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首页> 外文期刊>Journal of Hydrology >Effects of elevated CO2 on the evapotranspiration over the agricultural land in Northwest China
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Effects of elevated CO2 on the evapotranspiration over the agricultural land in Northwest China

机译:二氧化碳升高对中国西北农业土地蒸散的影响

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摘要

The increase in atmospheric carbon dioxide (CO2) concentration is changing plant physiology, thus affecting terrestrial hydrological response. A nonlinear stomatal conductance response to carbon dioxide concentration (g(s) -CO2) was incorporated in the VIC model for better representation of the evapotranspiration (ET) response to the elevated CO2. The annual ET of maize and wheat over the agricultural land in Northwest China was found to decrease by 0.54% and 0.21% during 1980-2010, respectively. Under doubled CO2 concentration (660 ppm), the ET reduction of maize and wheat was 23.3 mm and 8.9 mm, which accounted for 4.3% and 1.8% of the corresponding annual ET. The annual ET reduction of maize, under the four future scenarios (RCP4.5_2040s, RCP4.5_2080s, RCP8.5_2040s, and RCP8.5_2080s), was about 1.1-6.4%, resulted from an ensemble mean of eight general circulation models. The effects of elevated CO2 offset part of ET increase caused by the precipitation and temperature changes. This study has practical implications for precise irrigation. The ET response of maize should be paid more attention for its larger potential in saving irrigation water for the studied region. The elevated CO2 concentration will be beneficial for saving irrigation water to a certain degree.
机译:大气中二氧化碳(CO2)浓度的增加正在改变植物生理,从而影响陆地水文响应。在VIC模型中加入了对二氧化碳浓度(g(s)-CO2)的非线性气孔导度响应,以更好地表示蒸散量(ET)对CO2浓度升高的响应。1980-2010年,西北地区农田玉米和小麦的年蒸腾速率分别下降了0.54%和0.21%。在CO2浓度加倍(660 ppm)的情况下,玉米和小麦的ET减少量分别为23.3 mm和8.9 mm,分别占相应年度ET的4.3%和1.8%。在未来四种情景(RCP4.5_2040s、RCP4.5_2080s、RCP8.5_2040s和RCP8.5_2080s)下,玉米的ET减少量约为1-6.4%,这是由八种大气环流模式的整体平均值造成的。CO2升高的影响抵消了降水和温度变化引起的ET增加的一部分。这项研究对精确灌溉有实际意义。玉米的ET反应在研究区节水潜力较大,应引起重视。CO2浓度升高在一定程度上有利于节水灌溉。

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