Biodegradation of Spilled Diesel Fuel in Agricultural Soil: Effect of Humates, Zeolite, and Bioaugmentation

Биодеградация разлитого дизельного топлива в сельскохозяйственной почве: влияние гуматов, цеолита и биоаугментации
Josef Trögl, Jana Nováková, Pavel Kuráň, Věra Pilařová, Petra Dáňová, Jana Pavlorková, Josef Kozler, František Novák, Jan Popelka
2014-01-01

Pseudomonas fluorescensbioaugmentationdiesel fuel biodegradationhumates and zeolitephospholipid fatty acids
Possible enhancement of biodegradation of petroleum hydrocarbons in agricultural soil after tank truck accident (~5000 mg/kg dry soil initial concentration) by bioaugmentation of diesel degrading Pseudomonas fluorescens strain and addition of abiotic additives (humates, zeolite) was studied in a 9-month pot experiment. The biodegradation process was followed by means of analytical parameters (hydrocarbon index expressed as content of C10-C40 aliphatic hydrocarbons, ratio pristane/C17, and total organic carbon content) and characterization of soil microbial community (content of phospholipid fatty acids (PLFA) as an indicator of living microbial biomass, respiration, and dehydrogenase activity). The concentration of petroleum hydrocarbons (C10-C40) was successfully reduced by ~60% in all 15 experiment variants. The bioaugmentation resulted in faster hydrocarbon elimination. On the contrary, the addition of humates and zeolite caused only a negligible increase in the degradation rate. These factors, however, affected significantly the amount of PLFA. The humates caused significantly faster increase of the total PLFA suggesting improvement of the soil microenvironment. Zeolite caused significantly slower increase of the total PLFA; nevertheless it aided in homogenization of the soil. Comparison of microbial activities and total PLFA revealed that only a small fraction of autochthonous microbes took part in the biodegradation which confirms that bioaugmentation was the most important treatment.
1
A nine-month pot experiment evaluated diesel biodegradation in agricultural soil initially contaminated with approximately 5000 mg/kg dry soil petroleum hydrocarbons.
2
Bioaugmentation with diesel-degrading Pseudomonas fluorescens accelerated hydrocarbon elimination and was the most important treatment.
3
C10–C40 petroleum hydrocarbons decreased by approximately 60% across all 15 experimental variants.
4
Comparisons of microbial activity and total PLFA indicated that only a small fraction of indigenous microbes contributed to biodegradation.
5
Humates accelerated total PLFA increases, suggesting improved soil microenvironment, whereas zeolite slowed PLFA accumulation but improved soil homogenization.
6
Humates and zeolite produced only negligible increases in degradation rate, although they significantly altered phospholipid fatty acid dynamics.

Diesel-contaminated agricultural soil undergoing biodegradation in a 9-month pot experiment

Effects of bioaugmentation with Pseudomonas fluorescens and addition of humates or zeolite on petroleum-hydrocarbon biodegradation, soil microbial biomass, activity, and microenvironment

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2014-01-01
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Josef Trögl
Jana Nováková
Pavel Kuráň
Věra Pilařová
Petra Dáňová
Jana Pavlorková
Josef Kozler
František Novák
Jan Popelka
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