首页> 外文期刊>Journal of arid environments >Response of evapotranspiration and CO2 fluxes to discrete precipitation pulses over degraded grassland and cultivated corn surfaces in a semiarid area of Northeastern China
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Response of evapotranspiration and CO2 fluxes to discrete precipitation pulses over degraded grassland and cultivated corn surfaces in a semiarid area of Northeastern China

机译:东北半干旱地区退化草地和耕地玉米表面蒸散量和CO2通量对离散降水脉冲的响应

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The effects of precipitation pulses on evapotranspiration (ET) and CO2 fluxes were evaluated over different land surfaces in a semiarid area using eddy covariance technique. ET responded to rain events throughout the growing season, but the degree of responses varied among seasons. In spring and fall, ET slightly responded to precipitation pulses, because the precipitation amount in the rainfall event was small and very discrete. As the rainy season started in early summer, responses of ET to precipitation pulses significantly increased. In late summer, the intensity of responses in ET was weakened because the soils retain moisture by the high-frequency rainfall events and the antecedent soil moisture. Regarding CO2 exchange, in early summer, the net CO2 uptake slightly increased at the cultivated corn site after rain pulses, while the degraded grassland site experienced comparatively greater responses. In late summer, the cultivated corn site exhibited more negative CO2 flux after rain than the grassland site, and the responses of net CO2 uptake to rain pulses were much stronger than those in early summer. The soil moisture content and vegetation cover are the key factors in determining the responses of ET and CO2 fluxes to precipitation pulses in these two semiarid ecosystems. (C) 2015 Elsevier Ltd. All rights reserved.
机译:利用涡度协方差技术评估了半干旱地区不同陆地表面降水脉冲对蒸散量(ET)和CO2通量的影响。 ET在整个生长季节对降雨事件做出了响应,但响应程度因季节而异。在春季和秋季,由于降雨事件中的降水量很小且非常离散,因此ET对降水脉动略有响应。随着夏初的雨季开始,ET对降水脉冲的响应明显增加。夏末,由于高频降雨事件和前期土壤水分使土壤保持水分,ET的响应强度减弱。关于CO 2交换,在初夏时节,降雨后脉冲玉米在耕地的净CO 2吸收量略有增加,而退化的草地经历了相对较大的响应。夏末,玉米种植场在雨后比草地场表现出更多的负CO2通量,并且净CO2吸收对降雨脉冲的响应要比初夏强得多。在这两个半干旱生态系统中,土壤水分和植被覆盖度是确定ET和CO2通量对降水脉冲响应的关键因素。 (C)2015 Elsevier Ltd.保留所有权利。

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