WANG Chuanyuan, HU Xiaoke, HE Shijie, LIU Xin, ZHAO Mingming. Source diagnostic and weathering indicators of oil spills utilizing bicyclic sesquiterpanes[J]. Acta Oceanologica Sinica, 2013, 32(8): 79-84. doi: 10.1007/s13131-013-0344-y
Citation: WANG Chuanyuan, HU Xiaoke, HE Shijie, LIU Xin, ZHAO Mingming. Source diagnostic and weathering indicators of oil spills utilizing bicyclic sesquiterpanes[J]. Acta Oceanologica Sinica, 2013, 32(8): 79-84. doi: 10.1007/s13131-013-0344-y

Source diagnostic and weathering indicators of oil spills utilizing bicyclic sesquiterpanes

doi: 10.1007/s13131-013-0344-y
  • Received Date: 2012-04-20
  • Rev Recd Date: 2012-12-22
  • Bicyclic Sesquiterpanes (BSs) are ubiquitous components of crude oils and ancient sediments. BSs in crude oils and diesel oil were identified and characterized, the effects ofmoderate weathering on BS distributions were discussed, and amethodology using diagnostic indices of BSswas developed for oil correlationand differentiation. The results showed that crude oils and oil products had different abundances and distributions of BSs and, consequently, resulted in different diagnostic ratios. The selected diagnostic ratio indices of BSs, such as BS4/BS5 (ratio of 4,4,8,9,9-pentamethyl-decahydronaphthalene to 8β(H)-drimane), BS6/BS5 (ratio of 4,4,9,9,10-pentamethyl-decahydronaphthalene to 8β(H)-drimane), BS8/BS9 (ratio of the second peak to the third peak of C16 sequiterpane), and BS8/BS10 (ratio of C16 sequiterpane to 8β(H)-homodrimane), still maintained better stabilities (%RSD < 5%) after weathering for 30 d. The longer weathering process (150 d) had some effect on such ratios (5% < %RSD < 10%). The facts of the uniqueness, abundance in petroleum, and chemical stability of BSs enable them to be suitable as an effective diagnostic means for identifying spilled oil with moderate weathering, particularly for lighter refined product samples that are difficult to identify by current techniques.
  • loading
  • Barakat A O,Mostafa A R, Qian Y, et al. 2002. Application of petroleum hydrocarbon chemical fingerprinting in oil spill investigationsgulf of Suez, Egypt. Spill Sci Technol Bull, 7(5-6): 229-231
    D'AuriaM, Emanuele L, Racioppi R, et al. 2009. Photochemical degradation of crude oil: Comparison between direct irradiation, photocatalysis, and photocatalysis on zeolite. J Hazard Mater, 164(1): 32-38
    Garrett R M, Pickering I J, Haith C E, et al. 1998. Photooxidation of crude oils. Environ Sci Technol, 32(23): 3719-3723
    GarciaOT, Grimalt JO. 2006. GC andGC-MS characterization of crude oil transformation in sediments and microbial mat samples after the 1991 oil spill in the Saudi Arabian Gulf coast. Environ Pollut, 139(3): 523-531
    Hegazi AH, Anderson J T, Abu-ElgheitMA, et al. 2004. Source diagnostic and weathering indicators of tar-balls utilizing acyclic, polycyclic and S-heterocyclic components. Chemosphere, 55(7): 1051-1065
    Li Yun, Xiong Yongqiang, Yang Wanying, et al. 2009. Compoundspecific stable carbon isotopic composition of petroleum hydrocarbons as a tool for tracing the source of oil spills. Mar Pollut Bull, 58(1): 114-117
    Peters K E, Moldowan J M. 1993. The Biomarker Guide. Interpreting Molecular Fossils in Petroleum and Ancient Sediments. Englewood Cliffs, NJ: Prentice-Hall
    Prince R C, Owens E H, Sergy G A. 2002. Weathering of an Arctic oil spill over 20 years: the BIOS experiment revisited. Mar Pollut Bull, 44(1): 1236-1242
    Stout S A, Uhler A D,McCarthy K J. 2001. A strategy and methodology for defensibly correlating spilled oil to source candidates. Environ Fore, 2: 87-98
    Stout S A, Uhler A D, McCarthy K J. 2005. Middle distillate fuel fingerprinting using drimane-based bicyclic sesquiterpanes. Environ Forensics, 6(3): 241-251
    Wang Zhendi, Fingas M F. 2003. Development of oil hydrocarbon fingerprinting and techniques. Mar Pollut Bull, 47(9-12): 423-452
    Wang Zhendi, Yang Chun, Fingas M, et al. 2005. Characterization, weathering, and application of sesquiterpanes to source identification of spilled petroleum products. Environ Sci Technol, 39(22): 8700-8707
    Wang Chuanyuan, Du Jianguo, Gao Xuelu, et al. 2011. Chemical characterization of naturally weathered oil residues in the sediment fromYellow River Delta, China. Marine Pollution Bulletin, 62(1): 2469-2475
    Weston R J, Philp R P, Sheppard C M, et al. 1989. Sesquiterpanes, diterpanes, and other higher terpanes in oils from the Taranaki Basin of New Zealand. Org Geochem, 14(4): 405-421
    Yang Chun,Wang Zhendi,Hollebone B P, et al. 2009. Characteristics of bicyclic sesquiterpanes in crude oils and petroleum products. J Chromatogr A, 1216(20): 4475-4484
    Zhang Chunming, Guo Kangliang, Zhang Jun, et al. 2002. Distribution characteristics and their geochemical significance of bicyclic sesquiterpanes. J Jianghan Pet Inst, 24(2): 30-32
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (1292) PDF downloads(1973) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return