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Death and lysis during aerobic thermophilic sludge treatment: characterization of recalcitrant products
Häner, A., Mason, C. A., & Hamer, G. (1994). Death and lysis during aerobic thermophilic sludge treatment: characterization of recalcitrant products. Water Research, 28(4), 863-869. https://doi.org/10.1016/0043-1354(94)90092-2
The growth of <I>Escherichia coli</I> in glucose-limited chemostat cultures: a reexamination of the kinetics
Senn, H., Lendenmann, U., Snozzi, M., Hamer, G., & Egli, T. (1994). The growth of Escherichia coli in glucose-limited chemostat cultures: a reexamination of the kinetics. Biochimica et Biophysica Acta: General Subjects, 1201(3), 424-436. https://doi.org/10.1016/0304-4165(94)90072-8
Methyl isobutyl and methyl ethyl ketone biodegradation in biofilters
Deshusses, M. A., & Hamer, G. (1992). Methyl isobutyl and methyl ethyl ketone biodegradation in biofilters. In Jet al Tramper (Ed.), Biocatalysis in Non-Conventional Media (pp. 393-399). Elsevier.
Heat shock gene expression in continuous cultures of <I>Escherichia coli</I>
Heitzer, A., Mason, C. A., & Hamer, G. (1992). Heat shock gene expression in continuous cultures of Escherichia coli. Journal of Biotechnology, 22(1-2), 153-169. https://doi.org/10.1016/0168-1656(92)90139-Z
Aerobic thermophilic biodegradation of bacterial cells physiological aspects
Häner, A. (1992). Aerobic thermophilic biodegradation of bacterial cells physiological aspects [Doctoral dissertation]. ETH Zürich.
Biochemistry of nitrilotriacetate degradation in the facultatively denitrifying bacterium TE11
Kemmler, J. (1992). Biochemistry of nitrilotriacetate degradation in the facultatively denitrifying bacterium TE11 [Doctoral dissertation]. ETH Zürich.
Aerobic thermophilic waste sludge treatment
Mason, C. A., Häner, A., & Hamer, G. (1992). Aerobic thermophilic waste sludge treatment. Water Science and Technology, 25(1), 113-118. https://doi.org/10.2166/wst.1992.0017
The behaviour of the various cytochromes of Paracoccus denitrificans during transitions between oxic and anoxic growth conditions
Rutishauser Frei, R. S. (1992). The behaviour of the various cytochromes of Paracoccus denitrificans during transitions between oxic and anoxic growth conditions [Doctoral dissertation]. ETH Zürich.
Biochemistry of nitrilotriacetate degradation in obligately aerobic, Gram-negative Bacteria
Uetz, T. A. (1992). Biochemistry of nitrilotriacetate degradation in obligately aerobic, Gram-negative Bacteria [Doctoral dissertation]. ETH Zürich.
The biodegradation of mixtures of organic solvents by mixed and monocultures of bacteria
Bitzi, U., Egli, T., & Hamer, G. (1991). The biodegradation of mixtures of organic solvents by mixed and monocultures of bacteria. Biotechnology and Bioengineering, 37(11), 1037-1042. https://doi.org/10.1002/bit.260371108
Feedstocks
Hamer, G., & Egli, T. (1991). Feedstocks. In V. Moses & R. E. Cape (Eds.), Biotechnology: The Science and the Business (pp. 211-224). Harwood Academic Publ.
Polluted heterogeneous environments: macro-scale fluxes, micro-scale mechanisms, and molecular scale control
Hamer, G., & Heitzer, A. (1991). Polluted heterogeneous environments: macro-scale fluxes, micro-scale mechanisms, and molecular scale control. In G. Set al Sayler (Ed.), Environmental Biotechnology for Waste Treatment (pp. 233-248). Plenum Press.
Utility of phenomenological models for describing temperature dependence of bacterial growth
Heitzer, A., Kohler, H. P. E., Reichert, P., & Hamer, G. (1991). Utility of phenomenological models for describing temperature dependence of bacterial growth. Applied and Environmental Microbiology, 57(9), 2656-2665. https://doi.org/10.1128/aem.57.9.2656-2665.1991
The influence of low molecular weight carboxylic acids on biomass yield minimization during aerobic thermophilic sludge biotreatment
Häner, A., Mason, C. A., & Hamer, G. (1991). The influence of low molecular weight carboxylic acids on biomass yield minimization during aerobic thermophilic sludge biotreatment. H. Verachtert & W. Verstraete (Eds.) (pp. 239-241). Presented at the International Symposium of Environmental Biotechnology. Royal Flemish Society of Engineers.
Anaerobic degradation of nitrilotriacetate in a denitrifying bacterium purification and characterization of the nitrilotriacetate dehydrogenase/nitrate reductase enzyme complex
Jenal-Wanner, U. (1991). Anaerobic degradation of nitrilotriacetate in a denitrifying bacterium purification and characterization of the nitrilotriacetate dehydrogenase/nitrate reductase enzyme complex [Doctoral dissertation]. ETH Zürich.
Abbau von Nitrilotriacetat durch zwei verschiedene Enzyme in einem denitrifizierenden Bakterium
Kemmler, J., Wanner, U., Egli, T., Snozzi, M., & Hamer, G. (1991). Abbau von Nitrilotriacetat durch zwei verschiedene Enzyme in einem denitrifizierenden Bakterium. Gas- und Wasserfach: Wasser, Abwasser, 132(6), 345-346.
Improved unstructured model describing temperature dependence of bacterial maximum specific growth rates
Kohler, H. P., Heitzer, A., & Hamer, G. (1991). Improved unstructured model describing temperature dependence of bacterial maximum specific growth rates. H. Verachtert & W. Verstraete (Eds.) (pp. 511-514). Presented at the International Symposium of Environmental Biotechnology. Royal Flemish Society of Engineers.
UV disinfection: short term inactivation and revival
Mechsner, K., Fleischmann, T., Mason, C. A., & Hamer, G. (1991). UV disinfection: short term inactivation and revival. Water Science and Technology, 24(2), 339-342. https://doi.org/10.2166/wst.1991.0086
Effects of temperature on the growth of the thermotolerant methylotrophic bacillus sp. NCB 12522 in chemostat culture
Al-Awadhi, N., Hamer, G., & Egli, T. (1990). Effects of temperature on the growth of the thermotolerant methylotrophic bacillus sp. NCB 12522 in chemostat culture. Acta Biotechnologica, 10(1), 73-78. https://doi.org/10.1002/abio.370100120
The biooxidation of methanol, ethanol and isopropanol by a defined co-culture at elevated temperatures
Al-Awadhi, N., Hamer, G., & Egli, T. (1990). The biooxidation of methanol, ethanol and isopropanol by a defined co-culture at elevated temperatures. Bioprocess Engineering, 5(1), 39-45. https://doi.org/10.1007/BF00369645
 

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