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  • (-) Organizational Unit = Environmental Microbiology UMIK
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  • (-) Keywords ≠ bioaugmentation
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Systematic exploration of biotransformation reactions of amine-containing micropollutants in activated sludge
Gulde, R., Meier, U., Schymanski, E. L., Kohler, H. P. E., Helbling, D. E., Derrer, S., … Fenner, K. (2016). Systematic exploration of biotransformation reactions of amine-containing micropollutants in activated sludge. Environmental Science and Technology, 50(6), 2908-2920. https://doi.org/10.1021/acs.est.5b05186
Occurrence and sources of selected phenolic endocrine disruptors in Ria de Aveiro, Portugal
Jonkers, N., Sousa, A., Galante-Oliveira, S., Barroso, C. M., Kohler, H. P. E., & Giger, W. (2010). Occurrence and sources of selected phenolic endocrine disruptors in Ria de Aveiro, Portugal. Environmental Science and Pollution Research, 17(4), 834-843. https://doi.org/10.1007/s11356-009-0275-5
Solar disinfection (SODIS) and subsequent dark storage of <I>Salmonella typhimurium</I> and <I>Shigella flexneri</I> monitored by flow cytometry
Bosshard, F., Berney, M., Scheifele, M., Weilenmann, H. U., & Egli, T. (2009). Solar disinfection (SODIS) and subsequent dark storage of Salmonella typhimurium and Shigella flexneri monitored by flow cytometry. Microbiology, 155(4), 1310-1317. https://doi.org/10.1099/mic.0.024794-0
Isomer-specific determination of 4-nonylphenols using comprehensive two-dimensional gas chromatography/time-of-flight mass spectrometry
Eganhouse, R. P., Pontolillo, J., Gaines, R. B., Frysinger, G. S., Gabriel, F. L. P., Kohler, H. P. E., … Barber, L. B. (2009). Isomer-specific determination of 4-nonylphenols using comprehensive two-dimensional gas chromatography/time-of-flight mass spectrometry. Environmental Science and Technology, 43(24), 9306-9313. https://doi.org/10.1021/es902622r
Environmental fate of phenolic endocrine disruptors: Field and laboratory studies
Giger, W., Gabriel, Frédéric L. P., Jonkers, N., Wettstein, F. E., & Kohler, H. P. E. (2009). Environmental fate of phenolic endocrine disruptors: Field and laboratory studies. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 367(1904), 3941-3963. https://doi.org/10.1098/rsta.2009.0148
Mass flows of endocrine disruptors in the Glatt River during varying weather conditions
Jonkers, N., Kohler, H. P. E., Dammshäuser, A., & Giger, W. (2009). Mass flows of endocrine disruptors in the Glatt River during varying weather conditions. Environmental Pollution, 157(3), 714-723. https://doi.org/10.1016/j.envpol.2008.11.029
Massenbilanzen und toxikologisches Gefährdungspotenzial von ausgewählten Explosivstoffen im Thuner-, Brienzer- und Vierwaldstättersee. Interner Bericht zuhanden des VBS
Schmid, M., Rovelli, L., Wüest, A., & Kohler, H. P. E. (2009). Massenbilanzen und toxikologisches Gefährdungspotenzial von ausgewählten Explosivstoffen im Thuner-, Brienzer- und Vierwaldstättersee. Interner Bericht zuhanden des VBS. Switzerland: Eawag.
