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Photochemical transformations of water-soluble fraction (WSF) of crude oil in marine waters

机译:海水中原油水溶性部分(WSF)的光化学转化

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Changes in the chemical nature of the water-soluble fraction (WSF) of crude oils caused by photolysis and heterogeneous photocatalysis using TiO-2 were investigated by gas chromatography-mass spectrometry (GC-MS) and ultraviolet fluorescence spectrophotometry (UVF). Two Brazilian crude oil samples with different concentrations of WSF (45 and 15 mg C1~(-1)) were studied. Photochemical driven reactions were investigated under UV-Vis irradiation in the absence and in the presence of the photocatalyst. The presence of aromatic hydrocarbon in the WSF before irradiation, resulting from crude oil slick solubilization on seawater, was confirmed by chromatograms that showed a series of low molecular weight aromatic hydrocarbons together with a unresolved complex mixture (UCM). However, in the irradiated WSF these compounds were not detected. After 6 days photolysis period, WSF from both crude oils did not show peaks of aromatic compounds, whereas the presence of long chains unsaturated hydrocarbons as well as sulfur compounds were detected. In contrast, when TiO_2 was employed, complete photodegradation of both crude oil samples in the WSF occurred after very short light exposure periods (1-2 days). Quantitative data were also obtained and discussed here. The results reinforce photodegradation as an effective weathering process for the transformation of dissolved crude oil fraction, particularly in high solar radiation environments. Complete degradation in a short period of time was only made possible by heterogeneous photocatalysis.
机译:利用气相色谱-质谱(GC-MS)和紫外荧光分光光度法(UVF)研究了使用TiO-2进行光解和非均相光催化引起的原油水溶性馏分(WSF)的化学性质变化。研究了两个巴西WSF浓度不同的原油样品(45和15 mg C1〜(-1))。在不存在和存在光催化剂的情况下,在UV-Vis照射下研究了光化学驱动的反应。色谱显示了一系列低分子量的芳族烃以及未分解的复杂混合物(UCM),色谱图证实了辐照前WSF中芳烃的存在是由于原油浮油在海水中的溶解所致。但是,在经辐照的WSF中未检测到这些化合物。经过6天的光解时间后,两种原油的WSF均未显示出芳族化合物的峰,而检测到长链不饱和烃以及硫化合物的存在。相反,当使用TiO_2时,在很短的曝光时间(1-2天)后,WSF中两种原油样品就发生了完全的光降解。还获得了定量数据并在此进行了讨论。结果增强了光降解,作为有效的风化过程,可用于转化溶解的原油馏分,特别是在太阳辐射高的环境中。只有通过非均相光催化才能在短时间内完全降解。

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