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Nitrogen uptake dynamics in landfast sea ice of the Chukchi Sea

机译:楚科奇海陆上海冰中的氮吸收动态

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The coastal Chukchi Sea has a particularly productive landfast ice ecosystem but is currently lacking direct measurements of nitrogen (N) cycling within the ice. Using stable isotopic tracers, we measured uptake and regeneration of ammonium and nitrate, along with primary and secondary production at three depths within landfast sea ice in the Chukchi Sea near Barrow, Alaska, during April 2011 and January 2012. These are the first data of N uptake and regeneration rates in landfast Arctic sea ice during spring and winter. Both inorganic and organic nutrient concentrations in the ice were generally higher than the water column, with the exception of phosphate, which may have limited production in certain sections of ice. Primary production at all ice depths was higher than the water column during April, but below the detection limit in January. Bacterial production in the bottom ice (0-10 cm from the ice-water interface) was consistently higher than the water column across seasons. Absolute uptake of ammonium was highest in the bottom ice and higher than absolute uptake of nitrate at all depth horizons except in the upper ice (30-40 cm from ice-water interface) during January. While N uptake rates in the ice were higher than the water column, nitrification rates were lower. Regeneration of ammonium and nitrate far exceeded uptake within the ice. The magnitude of N uptake and regeneration rates in landfast ice highlights the importance of the biological sea ice community to the region.
机译:沿海楚科奇海有一个特别富饶的陆生冰生态系统,但目前缺乏对冰中氮(N)循环的直接测量。使用稳定的同位素示踪剂,我们测量了2011年4月至2012年1月在阿拉斯加巴罗附近的楚科奇海陆上海冰内三个深度的铵盐和硝酸盐的吸收和再生以及初级和次级生产。这些是第一批数据。春季和冬季,陆地陆地北极海冰中的氮吸收和再生速率。冰中的无机和有机养分浓度通常都高于水柱,但磷酸盐除外,磷酸盐可能会限制某些冰块的产量。在四月,所有冰深处的初级产量都高于水柱,但在一月份低于探测极限。在整个季节中,底部冰层(距冰水界面0-10厘米)的细菌产量始终高于水柱。一月份,底部冰中铵的绝对摄入量最高,在所有深度范围内都高于硝酸盐的绝对摄入量,除了上部冰(距冰水界面30-40 cm)外。尽管冰中的氮吸收率高于水柱,但硝化率却较低。铵和硝酸盐的再生远远超过了冰中的吸收量。陆冰中氮的吸收和再生速率的大小凸显了生物海冰群落对该地区的重要性。

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