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Investigation of evaporation and biodegradation of fuel spills in Antarctica: II—Extent of natural attenuation at Casey Station

机译:南极洲燃油泄漏物的蒸发和生物降解研究:II-凯西站的自然衰减程度

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In many temperate regions, fuel and oil spills are sometimes managed simply by allowing natural degradation to occur, while monitoring soils and groundwater to ensure that there is no off-site migration or on-site impact. To crit-ically assess whether this approach is suitable for coastal Antarctic sites, we investigated the extent of evaporation and biodegradation at three old fuel spills at Casey Station. Where the contaminants migrated across frozen ground, probably beneath snow, approximately half the fuel evaporated in the first few months prior to infiltration at the beginning of summer. Once in the ground, however, evaporation rates were negligible. In contrast, minor spills from fuel drums buried in an abandoned waste disposal site did not evaporate to the same extent. Biodegradation within all three spill sites is generally very minor. We conclude that natural attenuation is not a suitable management strategy for fuel-contaminated soils in Antarctic coastal regions.
机译:在许多温带地区,有时仅通过允许自然退化发生而对燃油和漏油进行管理,同时监控土壤和地下水以确保不存在非现场迁移或现场影响。为了批判性地评估这种方法是否适用于南极沿海地区,我们调查了Casey站的三处旧燃料泄漏的蒸发和生物降解程度。在污染物迁移穿过冻结的地面(可能在雪之下)的地方,夏季开始渗入之前的前几个月,大约一半的燃料蒸发了。然而,一旦进入地下,蒸发速率就可以忽略不计。相反,掩埋在废弃废物处理场中的燃料桶产生的少量溢出并未蒸发到相同程度。通常,这三个泄漏地点的生物降解很小。我们得出结论,对于南极沿海地区的燃料污染土壤,自然衰减不是合适的管理策略。

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