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Underestimated effects of low temperature during early growing season on carbon sequestration of a subtropical coniferous plantation

机译:早期生长季节低温对亚热皮饰种植碳依赖季节的低温效应

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The impact of air temperature in early growing season on the carbon sequestration of a subtropical coniferous plantation was discussed through analyzing the eddy flux observations at Qianyanzhou (QYZ) site in southern China from 2003 to 2008. This site experienced two cold early growing seasons (with temperature anomalies of 2–5 °C) in 2005 and 2008, and a severe summer drought in 2003. Results indicated that the low air temperature from January to March was the major factor controlling the inter-annual variations in net carbon uptake at this site, rather than the previously thought summer drought. The accumulative air temperature from January to February showed high correlation (R2=0.970, p0.001) with the annual net ecosystem production (NEP). This was due to the controls of early-month temperature on the plant phenology developing and the growing season length at this subtropical site. The cold spring greatly shortened the growing season length and therefore reduced the carbon uptake period. The eddy flux observations showed a carbon loss of 4.04 g C m?2 per growing-season day at this coniferous forest site. On the other hand, the summer drought also reduced the net carbon uptake strength because the photosynthesis was more sensitive to water deficit stress than the ecosystem respiration. However, the impact of summer drought occurred within a relatively shorter period and the carbon sequestration went back to the normal level once the drought was relieved.
机译:早期生长季节对亚热带种植园碳封存的影响,通过分析2003年至2008年南方黔燕州(QYZ)现场的涡流观测。该网站经历了两种寒冷的早期生长季节( 2005年和2008年的2-5°C的温度异常,2003年是一个严重的夏季干旱。结果表明,1月至3月的低空气温度是控制本网站净碳摄取年间变异的主要因素,而不是以前想到的夏季干旱。 1月至2月的累积空气温度显示出高相关(R2 = 0.970,P0.001),年度净生态系统生产(NEP)。这是由于对植物候选的较早温度的控制,在该亚热带部位的植物候选和生长季节长度。冷泉大大缩短了生长季节长度,因此降低了碳吸收期。 EDDY助焊剂观测结果显示,在该针叶林地,每年不断增长的季节碳损失为4.04g c m?2。另一方面,夏季干旱也降低了净碳吸收强度,因为光合作用对水赤字应力比生态系统呼吸更敏感。然而,一旦干旱释放,夏季干旱发生在相对较短的时间内,碳封存返回到正常水平。

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