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Carbon dioxide emissions from Tucurui reservoir (Amazon biome): New findings based on three-dimensional ecological model simulations

机译:图库鲁伊水库(亚马逊生物群落)的二氧化碳排放量:基于三维生态模型模拟的新发现

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We used a three-dimensional model to assess the dynamics of diffusive carbon dioxide flux (F_(CO2)) from a hydroelectric reservoir located at Amazon rainforest Our results showed that for the studied periods (2013 summer/ wet and winter/dry seasons) the surface averaged F_(CO2) presented similar behaviors, with regular emissions peaks. The mean daily surface averaged F_(CO2) showed no significant difference between the seasons (p > 0.01), with values around -1338 mg C m - 2 day - 1 (summer/wet) and -1395 mg C m - 2 day - 1 (winter/ dry). At diel scale, the F_(CO2) was large during the night and morning and low during the afternoon in both seasons. Regarding its spatial distribution, the F_(CO2) showed to be more heterogeneous during the summer/wet than during the winter/dry season. The highest F_(CO2) were observed at transition zone(-300mgCm-2h-1)during summer and at littoral zone (-55 mg C m-2h-1) during the winter. The total CO_2 emitted by the reservoir along 2013 year was estimated to be 1.1 Tg C year -1. By extrapolating our results we found that the total carbon emitted by all Amazonian reservoirs can be around 7 Tg C year - 1, which is 22% lower than the previous published estimate. This significant difference should not be neglected in the carbon inventories since the carbon emission is a key factor when comparing the environmental impacts of different sources of electricity generation and can influences decision makers in the selection of the more appropriate source of electricity and, in case of hydroelectricity, the geographical position of the reservoirs.
机译:我们使用三维模型评估了位于亚马逊雨林的水力发电库中的扩散性二氧化碳通量(F_(CO2))的动态。我们的结果表明,在所研究的时期(2013年夏季/湿季和冬季/枯季),表面平均F_(CO2)表现出相似的行为,并具有规则的排放峰值。日平均表面平均F_(CO2)在各季节之间没有显着差异(p> 0.01),其值约为-1338 mg C m-2天-1(夏季/潮湿)和-1395 mg C m-2天- 1(冬季/干燥)。在Diel规模上,两个季节的F_(CO2)在夜间和早晨都很大,而在下午则较低。关于其空间分布,F_(CO2)在夏季/潮湿的季节比冬季/干燥的季节更加不均匀。在夏季,在过渡带(-300mgCm-2h-1)观察到最高的F_(CO2),在冬季,在沿海区(-55mg Cm-2h-1)观察到最高的F_(CO2)。据估计,2013年全年储层的总CO_2排放量为1.1 Tg C year -1。通过对我们的结果进行推断,我们发现所有亚马孙油藏的总碳排放量约为7 Tg C年-1,比先前公布的估计值低22%。在碳清单中,不应忽略这一重大差异,因为在比较不同发电来源对环境的影响时,碳排放是关键因素,并且在选择更合适的电力来源时可能会影响决策者。水力发电,水库的地理位置。

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