor & Francis.
Drinking water microbial analysis and the characterization of low nucleic acid (LNA) content bacteria from freshwater
Siebel, E. (2007). Drinking water microbial analysis and the characterization of low nucleic acid (LNA) content bacteria from freshwater [Master thesis].
Removal of low molecular weight organics from natural surface water by nanofiltration
Meylan, S., Hammes, F., Traber, J., Salhi, E., Von Gunten, U., & Pronk, W. (2006). Removal of low molecular weight organics from natural surface water by nanofiltration. In Water quality technology conference and exposition 2006: taking water quality to new heights (pp. 963-967).