TECHNICAL PAPERS
Oct 1, 1998

Determining Anaerobic BTEX Decay Rates in a Contaminated Aquifer

Publication: Journal of Hydrologic Engineering
Volume 3, Issue 4

Abstract

Intrinsic biodegradation of petroleum hydrocarbons in the subsurface has gained increased acceptance as a remedial alternative where the risk of exposure is within acceptable standards. However, methods to predict reliably the rate and extent of biodegradation at contaminated sites have not been established. Laboratory microcosm and in situ column experiments were conducted in a petroleum-contaminated aquifer undergoing intrinsic biodegradation to (1) document that anaerobic biodegradation of benzene, toluene, ethylbenzene, and xylene (BTEX) isomers occurred, (2) determine the rate and pattern of BTEX biodegradation, and (3) compare measured decay rates in laboratory and in situ microcosm results with contaminant concentrations along the length of the plume. Both methods verified that indigenous microorganisms have the capability to biodegrade anaerobically BTX under ambient conditions. However, microcosms constructed with aquifer material from different areas of the plume showed significant variability in rate and extent of contaminant biodegradation. In experiments conducted in the same area of the plume, the biodegradation rate for the individual compounds measured in both in situ columns and microcosms was over 10 times higher than the rate calculated from field monitoring. Thus, these methods should not be used to infer field-scale decay rates.

