首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Impact of the 2015/2016 El Nino on the terrestrial carbon cycle constrained by bottom-up and top-down approaches
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Impact of the 2015/2016 El Nino on the terrestrial carbon cycle constrained by bottom-up and top-down approaches

机译:2015/2016 EL NINO对自下而上和自上而下方法限制的陆地碳循环的影响

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Evaluating the response of the land carbon sink to the anomalies in temperature and drought imposed by El Nino events provides insights into the present-day carbon cycle and its climate-driven variability. It is also a necessary step to build confidence in terrestrial ecosystems models' response to the warming and drying stresses expected in the future over many continents, and particularly in the tropics. Here we present an in-depth analysis of the response of the terrestrial carbon cycle to the 2015/2016 El Nino that imposed extreme warming and dry conditions in the tropics and other sensitive regions. First, we provide a synthesis of the spatiotemporal evolution of anomalies in net land-atmosphere CO2 fluxes estimated by two in situ measurements based on atmospheric inversions and 16 land-surface models (LSMs) from TRENDYv6. Simulated changes in ecosystem productivity, decomposition rates and fire emissions are also investigated. Inversions and LSMs generally agree on the decrease and subsequent recovery of the land sink in response to the onset, peak and demise of El Nino conditions and point to the decreased strength of the land carbon sink: by 0.4-0.7 PgC yr(-1) (inversions) and by 1.0 PgC yr(-1) (LSMs) during 2015/2016. LSM simulations indicate that a decrease in productivity, rather than increase in respiration, dominated the net biome productivity anomalies in response to ENSO throughout the tropics, mainly associated with prolonged drought conditions.
机译:评估土地碳汇与EL NINO事件强加的温度和干旱的异常的响应为本日碳循环和气候驱动的变异性提供了见解。它对在许多大陆的未来预期的陆地生态系统模型对预期的变暖和干燥应力的反应来说,这也是一个必要的步骤,特别是在热带地区。在这里,我们对2015/2016年陆地碳循环的响应进行了深入的分析,这在热带和其他敏感区域中强加极度变暖和干燥条件。首先,我们基于大气反转和来自TrendyV6的16个陆地表面模型(LSM)的两种原位测量估计的净陆地气氛CO2助势中异常的时空演变的合成。还研究了生态系统生产力,分解率和消防排放的模拟变化。反转和LSM通常达成征收陆地沉积的降低和随后恢复,响应于EL NINO条件的发病,峰值和消亡,并指向土地碳水槽的降低:0.4-0.7 PGC YR(-1) (反转)和1.0 PGC YR(-1)(LSMS)在2015/2016年期间。 LSM模拟表明,生产率降低,而不是呼吸增加,以整个热带地带的呼应为主,主导净生物群系生产率异常,主要与长期干旱条件相关。

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