화학공학소재연구정보센터
Biotechnology and Bioengineering, Vol.70, No.4, 428-435, 2000
Modeling substrate interactions during the biodegradation of mixtures of toluene and phenol by Burkholderia species JS150
The biodegradation kinetics of toluene, phenol, and a mixture of toluene and phenol by Burkholderia species JS150 was measured and modeled. Both of these compounds can serve as the sole source of carbon and energy for this microorganism. The single-substrate biodegradation kinetics was described well using the Monod model, with model constants of mu (max,T) = 0.39 h(-1) and K-S,K-T = 0.011 mM for growth on toluene and mu (max,P) = 0.309 h(-1) and K-S,K-P = 0.0054 mM for growth on phenol. Degradation of the mixture of toluene and phenol followed simultaneous utilization kinetics with toluene being the preferred substrate. Toluene was found to inhibit the Fate of utilization of phenol while the presence of phenol had little effect on the rate of degradation of toluene. Of the kinetic models that were tested, one developed for microbial degradation of multiple substrates was able to describe substrate interactions and to model the mixture utilization by strain JS150. Simple competitive, noncompetitive, or uncompetitive substrate kinetics were not sufficient to describe the observed inhibitory interactions.