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Fate of Chlorinated Benzenes in Laboratory Peat and Pozzolana Filters

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Abstract

The removal of chlorinated benzenes (CBs) from the compartments and from polluted industrial sites is of great public interest for the decontamination of polluted water and for the protection of the environment. Biological degradation could be considered as a feasible process to eliminate these compounds from the environment as soil or groundwater. A research program in progress since the year 2007 was initiated to investigate the capacity of eco-remediation of CB-contaminated groundwater using a pilot-scale subsurface flow constructed wetland. In order to assess the removal efficiency of these compounds and to evaluate the biological activities, column experiments were performed. The fate of three CBs was investigated by feeding spiked tap water through laboratory columns filled with two different solid-state materials: peat and pozzolana. In order to stimulate biological activity, organic matter coming from aged vertical flow constructed wetland was added to the media. Concentrations of CBs in water effluent and in air and biological activities were monitored during 4 months. At the end of the experimental period, CB concentrations in the depth of columns were determined and a mass balance was calculated for the CBs. Removal efficiencies of the laboratory columns were >98% in the peat columns and situated around 87% to 95% in the pozzolana columns, indicating the suitability of the experimental systems for the removal of CBs. Higher effluent CB concentrations from the pozzolana columns were detected. Concentration of CBs in ambient air indicates that volatilization was low. ATP monitoring, reduction of tetrazolium violet, and exopolysaccharide determination indicated considerable biological activity with variations according to column depth and carrier material.

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References

  • Braeckevelt, M., Rokadia, H., Imfeld, G., Stelzer, N., Paschke, H., Kuschk, P., et al. (2007). Assessment of in situ biodegradation of monochlorobenzene in contaminated groundwater treated in a constructed wetland. Environmental Pollution, 148, 428–437.

    Article  CAS  Google Scholar 

  • Braeckevelt, M., Mirschel, G., Wiessner, A., Rueckert, M., Reiche, N., Vogt, C., et al. (2008). Treatment of chlorobenzene-contaminated groundwater in a pilot-scale constructed wetland. Ecological Engineering, 33, 45–53.

    Article  Google Scholar 

  • Chazarenc, F., & Merlin, G. (2005). Influence of surface layer on hydrology and biology of gravel bed vertical flow constructed wetlands. Water Science and Technology, 51(9), 91–97.

    CAS  Google Scholar 

  • Gilbert, E. S., & Crowley, D. E. (1997). Plants compounds that induce polychlorinated biphenyl biodegradation by Arthrobacter sp. strain B1B. Applied Environmental Microbiology, 63, 1933–1938.

    CAS  Google Scholar 

  • Guerin, T. F. (2008). Ex-situ bioremediation of chlorobenzenes in soil. Journal of Hazardous Materials, 154, 9–20.

    Article  CAS  Google Scholar 

  • Imfeld, G., Braeckevelt, M., Kuschk, P., & Richnow, H. H. (2009). Monitoring and assessing processes of organic chemicals removal in constructed wetlands. Chemosphere, 74, 349–362.

    Article  CAS  Google Scholar 

  • Langergraber, G., Haberl, R., Laber, J., & Pressi, A. (2002). Evaluation of substrate clogging processes in VFCW. International Conference on Wetland Systems for Water Pollution Control. Arusha, Tanzania, 16–19th September.

  • Legret, M., Odie, L., Demare, D., & Jullien, A. (2005). Leaching of heavy metals and polycyclic aromatic hydrocarbons from reclaimed asphalt pavement. Water Research, 39, 3675–3685.

    Article  CAS  Google Scholar 

  • Machate, T., Noll, H., & Kettrup, A. (1997). Degradation of phenanthrene and hydraulic characteristics in a constructed wetland. Water Research, 31, 554–560.

    Article  CAS  Google Scholar 

  • Merlin, G., Lissolo, T., Morel, V., Rossel, D., & Tarradellas, J. (1995). Towards of validation of INT reductase activity for measuring biological activities in soil and sediments, precautions for routine use. Environmental Toxicology and Water Quality, 10(3), 185–192.

    Article  CAS  Google Scholar 

  • Molle, P., Lienard, A., Boutin, C., Merlin, G., & Ywema, A. (2005). How to treat raw sewage with constructed wetlands: An overview of the French systems. Water Science and Technology, 51(9), 11–21.

    CAS  Google Scholar 

  • Ragusa, S. R., McNevin, D., Qasem, S., & Mitchell, C. (2004). Indicators of biofilm development and activity in constructed wetlands microcosms. Water Research, 38, 2865–2873.

    Article  CAS  Google Scholar 

  • Reddy, K. R., & Adams, J. A. (1998). System effects of benzene removal from saturated soils and ground water using air sparging. Journal of Environment Engineering, 124, 288–299.

    Article  CAS  Google Scholar 

  • Rimington, C. (1931). The carbohydrate complex of serum protein. II: Improved method for isolation and determination of structure. Isolation of glucosaminodimannose from protein of blood. Biochemical Journal, 25, 1062–1071.

    CAS  Google Scholar 

  • Roger, O. (2002). Etude d’oligosaccharides bioactifs issus d’exopolyssacharides bactériens: Obtention, caractérisation et relation structure/fonction. PhD thesis, 29 Novembre 2002, Paris XIII, 195 pp.

  • Schollhorn, A., Savary, C., Stucki, G., & Hanselmann, D. W. (1997). Comparison of different substrates for the fast reductive dechlorination of trichlorethene under groundwater conditions. Water Research, 31, 1275–1282.

    Article  CAS  Google Scholar 

  • Tang, X., Eke, P. E., Scholz, M., & Huang, S. (2009). Processes impacting of benzene removal in vertical-flow constructed wetlands. Bioresource Technology, 100, 227–234.

    Article  CAS  Google Scholar 

  • Wang, Y., & Lee, H. K. (1998). Determination of chlorobenzenes in water by solid-phase extraction and gas chromatography–mass spectrometry. Journal of Chromatography A, 803, 219–225.

    Article  CAS  Google Scholar 

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Acknowledgments

The project is supported by the Region Rhône-Alpes.

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Correspondence to Nathalie Cottin.

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Cottin, N., Merlin, G. Fate of Chlorinated Benzenes in Laboratory Peat and Pozzolana Filters. Water Air Soil Pollut 213, 425–435 (2010). https://doi.org/10.1007/s11270-010-0396-y

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  • DOI: https://doi.org/10.1007/s11270-010-0396-y

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