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首页> 外文期刊>Global Biogeochemical Cycles >Carbon cycling in large lakes of the world: A synthesis of production, burial, and lake-atmosphere exchange estimates
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Carbon cycling in large lakes of the world: A synthesis of production, burial, and lake-atmosphere exchange estimates

机译:世界大湖中的碳循环:生产,埋葬和湖-大气交换估计值的综合

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摘要

We present a synthesis of available estimates of primary production, organic carbon burial, and lake-atmosphere carbon dioxide exchange data for large lakes of the world. All three fluxes showed significant relationships with latitude and related climate variables, with lower production, higher evasion of carbon dioxide, and higher burial efficiency at higher latitudes. There was no relationship between raw organic carbon mass accumulation rates and latitude. Our estimates suggest that an order of magnitude more carbon is lost to the atmosphere by evasion than is buried in sediments at a global scale, with total global production, evasion, and burial fluxes of approximately 250, 90, and 7 Tg C yr(-1). Finally, the data suggest a trend from autotrophy in low-latitude large lakes to heterotrophy and increasing reliance on allochthonous carbon sources in lakes at higher latitudes.
机译:我们提供了有关世界上大湖泊的初级生产,有机碳埋藏和湖泊-大气二氧化碳交换数据的可用估计值的综合。这三种通量都与纬度和相关的气候变量有着显着的关系,在高纬度地区产量较低,二氧化碳逃逸率较高,埋葬效率较高。原始有机碳质量积累速率与纬度之间没有关系。我们的估计表明,通过逃逸向大气中损失的碳比在全球范围内埋在沉积物中的碳要多一个数量级,全球总生产,逃逸和埋葬通量约为250、90和7 Tg C yr(- 1)。最后,数据表明,从低纬度大湖泊的自养向异质养分的趋势,以及高纬度湖泊对异源碳源的依赖性增加。

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