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首页> 外文期刊>Frontiers in Marine Science >Controls over Ocean Mesopelagic Interior Carbon Storage (COMICS): Fieldwork, Synthesis, and Modeling Efforts
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Controls over Ocean Mesopelagic Interior Carbon Storage (COMICS): Fieldwork, Synthesis, and Modeling Efforts

机译:控制海洋中古海洋内部碳存储(COMICS):实地考察,综合和建模工作

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The ocean’s biological carbon pump plays a central role in regulating atmospheric CO2 levels. In particular, the depth at which sinking organic carbon is broken down and respired in the mesopelagic zone is critical, with deeper remineralisation resulting in greater carbon storage. Until recently, however, a balanced budget of the supply and consumption of organic carbon in the mesopelagic had not been constructed in any region of the ocean, and the processes controlling organic carbon turnover are still poorly understood. Large-scale data syntheses suggest that a wide range of factors can influence remineralisation depth including upper-ocean ecological interactions, and interior dissolved oxygen concentration and temperature. However these analyses do not provide a mechanistic understanding of remineralisation, which increases the challenge of appropriately modelling the mesopelagic carbon dynamics. In light of this, the UK Natural Environment Research Council has funded a programme with this mechanistic understanding as its aim, drawing targeted fieldwork right through to implementation of a new parameterisation for mesopelagic remineralisation within an IPCC class global biogeochemical model. The Controls over Ocean Mesopelagic Interior Carbon Storage (COMICS) programme will deliver new insights into the processes of carbon cycling in the mesopelagic zone and how these influence ocean carbon storage. Here we outline the programme’s rationale, its goals, planned fieldwork and modelling activities, with the aim of stimulating international collaboration.
机译:海洋的生物碳泵在调节大气中的二氧化碳水平方面发挥着核心作用。特别是,在中弹性地带下沉的有机碳被分解和呼吸的深度至关重要,深层的再矿化作用会导致更大的碳储存。然而,直到最近,在海洋的任何区域都没有建立中生代中层有机碳供求平衡的预算,对控制有机碳周转的过程仍知之甚少。大规模数据综合表明,多种因素可以影响再矿化深度,包括上层海洋生态相互作用,内部溶解氧浓度和温度。然而,这些分析没有提供对再矿化的机械理解,这增加了对中弹性碳动力学进行适当建模的挑战。有鉴于此,英国自然环境研究委员会(UK Natural Environment Research Council)资助了一个以这种机械理解为目标的计划,从IPCC类全球生物地球化学模型中引入针对性的野外工作,直至实施中视再矿化的新参数化。 《海洋中层海洋内部碳储量控制》(COMICS)计划将为中层海洋带的碳循环过程及其对海洋碳储量的影响提供新的见解。在这里,我们概述了该计划的基本原理,目标,计划的实地考察和建模活动,旨在促进国际合作。

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