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Biophysical effects on the interannual variation in carbon dioxide exchange of an alpine meadow on the Tibetan Plateau

机译:青藏高原高山草甸二氧化碳交换持续变化的生物物理作用

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Eddy covariance measurements from 2012 to 2015 were used to investigate the interannual variation in carbon dioxide exchange and its control over an alpine meadow on the south-east margin of the Tibetan Plateau. The annual net ecosystem exchange (NEE) in the 4 years from 2012 to 2015 was ?114.2, ?158.5, ?159.9 and ?212.6?g?C?m?2?yr?1, and generally decreased with the mean annual air temperature (MAT). An exception occurred in 2014, which had the highest MAT. This was attributed to higher ecosystem respiration (RE) and similar gross primary production (GPP) in 2014 because the GPP increased with the MAT, but became saturated due to the limit in photosynthetic capacity. In the spring (March to May) of 2012, low air temperature (Ta) and drought events delayed grass germination and reduced GPP. In the late wet season (September to October) of 2012 and 2013, the low Ta in September and its negative effects on vegetation growth caused earlier grass senescence and significantly lower GPP. This indicates that the seasonal pattern of Ta has a substantial effect on the annual total GPP, which is consistent with results obtained using the homogeneity-of-slopes (HOS) model. The model results showed that the climatic seasonal variation explained 48.6?% of the GPP variability, while the percentages explained by climatic interannual variation and the ecosystem functional change were 9.7 and 10.6?%, respectively.
机译:2012年至2015年的Eddy协方差测量用于调查二氧化碳交换的持续变化及其对西藏高原东南边缘的高山草甸的控制。从2012年到2015年的4年内的年度净生态系统交易所(NEE)是?114.2,?158.5,?159.9和?212.6?G?C?M?2?2?YR?1,并且通常随着平均年度空气温度降低(垫)。 2014年发生的例外,有最高的垫子。这归因于2014年更高的生态系统呼吸(RE)和类似的总初级生产(GPP),因为GPP随着垫子而增加,但由于光合容量的极限而变得饱和。 2012年春季(3月至5月),低空气温度(TA)和干旱事件延迟草萌发和降低的GPP。在2012年和2013年的晚湿季节(9月至10月),9月份的低TA及其对植被生长的负面影响导致早期的草地衰老和明显降低GPP。这表明TA的季节性模式对年度总GPP具有大量影响,这与使用斜坡均匀(HOS)模型获得的结果一致。模型结果表明,气候季节性变化占GPP变异性的48.6?%,而气候际变化和生态系统功能变化解释的百分比分别为9.7和10.6?%。

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