Department of Chemistry, University of Connecticut, 55 North Eagleville Rd., Storrs, CT 06269, USA.
Photochem Photobiol Sci. 2012 Apr;11(4):692-702. doi: 10.1039/c2pp05275j. Epub 2012 Feb 2.
The effects of visible and UV light on the characteristics and properties of Prudhoe Bay (PB) and South Louisiana (SL) emulsions were investigated to better understand the role of sunlight on the fate of spilled crude oils that form emulsions with a dispersant in the aquatic environment. Before irradiation, crude oil emulsions showed the presence of dispersed crude oil micelles in a continuous water phase and crude oil components floating on the surface. The crude oil micelles decreased in size with irradiation, but emulsions retained their high degree of polydispersity. UV irradiation reduced the stability of emulsions more effectively than visible light. The reduction of micelles size caused the viscosity of emulsions to increase and melting point to decrease. Further, irradiation increased acid concentrations and induced ion formation which lowered the pH and increased the conductivity of emulsions, respectively. Ni and Fe in PB emulsions were extracted from crude oil with UV irradiation, which may provide an efficient process for metal removal. The emulsions were stable toward freeze/thaw cycles and their melting temperatures generally decreased with irradiation. Evidence of ˙OH production existed when emulsions were exposed to UV but not to visible light. The presence of H(2)O(2) enhanced the photodegradation of crude oil. Overall, the changes in emulsion properties were attributed to direct photodegradation and photooxidation of crude oil components.
研究了可见光和紫外光对普拉德霍湾(PB)和路易斯安那南部(SL)乳状液特性和性质的影响,以更好地了解阳光在溢油形成与分散剂在水相中的乳状液中的命运中的作用。辐照前,原油乳状液显示出连续水相中分散的原油胶束和浮在表面上的原油成分的存在。原油胶束随辐照而减小,但乳状液仍保持高度的多分散性。紫外光辐照比可见光更有效地降低了乳状液的稳定性。胶束尺寸的减小导致乳状液的粘度增加,熔点降低。此外,辐照增加了酸浓度并诱导离子形成,分别降低了 pH 值并增加了乳状液的电导率。PB 乳状液中的 Ni 和 Fe 被紫外光从原油中提取出来,这可能为金属去除提供了一种有效的工艺。乳状液对冻融循环稳定,其熔点通常随辐照而降低。当乳状液暴露于紫外光下时存在˙OH 生成的证据,但在可见光下不存在。H 2 O 2 的存在促进了原油的光降解。总的来说,乳状液性质的变化归因于原油成分的直接光降解和光氧化。