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Modeling the carbon cycle in Lake Matano

机译:建模马南湖中的碳循环

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Lake Matano, Indonesia, is a stratified anoxic lake with iron-rich waters that has been used as an analogue for the Archean and early Proterozoic oceans. Past studies of Lake Matano report large amounts of methane production, with as much as 80% of primary production degraded via methanogenesis. Low C-13 values of DIC in the lake are difficult to reconcile with this notion, as fractionation during methanogenesis produces isotopically heavy CO2. To help reconcile these observations, we develop a box model of the carbon cycle in ferruginous Lake Matano, Indonesia, that satisfies the constraints of CH4 and DIC isotopic profiles, sediment composition, and alkalinity. We estimate methane fluxes smaller than originally proposed, with about 9% of organic carbon export to the deep waters degraded via methanogenesis. In addition, despite the abundance of Fe within the waters, anoxic ferric iron respiration of organic matter degrades 3% of organic carbon export, leaving methanogenesis as the largest contributor to anaerobic organic matter remineralization, while indicating a relatively minor role for iron as an electron acceptor. As the majority of carbon exported is buried in the sediments, we suggest that the role of methane in the Archean and early Proterozoic oceans is less significant than presumed in other studies.
机译:印度尼西亚马塔诺湖是一种分层的缺氧湖,具有富含铁水的水域,被用作Archean和早期前古代海洋的类似物。过去研究马南湖报告大量的甲烷生产,多达80%的初级产量通过甲烷化降解。湖中DIC的低C-13值难以与这种观念调和,因为甲烷期间的分馏产生同位素重的CO 2。为了帮助调整这些观察,我们开发了印度尼西亚铁桂湖马塔诺湖的碳循环盒模型,满足CH4和DIC同位素谱,泥沙组合物和碱度的约束。我们估计比最初提出的甲烷通量,约9%的有机碳导出到深水通过甲烷化降解。此外,尽管水域内有丰富的Fe,有机质的缺氧性铁呼吸降解了含有有机碳出口的3%,作为厌氧有机质再矿化的最大贡献者,同时表明铁的相对较小的作用电子受体。随着出口的大部分碳被埋在沉积物中,我们建议甲烷在阿臣和早期的前古世海洋的作用不如在其他研究中推测的重要意义。

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    《Geobiology》 |2015年第5期|共8页
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  • 正文语种 eng
  • 中图分类 生物科学;
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