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BIOREMEDIATION OF DIESEL-POLLUTED SOIL AND GROUNDWATER UNDER DENITRIFYING CONDITIONS

机译:脱硝条件下柴油污染土壤和地下水的生物修复

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Contamination of water and soil resources with petroleum hydrocarbons is not a rare phenomenon nowadays. Microbial biodegradation has been carried out successfully reducing harmful concentrations of these pollutants to acceptable levels. In cases where oxygen availability limits microbial activity, alternative electron acceptors such as nitrate could be employed by microorganisms in biodegradative processes. We examined the effectiveness of anaerobic nitrate respiration to remediate water saturated soil and groundwater contaminated with diesel fuel. Microcosm systems were prepared with soil and water samples obtained from diesel-contaminated sites in San Juan, PR and Vega Baja, PR respectively and amended with different concentrations of nitrate. All systems were incubated stationary in the dark at 25oC and examined for total petroleum hydrocarbons (TPH), pH, nitrate concentration, total heterotrophs and denitrifier population density by most probable number (MPN). Significant degradation was observed in all nitrate- amended systems. Nitrate analysis showed consumption in all biostimulated systems. Results suggest that biostimulation of indigenous microbial communities using alternate electron acceptors such as NO3, could be an efficient strategy for the in-situ anaerobic bioremediation of hydrocarbon polluted saturated soil and groundwater in tropical ecosystems.
机译:如今,石油和碳氢化合物对水和土壤资源的污染并不罕见。已经成功进行了微生物生物降解,将这些污染物的有害浓度降低到可接受的水平。在氧气供应限制微生物活性的情况下,微生物可在生物降解过程中使用其他电子受体,例如硝酸盐。我们研究了厌氧硝酸盐呼吸对修复水饱和土壤和被柴油污染的地下水的有效性。缩影系统的制备是利用分别从PR污染地区的土壤和水样本中获得的土壤和水样本,这些污染源位于PR的圣胡安和PR Vega Baja,并用不同浓度的硝酸盐进行了修正。将所有系统在25°C的黑暗中静止孵育,并以最大可能数(MPN)检查总石油烃(TPH),pH,硝酸盐浓度,总异养生物和反硝化器种群密度。在所有经硝酸盐改性的系统中均观察到了显着的降解。硝酸盐分析显示所有生物刺激系统的消耗量。结果表明,使用替代电子受体(例如NO3)对土著微生物群落进行生物刺激可能是对热带生态系统中烃污染的饱和土壤和地下水进行原位厌氧生物修复的有效策略。

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