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Effects of elevated atmospheric CO2, prolonged summer drought and temperature increase on N2O and CH4 fluxes in a temperate heathland

机译:大气CO2浓度升高,夏季干旱和温度升高对温带荒地N2O和CH4通量的影响

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摘要

In temperate regions, climate change is predicted to increase annual mean temperature and intensify the duration and frequency of summer droughts, which together with elevated atmospheric carbon dioxide (CO2) concentrations, may affect the exchange of nitrous oxide (N2O) and methane (CH4) between terrestrial ecosystems and the atmosphere. We report results from the CLIMAITE experiment, where the effects of these three climate change parameters were investigated solely and in all combinations in a temperate heathland. Field measurements of N2O and CH4 fluxes took place 1–2 years after the climate change manipulations were initiated. The soil was generally a net sink for atmospheric CH4. Elevated temperature (T) increased the CH4 uptake by on average 10 μg C m−2 h−1, corresponding to a rise in the uptake rate of about 20%. However, during winter elevated CO2 (CO2) reduced the CH4 uptake, which outweighed the positive effect of warming when analyzed across the study period. Emissions of N2O were generally low (
机译:在温带地区,气候变化预计将增加年平均温度,并加剧夏季干旱的持续时间和频率,再加上大气中二氧化碳(CO2)浓度升高,可能会影响一氧化二氮(N2O)和甲烷(CH4)的交换在陆地生态系统和大气之间。我们报告了CLIMAITE实验的结果,在该实验中,仅对了这三个气候变化参数的影响进行了研究,并在温带荒地中对所有这些变化进行了研究。 N2O和CH4通量的现场测量是在气候变化操纵开始后的1-2年进行的。土壤通常是大气中CH4的净汇。升高的温度(T)使CH4吸收平均增加了10μgC m-2 h-1,相当于吸收率提高了约20%。但是,在冬季,升高的CO2(CO2)减少了CH4的吸收,这在整个研究期间进行分析时都超过了变暖的积极影响。 N2O排放通常较低(

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