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Ecorisk Evaluation And Treatability Potential Of Soils Contaminated With Petroleum Hydrocarbon-based Fuels

机译:石油烃基燃料污染土壤的生态风险评估和可处理性潜力

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摘要

We used a series of toxicity tests to monitor oil degradation in the Kuwaiti oil lakes. Three soils from different locations with a history of hydrocarbon contamination were treated in bench-scale microcosms with controlled nutrient amendments, moisture content, and temperature that had promoted mineralization of total hydrocarbon and oil and grease in a preliminary study. Two hundred days of bioremediation treatment lowered hydrocarbon concentration to below 2 and 5 mg g~(-1) for soils A and B, respectively, while in soil C hydrocarbon concentration remained at 12 mg g~(-1). Although 85% of the total petroleum hydrocarbons (TPHs) in soil A were reduced 50 d after treatment, results of the seed germination and Microtox tests suggested an initial increase in toxicity, indicating that toxic intermediary metabolites may have formed during biodegradation. Also, the significant decrease of TPHs and corresponding high toxicity levels were noted in soil B 200 d after bioremediation. Clearly, toxicity values, and not just hydrocarbon concentration, are a key factor in assessing the effectiveness of bioremediation techniques. Field chemistry data showed a significant reduction in hydrocarbon levels after the biological treatment. We concluded that the toxicity assessment of the contaminated soil with a battery of toxicity bioassays could provide meaningful information regarding a characterization procedure in ecological risk assessment.
机译:我们使用了一系列毒性测试来监测科威特油湖中的石油降解。在初步研究中,对具有不同碳氢化合物污染历史的不同地区的三种土壤进行了台式规模的缩微处理,其营养成分得到控制,水分含量和温度得到控制,从而促进了总碳氢化合物,油脂的矿化。经过200天的生物修复处理,土壤A和B的碳氢化合物浓度分别降至2和5 mg g〜(-1)以下,而土壤C的碳氢化合物浓度保持在12 mg g〜(-1)。尽管处理后50 d土壤A中的总石油烃(TPHs)减少了85%,但种子发芽和Microtox试验的结果表明毒性开始增加,表明在生物降解过程中可能形成了毒性中间代谢物。此外,在生物修复后200 d的土壤B中,TPH的显着降低和相应的高毒性水平被注意到。显然,毒性值,而不仅仅是碳氢化合物的浓度,是评估生物修复技术有效性的关键因素。现场化学数据显示,经过生物处理后,碳氢化合物含量显着降低。我们得出结论,用一系列毒性生物测定法对污染土壤的毒性评估可以提供有关生态风险评估中表征程序的有意义的信息。

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