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Effects of nitrogen and sulfur deposition on CH4 and N2O fluxes in high-altitude peatland soil under different water tables in the Tibetan Plateau

机译:青藏高原不同地下水位下氮和硫沉降对高海拔泥炭地土壤CH4和N2O通量的影响

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摘要

The effects of nitrogen (N) and sulfur (S) deposition on methane (CH4) and nitrous oxide (N2O) emissions under low (10 cm below soil surface) and high (at soil surface) water tables were investigated in the laboratory. Undisturbed soil columns from the alpine peatland of the Tibetan Plateau were analyzed. CH4 emission was higher and N2O emission was lower at the high water table than those at the low water table regardless of nutrient application. Addition of N (NH4NO3 (ammonium nitrate), 5 g N m(-2)) decreased CH4 emission up to 57% and 50% at low and high water tables, respectively, but correspondingly increased N2O emission by 2.5 and 10.4 times. Addition of S (Na2SO4 (sodium sulfate), 2.5 g S m(-2)) decreased CH4 and N2O emission by 64% and 79% at the low water table, respectively, but had a slightly positive effect at the high water table. These results indicated that the responses of CH4 and N2O emissions to the S deposition depend on the water table condition in the high-altitude peatland.
机译:在实验室中研究了低(地下水位以下10 cm)和高(土壤表层)地下水位下氮(N)和硫(S)沉积对甲烷(CH4)和一氧化二氮(N2O)排放的影响。分析了青藏高原高山泥炭地原状土柱。无论是否施用养分,高水位处的CH4排放均较高,而低水位处的N2O排放较低。在低水位和高水位下,分别添加N(NH4NO3(硝酸铵),5 g N m(-2))可使CH4排放量分别降低至57%和50%,但相应地将N2O排放量提高2.5倍和10.4倍。添加S(Na2SO4(硫酸钠),2.5 g S m(-2))在低水位时分别减少CH4和N2O排放64%和79%,但在高水位时有轻微的积极作用。这些结果表明,CH4和N2O排放对S沉积的响应取决于高海拔泥炭地的地下水位条件。

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