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Marine biological production from in situ oxygen measurements on a profiling float in the subarctic Pacific Ocean

机译:北极亚太平洋太平洋剖面浮标上的原位氧气测量产生的海洋生物

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Evaluating the organic carbon flux from the surface ocean to the interior (the marine biological pump) is essential for predictions of ocean carbon cycle feedback to climate change. One approach for determining these fluxes is to measure the concentration of oxygen in the upper ocean over a seasonal cycle, calculate the net O-2 flux using an upper ocean model, and then use a stoichiometric relationship between oxygen evolved and organic carbon produced. Applying this tracer in a variety of ocean areas over seasonal cycles requires accurate O-2 measurements on autonomous vehicles. Here we demonstrate this approach using an O-2 sensor on a profiling float that is periodically calibrated against atmospheric pO(2). Using accurate data and a model that includes all physical and biological processes influencing oxygen, we determine an annual net community production of 0.7 +/- 0.5 mol Cm-2 yr(-1) in the northeast Pacific Ocean (50 degrees N, 145 degrees W) from June 2012 to June 2013. There is a strong seasonal cycle in net biological oxygen production with wintertime fluxes caused by bubble processes critical to determining the annual flux. Approximately 50% of net autotrophic production during summer months is consumed by net respiration during the winter. The result is a biological pump in the subarctic Pacific Ocean that is less than that determined by similar methods in the subtropics to the south. This estimate is significantly lower than that predicted by satellite remote sensing and global circulation models.
机译:评估从地表海洋到内部(海洋生物泵)的有机碳通量对于预测海洋碳循环对气候变化的反馈至关重要。确定这些通量的一种方法是在一个季节性周期内测量上层海洋中氧气的浓度,使用上层海洋模型计算O-2净通量,然后使用所释放的氧气与产生的有机碳之间的化学计量关系。在季节性周期中将这种示踪剂应用于各种海洋区域时,需要在自动驾驶汽车上进行精确的O-2测量。在这里,我们演示了使用O-2传感器对剖面浮标进行定期校准的方法,该浮标针对大气pO(2)进行了校准。使用准确的数据和包括影响氧气的所有物理和生物过程的模型,我们确定东北太平洋(北纬50度,北纬145度)的年净群落产量为0.7 +/- 0.5 mol Cm-2 yr(-1) W)从2012年6月至2013年6月。生物氧气净产量存在强烈的季节性周期,冬季通量是由气泡过程引起的,这对于确定年通量至关重要。在夏季,大约50%的自养净产量被冬季的净呼吸所消耗。结果是,北极亚太平洋中的生物泵比南方亚热带地区通过类似方法确定的生物泵要少。该估计数大大低于卫星遥感和全球环流模型的预测。

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