首页> 外文会议>International in situ and on-site bioremediation symposium >CHEMICAL, MICROBIOLOGICAL, AND ECOTOXICOLOGICAL MONITORING OF BIODEGRADATION IN PAH-CONTAMINATED SEDIMENTS
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CHEMICAL, MICROBIOLOGICAL, AND ECOTOXICOLOGICAL MONITORING OF BIODEGRADATION IN PAH-CONTAMINATED SEDIMENTS

机译:PAH污染沉积物中生物降解的化学,微生物,生态毒理学监测

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This study was performed in order to evaluate factors that influence the magnitude and rates of PAH biodegradation processes in contaminated sediments at a laboratory scale. Several factors influence the feasibility and effectiveness of sediment biodegradation: (1) the existence of an indigenous sediment microbial population capable of degrading PAH contaminants, (2) the availability of the contaminants to sediment microbial population (bioavailability), (3) the optimization of environmental factors such as temperature and oxygen, and nutrients availability, (4) the influence of a natural surfactant on PAH degradation velocity. The rate and extent of PAH biodegradation were evaluated by sediment-slurry experiments by monitoring chemical, microbiological and ecotoxicological parameters. The last focus of our work was to investigate the source and the extent of toxicity in slurry experiments using the Microtox? test both on solid and liquid phases, in order to determine any enhancement or shift in toxicity over the time and/or between the solid and liquid phases due to release or increased bioavailability of the target contaminants.
机译:进行这项研究的目的是在实验室规模上评估影响受污染沉积物中PAH生物降解过程的幅度和速率的因素。有几种因素影响沉积物生物降解的可行性和有效性:(1)能够降解PAH污染物的本地沉积物微生物种群的存在;(2)沉积物微生物种群中污染物的可用性(生物利用度);(3)优化沉积物微生物种群的可行性。环境因素,例如温度和氧气以及养分的利用率,(4)天然表面活性剂对PAH降解速度的影响。通过监测化学,微生物和生态毒理学参数,通过沉积物淤浆实验评估了PAH生物降解的速度和程度。我们工作的最后重点是研究使用Microtox?进行浆液实验的毒性来源和程度。在固相和液相上均进行测试,以确定由于目标污染物释放或生物利用度增加而引起的毒性随时间和/或在固相和液相之间的任何增强或转移。

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