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Impacts of Aerosol Copper on Marine Phytoplankton: A Review

机译:气溶胶铜对海洋浮游植物的影响:综述

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Atmospheric deposition brings both nutrients and toxic components to the surface ocean, resulting in important impacts on phytoplankton. Field and lab studies have been done on the iron (Fe) fertilization on marine phytoplankton. However, studies on other trace metals are limited. Both bioassay experiments and field observations have suggested that aerosols with high copper (Cu) concentrations can negatively affect the primary productivity and change phytoplankton community structure. Note that with increasing human activities and global environmental changes (e.g., ocean acidification, warming, deoxygenation, etc.), the input of aerosol Cu could exceed toxicity thresholds at certain times or in some sensitive oceanic regions. Here, we provide a comprehensive review on aerosol Cu and marine phytoplankton studies by summarizing (1) physiological effects and toxicity thresholds of Cu to various phytoplankton taxa, (2) interactions between Cu and other metals and major nutrients, and (3) global distribution of surface seawater Cu and atmospheric Cu. We suggest that studies on aerosols, seawater chemistry, and phytoplankton should be integrated for understanding the impacts of aerosol Cu on marine phytoplankton, and thereafter the air–sea interaction via biogeochemical processes.
机译:大气沉积将营养物质和有毒成分带到海洋表层,对浮游植物产生重要影响。已经对海洋浮游植物的铁(Fe)施肥进行了现场和实验室研究。但是,对其他微量金属的研究是有限的。生物测定实验和现场观察均表明,高浓度铜(Cu)的气溶胶会负面影响初级生产力并改变浮游植物群落结构。请注意,随着人类活动的增加和全球环境变化(例如,海洋酸化,变暖,脱氧等),在某些时候或某些敏感海洋区域,气溶胶铜的输入可能超过毒性阈值。在这里,我们通过总结(1)铜对各种浮游植物类群的生理效应和毒性阈值,(2)铜与其他金属和主要养分之间的相互作用以及(3)全球分布,对气溶胶铜和海洋浮游植物的研究提供了全面的综述。的表层海水铜和大气铜。我们建议应综合进行气溶胶,海水化学和浮游植物的研究,以了解气溶胶Cu对海洋浮游植物的影响,以及随后通过生物地球化学过程进行的海-海相互作用。

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