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首页> 外文期刊>Environmental Science & Technology Letters >Photochemical Oxidation of Oil Reduced the Effectiveness of Aerial Dispersants Applied in Response to the Deepwater Horizon Spill
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Photochemical Oxidation of Oil Reduced the Effectiveness of Aerial Dispersants Applied in Response to the Deepwater Horizon Spill

机译:光化学氧化油降低了响应深水地平线泄漏的空中分散剂的有效性

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Chemical dispersants are one of many tools used to mitigate the overall environmental impact of oil spills. In principle, dispersants break up floating oil into small droplets that disperse into the water column where they are subject to multiple fate and transport processes. The effectiveness of dispersants typically decreases as oil weathers in the environment. This decrease in effectiveness is often attributed to evaporation and emulsification, with the contribution of photochemical weathering assumed to be negligible. Here, we aim to test this assumption using Macondo well oil released during the Deepwater Horizon spill as a case study. Our results indicate that the effects of photochemical weathering on Deepwater Horizon oil properties and dispersant effectiveness can greatly outweigh the effects of evaporative weathering. The decrease in dispersant effectiveness after light exposure was principally driven by the decreased solubility of photo-oxidized crude oil residues in the solvent system that comprises COREXIT EC9500A. Kinetic modeling combined with geospatial analysis demonstrated that a considerable fraction of aerial applications targeting Deepwater Horizon surface oil had low dispersant effectiveness. Collectively, the results of this study challenge the paradigm that photochemical weathering has a negligible impact on the effectiveness of oil spill response and provide critical insights into the "window of opportunity" to apply chemical dispersants in response to oil spills in sunlit waters.
机译:化学分散剂是用于减轻漏油总环境影响的许多工具之一。原则上,分散剂将浮动油分解成小液滴,这些液滴分散到水柱中,在那里它们受到多个命运和运输过程的影响。分散剂的有效性通常随着环境中的油气而减少。这种有效性降低通常归因于蒸发和乳化,具有光化学风化假定的贡献可忽略不计。在这里,我们的目的是在深水地平线泄漏期间使用Macondo Well Oil以案例研究来测试这种假设。我们的研究结果表明,光化学风化在深水地平线油性能和分散剂效果的影响可能大大超过了蒸发风化的影响。在光暴露后的分散剂有效性的降低主要是通过降低光氧化的原油残余物中的溶剂系统中的溶解度降低,所述溶剂体系包括核XIT EC9500A。动力学建模结合地理空间分析表明,靶向深水地平线表面油的相当大部分的空中应用具有低分散效果。统称,本研究的结果挑战了光化学风化的范例对漏油泄漏反应的有效性的影响,并为申请化学分散剂的“机会窗口”的关键见解,以应对阳光照射水域的漏油。

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