Wang Chuanyuan, Chen Bing, Zhang Baiyu, Guo Ping, Zhao Mingming
Key Laboratory of Coastal Zone Environment Processes and Ecological Remediation, Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences, Yantai 264003, China.
Environ Sci Process Impacts. 2014;16(10):2408-14. doi: 10.1039/c4em00266k.
The composition and distribution of triaromatic steroid hydrocarbons in oil residues after biodegradation and photo-oxidation processes were detected, and the diagnostic ratios for oil spill identification were developed and evaluated based on the relative standard deviation (RSD) and the repeatability limit. The preferential loss of C27 methyl triaromatic steranes (MTAS) relative to C28 MTAS and C29 MTAS was shown during the photo-oxidation process. In contrast to the photochemical degradation, the MTAS with the original 20R biological configuration was preferentially degraded during the biodegradation process. The RSD of most of the diagnostic ratios of MTAS ranged from 9 to 84% during the photo-oxidation process. However, the RSDs of such ratios derived from MTAS were all <5% even in high biodegradation, and such parameters may also provide new methods on oil spill identification. The parameters of monoaromatic sterane and monoaromatic sterane are not used well for oil spill identification after photo-oxidation. The triaromatic steroid hydrocarbons retained their molecular compositions after biodegradation and photo-oxidation and most of the diagnostic ratios derived from them could be efficiently used in oil spill identification.
检测了生物降解和光氧化过程后油渣中三芳基甾族烃的组成和分布,并基于相对标准偏差(RSD)和重复性限制定并评估了溢油识别诊断比值。在光氧化过程中,相对于C28甲基三芳基甾烷和C29甲基三芳基甾烷,C27甲基三芳基甾烷(MTAS)优先损失。与光化学降解相反,具有原始20R生物构型的MTAS在生物降解过程中优先降解。在光氧化过程中,MTAS的大多数诊断比值的RSD范围为9%至84%。然而,即使在高生物降解情况下,由MTAS得出的这些比值的RSD均<5%,并且这些参数也可能为溢油识别提供新方法。光氧化后,单芳基甾烷和单芳基甾烷的参数在溢油识别中未得到很好的应用。三芳基甾族烃在生物降解和光氧化后保留了其分子组成,并且从中得出的大多数诊断比值可有效地用于溢油识别。