Biotransformation of trichloroethene by pure bacterial cultures

被引:0
作者
J. Růžička
J. Müller
D. Vít
V. Hutěčka
J. Hoffmann
H. Daťková
M. Němec
机构
[1] Tomáš Bat′a University,Department of Enviromental Technology and Chemistry
[2] Institute for Testing and Certification,Department of Microbiology
[3] Masaryk University,undefined
来源
Folia Microbiologica | 2002年 / 47卷
关键词
Me2S2; Phenol Degradation; HONO; Dimethyl Disulfide; Degradation Ability;
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摘要
From natural samples 11 isolates able to remove trichloroethene (CCl2CHl) from an aqueousenvironment were obtained which were capable of cometabolic degradation of CCl2CHCl by an enzyme system for phenol degradation. At an initial CCl2CHCl concentration of 1 mg/L, the resting cells of particular cultures degraded 33–94% CCl2CHCl during 1 d and their transformation capacity ranged from 0.3 to 3.1 mg CCl2CHCl per g organic fraction. An analysis of a mixed phenol-fed culture with an excellent trichloroethene-degrading ability found a markedly minority isolate represented in the consortium to be responsible for this property. This culture degraded CCl2CHCl even at a low inoculum concentration and attained a transformation capacity of 14.7 mg CCl2CHCl per g. The increase in chloride concentration after degradation was quantitative when compared with the decrease in organically bound chlorine. The degree of CCl2CHCl degradation was affected by Me2S2; this substance can significantly reduce the degrading ability of some tested cultures (>60%); however, it does not cause this inhibition with others.
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页码:467 / 472
页数:5
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  • [1] Arciero D.(1989)Degradation of trichloroethylene by the ammonia-oxidizing bacterium Biochem. Biophys. Res. Commun. 159 640-643
  • [2] Vannelli T.(1995)Transformation capacities of chlorinated organics by mixed cultures enriched on methane, progane, toluene or phenol Biotechnol. Bioeng. 45 440-449
  • [3] Logan M.(1992)Isopropylbenzene (cumene)—a new substrate for the isolation of trichloroethene-degrading bacteria Arch. Microbiol. 158 9-13
  • [4] Hooper A.B.(1992)Cometabolic degradation of chlorinated alkenes by alkene monooxygenase in a propylene-grown Appl. Environ. Microbiol. 58 3038-3046
  • [5] Chang H.L.(1990) strain Appl. Environ. Microbiol. 56 1279-1285
  • [6] Alvarez-Cohen L.(1997)Phenol and trichloroethylene degradation by Appl. Environ. Microbiol. 63 1523-1530
  • [7] Dabrock B.(1999) G4: kinetics and interaction between substrates Water Sci. Technol. 40 73-78
  • [8] Riedel J.(1998)Phenol- and toluene-degrading microbial populations from an aquifer in which successful trichloroethene cometabolism occurred Water Res. 32 1789-1800
  • [9] Bertram J.(1993)Formation of dimethyloligosulfides in lake Kinneret Environ. Sci. Technol. 27 2542-2547
  • [10] Gottschalk G.(1995)Identification of oligosulfide odorous compounds and their source in the sea of Galilee Environ. Sci. Technol. 29 1628-1637