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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Distribution of sea-air CO2 fluxes in the Patagonian Sea: Seasonal, biological and thermal effects
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Distribution of sea-air CO2 fluxes in the Patagonian Sea: Seasonal, biological and thermal effects

机译:巴塔哥拉那海域海空中二氧化碳通量的分布:季节性,生物和热效应

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摘要

Sea-air CO2 fluxes (FCO2) in the Patagonian Sea (PS) were studied using observations collected in 2000-2006. Based on the PS frontal structures and the thermal and biological contributions to FCO2 we present a regional subdivision between distinct regimes that provide new insights on the processes that control these fluxes. The coastal regime (CR) is a net source of atmospheric CO2 (4.9 x 10(-3) mol m(-2) d(-1)) while the open shelf regime (SHR) is a net CO2 sink (-6.0 x 10(-3) mol m(-2) d(-1)). The interface between these two regions closely follows the location of along-shore fronts. In addition, based on the nature of the processes that drive the FCO2, the PS is subdivided between northern (NR) and southern (SR) regions. Both, NR and SR are CO2 sinks, but the CO2 uptake is significantly higher in NR (-6.4 x 10(-3) mol m(-2) d(-1)) than in SR (-0.5 x 10(-3) mol m(-2) d(-1)). The data reveal a strong seasonality in FCO2. The mean CO2 capture throughout the PS in austral spring is -5.8 x 10(-3) mol m(-2) d(-1), reaching values lower than -50 x 10(-3) mol m(-2) d(-1) in NR, while in winter FCO2 is close to equilibrium in SR. The analysis of the biological and thermal effects (BE and TE, respectively) on seasonal pCO(2) variability indicates that regions of CO2 emission are dominated by the TE while regions of CO2 uptake are dominated by the BE. Our results indicate that the biological pump is the dominant process determining the sea-air CO2 flux in the PS.
机译:在2000-2006中收集的观察结果研究了巴塔哥数(PS)中的海域CO2助熔剂(FCO2)。基于PS正面结构和对FCO2的热和生物贡献,我们在不同的制度之间提供了一个区域细分,为控制这些通量的过程提供新的见解。沿海政权(CR)是大气的净来源(4.9 x 10(-3)mol m(-2)d(-1)),而开放式货架制度(shr)是净co2水槽(-6.0 x 10(-3)mol m(-2)d(-1))。这两个地区之间的界面紧密遵循沿着岸边的位置。另外,基于驱动FCO2的过程的性质,PS在北部(NR)和南部(SR)区域之间细分。 NR和Sr都是CO2水槽,但NR中的CO2摄取显着高于SR中的(-6.4×10(-3)mol m(-2)d(-1))(-0.5×10(-3 )mol m(-2)d(-1))。数据在FCO2中显示出强烈的季节性。南部弹簧的平均二氧化碳捕获为-5.8×10(-3)mol m(-2)d(-1),达到低于-50×10(-3)mol m(-2)d的值(-1)在NR中,在冬季FCO2近于SR的平衡。对季节性PCO(2)变异性的生物和热效应(分别)的分析表明二氧化碳排放区域由TE主导,而CO2摄取的区域由BE主导。我们的结果表明,生物泵是确定PS中海空气CO2通量的主导过程。

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