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Simulated mechanisms of soil N feedback on the forest CO2 response

机译:土壤氮素反馈对森林CO2响应的模拟机制

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An improved understanding of the response of forest ecosystems to elevated levels of CO2 in the atmosphere is crucial because atmospheric CO2 concentration continues to increase at an accelerating rate and forests are an important sink in the global carbon cycle. Several CO2-enrichment experiments have now been running for more than 10 years, with highly variable short-term results after the first decade. Responses to rising [CO2] over the next few decades will depend on several plant and ecosystem feedbacks that are inadequately understood. In this study, we conduct a sensitivity analysis, within the context of the simulated CO2 response, using a new version of the G'DAY ecosystem model, with an improved decomposition submodel, applied to a nitrogen-limited Norway spruce forest site in the north of Sweden. The new decomposition model incorporates important modifications to soil processes, including some that constitute negative feedbacks on an ecosystem's growth response to elevated [CO2]. The sensitivity analysis reveals key parameters and processes that are important for the simulated CO2 response on the short term and others that are more important on the long term. A process that has a strong impact on the short-term response is a change in decomposer composition, potentially in response to altered litter quality. Parameters that become increasingly important in the long term are carbon allocation to root exudates that are directly or indirectly associated with atmospheric N-2 fixation, and the rate of humification of soil organic matter. We identify factors intrinsic to species and site (microbes and resources) and ecosystem nutrient supply that determine the duration of the enhanced simulated growth response to elevated [CO2].
机译:更好地了解森林生态系统对大气中CO2含量升高的反应至关重要,因为大气中的CO2浓度继续以加速的速度增长,森林是全球碳循环的重要汇。现在已经进行了10次以上的CO2富集实验,短期结果变化很大。在接下来的几十年中,对[CO2]上升的反应将取决于对植物和生态系统的几种反馈知之甚少。在这项研究中,我们在模拟的CO2响应的背景下,使用新版本的G'DAY生态系统模型以及改进的分解子模型,对北部的氮限制了挪威云杉林地进行了敏感性分析。瑞典新的分解模型对土壤过程进行了重要的修改,包括对生态系统对升高的[CO2]的生长响应构成负面反馈的某些过程。敏感性分析揭示了关键参数和过程,这些参数和过程对于短期内模拟的CO2响应很重要,而对于长期而言则更为重要。对短期响应产生重大影响的过程是分解者组成的变化,可能是由于垃圾质量的变化而引起的。从长期来看,越来越重要的参数是碳分配给与大气N-2固定直接或间接相关的根系分泌物,以及土壤有机质的腐殖化速率。我们确定了物种和场所(微生物和资源)以及生态系统养分供应所固有的因素,这些因素决定了对升高的[CO2]的增强模拟生长响应的持续时间。

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