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Environmental Microbiology|May 30, 2008
Escherichia coli O157 can grow in natural freshwater at low carbon concentrationsMarius Vital, Frederik Hammes, Thomas EgliThe Science of the Total Environment|September 30, 2017
Short-term organic carbon migration from polymeric materials in contact with chlorinated drinking waterGuannan Mao, Yingying Wang, Frederik HammesWater Research|October 16, 2012
Competition of Escherichia coli O157 with a drinking water bacterial community at low nutrient concentrationsMarius Vital, Frederik Hammes, Thomas EgliApplied and Environmental Microbiology|December 22, 2009
Critical evaluation of the volumetric "bottle effect" on microbial batch growthFrederik Hammes, Marius Vital, Thomas EgliJournal of Microbiological Methods|November 5, 2016
A pipeline for developing and testing staining protocols for flow cytometry, demonstrated with SYBR Green I and propidium iodide viability stainingAlina Nescerecka, Frederik Hammes, Talis JuhnaWater Research|November 7, 2017
Metagenomic characterization of biofilter microbial communities in a full-scale drinking water treatment plantSeungdae Oh, Frederik Hammes, Wen-Tso LiuFrontiers in Microbiology|July 6, 2016
Flow Cytometric Assessment of Bacterial Abundance in Soils, Sediments and SludgeAline Frossard, Frederik Hammes, Mark O GessnerWater Research|June 11, 2018
A uniform bacterial growth potential assay for different water typesNadia Farhat, Frederik Hammes, Emmanuelle Prest, et al.Applied and Environmental Microbiology|August 10, 2010
Evaluating the growth potential of pathogenic bacteria in waterMarius Vital, David Stucki, Thomas Egli, et al.Environmental Science & Technology|November 13, 2007
Quantification of the filterability of freshwater bacteria through 0.45, 0.22, and 0.1 microm pore size filters and shape-dependent enrichment of filterable bacterial communitiesYingying Wang, Frederik Hammes, Nico Boon, et al.Pageof 9