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Improved and Standardized Methodology for Oil Spill Fingerprinting
Institution:1. College of Environmental Science and Engineering, Dalian Maritime University, Dalian 116026, China;2. College of Environmental Science and Engineering, Maritime Safety Administration of the People''s Republic of China, Beijing 100736, China;3. College of Navigation, Dalian Maritime University, Dalian 116026, China;1. Instituto Oceanográfico da Universidade de São Paulo (IO-USP), Praça do Oceanográfico, 191, Cidade Universitária, São Paulo 05508-120, Brazil;2. Instituto de Geociências da Universidade Federal da Bahia (IGEO-UFBA), Bahia 40170-020, Brazil;3. Departamento de Química da Universidade Federal de Sergipe (DQI-UFS), 49100-000, Brazil;4. Centro de Formação em Ciências Ambientais da Universidade Federal do Sul da Bahia (CFCAM-UFSB), 45810-000, Brazil;5. Departamento de Oceanografia da Universidade Federal de Pernambuco (DOCEAN-UFPE), 50740-550, Brazil;1. NewFields Environmental Forensics Practice, LLC, 300 Ledgewood Pl., Suite 305, Rockland, MA, United States;2. Payne Environmental Consultants, Inc., 1651 Linda Sue Lane, Encinitas, CA, United States;3. NOAA, Assessment and Restoration Division, 345 Middlefield Rd., MS-999, Menlo Park, CA, United States
Abstract:The existing Nordtest methodology for oil spill Identification has over the past 10 years formed an important “platform” for solving oil spill identification cases both in the Scandinavian countries as well as other countries in Europe, the USA and Canada. “Revision of the Nordtest Methodology for Oil Spill Identification” is a cooperative project between the National Oil Spill Identification laboratories in Norway, Sweden, Finland, Denmark and the Battelle Memorial Institute (Duxbury) in the USA. The goals of the project are: (1) to refine the existing Nordtest methodology into a technically more robust and defensible oil spill identification methodology with focus on determination of quantitative diagnostic indices (ratios) and (2) to adjust the revised Nordtest methodology into guidelines for the European Committee for Standardization (CEN). This paper presents the recommended methodology for the analytical oil spill identification part. The sampling techniques and handling of oil samples and background (reference) samples prior to their arrival at the environmental forensic laboratory is not covered in this paper. The recommended methodology approach is a result of documented analytical improvements and a more quantitative treatment of analytical data from gas chromatographic-flame ionization detector (GC/FID) and gas chromatographic-mass spectrometer methods (GC/MS-SIM) and the operational experiences over past few years among the participating forensic laboratories. The experience and literature in the field of oil exploration and production geochemistry have also played an important role for the recommended methodology. The results from a recent Round Robin test carried out among 12 laboratories using this new methodology are presented in a separate paper in this issue (8).
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