Biofilm population dynamics in a trickle-bed bioreactor used for the biodegradation of aromatic hydrocarbons from waste gas under transient conditions

被引:0
作者
D. Hekmat
A. Feuchtinger
M. Stephan
D. Vortmeyer
机构
[1] Technische Universität München,Institute of Chemical Engineering
[2] Technische Universität München,Institute of Chemical Engineering
来源
Biodegradation | 2004年 / 15卷
关键词
aromatic hydrocarbons; biodegradation; multispecies biofilm; population dynamics; trickle-bed bioreactor; waste gas;
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摘要
The dynamics of a multispecies biofilm population in alaboratory-scale trickle-bed bioreactor for the treatmentof waste gas was examined. The model pollutant was a VOC-mixture of polyalkylated benzenes called Solvesso100®. Fluorescence in-situ hybridization (FISH) was applied in order to characterise the population composition. The bioreactor was operated under transient conditions by applying pollutant concentration shifts and a starvation phase. Only about 10% of the biofilm mass were cells, the rest consisted of extracellular polymeric substances (EPS). The average fraction of Solvesso 100®-degrading cells during pollutant supply periods was less than 10%. About 60% of the cells were saprophytes and about 30% were inactive cells. During pollutant concentration shift experiments, the bioreactor performance adapted within a few hours. The biofilm population exhibited a dependency upon the direction of the shifts. The population reacted within days after a shift-down and within weeks after a shift-up. The pollutant-degraders reacted significantly faster compared to the other cells. During the long-term starvation phase, a shift of the population composition took place. However,this change of composition as well as the degree of metabolic activity was completely reversible. A direct correlation between the biodegradation rate of the bioreactor and the number of pollutant-degrading cells present in thebiofilm could not be obtained due to insufficient experimental evidence.
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页码:133 / 144
页数:11
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