Freeman Danielle Haas, Niles Sydney F, Rodgers Ryan P, French-McCay Deborah P, Longnecker Krista, Reddy Christopher M, Ward Collin P
MIT-WHOI Joint Program in Oceanography/Applied Ocean Science & Engineering, Woods Hole, Massachusetts 02543, United States.
Department of Marine Chemistry and Geochemistry, Woods Hole Oceanographic Institution, Woods Hole, Massachusetts 02543, United States.
Environ Sci Technol. 2023 Aug 15;57(32):11988-11998. doi: 10.1021/acs.est.3c02962. Epub 2023 Jul 29.
Photochemical weathering transforms petroleum oil and changes its bulk physical properties, as well as its partitioning into seawater. This transformation process is likely to occur in a cold water marine oil spill, but little is known about the behavior of photochemically weathered oil in cold water. We quantified the effect of photochemical weathering on oil properties and partitioning across temperatures. Compared to weathering in the dark, photochemical weathering increases oil viscosity and water-soluble content, decreases oil-seawater interfacial tension, and slightly increases density. Many of these photochemical changes are much larger than changes caused by evaporative weathering. Further, the viscosity and water-soluble content of photochemically weathered oil are more temperature-sensitive compared to evaporatively weathered oil, which changes the importance of key fate processes in warm versus cold environments. Compared to at 30 °C, photochemically weathered oil at 5 °C would have a 16× higher viscosity and a 7× lower water-soluble content, resulting in lower entrainment and dissolution. Collectively, the physical properties and thus fate of photochemically weathered oil in a cold water spill may be substantially different from those in a warm water spill. These differences could affect the choice of oil spill response options in cold, high-light environments.
光化学风化会改变石油的性质,改变其整体物理性质以及其在海水中的分配情况。这种转变过程很可能发生在冷水海洋溢油事故中,但对于光化学风化后的石油在冷水中的行为却知之甚少。我们量化了光化学风化对不同温度下石油性质及分配的影响。与黑暗环境中的风化相比,光化学风化会增加石油的粘度和水溶性成分,降低油-海水界面张力,并略微增加密度。许多这些光化学变化比蒸发风化引起的变化要大得多。此外,与蒸发风化后的石油相比,光化学风化后的石油的粘度和水溶性成分对温度更敏感,这改变了温暖与寒冷环境中关键归宿过程的重要性。与30℃时相比,5℃时光化学风化后的石油粘度会高出16倍,水溶性成分会低7倍,从而导致夹带和溶解减少。总体而言,冷水中溢油事故中光化学风化石油的物理性质及其归宿可能与温水中的有很大不同。这些差异可能会影响寒冷、高光环境下溢油应对方案的选择。