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A method for the assessment of long-term changes in carbon stock by construction of a hydropower reservoir

机译:一种通过水库建设评估碳储量长期变化的方法

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摘要

Sustainability of hydropower reservoirs has been questioned since the detection of their greenhouse gas (GHG) emissions which are mainly composed of carbon dioxide and methane. A method to assess the impact on the carbon cycle caused by the transition from a natural river system into a reservoir is presented and discussed. The method evaluates the long term changes in carbon stock instead of the current approach of monitoring and integrating continuous short term fluxes. A case study was conducted in a subtropical reservoir in Brazil, showing that the carbon content within the reservoir exceeds that of the previous landuse. The average carbon sequestration over 43 years since damming was 895 mg C m-2day-1 and found to be mainly due to storage of carbon in sediments. These results demonstrate that reservoirs have two opposite effects on the balance of GHGs. By storing organic C in sediments, reservoirs are an important carbon sink. On the other hand, reservoirs increase the flux of methane into the atmosphere. If the sediments of reservoirs could be used for long term C storage, reservoirs might have a positive effect on the balance of GHGs.
机译:自从检测到主要由二氧化碳和甲烷组成的温室气体(GHG)排放以来,水力发电库的可持续性一直受到质疑。提出并讨论了一种方法,该方法评估了从天然河系向储层过渡对碳循环的影响。该方法评估的是碳库的长期变化,而不是目前的监测和整合连续短期通量的方法。在巴西的一个亚热带水库中进行了案例研究,结果表明该水库中的碳含量超过了以前的土地利用。筑坝以来43年的平均固碳量为895 mg C m -2 day -1 ,主要是由于沉积物中的碳存储所致。这些结果表明,储层对温室气体的平衡有两个相反的影响。通过将有机碳储存在沉积物中,储层是重要的碳汇。另一方面,储层增加了甲烷向大气中的通量。如果水库的沉积物可用于长期碳储存,则水库可能会对温室气体的平衡产生积极影响。

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