Advantages of quantitative chemical fingerprinting in oil spill identification and allocation of mixed hydrocarbon contaminants

Author:

Douglas Gregory S.,Stout Scott A.,Uhler Allen D.,McCarthy Kevin J.,Emsbo-Mattingly Stephen D.

Publisher

Elsevier

Reference68 articles.

1. Petroleum hydrocarbon fingerprinting and sediment transport assessed by molecular biomarker and multivariate statistical-analyses in the Eastern harbor of Alexandria;Aboul-Kassim;Egypt. Mar. Pollut. Bull,1995

2. The behavior of aromatic hydrocarbons in artificial mixtures in Permian and Jurassic end-member oils: application to in-reservoir mixing in the Eromanga Basin, Australia;Arouri;Org. Geochem,2004

3. American Society for Testing and Materials International (ASTM), 1990. Standard Test Methods for Comparison of Waterborne Petroleum Oils by Gas Chromatography. ASTM D-3328-90. ASTM, W. Conshohocken, PA, p. 7.

4. American Society for Testing and Materials International (ASTM), 2000. Oil spill identification by gas chromatography and positive ion electron impact low resolution mass spectrometry. ASTM D-5739-00. ASTM, W. Conshohocken, PA, p. 13.

5. Bence, A.E., Burns, W.A., 1995. Fingerprinting hydrocarbons in the biological resources of the Exxon Valdez spill area. In: Wells, P.G., Butler, J.N., Hughes, J.S. (Eds.), Exxon Valdez Oil Spill: Fate and Effects in Alaskan Waters, ASTM STP 1219. American Society for Testing and Materials, W. Conshohocken, PA, 84–140.

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