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Comparative analysis of the influence of climate change and nitrogen deposition on carbon sequestration in forest ecosystems in European Russia: simulation modelling approach

机译:气候变化和氮沉积对欧洲森林生态系统碳封存对碳封存的对比分析:模拟建模方法

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An individual-based simulation model, EFIMOD, was used to simulate the response of forest ecosystems to climate change and additional nitrogen deposition. The general scheme of the model includes forest growth depending on nitrogen uptake by plants and mineralization of soil organic matter. The mineralization rate is dependent on nitrogen content in litter and forest floor horizons. Three large forest areas in European Central Russia with a total area of about 17 000 km2 in distinct environmental conditions were chosen. Simulations were carried out with two climatic scenarios (ambient climate and climate change) and different levels of nitrogen deposition (ambient value and increase by 6 and 12 kg N ha?1 yr?1). The simulations showed that increased nitrogen deposition leads to increased productivity of trees, increased organic matter content in organic soil horizons, and an increased portion of deciduous tree species. For the climate change scenario, the same effects on forest productivity and similar shifts in species composition were predicted but the accumulation of organic matter in soil was decreased.
机译:基于个性的仿真模型EFIMOD用于模拟森林生态系统对气候变化和额外氮沉积的响应。该模型的一般方案包括森林生长,这取决于植物和土壤有机物质的矿化的氮气吸收。矿化率取决于垃圾和森林地板视野中的氮含量。选择了欧洲中部俄罗斯的三个大型森林地区,共有约17 000 km2在不同的环境条件下。用两个气候情景(环境气候和气候变化)和不同水平的氮沉积(环境值并增加6和12千克,1YR≤1)进行仿真。模拟表明,增加的氮沉积导致树木的生产力提高,有机土壤中的有机质含量增加,以及落叶树种的增加。对于气候变化情景,预测了对森林生产力和物种组成的类似变化的相同影响,但土壤中有机物质的积累率降低。

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