Spatial-temporal assessment of hydrocarbon biodegradation mechanisms at a contaminated groundwater site in Serbia
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2022
Authors
Marić, Nenad
Strbacki, Jana
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Polk, Jason
Slavković-Beskoski, Latinka
Avdalović, Jelena
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Ljesević, Marija
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Joksimović, Kristina
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Zeradanin, Aleksandra
Beskoski, Vladimir P.
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Article (Published version)
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The characterization and cleanup of groundwater contamination in hazardous-waste sites are of significant engineering and scientific importance. This study analyzes biodegradation fingerprints in groundwater, 25 years after the accidental leakage of kerosene (jet fuel) at the site in central Serbia. The long-term existence of hydrocarbon contamination and the presence of indigenous microbiological populations capable of biodegradation have been confirmed by the results of GCxGC-MS chromatography and microbiological characterization. Total petroleum hydrocarbons (TPH), geochemical indicators, and other parameters were spatially analyzed to provide insight into biodegradation occurrence. The lowest concentrations of electron acceptors (O-2, NO3-, and SO42-) and the highest concentrations of microbial metabolic products (Mn and Fe) overlap in the piezometers closest to the source of contamination, due to the occurrence of different biodegradation mechanisms. Based on the analysis of redox...-sensitive compounds, the mixed oxic-anoxic processes in groundwater also correspond to the aforementioned zone, as confirmed by the redox potential (Eh) measurements. The results of cross-study analysis reveal further reduction of hydrocarbon contamination, the occurrence of less anoxic redox processes, and the increase of oxic conditions in groundwater. Overall, the results provide clear evidence of the biodegradation effects in groundwater and insight into their evolution under natural attenuation processes.
Keywords:
redox processes / petroleum hydrocarbons / natural attenuation / contamination / aquiferSource:
Chemistry and Ecology, 2022, 38, 2, 95-107Funding / projects:
- Fulbright Visiting Scholar Program [PS00304275]
- Ministry of Science, Technological Development and Innovation of the Republic of Serbia, institutional funding - 200169 (University of Belgrade, Faculty of Forestry) (RS-MESTD-inst-2020-200169)
- Ministry of Science, Technological Development and Innovation of the Republic of Serbia, institutional funding - 200026 (University of Belgrade, Institute of Chemistry, Technology and Metallurgy - IChTM) (RS-MESTD-inst-2020-200026)
- Ministry of Science, Technological Development and Innovation of the Republic of Serbia, institutional funding - 200168 (University of Belgrade, Faculty of Chemistry) (RS-MESTD-inst-2020-200168)
DOI: 10.1080/02757540.2021.2017903
ISSN: 0275-7540
WoS: 000737786600001
Scopus: 2-s2.0-85122249061
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Šumarski fakultetTY - JOUR AU - Marić, Nenad AU - Strbacki, Jana AU - Polk, Jason AU - Slavković-Beskoski, Latinka AU - Avdalović, Jelena AU - Ljesević, Marija AU - Joksimović, Kristina AU - Zeradanin, Aleksandra AU - Beskoski, Vladimir P. PY - 2022 UR - https://omorika.sfb.bg.ac.rs/handle/123456789/1340 AB - The characterization and cleanup of groundwater contamination in hazardous-waste sites are of significant engineering and scientific importance. This study analyzes biodegradation fingerprints in groundwater, 25 years after the accidental leakage of kerosene (jet fuel) at the site in central Serbia. The long-term existence of hydrocarbon contamination and the presence of indigenous microbiological populations capable of biodegradation have been confirmed by the results of GCxGC-MS chromatography and microbiological characterization. Total petroleum hydrocarbons (TPH), geochemical indicators, and other parameters were spatially analyzed to provide insight into