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Warming Reduces Carbon Losses from Grassland Exposed to Elevated Atmospheric Carbon Dioxide

机译:变暖减少了大气二氧化碳含量升高引起的草原碳损失

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摘要

The flux of carbon dioxide (CO2) between terrestrial ecosystems and the atmosphere may ameliorate or exacerbate climate change, depending on the relative responses of ecosystem photosynthesis and respiration to warming temperatures, rising atmospheric CO2, and altered precipitation. The combined effect of these global change factors is especially uncertain because of their potential for interactions and indirectly mediated conditions such as soil moisture. Here, we present observations of CO2 fluxes from a multi-factor experiment in semi-arid grassland that suggests a potentially strong climate – carbon cycle feedback under combined elevated [CO2] and warming. Elevated [CO2] alone, and in combination with warming, enhanced ecosystem respiration to a greater extent than photosynthesis, resulting in net C loss over four years. The effect of warming was to reduce respiration especially during years of below-average precipitation, by partially offsetting the effect of elevated [CO2] on soil moisture and C cycling. Carbon losses were explained partly by stimulated decomposition of soil organic matter with elevated [CO2]. The climate – carbon cycle feedback observed in this semiarid grassland was mediated by soil water content, which was reduced by warming and increased by elevated [CO2]. Ecosystem models should incorporate direct and indirect effects of climate change on soil water content in order to accurately predict terrestrial feedbacks and long-term storage of C in soil.
机译:陆地生态系统与大气之间的二氧化碳通量可能会改善或加剧气候变化,这取决于生态系统光合作用和呼吸作用对温度升高,大气中二氧化碳浓度升高和降水变化的相对响应。这些全球变化因素的综合作用尤其不确定,因为它们具有相互作用和间接介导的条件(例如土壤湿度)的潜力。在这里,我们介绍了来自半干旱草原多因素实验的CO2通量的观察结果,表明潜在的强气候-在[CO2]升高和变暖共同作用下的碳循环反馈。单独升高[CO2]并结合变暖,与光合作用相比,更大程度地增强了生态系统的呼吸作用,导致四年内净碳损失。变暖的作用是减少呼吸作用,尤其是在降水低于平均水平的年份,通过部分抵消[CO2]升高对土壤水分和碳循环的影响。碳损失的部分原因是由于[CO2]升高引起的土壤有机质的刺激分解。在该半干旱草原上观察到的气候-碳循环反馈是由土壤含水量介导的,土壤含水量因变暖而减少,而升高的[CO2]则增加。生态系统模型应考虑气候变化对土壤含水量的直接和间接影响,以便准确预测地面反馈和土壤中碳的长期存储。

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