首页> 美国卫生研究院文献>Philosophical transactions. Series A Mathematical physical and engineering sciences >Spring–summer net community production new production particle export and related water column biogeochemical processes in the marginal sea ice zone of the Western Antarctic Peninsula 2012–2014
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Spring–summer net community production new production particle export and related water column biogeochemical processes in the marginal sea ice zone of the Western Antarctic Peninsula 2012–2014

机译:2012-2014年南极西部边缘海冰带的春夏季净社区生产新生产颗粒出口和相关的水柱生物地球化学过程

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摘要

New production (New P, the rate of net primary production (NPP) supported by exogenously supplied limiting nutrients) and net community production (NCP, gross primary production not consumed by community respiration) are closely related but mechanistically distinct processes. They set the carbon balance in the upper ocean and define an upper limit for export from the system. The relationships, relative magnitudes and variability of New P (from 15NO3 uptake), O2 : argon-based NCP and sinking particle export (based on the 238U : 234Th disequilibrium) are increasingly well documented but still not clearly understood. This is especially true in remote regions such as polar marginal ice zones. Here we present a 3-year dataset of simultaneous measurements made at approximately 50 stations along the Western Antarctic Peninsula (WAP) continental shelf in midsummer (January) 2012–2014. Net seasonal-scale changes in water column inventories (0–150 m) of nitrate and iodide were also estimated at the same stations. The average daily rates based on inventory changes exceeded the shorter-term rate measurements. A major uncertainty in the relative magnitude of the inventory estimates is specifying the start of the growing season following sea-ice retreat. New P and NCP(O2) did not differ significantly. New P and NCP(O2) were significantly greater than sinking particle export from thorium-234. We suggest this is a persistent and systematic imbalance and that other processes such as vertical mixing and advection of suspended particles are important export pathways.This article is part of the theme issue ‘The marine system of the west Antarctic Peninsula: status and strategy for progress in a region of rapid change’.
机译:新生产(New P,由外部供应的有限养分支持的净初级生产力(NPP)的速率)和净社区生产(NCP,未被社区呼吸消耗的初级生产总值)密切相关,但是在机制上截然不同。他们设定了上层海洋的碳平衡,并定义了从系统中出口的上限。 New P( 15 NO3 吸收),O2:氩NCP和沉降颗粒出口(基于 238)的关系,相对强度和变异性 U: 234 Th不平衡)的文献越来越多,但仍不清楚。在极地边缘冰区等偏远地区尤其如此。在这里,我们提供了一个3年的同时测量数据集,该数据集是在2012-2014年仲夏(1月)沿南极半岛(WAP)大陆架约50个站点进行的。还估计了同一站的硝酸盐和碘化物水柱清单(0-150µm)的季节性净变化。基于库存变化的平均每日费率超过了短期费率测量值。库存估算值相对数量的主要不确定性是确定海冰撤退后生长期的开始。新的P和NCP(O2)没有显着差异。新的P和NCP(O2)明显大于从234号or中沉出的颗粒。我们认为这是一个持续的系统性失衡,其他过程(例如垂直混合和悬浮颗粒的平流)是重要的出口途径。本文是主题``南极西部半岛的海洋系统:现状和发展战略''的一部分在快速变化的地区”。

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