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A uniform pCO2 climatology combining open and coastal oceans

机译:结合开放和沿海海洋的统一PCO2气候学

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In this study, we present the first combined open- and coastal-ocean pCO2 mapped monthly climatology (Landschützer et al., 2020b, https://doi.org/10.25921/qb25-f418, https://www.nodc.noaa.gov/ocads/ oceans/MPI-ULB-SOM_FFN_clim.html, last access: 8 April 2020) constructed from observations collected between 1998 and 2015 extracted from the Surface Ocean CO2 Atlas (SOCAT) database. We combine two neural network-based pCO2 products, one from the open ocean and the other from the coastal ocean, and investigate their consistency along their common overlap areas. While the difference between open- and coastal-ocean estimates along the overlap area increases with latitude, it remains close to 0 μatm globally. Stronger discrepancies, however, exist on the regional level resulting in differences that exceed 10 % of the climatological mean pCO2, or an order of magnitude larger than the uncertainty from state-of-the-art measurements. This also illustrates the potential of such an analysis to highlight where we lack a good representation of the aquatic continuum and future research should be dedicated. A regional analysis further shows that the seasonal carbon dynamics at the coast–open interface are well represented in our climatology. While our combined product is only a first step towards a true representation of both the open-ocean and the coastal-ocean air–sea CO2 flux in marine carbon budgets, we show it is a feasible task and the present data product already constitutes a valuable tool to investigate and quantify the dynamics of the air–sea CO2 exchange consistently for oceanic regions regardless of its distance to the coast.
机译:在这项研究中,我们展示了第一个联合和沿海海洋PCO2映射的月度气候学(Landschützer等,2020B,HTTPS://Doi.org/10.25921/QB25-F418,HTTPS://www.nodc.noaa .gov / ocads /海洋/ mpi-ulb-som_ffn_clim.html,上次访问:4月8日)由1998年至2015年间从Surface Ocean Co2地图集(SoCat)数据库中提取的观察结果构建。我们将两个基于神经网络的PCO2产品组合在一起,一个来自沿海海洋的开阔海洋,并调查它们沿着普通重叠区域的一致性。虽然沿重叠区域的开放和沿海海洋估算之间的差异随纬度而增加,但它在全球范围内保持接近0μATM。然而,强大的差异存在于区域层面,导致差异超过最高型平均PCO2的差异,或者大于最先进的测量的不确定性的数量级。这也说明了这种分析的潜力,以突出我们缺乏水生连续体和未来研究的良好代表应该是专门的。区域分析进一步表明,海岸开放界面的季节性碳动力学在我们的气候学中良好。虽然我们的合并产品只是迈出了海洋碳预算中的开放海洋和沿海海洋海运二氧化碳通量的真实代表的第一步,但我们表明它是一个可行的任务,目前的数据产品已经构成了一个有价值的努力调查和量化空中海洋二氧化碳交易所的动态,无论其与海岸距离如何。

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