biodegradation occurrence. The lowest concentrations of electron acceptors (O-2, NO3-, and SO42-) and the highest concentrations of microbial metabolic products (Mn and Fe) overlap in the piezometers closest to the source of contamination, due to the occurrence of different biodegradation mechanisms. Based on the analysis of redox-sensitive compounds, the mixed oxic-anoxic processes in groundwater also correspond to the aforementioned zone, as confirmed by the redox potential (Eh) measurements. The results of cross-study analysis reveal further reduction of hydrocarbon contamination, the occurrence of less anoxic redox processes, and the increase of oxic conditions in groundwater. Overall, the results provide clear evidence of the biodegradation effects in groundwater and insight into their evolution under natural attenuation processes. T2 - Chemistry and Ecology T1 - Spatial-temporal assessment of hydrocarbon biodegradation mechanisms at a contaminated groundwater site in Serbia EP - 107 IS - 2 SP - 95 VL - 38 DO - 10.1080/02757540.2021.2017903 UR - conv_1606 ER -
@article{ author = "Marić, Nenad and Strbacki, Jana and Polk, Jason and Slavković-Beskoski, Latinka and Avdalović, Jelena and Ljesević, Marija and Joksimović, Kristina and Zeradanin, Aleksandra and Beskoski, Vladimir P.", year = "2022", abstract = "The characterization and cleanup of groundwater contamination in hazardous-waste sites are of significant engineering and scientific importance. This study analyzes biodegradation fingerprints in groundwater, 25 years after the accidental leakage of kerosene (jet fuel) at the site in central Serbia. The long-term existence of hydrocarbon contamination and the presence of indigenous microbiological populations capable of biodegradation have been confirmed by the results of GCxGC-MS chromatography and microbiological characterization. Total petroleum hydrocarbons (TPH), geochemical indicators, and other parameters were spatially analyzed to provide insight into biodegradation occurrence. The lowest concentrations of electron acceptors (O-2, NO3-, and SO42-) and the highest concentrations of microbial metabolic products (Mn and Fe) overlap in the piezometers closest to the source of contamination, due to the occurrence of different biodegradation mechanisms. Based on the analysis of redox-sensitive compounds, the mixed oxic-anoxic processes in groundwater also correspond to the aforementioned zone, as confirmed by the redox potential (Eh) measurements. The results of cross-study analysis reveal further reduction of hydrocarbon contamination, the occurrence of less anoxic redox processes, and the increase of oxic conditions in groundwater. Overall, the results provide clear evidence of the biodegradation effects in groundwater and insight into their evolution under natural attenuation processes.", journal = "Chemistry and Ecology", title = "Spatial-temporal assessment of hydrocarbon biodegradation mechanisms at a contaminated groundwater site in Serbia", pages = "107-95", number = "2", volume = "38", doi = "10.1080/02757540.2021.2017903", url = "conv_1606" }
Marić, N., Strbacki, J., Polk, J., Slavković-Beskoski, L., Avdalović, J., Ljesević, M., Joksimović, K., Zeradanin, A.,& Beskoski, V. P.. (2022). Spatial-temporal assessment of hydrocarbon biodegradation mechanisms at a contaminated groundwater site in Serbia. in Chemistry and Ecology, 38(2), 95-107. https://doi.org/10.1080/02757540.2021.2017903 conv_1606
Marić N, Strbacki J, Polk J, Slavković-Beskoski L, Avdalović J, Ljesević M, Joksimović K, Zeradanin A, Beskoski VP. Spatial-temporal assessment of hydrocarbon biodegradation mechanisms at a contaminated groundwater site in Serbia. in Chemistry and Ecology. 2022;38(2):95-107. doi:10.1080/02757540.2021.2017903 conv_1606 .
Marić, Nenad, Strbacki, Jana, Polk, Jason, Slavković-Beskoski, Latinka, Avdalović, Jelena, Ljesević, Marija, Joksimović, Kristina, Zeradanin, Aleksandra, Beskoski, Vladimir P., "Spatial-temporal assessment of hydrocarbon biodegradation mechanisms at a contaminated groundwater site in Serbia" in Chemistry and Ecology, 38, no. 2 (2022):95-107, https://doi.org/10.1080/02757540.2021.2017903 ., conv_1606 .