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Modeling soil CO2 production and transport to investigate the intra-day variability of surface efflux and soil CO2 concentration measurements in a Scots Pine Forest (Pinus Sylvestris, L.)

机译:模拟土壤CO2的产生和运输,以研究苏格兰松树森林(Pinus Sylvestris,L.)的表面外排量和土壤CO2浓度的日内变化

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摘要

The main aim of this study is to improve the mechanistic understanding of soil CO2 efflux (F-s), especially its temporal variation at short-time scales, by investigating, through modeling, which underlying process among CO2 production and its transport up to the atmosphere is responsible for observed intra-day variation of F-s and soil CO2 concentration [CO2].In this study, a measurement campaign of F-s and vertical soil [CO2] profiles was conducted in a Scots Pine Forest soil in Hartheim (Germany) and used to develop a model testing several hypotheses. A reference model taking into account a purely diffusive CO2 transport and a temperature-dependent CO2 production is compared to models with a more complex description of either CO2 production or CO2 transport. For transport, the introduction of advection and the dispersion is investigated. For the production, the emergent hypothesis of the phloem pressure concentration wave (PPCW) influence is tested.We show that intra-day variation of F-s and [CO2] is better represented when the more complex CO2 production expression is taken into account compared to the more detailed description of CO2 transport.We conclude that focus should be placed on the potential factors affecting the CO2 production, rather than on the transport process description.
机译:这项研究的主要目的是通过模型研究,研究二氧化碳排放及其向大气的传输过程中的基本过程是什么,从而提高对土壤二氧化碳排放(Fs)的机理的理解,特别是在短时间内的土壤时间变化。负责观察Fs和土壤中CO2浓度[CO2]的日内变化。在这项研究中,在德国Hartheim的苏格兰松林土壤中进行了Fs和垂直土壤[CO2]剖面的测量活动,并用于开发一个测试几个假设的模型。将考虑了纯扩散CO2传输和温度依赖性CO2产生的参考模型与具有更复杂的CO2产生或CO2传递描述的模型进行比较。为了运输,研究了对流和分散的引入。对于生产,检验了韧皮部压力集中波(PPCW)影响的新出现假说。我们表明,当考虑到更复杂的CO2生产表达时,Fs和[CO2]的日内变化可以更好地表示。我们得出结论,应将重点放在影响CO2产生的潜在因素上,而不是在运输过程中进行描述。

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