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首页> 外文期刊>Environmental toxicology and chemistry >PAHs, NITRO-PAHs, HOPANES, AND STERANES IN LAKE TROUT FROM LAKE MICHIGAN
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PAHs, NITRO-PAHs, HOPANES, AND STERANES IN LAKE TROUT FROM LAKE MICHIGAN

机译:密西根湖鳟鱼中的PAHs,硝基PAHs,肝素和甾烷

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The present study examines concentrations and risks of polycyclic aromatic hydrocarbons (PAHs), nitro-PAHs (NPAHs), steranes, and hopanes in lake trout collected in Lake Michigan. A total of 74 fish were collected in 2 seasons at 3 offshore sites. The total PAH concentration (∑_9PAH) in whole fish ranged from 223 pg/g to 1704 pg/g wet weight, and PAH concentrations and profiles were similar across season, site, and sex. The total NPAH (∑_9NPAH) concentrations ranged from 0.2 pg/g to 31 pg/g wet weight, and carcinogenic compounds, including 1-nitropyrene and 6-nitrochrysene, were detected. In the fall, NPAH concentrations were low at the Illinois site (0.2-0.5 pg/g wet wt), and site profiles differed considerably; in the spring, concentrations and profiles were similar across sites, possibly reflecting changes in fish behavior. In the fall, the total sterane (∑_5Sterane) and total hopane (∑_2Hopane) levels reached 808 pg/g and 141 pg/g wet weight, respectively, but concentrations in the spring were 10 times lower. Concentrations in eggs (fall only) were on the same order of magnitude as those in whole fish. These results demonstrate the presence of target semivolatile organic compounds in a top predator fish, and are consistent with PAH biodilution observed previously. Using the available toxicity information for PAHs and NPAHs, the expected cancer risk from consumption of lake trout sampled are low. However, NPAHs contributed a significant portion of the toxic equivalencies in some samples. The present study provides the first measurements of NPAHs in freshwater fish, and results suggest that additional assessment is warranted.
机译:本研究检查了密歇根湖中鳟鱼中多环芳烃(PAHs),硝基PAHs(NPAHs),甾烷和hop烷的浓度和风险。在2个季节中,在3个近海站点共采集了74条鱼。整条鱼的总PAH浓度(∑_9PAH)湿重为223 pg / g至1704 pg / g,并且在不同季节,不同地点和不同性别之间,PAH浓度和分布情况相似。 NPAH(∑_9NPAH)的总浓度为0.2 pg / g至31 pg / g湿重,并检测到致癌化合物,包括1-硝基py和6-硝基ch。在秋天,伊利诺伊州的NPAH浓度很低(0.2-0.5 pg / g湿重),并且场地概况差异很大。在春季,各个地点的浓度和剖面相似,可能反映了鱼类行为的变化。秋天,总固烷(∑_5Sterane)和总hop烷(∑_2Hopane)的湿重分别达到808 pg / g和141 pg / g湿重,但春季的浓度要低10倍。卵中的浓度(仅下降)与整条鱼相同。这些结果证明目标捕食鱼类中存在目标半挥发性有机化合物,并且与先前观察到的PAH生物稀释相一致。使用PAHs和NPAHs的可用毒性信息,食用湖鳟鱼的预期癌症风险很低。但是,在某些样品中,NPAHs的毒性当量贡献很大。本研究提供了淡水鱼中NPAH的首次测量,结果表明需要进行额外的评估。

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