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References

1.
Acton, D. W., and Barker, J. F.(1992). “In situ biodegradation potential of aromatic hydrocarbons in anaerobic groundwaters.”J. Contaminant Hydro., 9, 325–352.
2.
Aelion, C. M.(1996). “Impact of aquifer sediment grain size on petroleum hydrocarbon distribution and biodegradation.”J. Contaminant Hydrol., 22, 109–121.
3.
Agertved, J., Rugge, K., and Barker, J. F.(1992). “Transformation of herbicides MCPP and atrazzine under natural aquifer conditions.”Ground Water, 30, 500–506.
4.
Ball, H. A., and Reinhard, M.(1996). “Monoaromatic hydrocarbon transformation under anaerobic conditions at Seal Beach, California: Laboratory studies.”Envir. Toxicol. and Chem., 15(3), 114–122.
5.
Barbaro, J. R., Barker, J. F., Lemon, L. A., and Mayfield, C. I.(1992). “Biotransformation of BTEX under anaerobic, denitrifying conditions: Field and laboratory observations.”J. Contaminant Hydro., 11, 245–272.
6.
Bear, J. (1979). Hydraulics of groundwater. McGraw-Hill, Inc., New York.
7.
Beller, H. R., Edwards, E. A., Grbic-Galic, D., Hutchins, H. R., and Reinhard, M. (1991). “Microbial degradation of alkylbenzenes under sulfate-reducing and methanogenic conditions.”Rep. No. EPA/600/S2-91/1027, U.S. Environmental Protection Agency, Washington, D.C.
8.
Beller, H. R., Grbic-Galic, D., and Reinhard, M.(1992). “Microbial degradation of toluene under sulfate-reducing conditions and the influence of iron on the process.”Appl. Envir. Microbiol., 58, 786–793.
9.
Borden, R. C., Gomez, C. A., and Becker, M. T. (1993). “Natural bioremediation of a gasoline spill.”Hydrocarbon bioremediation, R. E. Hinchee, B. C. Alleman, R. E. Hoeppel, and R. N. Millers, eds., Lewis Publishers, Boca Raton, Fla., 290–295.
10.
Borden, R. C., Gomez, C. A., and Becker, M. T.(1995). “Geochemical indicators of natural bioremediation.”Ground Water, 33, 180–189.
11.
Borden, R. C., Hunt, M. J., Shafer, M. B., and Barlaz, M. A. (1997). “Project summary: Anaerobic biodegradation of BTEX in aquifer material.”Proj. No. CR819630-01-0, U.S. Environmental Protection Agency, Washington, D.C.
12.
Bowlen, G. F., and Kosson, D. S. (1995). “In situ processes for bioremediation of BTEX and petroleum fuel products.”Microbial transformation and degradation of toxic organic chemicals, L. Y. Young and C. E. Cerniglia, eds., Wiley-Liss, Inc., New York, 515–542.
13.
Bradley, P. M., Aelion, C. M., and Vroblesky, D. A.(1992). “Influence of environmental factors on denitrification in sediment containing JP-4 jet fuel.”Ground Water, 30, 843–848.
14.
Bradley, P. M., and Chapelle, F. H.(1995). “Rapid toluene mineralization by aquifer microorganisms at Adak Alaska: Implications for intrinsic bioremediation in cold environments.”Envir. Sci. and Technol., 29, 2778–2781.
15.
Brock, T. D., and Madigan, M. T. (1991). Biology of microorganisms. 6th Ed., Prentice-Hall, Inc., Englewoods Cliffs, N.J.
16.
Chapelle, F. H., and Lovley, D. R.(1990). “Rates of bacterial metabolism in deep coastal plain aquifers.”Appl. Envir. Microbiol., 56, 1865–1874.
17.
Corseuil, H. X., and Weber Jr., W. J.(1994). “Potential biomass limitations on rates of degradation of monoaromatic hydrocarbons by indigenous microbes in subsurface soils.”Water Res., 28(6), 1415–1423.
18.
Cripps, R. E., and Watkinson, R. J. (1978). “Polycyclic aromatic hydrocarbons: Metabolism and environmental aspects.”Developments in the biodegradation of hydrocarbons, R. J. Watkinson, ed., Applied Science Publishers, London, U.K., 113–134.
19.
Dagely, S. (1986). “Biochemistry of aromatic hydrocarbons degradation in Pseudomonads.”The bacteria, Vol. 10, J. R. Sokatch, ed., Academic Press, New York, 527–555.
20.
Dunlap, W. J., McNabb, J. F., Scalf, M. R., and Cosby, R. L. (1984). “Sampling for organic chemicals and microorganisms in the subsurface.”Rep. No. EPA-600/2-77-176, U.S. Environmental Protection Agency, Ada, Okla.
21.
Edwards, E. A., and Grbic-Galic, D.(1994). “Anaerobic degradation of toluene and o-xylene by a methanogenic consortium.”Appl. Envir. Microbiol., 60, 313–322.
22.
Essaid, H. I., Bekins, B. A., Godsy, E. M., Warren, E., Baedecker, M. J., and Cozzarelli, I. M.(1995). “Simulation of aerobic and anaerobic biodegradation processes at a crude oil spill site.”Water Resour. Res., 31, 3309–3328.
23.
Federal Register. (1984). 49(No. 114, Tues., June 12), 24334.
24.
Federal Register. (1988). 53(No. 115, Wed., June 15), 22320.
25.
