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Coupling of surface pCO(2) and dissolved oxygen in the northern South China Sea: impacts of contrasting coastal processes

机译:南海北部的表面pCO(2)与溶解氧的耦合:沿海过程对比的影响

摘要

We examined the relationship between CO2 partial pressure (pCO(2)) and dissolved oxygen (DO) based on a cruise conducted in July 2004 to the northern South China Sea (111 degrees-118 degrees E 18 degrees-23 degrees N), spanning from estuarine plume, coastal upwelling and deep basin areas. Distinct relationships between pCO(2) and DO saturation were identified in different regimes. In coastal upwelling areas and the Pearl River estuary, biological drawdown of pCO(2) and production of O-2 were simultaneously observed. The two properties were coupled with each other primarily via photosynthesis and respiration. The stoichiometric relationship of the two properties however, was quite different in these two environments due to different values of the Revelle factor. In the offshore areas, apart from the estuary and upwelling, the dynamics of pCO(2) and DO were mainly influenced by air-sea exchange during water mixing. Given the fact that air-sea re-equilibration of O-2 is much faster than that of CO2, the observed pCO(2)-DO relationship deviated from that of the theoretical prediction based on the Redfield relationship in the offshore areas. Although this study is subject to the limited temporal and spatial coverage of sampling, we have demonstrated a simple procedure to evaluate the community metabolic status based on a combination of high-resolution surface pCO(2) and DO measurements, which may have applicability in many coastal systems with a large gradient of changes in their physical and biogeochemical conditions.
机译:我们基于2004年7月对南海北部(111度至118度E 18度至23度N)进行的巡视,研究了CO2分压(pCO(2))与溶解氧(DO)之间的关系。来自河口羽流,沿海上升流和深盆地地区。 pCO(2)和溶解氧饱和度之间的不同关系被确定在不同的制度。在沿海上升流地区和珠江口,同时观察到pCO(2)的生物学下降和O-2的产生。这两个属性主要通过光合作用和呼吸作用相互耦合。但是,由于Revelle因子的值不同,在这两种环境中,两种性质的化学计量关系非常不同。在近海地区,除了河口和上升流以外,pCO(2)和DO的动力学主要受水混合过程中海气交换的影响。考虑到O-2的气海再平衡要比CO2快得多,因此观察到的pCO(2)-DO关系偏离了基于Redfield关系的理论预测值。尽管此研究受到有限的时间和空间采样的限制,但我们已经展示了一种基于高分辨率表面pCO(2)和DO测量的组合来评估社区代谢状态的简单程序,该方法可能在许多方面具有适用性物理和生物地球化学条件发生较大变化的沿海系统。

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