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DOI10.1016/j.marpolbul.2020.111202
The sensitivity of the deepsea species northern shrimp (Pandalus borealis) and the cold-water coral (Lophelia pertusa) to oil-associated aromatic compounds; dispersant; and Alaskan North Slope crude oil
Bytingsvik J.; Parkerton T.F.; Guyomarch J.; Tassara L.; LeFloch S.; Arnold W.R.; Brander S.M.; Volety A.; Camus L.
发表日期2020
ISSN0025326X
卷号156
英文摘要This study investigated the sensitivity of two deepsea species using mortality of northern shrimp (Pandalus borealis) and polyp activity of stony coral (Lophelia pertusa) to dispersant, Corexit 9500 and aromatic hydrocarbons (toluene, 2-methylnaphthalene, phenanthrene) in 96-h tests. Resulting hydrocarbon toxicity data were fit to the Target Lipid Model to generate predictive models and determine species sensitivity. Toxicity of chemically enhanced water accommodated fractions of Alaskan North Slope crude oil (ANS-oil) was also investigated with shrimp using nominal loading, total petroleum hydrocarbons and biomimetic extraction (BE) as oil exposure metrics. Coral were more sensitive to dispersant than shrimp while similar sensitivity was observed for hydrocarbons. Study and literature findings indicate deepsea species exhibit acute sensitivities to dispersant, hydrocarbons and oil that are comparable to pelagic species. Results support use of passive sampling methods to quantify dissolved oil for interpreting oil toxicity tests and suggest models for predicting time-dependence of toxicity warrant re-evaluation. © 2020 Elsevier Ltd
英文关键词Aromatic hydrocarbons; Coral; Crude oil; Deepsea toxicity; Dispersant; Shrimp
语种英语
scopus关键词Biomimetics; Toluene; Toxicity; 2-methylnaphthalene; Cold-water corals; Lophelia pertusa; Passive sampling; Predictive models; Target lipid models; Total petroleum hydrocarbons; Water accommodated fractions; Crude oil; 2 methylnaphthalene; aromatic hydrocarbon; dispersant; petroleum; petroleum derivative; phenanthrene; toluene; aromatic hydrocarbon; coral; crude oil; crustacean; deep sea; dispersant; mortality; pollution tolerance; polyp; toxicity test; acute toxicity; Article; biomimetic extraction; concentration (parameter); controlled study; coral; ecotoxicity; extraction; Lophelia pertusa; nonhuman; Pandalus borealis; prediction; sensitivity analysis; species comparison; toxicity testing; animal; Anthozoa; oil spill; Pandalidae; water pollutant; Anthozoa; Decapoda (Crustacea); Lophelia pertusa; Pandalus borealis; Scleractinia; Animals; Anthozoa; Pandalidae; Petroleum; Petroleum Pollution; Water Pollutants, Chemical
来源期刊Marine Pollution Bulletin
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/148910
作者单位Akvaplan-niva, Fram Centre, Tromsø, Troms, Norway; ExxonMobil Biomedical Sciences, Spring, TX, United States; Centre of Documentation, Research and Experimentation on Accidental Water Pollution (Cedre), Brest, France; Chevron Energy Technology, Houston, TX, United States; Department of Biology and Marine Biology, University of North Carolina, Wilmington, NC, United States; Department of Environmental and Molecular Toxicology, Oregon State University, Corvallis, OR, United States; Department of Biology, Elon University, Elon, NC, United States
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Bytingsvik J.,Parkerton T.F.,Guyomarch J.,et al. The sensitivity of the deepsea species northern shrimp (Pandalus borealis) and the cold-water coral (Lophelia pertusa) to oil-associated aromatic compounds; dispersant; and Alaskan North Slope crude oil[J],2020,156.
APA Bytingsvik J..,Parkerton T.F..,Guyomarch J..,Tassara L..,LeFloch S..,...&Camus L..(2020).The sensitivity of the deepsea species northern shrimp (Pandalus borealis) and the cold-water coral (Lophelia pertusa) to oil-associated aromatic compounds; dispersant; and Alaskan North Slope crude oil.Marine Pollution Bulletin,156.
MLA Bytingsvik J.,et al."The sensitivity of the deepsea species northern shrimp (Pandalus borealis) and the cold-water coral (Lophelia pertusa) to oil-associated aromatic compounds; dispersant; and Alaskan North Slope crude oil".Marine Pollution Bulletin 156(2020).
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