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The full annual carbon balance of a subtropical coniferous plantation is highly sensitive to autumn precipitation

机译:亚热带针叶人工林的全年碳平衡对秋季降水高度敏感

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摘要

Deep understanding of the effects of precipitation on carbon budgets is essential to assess the carbon balance accurately and can help predict potential variation within the global change context. Therefore, we addressed this issue by analyzing twelve years (2003–2014) of observations of carbon fluxes and their corresponding temperature and precipitation data in a subtropical coniferous plantation at the Qianyanzhou (QYZ) site, southern China. During the observation years, this coniferous ecosystem experienced four cold springs whose effects on the carbon budgets were relatively clear based on previous studies. To unravel the effects of temperature and precipitation, the effects of autumn precipitation were examined by grouping the data into two pools based on whether the years experienced cold springs. The results indicated that precipitation in autumn can accelerate the gross primary productivity (GPP) of the following year. Meanwhile, divergent effects of precipitation on ecosystem respiration (Re) were found. Autumn precipitation was found to enhance Re in normal years but the same regulation was not found in the cold-spring years. These results suggested that for long-term predictions of carbon balance in global climate change projections, the effects of precipitation must be considered to better constrain the uncertainties associated with the estimation.
机译:深入了解降水对碳预算的影响对于准确评估碳平衡至关重要,并有助于预测全球变化背景下的潜在变化。因此,我们通过分析在中国南部千烟洲(QYZ)站点的亚热带针叶林中十二年(2003-2014年)的碳通量观测值及其相应的温度和降水数据来解决此问题。在观测年中,这个针叶生态系统经历了四个冷泉,根据先前的研究,它们对碳预算的影响相对明显。为了揭示温度和降水的影响,根据年份是否经历了冷泉,通过将数据分组到两个池中来检查秋季降水的影响。结果表明,秋季的降水可以加速第二年的总初级生产力(GPP)。同时,发现了降水对生态系统呼吸(Re)的不同影响。在正常年份,发现秋季降水增强了稀土元素的含量,但在冷泉年份未发现相同的规律。这些结果表明,对于全球气候变化预测中的碳平衡的长期预测,必须考虑降水的影响,以更好地限制与估算有关的不确定性。

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