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首页> 外文期刊>Annals of Forest Science >Freezing-induced loss of carbon uptake in a subtropical coniferous plantation in southern China.
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Freezing-induced loss of carbon uptake in a subtropical coniferous plantation in southern China.

机译:中国南方亚热带针叶人工林的冷冻诱导的碳吸收损失。

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摘要

Context - In January 2008, a freeze in southern China, unprecedented in 50 years, severely affected local subtropical coniferous plantations. Aims - We investigated the freezing-induced loss of carbon uptake in a subtropical coniferous plantation at Qianyanzhou site in southern China. Methods - We used data from eddy covariance observations, field surveys and remote sensing. Results - Field surveys revealed that the trees (especially slash pine, Pinus elliottii) at forest edges and valley banks were susceptible to the freezing weather, and about 6% of trees were severely damaged by glaze ice. The vegetation index showed a phenological lag of about 10 days in 2008 due to the freezing weather. Photosynthesis in 2008 was more sensitive to the freezing weather than was ecosystem respiration, and this fact led to significantly less annual carbon uptake. This uptake loss (~66 gC m-2, 17% of annual uptake) was due to the physical damage caused by glaze ice and physiological injuries caused by low temperatures. With gradual ecosystem recovery over time, the quarterly ratios of ecosystem respiration to photosynthesis in 2008 returned gradually to normal levels. Because of the seasonal variation of footprint biases with monsoon transition, the flux observations possibly overestimated both carbon uptake loss in early 2008 and ecosystem recovery in the following months to some extent.
机译:背景-2008年1月,中国南方发生了50年来前所未有的冰冻,严重影响了当地亚热带针叶树人工林。目的-我们调查了中国南方千烟洲一处亚热带针叶林的冷冻引起的碳吸收损失。方法-我们使用了来自涡度协方差观测,现场调查和遥感的数据。结果-实地调查显示,森林边缘和山谷两岸的树木(特别是阔叶松, Pinus elliottii )易受冰冻天气的影响,约有6%的树木被釉冰严重破坏。由于天气寒冷,植被指数在2008年出现了约10天的物候滞后。与生态系统呼吸相比,2008年的光合作用对寒冷的天气更为敏感,这一事实导致每年的碳吸收量大大减少。这种吸收损失(〜66 gC m -2 ,占年吸收量的17%)是由于釉冰造成的物理损害和低温造成的生理伤害。随着生态系统逐渐恢复,2008年生态系统呼吸与光合作用的季度比率逐渐恢复到正常水平。由于季风过渡过程中足迹偏差的季节性变化,通量观测结果可能在一定程度上高估了2008年初的碳吸收损失和随后几个月的生态系统恢复。

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