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Short-term effect of nitrogen addition on nitric oxide emissions from an alpine meadow in the Tibetan Plateau

机译:氮添加对青藏高原高寒草甸一氧化氮排放的短期影响

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Little information is available on nitric oxide (NO) fluxes from alpine ecosystems. We measured NO fluxes in control and nitrogen (N) addition (NH4NO3, 6 g N m(-2) year(-1)) plots from early June through October 2013 in an alpine meadow on the Tibetan Plateau, China. During the sample period, NO fluxes varied from -0.71 to 3.12 ug m(-2) h(-1) and -0.46 to 7.54 ug m(-2) h(-1) for control and N treatment plots. The mean NO emission in N addition plots (1.68 ug m(-2) h(-1)) was 2.15 times higher than the control plots (0.78 ug m(-2) h(-1)), indicating that alpine meadows may be a source of atmospheric NO, and N additions stimulated NO flux. A positive correlation was found between NO flux and soil temperature, water-filled pore space (WFPS), nitrate (NO3--N) content but no correlation with soil ammonium (NH4+-N). These results suggest that denitrification is a principal process producing NO flux from alpine meadows.
机译:关于来自高山生态系统的一氧化氮(NO)通量的信息很少。我们测量了2013年6月上旬至2013年10月在中国青藏高原的高寒草甸中控制区和氮(N)添加区(NH4NO3,6 g N m(-2)年(-1))的NO通量。在采样期间,对于控制和N处理图,NO通量在-0.71至3.12 ug m(-2)h(-1)和-0.46至7.54 ug m(-2)h(-1)之间变化。 N个添加区(1.68 ug m(-2)h(-1))的平均NO排放量比对照区(0.78 ug m(-2)h(-1))高2.15倍,表明高寒草甸可能是大气中NO的来源,而N的添加会刺激NO的通量。 NO通量与土壤温度,充水孔隙空间(WFPS),硝酸盐(NO3--N)含量之间呈正相关,与土壤铵态氮(NH4 + -N)之间无正相关。这些结果表明,反硝化是从高山草甸产生NO的主要过程。

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