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Ice algal assemblages and vertical export of organic matter from sea ice in the Barents Sea and Nansen Basin (Arctic Ocean)

机译:巴伦支海和南森盆地(北冰洋)的海藻冰藻组合和有机物的垂直出口

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Algal communities and export of organic matter from sea ice were studied in the offshore marginal ice zone (MIZ) of the northern Barents Sea and Nansen Basin of the Arctic Ocean north of Svalbard by means of ice cores and short-term deployed sediment traps. The observations cover a total of ten stations within the drifting pack ice, visited over a period of 3 years during the period of ice melt in May and July. Maximum flux of paniculate organic carbon and chlorophyll a from the ice at 1 m depth (1,537 mg C m~(-2) per day and 20 mg Chl a m~(-2) per day) exceeded the flux at 30 m by a factor of 2 during spring, a pattern that was reversed later in the season. Although diatoms dominated the ice-associated algal biomass, flagellates at times revealed similarly high biomass and typically dominated the exported algal carbon. Importance of flagellates to the vertical flux increased as melting progressed, whereas diatoms made the highest contribution during the early melting stage. High export of ice-derived organic matter and phyto-plankton took place simultaneously in the offshore MIZ, likely as a consequence of ice drift dynamics and the mosaic structure of ice-covered and open water characteristic of this region.
机译:利用冰芯和短期部署的沉积物陷阱,研究了北巴伦支海的北部边缘冰区(MIZ)和斯瓦尔巴特群岛以北的北冰洋南森盆地的海冰藻类群落和有机物的出口。观测覆盖了漂流冰块内的总共十个站点,在5月和7月的融冰期间进行了3年的访问。 1 m深度(每天1,537 mg C m〜(-2)和每天20 mg Chl am〜(-2))中来自冰的颗粒状有机碳和叶绿素a的最大通量超过30 m时的通量春季的2分之三,这一模式在本赛季后期被逆转。尽管硅藻在与冰相关的藻类生物质中占主导地位,但鞭毛有时也表现出相似的高生物质,并且通常在出口藻类碳中占主导地位。鞭毛对垂直通量的重要性随着熔化的进行而增加,而硅藻在熔化的早期阶段贡献最大。沿海MIZ地区同时发生了源自冰的有机物和浮游植物的大量出口,这很可能是由于该地区的冰漂移动力学以及冰覆盖和开放水域特征的镶嵌结构所致。

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