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CO2 is Dominant Greenhouse Gas Emitted from Six Hydropower Reservoirs in Southeastern United States during Peak Summer Emissions

机译:CO 2 是夏季东南部高峰期排放的美国东南部六个水库的主要温室气体。

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During August–September 2012, we sampled six hydropower reservoirs in southeastern United States for CO2 and CH4 emissions via three pathways: diffusive emissions from water surface; ebullition in the water column; and losses from dam tailwaters during power generation. Estimates of average areal emission rates of CO2 attributable to the six reservoirs (i.e., reservoir plus tailwater emissions) ranged from 994 to 2760 mg·m−2·day−1, which is low to moderate compared to CO2 emissions rates reported for tropical hydropower reservoirs and boreal ponds and lakes, and similar to rates reported for other temperate reservoirs. Similar average rates for CH4 were also relatively low, ranging from 6 to 187 mg·m−2·day−1. On a whole-reservoir basis, estimates of total emissions of CO2 ranged 10-fold, from 42,740 kg per day for Fontana to 501,151 kg per day for Guntersville, and total emissions of CH4 ranged over 30-fold, from 251 kg per day for Fontana to 9153 kg per day for Allatoona. Emissions through the tailwater pathway varied among reservoirs, comprising from 19% to 65% of total CO2 emissions and 0% to 84% of CH4 emissions, depending on the reservoir. Emission rates were significantly correlated with several reservoir morphological and water quality characteristics, including metrics related to vertical stratification (e.g., minimum water column temperature and maximum dissolved oxygen) and reservoir productivity (e.g., water transparency and chlorophyll a concentration).
机译:在2012年8月至9月期间,我们通过三种途径对美国东南部的六个水库进行了CO 2 和CH 4 排放的采样。水柱沸腾;以及发电过程中大坝尾水的损失。六个储集层(即储集层和尾水排放量)的平均CO 2 平面排放率估计范围为994至2760 mg·m -2 ·day -1 ,与热带水电水库和北方池塘和湖泊的CO 2 排放率相比处于中低水平,与其他温带水库的排放率相近。 CH 4 的相似平均率也相对较低,范围从6到187 mg·m -2 ·天 -1 。在整个储层的基础上,CO 2 的总排放量估计为10倍,从Fontana的每日42,740千克到Guntersville的每日501,151千克,以及CH 4的总排放的变化范围是30倍,从Fontana的每天251公斤到Allatoona的每天9153公斤。在不同的储层中,尾水途径的排放量各不相同,取决​​于总的CO 2 排放量的19%至65%和CH 4 排放量的0%至84%,具体取决于储层。排放速率与几种储层的形态和水质特征显着相关,包括与垂直分层(例如最低水柱温度和最大溶解氧)和储层生产率(例如水透明度和叶绿素a浓度)有关的指标。

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