Growth and regulation of enzyme synthesis in the nitrilotriacetic acid (NTA)-degrading bacterium Chelatobacter heintzii ATCC 29600
Bally M, Wilberg E, Kühni M & Egli T (1994) Growth and regulation of enzyme synthesis in the nitrilotriacetic acid (NTA)-degrading bacterium Chelatobacter heintzii ATCC 29600. Microbiology 140: 1927-1936
Analysis of oxygenation reactions in a multi-substrate system - A new approach for estimating substrate-specific true yields
Dahlen EP & Rittmann BE (2000) Analysis of oxygenation reactions in a multi-substrate system - A new approach for estimating substrate-specific true yields. Biotechnol. Bioengr. 70: 685-692
Quantitative relationship between napthalene catabolic gene frequency and expression in predicting PAH degradation in soils at town gas manufacturing sites
Fleming JT, Sanseverino S & Sayler GS (1993) Quantitative relationship between napthalene catabolic gene frequency and expression in predicting PAH degradation in soils at town gas manufacturing sites. Environ. Sci. Technol. 27: 1068-1074
Modeling biofilm biodegradation requiring cosubstrates: The quinoline example
Malmstead MJ, Brockman FJ, Valocchi AJ & Rittmann BE (1995) Modeling biofilm biodegradation requiring cosubstrates: The quinoline example. Water Sci. and Technol. 3191: 71-84
Rittmann BE & Dahlen EP. Companion Paper. Two-tank Suspended Growth Process for Accelerating the Detoxification Kinetics of Hydrocarbons Requiring Initial Monooxygenation Reactions, submitted
Biodegradation kinetics of a mixture containing a primary substrate (phenol) and an inhibitory co-metabolite (4-chlorophenol)
Sáez PB & Rittmann BE (1993) Biodegradation kinetics of a mixture containing a primary substrate (phenol) and an inhibitory co-metabolite (4-chlorophenol). Biodegradation 4: 3-21
Random mutagenesis of glutamine synthetase from Eschericia coli: Correlation between structure, activity, and fitness
Xu W-Z, Fukuhara J, Yamamoto K, Yomo T & Urabe I (1994) Random mutagenesis of glutamine synthetase from Eschericia coli: Correlation between structure, activity, and fitness. J. of Fermentation and Bioengineering 77(3), 252-258