首页> 外文期刊>Journal of arid environments >Influence of soil moisture on the seasonality of nitric oxide emissions from chaparral soils, Sierra Nevada, California, USA
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Influence of soil moisture on the seasonality of nitric oxide emissions from chaparral soils, Sierra Nevada, California, USA

机译:土壤水分对美国加利福尼亚州内华达山脉丛林土壤一氧化氮排放季节的影响

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摘要

Soil nitric oxide (NO) emissions are variable in both space and time, and are important pathways for N loss in seasonally dry ecosystems that undergo abrupt transitions from dry-to-wet soil conditions. We measured soil NO emissions from a chaparral catchment to characterize seasonal variability of, and triggers for enhanced NO losses. Pulses in NO emissions were observed in the summer and autumn when dry soils (soil water content (θ) < 6%) were wetted naturally and artificially (range: 97-513 ng NO-Nm~(-2) s~(-1) ).The rapidity and magnitude of these pulses suggest that abiotic processes may influence NO emissions. Outside of the observed pulses, NO emissions were highest during the dry season (θ< 6%; dry season mean = 3.4 ng NO-Nm~(-2) s~(-1)) and lowest during the winter wet season (8 > 20%; wet season mean = 0.14 ng NO-Nm~(-2) s~(-1)). These observed seasonal patterns contrast with previous DAYCENT simulations of NO emissions in our catchment, which predicted higher NO emissions during the wet season. Our field observations are consistent with sustained rates of nitrification, reduced plant N uptake, and high soil gas diffusivity observed during the dry season in arid environments.
机译:土壤一氧化氮(NO)排放在空间和时间上都是可变的,并且是季节性干旱生态系统中氮从干旱到湿土条件突然转变的重要途径。我们测量了丛林流域的土壤NO排放量,以表征其季节性变化并触发NO损失增加。夏季和秋季,自然和人工润湿干土壤(土壤含水量(θ)<6%)时观察到NO排放的脉冲(范围:97-513 ng NO-Nm〜(-2)s〜(-1)这些脉冲的速度和强度表明非生物过程可能会影响NO排放。在观测到的脉冲之外,NO排放在旱季最高(θ<6%;旱季平均值= 3.4 ng NO-Nm〜(-2)s〜(-1)),而在冬季湿季最低(8) > 20%;雨季平均值= 0.14 ng NO-Nm〜(-2)s〜(-1))。这些观测到的季节性模式与之前我们集水区的DAYCENT模拟NO排放形成对比,后者预测在雨季NO排放会更高。我们的实地观察与干旱环境下干旱季节持续的硝化速率,降低的植物N吸收率和高土壤气体扩散率相一致。

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