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Seasonal and inter-annual variability of the net ecosystem CO2 exchange of a temperate mountain grassland: effects of climate and management

机译:温带草原草地生态系统净二氧化碳交换的季节性和年际变化:气候和管理的影响

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摘要

The role and relative importance of climate and cutting for the seasonal and inter-annual variability of the net ecosystem CO2 (NEE) of a temperate mountain grassland was investigated. Eddy covariance CO2 flux data and associated measurements of the green area index and the major environmental driving forces acquired during 2001-2006 at the study site Neustift (Austria) were analyzed. Driven by three cutting events per year which kept the investigated grassland in a stage of vigorous growth, the seasonal variability of NEE was primarily modulated by gross primary productivity (GPP). The role of environmental parameters in modulating the seasonal variability of NEE was obscured by the strong response of GPP to changes in the amount of green area, as well as the cutting-mediated decoupling of phenological development and the seasonal course of climate drivers. None of the climate and management metrics examined was able to explain the inter-annual variability of annual NEE. This is thought to result from (1) a high covariance between GPP and ecosystem respiration (Reco) at the annual time scale which results in a comparatively small inter-annual variation of NEE, (2) compensating effects between carbon exchange during and outside the management period, and (3) changes in the biotic response to rather than the climate variables per se. GPP was more important in modulating inter-annual variations in NEE in spring and before the first and second cut, while Reco explained a larger fraction of the inter-annual variability of NEE during the remaining, in particular the post-cut, periods.
机译:研究了气候和砍伐对温带山区草原净生态系统CO2(NEE)季节和年际变化的作用和相对重要性。分析了2001-2006年在研究站点Neustift(奥地利)获得的涡度协方差CO2通量数据以及相关的绿地指数和主要环境驱动力的测量值。每年受三个采伐活动的推动,被调查的草地一直处于旺盛的生长阶段,NEE的季节性变化主要受初级生产力(GPP)的影响。 GPP对绿地数量变化的强烈反应,以及对物候发展和气候驱动因素的季节性变化的切割介导的解耦,使得环境参数在调节NEE的季节性变化中的作用被模糊了。所检查的气候和管理指标均无法解释年度NEE的年际变化。据认为,这是由于(1)GPP与生态系统呼吸(Reco)在每年的时间尺度上存在较高的协方差,从而导致NEE的年际变化相对较小,(2)补偿了碳捕集期间和外部的碳交换之间的影响。 (3)生物对气候变化的反应本身,而不是气候变量本身。 GPP在春季和第一次和第二次切割之前调整NEE的年际变化方面更为重要,而Reco解释了在剩余时期(尤其是在切割后)NEE的年际变化的较大部分。

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