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首页> 外文期刊>Biogeosciences >Changes in gross oxygen production, net oxygen production, and air-water gas exchange during seasonal ice melt in Whycocomagh Bay, a Canadian estuary in the Bras d'Or Lake system
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Changes in gross oxygen production, net oxygen production, and air-water gas exchange during seasonal ice melt in Whycocomagh Bay, a Canadian estuary in the Bras d'Or Lake system

机译:在季节性冰融化期间,在Wharcocomagh湾,在胸罩D'或湖泊系统中的加拿大河口季节冰融化期间的氧气生产,净氧生产和空气水源交换变化

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摘要

Sea ice is an important control on gas exchange and primary production in polar regions. We measured net oxygen production (NOP) and gross oxygen production (GOP) using near-continuous measurements of the O2∕Ar gas ratio and discrete measurements of the triple isotopic composition of O2, during the transition from ice-covered to ice-free conditions, in Whycocomagh Bay, an estuary in the Bras d'Or Lake system in Nova Scotia, Canada. The volumetric gross oxygen production was 5.4+2.8-1.6 mmol O2 m?3 d?1, similar at the beginning and end of the time series, and likely peaked at the end of the ice melt period. Net oxygen production displayed more temporal variability and the system was on average net autotrophic during ice melt and net heterotrophic following the ice melt. We performed the first field-based dual tracer release experiment in ice-covered water to quantify air–water gas exchange. The gas transfer velocity at 90 % ice cover was 6 % of the rate for nearly ice-free conditions. Published studies have shown a wide range of results for gas transfer velocity in the presence of ice, and this study indicates that gas transfer through ice is much slower than the rate of gas transfer through open water. The results also indicate that both primary producers and heterotrophs are active in Whycocomagh Bay during spring while it is covered in ice.
机译:海冰是煤气交换和极地地区初级生产的重要控制。我们使用近连续测量O2 / Ar气体比率的近连续测量来测量净氧气生产(NOP)和氧化氧生产(GOP),在从冰覆盖的无冰条件的转变期间,O2的三重同位素组成的离散测量在加拿大新斯科舍省的胸罩D'或湖泊系统中的河口,在Whycocomagh湾。体积粗氧气产量为5.4 + 2.8-1.6 mmol O2 m?3 d?1,在时间序列的开始和结束时相似,并且可能在冰熔化期结束时达到峰值。净氧生产显示了更多的时间变异性,并且系统在冰熔体后平均净自动营养术中的平均净自养,并在冰熔体后净异养。我们在冰盖的水中进行了第一个基于田间的双跟踪释放实验,以量化空气水源交换。气体转移速度> 90%冰盖为几乎无冰条件的速率的6%。已发表的研究显示出冰地存在的气体转移速度的各种结果,这项研究表明,通过冰的气体转移比通过开放水的气体转移速率慢得多。结果还表明,在春天覆盖时,初级生产者和异诊在春季时,在春季时都是活跃的。

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