Benigni Paolo, Marin Rebecca, Sandoval Kathia, Gardinali Piero, Fernandez-Lima Francisco
Chemistry and Biochemistry, Florida International University.
Chemistry and Biochemistry, Florida International University;
J Vis Exp. 2017 Mar 3(121):55352. doi: 10.3791/55352.
Multiple chemical processes control how crude oil is incorporated into seawater and also the chemical reactions that occur overtime. Studying this system requires the careful preparation of the sample in order to accurately replicate the natural formation of the water-accommodated fraction that occurs in nature. Low-energy water-accommodated fractions (LEWAF) are carefully prepared by mixing crude oil and water at a set ratio. Aspirator bottles are then irradiated, and at set time points, the water is sampled and extracted using standard techniques. A second challenge is the representative characterization of the sample, which must take into consideration the chemical changes that occur over time. A targeted analysis of the aromatic fraction of the LEWAF can be performed using an atmospheric-pressure laser ionization source coupled to a custom-built trapped ion mobility spectrometry-Fourier transform-ion cyclotron resonance mass spectrometer (TIMS-FT-ICR MS). The TIMS-FT-ICR MS analysis provides high-resolution ion mobility and ultrahigh-resolution MS analysis, which further allow the identification of isomeric components by their collision cross-sections (CCS) and chemical formula. Results show that as the oil-water mixture is exposed to light, there is significant photo-solubilization of the surface oil into the water. Over time, the chemical transformation of the solubilized molecules takes place, with a decrease in the number of identifications of nitrogen- and sulfur-bearing species in favor of those with a greater oxygen content than were typically observed in the base oil.
多种化学过程控制着原油如何融入海水中以及随时间发生的化学反应。研究这个系统需要精心制备样品,以便准确复制自然界中发生的水合部分的自然形成过程。通过以设定比例混合原油和水来精心制备低能量水合部分(LEWAF)。然后对吸气瓶进行辐照,并在设定的时间点,使用标准技术对水进行采样和萃取。第二个挑战是对样品进行代表性表征,这必须考虑到随时间发生的化学变化。可以使用与定制的阱式离子淌度光谱 - 傅里叶变换离子回旋共振质谱仪(TIMS - FT - ICR MS)耦合的大气压激光电离源对LEWAF的芳烃部分进行靶向分析。TIMS - FT - ICR MS分析提供高分辨率离子淌度和超高分辨率质谱分析,这进一步允许通过其碰撞截面积(CCS)和化学式鉴定同分异构体成分。结果表明,随着油水混合物暴露在光下,表面油会大量光溶解到水中。随着时间的推移,溶解分子会发生化学转化,含氮和含硫物种的鉴定数量减少,有利于那些比基础油中通常观察到的含氧量更高的物种。