Isomer-specific degradation and endocrine disrupting activity of nonylphenols
Gabriel, F. L. P., Routledge, E. J., Heidlberger, A., Rentsch, D., Guenther, K., Giger, W., … Kohler, H. P. E. (2008). Isomer-specific degradation and endocrine disrupting activity of nonylphenols. Environmental Science and Technology, 42(17), 6399-6408. https://doi.org/10.1021/es800577a
Occurrence and mass flows of fluorochemicals in the Glatt Valley watershed, Switzerland
Huset, C. A., Chiaia, A. C., Barofsky, D. F., Jonkers, N., Kohler, H. P. E., Ort, C., … Field, J. A. (2008). Occurrence and mass flows of fluorochemicals in the Glatt Valley watershed, Switzerland. Environmental Science and Technology, 42(17), 6369-6377. https://doi.org/10.1021/es703062f
Induction of the <I>yjbEFGH</I> operon is regulated by growth rate and oxygen concentration
Ionescu, M., Franchini, A., Egli, T., & Belkin, S. (2008). Induction of the yjbEFGH operon is regulated by growth rate and oxygen concentration. Archives of Microbiology, 189(3), 219-226. https://doi.org/10.1007/s00203-007-0311-0
<I>ipso</I>-substitution - a novel pathway for microbial metabolism of endocrine-disrupting 4-nonylphenols, 4-alkoxyphenols, and bisphenol A
Kohler, H. P. E., Gabriel, F. L. P., & Giger, W. (2008). ipso-substitution - a novel pathway for microbial metabolism of endocrine-disrupting 4-nonylphenols, 4-alkoxyphenols, and bisphenol A. Chimia, 62(5), 358-363. https://doi.org/10.2533/chimia.2008.358
Temporal trends, congener patterns, and sources of octa-, nona-, and decabromodiphenyl ethers (PBDE) and hexabromocyclododecanes (HBCD) in Swiss lake sediments
Kohler, M., Zennegg, M., Bogdal, C., Gerecke, A. C., Schmid, P., Heeb, N. V., … Giger, W. (2008). Temporal trends, congener patterns, and sources of octa-, nona-, and decabromodiphenyl ethers (PBDE) and hexabromocyclododecanes (HBCD) in Swiss lake sediments. Environmental Science and Technology, 42(17), 6378-6384. https://doi.org/10.1021/es702586r
<I>ipso</I>-substitution: a general biochemical and biodegradation mechanism to cleave <I>α</I>-quaternary alkylphenols and bisphenol A
Gabriel, F. L. P., Cyris, M., Giger, W., & Kohler, H. P. E. (2007). ipso-substitution: a general biochemical and biodegradation mechanism to cleave α-quaternary alkylphenols and bisphenol A. Chemistry and Biodiversity, 4(9), 2123-2137. https://doi.org/10.1002/cbdv.200790170
Elucidation of the <I>ipso</I>-substitution mechanism for side-chain cleavage of α-quaternary 4-nonylphenols and 4-<I>t</I>-butoxyphenol in <I>sphingobium xenophagum</I> bayram
Gabriel, F. L. P., Cyris, M., Jonkers, N., Giger, W., Guenther, K., & Kohler, H. P. E. (2007). Elucidation of the ipso-substitution mechanism for side-chain cleavage of α-quaternary 4-nonylphenols and 4-t-butoxyphenol in sphingobium xenophagum bayram. Applied and Environmental Microbiology, 73(10), 3320-3326. https://doi.org/10.1128/AEM.02994-06
Comparative genomic hybridization and physiological characterization of environmental isolates indicate that significant (eco-)physiological properties are highly conserved in the species <I>Escherichia coli</I>
Ihssen, J., Grasselli, E., Bassin, C., François, P., Piffaretti, J. C., Köster, W., … Egli, T. (2007). Comparative genomic hybridization and physiological characterization of environmental isolates indicate that significant (eco-)physiological properties are highly conserved in the species Escherichia coli. Microbiology, 153(7), 2052-2066. https://doi.org/10.1099/mic.0.2006/002006-0
Global gene expression in <I>Escherichia coli</I> K-12 during short-term and long-term adaptation to glucose-limited continuous culture conditions
Franchini, A. G., & Egli, T. (2006). Global gene expression in Escherichia coli K-12 during short-term and long-term adaptation to glucose-limited continuous culture conditions. Microbiology, 152(7), 2111-2127. https://doi.org/10.1099/mic.0.28939-0
Physiology and fitness of Escherichia coli during growth in carbon-excess and carbon-limited environments
Franchini, A. G. (2006). Physiology and fitness of Escherichia coli during growth in carbon-excess and carbon-limited environments (Doctoral dissertation). https://doi.org/10.3929/ethz-a-005207486
Anaerobic degradation of brominated flame retardants in sewage sludge
Gerecke, A. C., Giger, W., Hartmann, P. C., Heeb, N. V., Kohler, H. P. E., Schmid, P., … Kohler, M. (2006). Anaerobic degradation of brominated flame retardants in sewage sludge. Chemosphere, 64(2), 311-317. https://doi.org/10.1016/j.chemosphere.2005.12.016
Benzotriazole and tolyltriazole as aquatic contaminants. 1. input and occurrence in rivers and lakes
Giger, W., Schaffner, C., & Kohler, H. P. E. (2006). Benzotriazole and tolyltriazole as aquatic contaminants. 1. input and occurrence in rivers and lakes. Environmental Science and Technology, 40(23), 7186-7192. https://doi.org/10.1021/es061565j
Emergence of biofilm-forming subpopulations upon exposure of <I>Escherichia coli</I> to environmental bactriophages
Lacqua, A., Wanner, O., Colangelo, T., Martinotti, M. G., & Landini, P. (2006). Emergence of biofilm-forming subpopulations upon exposure of Escherichia coli to environmental bactriophages. Applied and Environmental Microbiology, 72(1), 956-959. https://doi.org/10.1128/AEM.72.1.956-959.2006