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首页> 外文期刊>Forest Ecology and Management >Effects of stump harvest and site preparation on N2O and CH4 emissions from boreal forest soils after clear-cutting
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Effects of stump harvest and site preparation on N2O and CH4 emissions from boreal forest soils after clear-cutting

机译:截割后树桩收获和整地对北方森林土壤N2O和CH4排放的影响

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Harvesting stumps after clear-cutting can increase bioenergy supplies and thus reduce needs for fossil fuels, but more knowledge is required about associated changes in greenhouse gas emissions from forest soils to assess the climatic impact of extracting stumps for this purpose. The soil disturbance caused by harvesting stumps may alter soil processes, including N mineralization. N availability is an important determinant of emissions of the potent greenhouse gases N2O and CH4. Effects of stump harvest on these gases are largely unknown. Therefore, they were explored in this study by monitoring differences in N2O and CH4 emissions associated with different types of disturbance during two years following stump harvest and site preparation (as well as their overall effects) at three mesic sites, using the chamber technique. N2O emissions at two of the sites were affected by the type of soil disturbance, but not at the other site. At one site, the N2O emissions were highest from undisturbed soil and mounds and significantly lower from mixed soil, bare mineral soil and wheel ruts. At this site the emission rates were clearly correlated with N availability across the disturbances. At the second site showing significant treatment effects, N2O emissions were higher from the bare mineral soil after site preparation than from other types of disturbed soil. At the third site there were no significant N2O emissions, possibly due to reductions in nitrogen availability caused by the fast establishment of vegetation at that site. The CH4 fluxes included both uptakes and losses, but were generally low following all types of soil disturbances, although they were substantial from wheel ruts and soil pits. In conclusion there were no, or minor, between treatment differences in N2O and CH4 emissions. Furthermore, the radiative forcing potential of these emissions was small compared to mean CO2 emissions from Swedish clear-cuts. Thus, our results indicate that stumps can be harvested without causing elevated emissions of N2O and CH4 on mesic sites. The effects on wetter sites remain to be illuminated. (C) 2016 Elsevier B.V. All rights reserved.
机译:砍伐后采伐树桩可以增加生物能源供应,从而减少对化石燃料的需求,但是需要更多有关森林土壤温室气体排放相关变化的知识,以评估为此目的采伐树桩的气候影响。收割树桩引起的土壤扰动可能会改变土壤过程,包括氮矿化。氮的有效利用是决定有效温室气体N2O和CH4排放的重要因素。树桩收获对这些气体的影响在很大程度上尚不清楚。因此,在这项研究中,通过使用腔室技术监测三个树桩部位的残茬收获和场地准备(及其总体影响)后的两年中与不同类型干扰相关的N2O和CH4排放差异,对它们进行了探索。两个地点的N2O排放受土壤扰动类型的影响,而另一个地点则不受此影响。在一个地点,未扰动的土壤和土丘的N2O排放最高,而混合土壤,裸露的矿物土壤和车轮车辙的N2O排放则显着降低。在该地点,排放量与整个扰动中的氮素利用率明显相关。在显示出显着处理效果的第二个地点,场地准备后裸露的矿物土壤中的N2O排放高于其他类型的扰动土壤。在第三个站点上,没有大量的N2O排放,这可能是由于该站点上快速建立的植被导致氮素利用率下降所致。 CH4通量既包括吸收也包括损失,但在各种土壤扰动下都较低,尽管车轮车轮痕迹和土壤坑中的CH4通量很大。总而言之,N2O和CH4排放的处理差异之间没有差别,也没有差别。此外,与瑞典清除产生的平均CO2排放相比,这些排放的辐射强迫潜力很小。因此,我们的结果表明,可以收获树桩,而不会在中性站点上引起N2O和CH4的升高排放。对湿润部位的影响仍有待阐明。 (C)2016 Elsevier B.V.保留所有权利。

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