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Effects of oil spill response technologies on the physiological performance of the Arctic copepod Calanus glacialis

机译:漏油响应技术对北极蛋白酶Calanus Glacialis的生理性能的影响

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摘要

A mesocosm study with oil in ice was performed in Van Mijenfjorden in Svalbard to compare effects of the oil spill responses (OSR) in situ burning, chemical dispersion and natural attenuation on the physiological performance of the Arctic copepod Calanus glacialis. Seawater collected from the mesocosms in winter and spring was used in laboratory incubation experiments, where effects on fecal pellet production, egg production and hatching success were investigated over a period of 14 days. Polycyclic aromatic hydrocarbon (PAH) seawater concentrations were lowest in winter. Brine channel formation in spring resulted in an 18 times increase in PAH concentration in the chemical dispersion treatment (1.67 mu g L-1), and a 3 fold increase in the natural attenuation (0.36 mu g L-1) and in situ burning (0.04 mu g L-1) treatments. The physiological performance of female C. glacialis was unaffected by the PAH seawater concentrations. However, a higher mortality and deformity of nauplii was observed in the chemical dispersion treatment, highlighting the importance of considering secondary effects on next generation in future environmental risk assessment of OSR. This study shows that during the ice-covered period, chemical dispersion of oil spills leads to higher PAH exposure than natural attenuation and in situ burning, with potential consequences for recruitment of Arctic copepods.
机译:在斯瓦尔巴公务员van Mijenfjorden进行了冰中的石油中的Mesocosm研究,以比较石油泄漏反应(OSR)原位燃烧,化学分散和自然衰减对北极蛋白酶糖醛葡萄球菌的生理性能的影响。在冬季和春天中从中科姆斯收集的海水被用于实验室孵化实验,其中在14天的时间内研究了对粪便颗粒生产,鸡蛋生产和孵化成功的影响。多环芳烃(PAH)海水浓度在冬季最低。春天的盐水通道形成导致化学分散处理(1.67μgL-1)中PAH浓度增加18倍,并且自然衰减(0.36μgl-1)增加3倍,原位燃烧( 0.04 mu g l-1)治疗。女性C. glacialis的生理性能不受PAH海水浓度的影响。然而,在化学分散治疗中观察到Nauplii的较高死亡率和畸形,突出了考虑对OSR未来环境风险评估中下一代的二次产生的重要性。本研究表明,在冰盖期间,油溢出的化学分散率比自然衰减和原位燃烧导致更高的PAH暴露,具有促进北极桡足蛋白酶的潜在后果。

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