Degradation of toluene and m-xylene and transformation of o-xylene by denitrifying enrichment cultures

Author:

Evans P J1,Mang D T1,Young L Y1

Affiliation:

1. Department of Microbiology, New York University Medical Center, New York 10016.

Abstract

Seven different sources of inocula that included sediments, contaminated soils, groundwater, process effluent, and sludge were used to establish enrichment cultures of denitrifying bacteria on benzene, toluene, and xylenes in the absence of molecular oxygen. All of the enrichment cultures demonstrated complete depletion of toluene and partial depletion of o-xylene within 3 months of incubation. The depletion of o-xylene was correlated to and dependent on the metabolism of toluene. No losses of benzene, p-xylene, or m-xylene were observed in these initial enrichment cultures. However, m-xylene was degraded by a subculture that was incubated on m-xylene alone. Complete carbon, nitrogen, and electron balances were determined for the degradation of toluene and m-xylene. These balances showed that these compounds were mineralized with greater than 50% conversion to CO2 and significant assimilation into biomass. Additionally, the oxidation of these compounds was shown to be dependent on nitrate reduction and denitrification. These microbial degradative capabilities appear to be widespread, since the widely varied inoculum sources all yielded similar results.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference25 articles.

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3. Box G. E. P. W. G. Hunter and J. S. Hunter. 1978. Statistics for experimenters an introduction to design data analysis and model building. John Wiley & Sons Inc. New York.

4. Genetic toxicology of benzene, toluene, xylenes and phenols;Dean B. J.;Mutat. Res.,1978

5. Edwards E. and D. Grbic-Galic. 1990. Abstr. Annu. Meet. Am. Soc. Microbiol. 1990 Q 50 p. 296.

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