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Environmental Science & Technology|August 10, 2004
Optimizing detection limits for the analysis of petroleum hydrocarbons in complex environmental samplesGregory S Douglas, William A Burns, A Edward Bence, et al.Marine Pollution Bulletin|July 5, 2005
Comparison of mussels and semi-permeable membrane devices as intertidal monitors of polycyclic aromatic hydrocarbons at oil spill sitesPaul D Boehm, David S Page, John S Brown, et al.Marine Pollution Bulletin|November 3, 2005
A hierarchical approach measures the aerial extent and concentration levels of PAH-contaminated shoreline sediments at historic industrial sites in Prince William Sound, AlaskaDavid S Page, John S Brown, Paul D Boehm, et al.Environmental Toxicology and Chemistry|April 25, 2006
Bioavailability of polycyclic aromatic hydrocarbons from buried shoreline oil residues thirteen years after the Exxon Valdez oil spill: a multispecies assessmentJerry M Neff, A Edward Bence, Keith R Parker, et al.Marine Environmental Research|June 1, 2005
Mussels document loss of bioavailable polycyclic aromatic hydrocarbons and the return to baseline conditions for oiled shorelines in Prince William Sound, AlaskaDavid S Page, Paul D Boehm, John S Brown, et al.Environmental Science & Technology|October 28, 2004
Polycyclic aromatic hydrocarbon sources related to biomarker levels in fish from Prince William Sound and the Gulf of AlaskaDavid S Page, Robert J Huggett, John J Stegeman, et al.Environmental Science & Technology|December 6, 2006
Source allocation by least-squares hydrocarbon fingerprint matchingWilliam A Burns, Stephen M Mudge, A Edward Bence, et al.Human and Ecological Risk Assessment : HERA|June 1, 2013
Quantitative Assessment of Current Risks to Harlequin Ducks in Prince William Sound, Alaska, from the <i>Exxon Valdez</i> Oil SpillMark A Harwell, John H Gentile, Keith R Parker, et al.Pageof 1