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Pinus sylvestris as a missing source of nitrous oxide and methane in boreal forest

机译:樟子松是北方森林缺少的一氧化二氮和甲烷的来源

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摘要

Boreal forests comprise 73% of the world’s coniferous forests. Based on forest floor measurements, they have been considered a significant natural sink of methane (CH4) and a natural source of nitrous oxide (N2O), both of which are important greenhouse gases. However, the role of trees, especially conifers, in ecosystem N2O and CH4 exchange is only poorly understood. We show for the first time that mature Scots pine (Pinus sylvestris L.) trees consistently emit N2O and CH4 from both stems and shoots. The shoot fluxes of N2O and CH4 exceeded the stem flux rates by 16 and 41 times, respectively. Moreover, higher stem N2O and CH4 fluxes were observed from wet than from dry areas of the forest. The N2O release from boreal pine forests may thus be underestimated and the uptake of CH4 may be overestimated when ecosystem flux calculations are based solely on forest floor measurements. The contribution of pine trees to the N2O and CH4 exchange of the boreal pine forest seems to increase considerably under high soil water content, thus highlighting the urgent need to include tree-emissions in greenhouse gas emission inventories.
机译:北方森林占世界针叶林的73%。根据森林地面的测量,它们被认为是甲烷的重要自然汇(CH4)和自然的一氧化二氮(N2O)来源,两者都是重要的温室气体。但是,人们对树木(尤其是针叶树)在生态系统N2O和CH4交换中的作用了解得很少。我们首次显示成熟的苏格兰松树(Pinus sylvestris L.)树木始终从茎和枝中排放N2O和CH4。 N2O和CH4的芽通量分别超过茎通量率的16倍和41倍。此外,观察到从潮湿的森林中获得的茎干N2O和CH4通量比从干燥的森林中获得更高的通量。因此,如果仅基于林底测量值进行生态系统通量计算,则可能会低估北方松树林的N2O释放量,而可能会高估CH4的吸收量。在土壤含水量高的情况下,松树对北方松树林的N2O和CH4交换的贡献似乎大大增加,因此,迫切需要将树木排放物纳入温室气体排放清单。

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