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Quantitative estimates of sinking sea ice particulate organic carbon based on the biomarker IP25

机译:基于生物标记IP25的沉没海冰颗粒有机碳的定量估计

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摘要

Sea ice-derived particulate organic carbon (iPOC) represents an important contribution of carbon to Arctic ecosystems, yet our ability to obtain realistic quantitative estimates of iPOC outside the sea ice matrix is currently somewhat limited. To address this challenge, we applied a novel approach to quantifying iPOC within the water column under melting sea ice by first measuring the proportion of the sea ice diatom biomarker IP25 within iPOC in bottom ice samples obtained from Resolute Passage during spring 2012. We then compared this value with corresponding values obtained from a time series of water samples. Together, these reflected a period of ice melt and rapid release of iPOC, indicated by changing ice temperature and thickness, in addition to changes in the stable carbon isotope composition and concentration of iPOC, IP25 and chlorophyll a within bottom ice. Estimates of iPOC in seawater were highest (0.15 to 0.22 mg l(-1)) in the upper 2 m, coincident with the reduction of iPOC in sea ice near the beginning of sampling, with iPOC accounting for an estimated 84 to 125% of total POC (tPOC). Collectively, this biomarker approach yielded realistic estimates of %iPOC, both numerically and in the context of melting sea ice following a spring bloom in the Canadian Arctic. We describe some assumptions of this approach and consider the impacts of possible caveats on quantitative estimates of iPOC derived using this methodology.
机译:来自海冰的颗粒有机碳(iPOC)代表了碳对北极生态系统的重要贡献,但是我们目前无法获得海冰基质以外iPOC的现实定量估计值的能力。为了解决这一挑战,我们采用了一种新颖的方法来量化融化海冰下水柱中的iPOC,方法是首先测量2012年春季从Resolute Passage获得的底冰样本中iPOC中海冰硅藻生物标志物IP25的比例。该值与从水样的时间序列中获得的相应值。这些共同反映了一段时间的冰融化和iPOC的快速释放,这通过改变冰的温度和厚度来表示,此外还改变了底部冰中稳定碳同位素组成和iPOC,IP25和叶绿素a的浓度。海水中iPOC的估计值在上部2 m处最高(0.15至0.22 mg l(-1)),与采样开始附近海冰中iPOC的减少相吻合,其中iPOC估计占84%至125%。总POC(tPOC)。总的来说,这种生物标记方法在数字上以及在加拿大北极地区春季开花后海冰融化的背景下,得出了%iPOC的实际估计值。我们描述了此方法的一些假设,并考虑了可能的警告对使用此方法得出的iPOC定量估计的影响。

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