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Chemical extraction of microorganisms from water-saturated, packed sediment
Ugolini, F., Schroth, M. H., Bürgmann, H., Hammes, F., & Zeyer, J. (2013). Chemical extraction of microorganisms from water-saturated, packed sediment. Water Environment Research, 85(6), 503-513. https://doi.org/10.2175/106143012X13373575831475
Routine bacterial analysis with automated flow cytometry
Van Nevel, S., Koetzsch, S., Weilenmann, H. U., Boon, N., & Hammes, F. (2013). Routine bacterial analysis with automated flow cytometry. Journal of Microbiological Methods, 94(2), 73-76. https://doi.org/10.1016/j.mimet.2013.05.007
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). 50 p.
Development and laboratory-scale testing of a fully automated online flow cytometer for drinking water analysis
Hammes, F., Broger, T., Weilenmann, H. U., Vital, M., Helbing, J., Bosshart, U., … Sonnleitner, B. (2012). Development and laboratory-scale testing of a fully automated online flow cytometer for drinking water analysis. Cytometry Part A, 81A(6), 508-516. https://doi.org/10.1002/cyto.a.22048
Durchflusszytometrie in der Trinkwasseranalytik
Hammes, F., & Steinberg, M. (2012). Durchflusszytometrie in der Trinkwasseranalytik. Biospektrum, 18(3), 300-302. https://doi.org/10.1007/s12268-012-0182-z
Online-Flowzytometrie in der Praxis. Von der Platte über die Zelle zur Clusteranalyse
Helbing, J., Bosshart, U., & Hammes, F. (2012). Online-Flowzytometrie in der Praxis. Von der Platte über die Zelle zur Clusteranalyse. Aqua & Gas, 92(5), 28-33.
Competition of <I>Escherichia coli</I> O157 with a drinking water bacterial community at low nutrient concentrations
Vital, M., Hammes, F., & Egli, T. (2012). Competition of Escherichia coli O157 with a drinking water bacterial community at low nutrient concentrations. Water Research, 46(19), 6279-6290. https://doi.org/10.1016/j.watres.2012.08.043
Flow cytometry and adenosine tri-phosphate analysis: alternative possibilities to evaluate major bacteriological changes in drinking water treatment and distribution systems
Vital, M., Dignum, M., Magic-Knezev, A., Ross, P., Rietveld, L., & Hammes, F. (2012). Flow cytometry and adenosine tri-phosphate analysis: alternative possibilities to evaluate major bacteriological changes in drinking water treatment and distribution systems. Water Research, 46(15), 4665-4676. https://doi.org/10.1016/j.watres.2012.06.010
Nutrient gradients in a granular activated carbon biofilter drives bacterial community organization and dynamics
Boon, N., Pycke, B. F. G., Marzorati, M., & Hammes, F. (2011). Nutrient gradients in a granular activated carbon biofilter drives bacterial community organization and dynamics. Water Research, 45(19), 6355-6361. https://doi.org/10.1016/j.watres.2011.09.016
Flow cytometry-based methods for fast microbiological analysis of drinking water and their application in practice
Egli, T., Hammes, F., Köster, O., & Kaiser, H. P. (2011). Flow cytometry-based methods for fast microbiological analysis of drinking water and their application in practice. Bluefacts: International Journal of Water-Management, 2-9. Retrieved from http://www.wvgw.de/dyn_pdf/bluefacts2011/
Bacterial colonization of pellet softening reactors used during drinking water treatment
Hammes, F., Boon, N., Vital, M., Ross, P., Magic-Knezev, A., & Dignum, M. (2011). Bacterial colonization of pellet softening reactors used during drinking water treatment. Applied and Environmental Microbiology, 77(3), 1041-1048. https://doi.org/10.1128/AEM.02068-10
Biotreatment of Drinking Water
Hammes, F., Velten, S., Egli, T., & Juhna, T. (2011). Biotreatment of Drinking Water. In M. Moo-Young, M. Butler, C. Webb, A. Moreira, B. Grodzinski, Z. F. Cui, & S. Agathos (Eds.), Vol. 6. Comprehensive Biotechnology (pp. 517-530). https://doi.org/10.1016/B978-0-08-088504-9.00386-X
Cultivation-independent Assessment of Bacterial Viability
Hammes, F., Berney, M., & Egli, T. (2011). Cultivation-independent Assessment of Bacterial Viability. In S. Müller & T. Bley (Eds.), Advances in Biochemical Engineering/Biotechnology: Vol. 124. High Resolution Microbial Single Cell Analytics (pp. 123-150). https://doi.org/10.1007/10_2010_95
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]. Dübendorf: Eawag.
Drinking water microbiology: from understanding to applications
Hammes, F. (2011). Drinking water microbiology: from understanding to applications. Eawag News [engl. ed.], 70, 18-21.
Trinkwassermikrobiologie: vom Wissen zur Anwendung
Hammes, F. (2011). Trinkwassermikrobiologie: vom Wissen zur Anwendung. Eawag News [dtsch. Ausg.], 70, 18-21.
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). 73 p.
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). https://doi.org/10.3929/ethz-a-006741838
Kinetics of membrane damage to high (HNA) and low (LNA) nucleic acid bacterial clusters in drinking water by ozone, chlorine, chlorine dioxide, monochloramine, ferrate(VI), and permanganate
Ramseier, M. K., von Gunten, U., Freihofer, P., & Hammes, F. (2011). Kinetics of membrane damage to high (HNA) and low (LNA) nucleic acid bacterial clusters in drinking water by ozone, chlorine, chlorine dioxide, monochloramine, ferrate(VI), and permanganate. Water Research, 45(3), 1490-1500. https://doi.org/10.1016/j.watres.2010.11.016
Development of biomass in a drinking water granular active carbon (GAC) filter
Velten, S., Boller, M., Köster, O., Helbing, J., Weilenmann, H. U., & Hammes, F. (2011). Development of biomass in a drinking water granular active carbon (GAC) filter. Water Research, 45(19), 6347-6354. https://doi.org/10.1016/j.watres.2011.09.017