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Rainfall reduction amplifies the stimulatory effect of nitrogen addition on N2O emissions from a temperate forest soil

机译:降雨降低放大了氮气添加对温带森林土壤N2O排放的刺激作用

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Soil is a significant source of atmospheric N2O, and soil N2O emissions at a global scale are greatly affected by environment changes that include continuous deposition of atmospheric nitrogen and changing precipitation distribution. However, to date, field simulations of multiple factors that control the interaction between nitrogen deposition and precipitation on forest soil N2O emissions are scarce. In this study, we conducted a 2-year continuous assessment of N2O emissions from November 2012 to October 2014 at a nitrogen addition and rainfall reduction manipulation platform in an old broad-leaved Korean pine mixed forest at Changbai Mountain in northeastern China. We found that N2O emissions from control plots were 1.25?±?0.22?kg N2O-N ha?1 a?1. Nitrogen addition significantly increased N2O emissions, with the emission factor of 1.59%. A 30% reduction in rainfall decreased N2O emissions by 17–45%. However, in combination, nitrogen addition and rainfall reduction increased N2O emissions by 58–140%, with the emission factor of 3.19%, and had a larger promotional effect than the addition of nitrogen alone. Our results indicated that drought slightly decreases forest soil N2O emission; however, with increasing deposition of atmospheric N in temperate forest soils, the effect of drought might become altered to increase N2O emission.
机译:土壤是大气N2O的重要来源,全球规模的土壤N2O排放受环境变化的大大影响,包括连续沉积大气氮和改变降水分布。然而,迄今为止,控制氮沉积与森林土壤N2O排放对氮沉积和降水之间相互作用的多种因素的现场模拟是稀缺的。在本研究中,我们在2012年11月至2014年11月对2012年11月至2014年10月进行了2年的连续评估,并在中国长白山的旧阔叶韩国杉木混合森林中进行了氮气添加和降雨量减少处理平台。我们发现控制图中的N2O排放为1.25?±0.22?kg N2O-n Ha?1 a?1。氮气添加显着增加了N2O排放,排放因子为1.59%。降雨量减少30%,下降N2O排放量17-45%。然而,组合,氮气加入和降雨量增加了N2O排放量58-140%,排放因子为3.19%,并且具有比单独添加氮的促进效果。我们的结果表明,干旱略微降低森林土壤N2O排放;然而,随着温带森林土壤中大气N的沉积,可能会改变干旱的影响以增加N2O排放。

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