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Cryogenic disturbance and its impact on carbon fluxes in a subarctic heathland

机译:亚北极石南荒地的低温扰动及其对碳通量的影响

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Differential frost heave, along with the associated cryogenic disturbance that accompanies it, is an almost universal feature of arctic landscapes that potentially influences the fate of the soil carbon (C) stored in arctic soils. In this study, we quantify how gross ecosystem photosynthesis (GEP), soil respiration (Re) and the resulting net ecosystem exchange (NEE) vary in a patterned ground system (non-sorted circles) at plot-scale and whole-patterned ground scales in response to cryogenic disturbances (differential heave and soil surface disruption). We found that: (i) all studied non-sorted circles (n?=?15) acted as net CO2 sources (positive NEE); (ii) GEP showed a weaker decrease than Re in response to increased cryogenic disturbance/decreased humus cover, indicating that undisturbed humus-covered sites are currently the main source of atmospheric CO2 in the studied system. Interestingly, Re fluxes normalized to C pools indicated that C is currently respired more rapidly at sites exposed to cryogenic disturbances; hence, higher NEE fluxes at less disturbed sites are likely an effect of a more slowly degrading but larger total pool that was built up in the past. Our results highlight the complex effects of cryogenic processes on the C cycle at various time scales.
机译:差异性冻胀以及随之而来的相关低温干扰,是北极景观的几乎普遍特征,可能会影响北极土壤中储存的土壤碳(C)的命运。在这项研究中,我们量化了在样地尺度和整个样地尺度下,模式化地面系统(非分类圆)中的总生态系统光合作用(GEP),土壤呼吸(Re)和由此产生的净生态系统交换(NEE)如何变化。应对低温干扰(起伏和土壤表面破坏)。我们发现:(i)所有研究的非分类圈(n?=?15)都是净CO2来源(正NEE); (ii)由于低温干扰增加/腐殖质覆盖率降低,GEP的下降幅度小于Re,这表明在研究的系统中,腐殖质覆盖的原位目前是大气中CO2的主要来源。有趣的是,归一化为C池的Re通量表明,目前C在暴露于低温干扰的部位呼吸更快。因此,在受干扰较少的地点,较高的NEE通量很可能是过去降解速度较慢但总池更大的结果。我们的结果强调了低温过程在不同时间尺度上对C循环的复杂影响。

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