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首页> 外文期刊>Journal of marine systems: journal of the European Association of Marine Sciences and Techniques >Monthly CO2 at A4HDYD station in a productive shallow marginal sea (Yellow Sea) with a seasonal thermocline: Controlling processes
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Monthly CO2 at A4HDYD station in a productive shallow marginal sea (Yellow Sea) with a seasonal thermocline: Controlling processes

机译:在季节性季节性热跃层中,处于生产性边缘浅海(黄海)的A4HDYD站的每月CO2:控制过程

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Based upon 21 field surveys conducted from March 2011 to November 2013, monthly variation of carbon dioxide partial pressure (pCO(2)) and other carbon system parameters were investigated for the first time (to our knowledge) at A4HDYD station (38 degrees 40'N, 122 degrees 10'E) located in the North Yellow Sea, a region with a seasonal thermocline. Surface pCO(2) was undersaturated from March to May and nearly in equilibrium with the atmosphere from June to August. During September and November, pCO(2) declined to a lower level than that from June to August, but reached the highest level in December. In contrast, pCO(2) declined to atmospheric CO2 levels in February. Overall, the study area was a net CO2 sink at a rate of 0.85 +/- 0.59 mol C m(-2) yr(-1). The underlying processes governing the variation of pCO(2) were also examined. In general, temperature had an important influence on the monthly variation of pCO(2), but its effect was counterbalanced by biological production in spring and vertical mixing in early winter. Our study indicated that dynamic mechanism studies based on high temporal resolution observations are urgently needed to understand the complexity of the carbon cycle and detect biogeochemical changes or ecosystem responses to climate change on continental margins. (C) 2016 Elsevier B.V. All rights reserved.
机译:根据2011年3月至2013年11月进行的21次现场调查,首次(据我们所知)在A4HDYD站(38度40英尺)调查了二氧化碳分压(pCO(2))和其他碳系统参数的月变化。位于北黄海(N,122度10'E),这是一个具有季节性高温跃迁的区域。 3月至5月表面pCO(2)饱和不足,6月至8月几乎与大气平衡。在9月和11月期间,pCO(2)的水平低于6月至8月的水平,但在12月达到最高水平。相比之下,pCO(2)在二月份下降到大气中的二氧化碳水平。总体而言,研究区域为净二氧化碳汇,速率为0.85 +/- 0.59 mol C m(-2)yr(-1)。控制pCO(2)变化的基本过程也进行了检查。通常,温度对pCO(2)的月变化有重要影响,但春季的生物生产和冬季初的垂直混合抵消了温度的影响。我们的研究表明,迫切需要基于高时间分辨率观测值的动力机制研究,以了解碳循环的复杂性并检测大陆边缘的生物地球化学变化或生态系统对气候变化的响应。 (C)2016 Elsevier B.V.保留所有权利。

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