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Enhanced greenhouse gas emission from exposed sediments along a hydroelectric reservoir during an extreme drought event

机译:在极端干旱事件中,沿水电水库暴露的沉积物增加的温室气体排放

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An active debate has been underway on the magnitude and duration of carbon (C) emissions from hydroelectric reservoirs, yet little attention has been paid to stochastic C emissions from reservoir sediments during extreme climatic events. A rare opportunity for field measurements of CO2 efflux from a hydroelectric reservoir in Korea during an extreme drought event was used to examine how prolonged droughts can affect microbial organic matter processing and the release of CO2, CH4 and N2O from exposed sediments. Chamber measurements of CO2 efflux along an exposed sediment transect, combined with high-frequency continuous sensor measurements of the partial pressure of CO2 (pCO2) in the reservoir surface water, exhibited extraordinary pulses of CO2 from exposed sediments and the turbulent inflowing water in contrast to a small CO2 sink in the main water body of the reservoir and a low efflux of CO2 from the flooded sediment. Significant increases in the production of CO2, CH4 and N2O observed in a laboratory incubation of sediments, together with enhanced activities of phenol oxidase and three hydrolases, indicate a temporary activation of microbial organic matter processing in the drying sediment. The results suggest that drought-triggered pulses of greenhouse gas emission from exposed sediments can offset the C accumulation in reservoir sediments over time scales of years to decades, reversing the trend of declining C emissions from aging reservoirs.
机译:关于水力发电水库碳(C)排放量的大小和持续时间的争论一直在进行,但是在极端气候事件期间,人们对水库沉积物的随机碳排放却很少关注。在韩国,发生极端干旱事件时,有一次难得的机会来实地测量韩国水力发电库中的CO2流出量,以研究长期干旱如何影响微生物有机物的加工以及暴露的沉积物中CO2,CH4和N2O的释放。沿暴露的沉积物横断面进行CO2流出的腔室测量,再结合高频连续传感器测量的储层地表水中的CO2分压(pCO2),显示出来自暴露的沉积物和湍流的入水的非常规CO2脉冲。在水库主要水体中有一个小的CO2汇,并且从被淹没的沉积物中流出的CO2很少。在实验室沉积物中的培养中观察到的CO2,CH4和N2O的产生显着增加,以及酚氧化酶和三种水解酶的活性增强,表明干燥的沉积物中微生物有机物加工的暂时活化。结果表明,干旱触发的裸露沉积物温室气体排放脉冲可以抵消多年到数十年时间范围内储层沉积物中碳的积累,从而扭转了老化储层中碳排放量下降的趋势。

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