Department of Civil, Environmental and Architectural Engineering, 428 UCB, University of Colorado, Boulder, CO 80309, USA.
Department of Chemistry and Biochemistry, California State University at Long Beach, 1250 Bellflower Blvd., Long Beach, CA 90840, USA.
Chemosphere. 2014 Sep;111:596-602. doi: 10.1016/j.chemosphere.2014.05.012. Epub 2014 Jun 2.
Due to the large quantities of dispersants used during the Deepwater Horizon spill in 2010, there were immediate concerns with regards to the fate and transport of the mixture in ocean waters. Direct and sensitized photolysis experiments were carried out for two compounds chosen as surrogates for the Corexit mixture (9500 and 9527) that were applied to surface waters during the oil spill in the Gulf of Mexico. The results showed that direct photolysis did not contribute significantly to the overall degradation (max ∼30%), therefore the focus shifted to sensitized photolysis, specifically the degradation stemming from the reaction rate with hydroxyl radical (HO). The direct photochemical degradation rates for two of the compounds, dioctyl sulfosuccinate (DOSS) and dipropylene glycol butyl ether (DGBE) were measured as 4.29×10(-6)s(-1) and 5.95×10(-6)s(-1), respectively; whereas the overall degradation rate in ocean water was 1.56×10(-5)s(-1) and 2.23×10(-5)s(-1). The formation rates and apparent quantum yields for HO formation were determined for six ocean water samples. The values ranged from 1.81×10(-5) near shore to 0.061×10(-5) for the open ocean. These degradation rates suggest the possibility for photolysis to play a role in the overall fate of Corexit.
由于 2010 年深水地平线溢油事故中使用了大量的分散剂,因此人们立即关注到混合物在海洋水中的归宿和传输问题。对两种被选为科瑞克斯混合物(9500 和 9527)替代品的化合物进行了直接和敏化光解实验,这些化合物在墨西哥湾溢油期间被应用于地表水。结果表明,直接光解对整体降解的贡献不大(最大约 30%),因此研究重点转向敏化光解,特别是与羟基自由基(HO)反应速率引起的降解。两种化合物中二辛基磺基琥珀酸酯(DOSS)和二丙二醇丁醚(DGBE)的直接光化学降解速率分别为 4.29×10(-6)s(-1)和 5.95×10(-6)s(-1);而在海水中的整体降解速率分别为 1.56×10(-5)s(-1)和 2.23×10(-5)s(-1)。测定了六个海水样本中 HO 形成的生成速率和表观量子产率。这些值的范围从近岸的 1.81×10(-5)到开阔海域的 0.061×10(-5)。这些降解速率表明光解可能在科瑞克斯的整体归宿中发挥作用。