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Are ecosystem carbon inputs and outputs coupled at short time scales? A case study from adjacent pine and hardwood forests using impulse-response analysis

机译:生态系统的碳输入和输出是否在短时间内耦合在一起?脉冲响应分析法研究相邻松林和阔叶林

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摘要

A number of recent studies have attributed a large proportion of soil respiration (R(soil)) to recently photoassimilated carbon (C). Time lags (tau(PR)) associated with these pulses of photosynthesis and responses of R(soil) have been found on time scales of hours to weeks for different ecosystems, but most studies find evidence for tau(PR) on the order of 1-5 d. We showed that such time scales are commensurate with CO(2) diffusion time scales from the roots to the soil surface, and may thus be independent from photosynthetic pulses. To further quantify the role of physical (i.e. edaphic) and biological (i.e. vegetative) controls on such lags, we investigated tau(PR) at adjacent planted pine (PP) and hardwood (HW) forest ecosystems over six and four measurement years, respectively, using both autocorrelation analysis on automated soil surface flux measurements and their lagged cross-correlations with drivers for and surrogates of photosynthesis. Evidence for tau(PR) on the order of 1-3 d was identified in both ecosystems and using both analyses, but this lag could not be attributed to recently photoassimilated C because the same analysis yielded comparable lags at HW during leaf-off periods. Future efforts to model ecosystem C inputs and outputs in a pulse-response framework must combine measurements of transport in the physical and biological components of terrestrial ecosystems.
机译:最近的许多研究将土壤呼吸(R(土壤))的很大比例归因于最近的光同化碳(C)。对于不同的生态系统,已经在数小时到数周的时间尺度上发现了与这些光合作用脉冲和R(土壤)响应相关的时滞(tau(PR)),但是大多数研究发现tau(PR)的数量级为1 -5 d。我们表明,这种时间尺度与从根部到土壤表面的CO(2)扩散时间尺度相对应,因此可能与光合作用脉冲无关。为了进一步量化物理控制(即生态控制)和生物控制(即营养控制)对此类滞后的作用,我们分别在六个和四个测量年内调查了相邻种植的松树(PP)和硬木(HW)森林生态系统的tau(PR)。 ,同时使用自动土壤表面通量测量的自相关分析以及与光合作用和替代的滞后互相关。在两个生态系统中,并使用这两种分析方法,都确定了1-3 d量级的tau(PR)证据,但是这种滞后不能归因于最近的光同化碳,因为相同的分析在放叶期间在硬件上产生了相当的滞后。未来在脉冲响应框架中为生态系统C输入和输出建模的工作必须结合对陆地生态系统的物理和生物组成部分中的运输量的测量。

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