Gibson, D. T.(1971). “The microbial oxidation of aromatic compounds.”Critical Rev. in Microbiol., 1, 199–223.
26.
Gibson, D. T., and Subramanian, V. (1984). “Microbial degradation of aromatic hydrocarbons.”Microbial degradation of organic compounds, D. T. Gibson, ed., Marcel Dekker, New York, 361–369.
27.
Gillham, R. W., Starr, R. C., and Miller, D. J. (1990). “A device for in-situ determination of geochemical transport parameters; 2 biochemical reactions. Ground Water, 28, 858–862.
28.
Grbic'-Galic', D., and Vogel, T. M.(1987). “Transformation of toluene and benzene by mixed methanogenic cultures.”Appl. Envir. Microbiol., 50, 292–297.
29.
Haag, F. M., Reinhard, M., and McCarty, P. L.(1991). “Degradation of toluene and p-xylene in anaerobic microcosms: Evidence for sulfate as a terminal electron acceptor.”Envir. Toxicol. and Chem., 10, 1379–1389.
30.
Hunt, M. J. (1997). “Assessing intrinsic hydrocarbon bioremediation in anaerobic coastal plain aquifers,” PhD thesis, North Carolina State University, Raleigh, N.C.
31.
Hunt, M. J., Barlaz, M. A., and Borden, R. C.(1997). “Anaerobic biodegradation of alkylbenzenes in laboratory microcosms representing ambient conditions.”J. Bioremediation, 1(1), 53–64.
32.
Hutchins, S. R.(1991). “Biodegradation of monoaromatic hydrocarbons by aquifer microorganisms using oxygen, nitrate, or nitrous oxide as the terminal electron acceptor.”Appl. Envir. Microbiol., 57, 2403–2407.
33.
Hutchins, S. R., Sewell, D. A., Kovacs, D. A., and Smith, G. A.(1991). “Biodegradation of aromatic hydrocarbons by aquifer microorganisms under denitrifying conditions.”Envir. Sci. and Technol., 25, 68–76.
34.
Johnston, J. J., Borden, R. C., and Barlaz, M. A.(1996). “Anaerobic biodegradation of alkylbenzenes and trichloroethylene in aquifer sediment and groundwater down gradient of a sanitary landfill.”J. Contaminant Hydro., 23, 263–283.
35.
Lovley, D. R., and Lonergan, D. J.(1990). “Anaerobic oxidation of toluene, phenol, and p-cresol by the dissimilatory iron-reducing microorganism, GS-15.”Appl. Envir. Microbiol., 56, 1858–1864.
36.
Lovley, D. R., Woodward, J. C., and Chapelle, F. H.(1994). “Stimulated anoxic biodegradation of aromatic hydrocarbons using Fe (III) ligands.”Nature, 370, 128–131.
37.
Ogata, A., and Banks, R. B. (1961). “A solution of the differential equation of longitudinal dispersion in porous media.”U.S. Geological Survey Prof. Paper. No. 411-A, U.S. Geological Survey.
38.
Pritchard, P. H., and Bourquin, A. W. (1984). “The use of microcosms for evaluation of interactions between pollutants and microorganisms.”Adv. in microbial ecol., K. C. Marshall, ed., Plenum, New York, 133–215.
39.
Pucci Jr., A. A., and Owens, J. P.(1989). “Geochemical variations in a core of hydrogeologic units near Freehold, New Jersey.”Ground Water, 27, 802–812.
40.
von Gunten, U., and Zobrist, J.(1993). “Biogeochemical changes in groundwater-infiltration systems; Column studies.”Geochem. Cosmochim. Acta, 57, 3895–3906.
41.
Vroblesky, D. A., and Chapelle, F. H.(1994). “Temporal and spatial changes of terminal electron accepting processes in a petroleum hydrocarbon-contaminated aquifer and the significance for contaminant biodegradation.”Water Resour. Res., 30, 1561–1570.
42.
Wilson, B. H., Smith, G. B., and Rees, J. F.(1986). “Biotransformations of selected alkylbenzenes and halogenated aliphatic hydrocarbons in methanogenic aquifer material: A microcosm study.”Envir. Sci. and Technol., 20, 997–1002.
43.
Wilson, J. T., Smith, G. B., Cochran, J. W., Barker, J. F., and Roberts, P. V.(1987). “Field evaluation of a simple microcosm simulating the behavior of volatile organic compounds in subsurface materials.”Water Resour. Res., 23, 1547–1553.

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Published In

Go to Journal of Hydrologic Engineering
Journal of Hydrologic Engineering
Volume 3Issue 4October 1998
Pages: 285 - 293

History

Published online: Oct 1, 1998
Published in print: Oct 1998

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Authors

Affiliations

Melody J. Hunt, Student Member, ASCE
Asst. Prof., Dept. of Civ. and Envir. Engrg., Coll. of Engrg., San Diego State Univ., 5500 Campanile Dr., San Diego, CA 92182-1324.
Robert C. Borden
Assoc. Prof., Dept. of Civ. Engrg., North Carolina State Univ., Box 7908, Raleigh, NC 27695-7908.
Morton A. Barlaz, Members, ASCE
Assoc. Prof., Dept. of Civ. Engrg., North Carolina State Univ., Box 7908, Raleigh, NC.

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