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Impact of climate change on the primary production and related biogeochemical cycles in the coastal and sea ice zone of the Southern Ocean

机译:气候变化对南海沿海海洋冰区初级生产及相关生物地球化学循环的影响

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Climate change in the Southern Hemisphere has exerted impact on the primary production in the Southern Ocean (SO). Using a recently released reanalysis dataset on global biogeochemistry, a comprehensive analysis was conducted on the complex biogeochemical seasonal cycle and the impact of climate change with a focus in areas within the meridional excursion of the sea ice boundary-coastal and continental shelf zone (CCSZ) and seasonal sea ice zone (SIZ).The seasonal cycles of primary production and related nutrients are closely linked with the seasonal changes in sea ice and sea surface temperatures. As sea ice retreats and allows energy and gas exchange across the sea surface, phytoplankton growth is initiated, consuming accumulated nutrients within the shallow depth of ~40 m. The seasonal evolutions of physical, biological and chemical variables show both spatial and temporal consistency with each other. Climate change has altered the timing and amplitude of the seasonal cycle. While primary production has generally increased along with an intensified uptake of CO_2, some areas show a reduction in production (e.g., Prydz Bay, eastern Indian Ocean). In the CCSZ, increased iron utilization and light availability allowed production to be increased. However, the mechanism by which these factors are altered varies from one location to another, including changes in sea ice cover, surface stratification, and downwelling/upwelling. In the SIZ, where iron is generally a limiting factor, iron supply is a key driver of changes in primary production regardless of other nutrients. There is a clear influence of climatic change on the biogeochemical cycle although the signal is still weak.
机译:南半球气候变化对南海(SO)的主要生产产生了影响。在全球生物地球化学上使用最近发布的Reanalysicate数据集,在复杂的生物地球化学季节性周期中进行了综合分析,气候变化对海冰沿海和大陆架和大陆架子区(CCSZ)的经络范围内的焦点影响和季节性海冰区(SIZ)。初级生产和相关营养素的季节性周期与海冰和海上表面温度的季节变化密切相关。随着海冰撤退并允许穿过海面的能量和天然气交换,开始植物生长,消耗浅度深度内的累积营养素〜40米。物理,生物学和化学变量的季节性演变,彼此相互呈空间和时间。气候变化改变了季节性周期的时序和幅度。虽然初级产量通常随着CO_2的强化摄取而增加,但一些领域展示了生产的减少(例如,Prydz湾,东印度洋)。在CCSZ中,增加的铁利用率和光可用性允许增加生产。然而,这些因素被改变的机制从一个位置变化到另一个位置,包括海冰覆盖,表面分层和贫困/升值的变化。在Siz中,铁通常是一个限制因素,铁供应是无论其他营养素如何的主要生产变化的关键驱动因素。尽管信号仍然薄弱,但对生物地球化学循环有明显的影响。

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