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首页> 外文期刊>Environmental Science: Processes & Impacts >How the 2010 Deepwater Horizon spill reshaped our understanding of crude oil photochemical weathering at sea: a past, present, and future perspective
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How the 2010 Deepwater Horizon spill reshaped our understanding of crude oil photochemical weathering at sea: a past, present, and future perspective

机译:2010年深水地平线泄漏如何重塑我们对海上原油光化风化的理解:过去,现在和未来的观点

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The weathering of crude oil at sea has been researched for nearly half a century. However, there have been relatively few opportunities to validate laboratory-based predictions about the rates, relative importance, and controls of oil weathering processes (e.g., evaporation, photo-oxidation, and emulsification) under natural field conditions. The 2010 Deepwater Horizon (DWH) spill in the Gulf of Mexico provided the oil spill science community with a unique opportunity to evaluate our laboratory-based predictions in nature. With a focus on photochemical weathering, we review what we knew prior to the DWH spill, what we learned from the DWH spill, and what priority gaps in knowledge remain. Three key findings from the DWH spill are discussed. First, the rate and extent of photochemical weathering was much greater for the floating surface oil than expected based on early conceptual models of oil weathering. Second, indirect photochemical processes played a major role in the partial oxidation of the floating surface oil. Third, the extensive and rapid changes to the physical and chemical properties of oil by sunlight may influence oil fate, transport, and the selection of response tools. This review also highlights findings and predictions about photochemical weathering of oil from several decades ago that appear to have escaped the broader scientific narrative and ultimately proved true for the DWH spill. By focusing on these early predictions and synthesizing the numerous findings from the DWH spill, we expect this review will better prepare the oil spill science community to respond to the next big spill in the ocean.
机译:海上原油的风化已经研究了近半个世纪。然而,在自然场地条件下验证基于实验室的预测,有关基于实验室的预测,在自然场条件下的速度,相对重要性和控制的预测。 2010年深水地平线(DWH)泄漏在墨西哥湾提供了石油泄漏科学社会,具有自然评估我们实验室的预测的独特机会。通过专注于光化学风化,我们审查了我们在DWH泄漏之前所知道的,我们从DWH泄漏中学到的内容,以及知识中的优先差距仍然存在。讨论了DWH泄漏的三个主要发现。首先,基于石化早期概念模型的浮动表面油,光化学风化的速率和程度远大于预期。其次,间接光化学过程在浮曲表面油的部分氧化中发挥了重要作用。第三,阳光下油的物理和化学性质的广泛和快速变化可能会影响油法,运输和响应工具的选择。该综述还强调了几十年前对石油的光化学风化的调查结果和预测,似乎逃离了更广泛的科学叙事,并最终证明了DWH泄漏。通过专注于这些早期预测和综合DWH泄漏的许多发现,我们预计这一综述将更好地准备石油泄漏科学界,以应对海洋中的下一个大泄漏。

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