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首页> 外文期刊>Oceanographic Literature Review >Incorporating the stable carbon isotope 13C in the ocean biogeochemical component of the Max Planck Institute Earth System Model
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Incorporating the stable carbon isotope 13C in the ocean biogeochemical component of the Max Planck Institute Earth System Model

机译:在最大普朗克研究所地球系统模型的海洋生物地球化学成分中掺入稳定的碳同位素13c

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摘要

The stable carbon isotopic composition (δ13C) is an important variable to study the ocean carbon cycle across different times-cales. We include a new representation of the stable carbon isotope 13C into the HAMburg Ocean Carbon Cycle model (HAMOCC), the ocean biogeochemical component of the Max Planck Institute Earth System Model (MPI-ESM). 13C is explicitly resolved for all oceanic carbon pools considered. We account for fractionation during air-sea gas exchange and for biological fractionation μp associated with photosynthetic carbon fixation during phytoplankton growth. We examine two μp parameterisations of different complexity: μpPopp varies with surface dissolved CO_2 concentration , while μpLaws additionally depends on local phytoplankton growth rates . When compared to observations of δ13C of dissolved inorganic carbon (DIC), both parameterisations yield similar performance. However, with regard to δ13C in paniculate organic carbon (POC) μpPopp shows a considerably improved performance compared to μpLaws. This is because μpLaws produces too strong a preference for 12C, resulting in δ13CPOC that is too low in our model. The model also well reproduces the global oceanic anthropogenic CO2 sink and the oceanic 13C Suess effect, i.e. the intrusion and distribution of the isotopically light anthropogenic CO2 in the ocean. The satisfactory model performance of the present-day oceanic δ13C distribution using μpPopp and of the anthropogenic CO2 uptake allows us to further investigate the potential sources of uncertainty of the approach for estimating the oceanic 13C Suess effect, derived the first global oceanic 13C Suess effect estimate based on observations. They have noted a potential underestimation, but their approach does not provide any insight about the cause. By applying the approach to the model data we are able to investigate in detail potential sources of underestimation of the 13C Suess effect. Based on our model we find underestimations of the 13C Suess effect at 200g€m by 0.24g€‰ in the Indian Ocean, 0.21g€‰ in the North Pacific, 0.26g€‰ in the South Pacific, 0.1g€‰ in the North Atlantic and 0.14g€‰ in the South Atlantic. We attribute the major sources of underestimation to two assumptions in the approach: the spatially uniform preformed component of δ13CDIC in year 1940 and the neglect of processes that are not directly linked to the oceanic uptake and transport of chlorofluorocarbon-12 (CFC-12) such as the decrease in δ13CPOC over the industrial period. The new 13C module in the ocean biogeochemical component of MPI-ESM shows satisfying performance. It is a useful tool to study the ocean carbon sink under the anthropogenic influences, and it will be applied to investigating variations of ocean carbon cycle in the past.
机译:稳定的碳同位素组合物(δ13C)是研究海洋碳循环跨不同时序的重要变量。我们包括稳定的碳同位素13c进入汉堡海洋碳循环模型(Hamocc),Max Planck Intrace系统模型(MPI-ESM)的海洋生物地球化学成分的新表示。对于考虑的所有海洋碳池明确解决了13C。我们考虑了在空气海气交换期间的分馏和与浮游植物生长期间与光合碳固定相关的生物分级μp。我们研究了不同复杂性的两个μP参数:μppopp随表溶解的CO_2浓度而变化,而μpraws还取决于局部浮游植物生长速率。与溶解无机碳(DIC)的δ13C的观察相比,两个参数化产生类似的性能。然而,关于容量的有机碳(POC)μPPOPP的Δ13C显示出与μLAW相比的显着改善的性能。这是因为μlaws产生的偏好太强了12℃,导致我们模型的Δ13cpoc太低。该模型也良好地再现了全球海洋人为CO2水槽和海洋13C级疗效,即海洋中同位素轻质性二氧化碳的入侵和分布。使用μPPOPP和人为CO2摄取的本今海洋δ13C分布的令人满意的模型性能使我们能够进一步研究估计海洋13C级疗效的方法的潜在不确定来源,从而衍生出第一款全球海洋13C精选效应估计基于观察。他们注意到潜在的低估,但他们的方法并没有向事业提供任何见解。通过将方法应用于模型数据,我们能够详细调查低估13C级效果的潜在来源。基于我们的型号,我们发现在印度洋的0.24g€‰200g€m的13c级精药效果低于0.24g,北太平洋0.21g€‰在南太平洋上0.26g€‰,0.1g€‰北大西洋和0.14g€‰在南大西洋。我们将低估的主要来源归因于该方法的两个假设:1940年Δ13CDIC的空间均匀预先形成的组分和忽视与氯氟烃-12(CFC-12)的海洋摄取和运输没有直接相关的过程随着工业期间δ13CPoc的降低。 MPI-ESM海洋生物地球化学成分中的新13C模块表现出满意的性能。它是一种在人为影响下研究海洋碳汇的有用工具,它将应用于过去的海洋碳循环变化。

著录项

  • 来源
    《Oceanographic Literature Review》 |2021年第9期|1923-1923|共1页
  • 作者

    B. Liu; K. D. Six; T. Ilyina;

  • 作者单位

    Ocean in the Earth System Max Planck Institute for Meteorology Hamburg Germany;

    Ocean in the Earth System Max Planck Institute for Meteorology Hamburg Germany;

    Ocean in the Earth System Max Planck Institute for Meteorology Hamburg Germany;

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  • 正文语种 eng
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