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Carbon dioxide sources from Alaska driven by increasing early winter respiration from Arctic tundra

机译:来自北极苔原的冬季初呼吸增加导致阿拉斯加的二氧化碳源

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摘要

High-latitude ecosystems have the capacity to release large amounts of carbon dioxide (CO2) to the atmosphere in response to increasing temperatures, representing a potentially significant positive feedback within the climate system. Here, we combine aircraft and tower observations of atmospheric CO2 with remote sensing data and meteorological products to derive temporally and spatially resolved year-round CO2 fluxes across Alaska during 2012–2014. We find that tundra ecosystems were a net source of CO2 to the atmosphere annually, with especially high rates of respiration during early winter (October through December). Long-term records at Barrow, AK, suggest that CO2 emission rates from North Slope tundra have increased during the October through December period by 73% ± 11% since 1975, and are correlated with rising summer temperatures. Together, these results imply increasing early winter respiration and net annual emission of CO2 in Alaska, in response to climate warming. Our results provide evidence that the decadal-scale increase in the amplitude of the CO2 seasonal cycle may be linked with increasing biogenic emissions in the Arctic, following the growing season. Early winter respiration was not well simulated by the Earth System Models used to forecast future carbon fluxes in recent climate assessments. Therefore, these assessments may underestimate the carbon release from Arctic soils in response to a warming climate.
机译:高纬度生态系统具有响应温度升高而向大气释放大量二氧化碳(CO2)的能力,这代表了气候系统内潜在的重要正反馈。在这里,我们将飞机和塔楼对大气中CO2的观测与遥感数据和气象产品结合起来,得出2012-2014年整个阿拉斯加全年在时间和空间上解析的全年CO2通量。我们发现,冻原生态系统每年都是大气中二氧化碳的净来源,冬季初(10月至12月)的呼吸速率特别高。阿拉斯加巴罗的长期记录表明,自1975年以来,北坡苔原的二氧化碳排放率在10月至12月期间增加了73%±11%,并且与夏季气温升高有关。总之,这些结果表明,随着气候变暖,阿拉斯加冬季初呼吸增加,二氧化碳年净排放量增加。我们的结果提供了证据,表明在生长季节之后,二氧化碳季节周期幅度的年代际增加可能与北极生物源排放的增加有关。在最近的气候评估中,用于预测未来碳通量的地球系统模型未能很好地模拟冬季早期的呼吸作用。因此,这些评估可能低估了响应气候变暖而从北极土壤释放的碳。

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