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Coupling of carbon and silicon geochemical cycles in rivers and lakes

机译:河流和湖泊中碳和硅地球化学循环的耦合

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摘要

Carbon (C) and silicon (Si) biogeochemical cycles are important factors in the regulation of atmospheric CO2 concentrations and hence climate change. Theoretically, these elements are linked by chemical weathering and organism stoichiometry, but this coupling has not been investigated in freshwaters. Here we compiled data from global rivers and lakes in the United States of America and the United Kingdom, in order to characterize the stoichiometry between the biogeochemical cycles of C and Si. In rivers this coupling is confirmed by a significant relationship between HCO3/Na+ and DSi/Na+, and DSi:HCO3 ratio can reflect the mineral source of chemical weathering. In lakes, however, these characteristic ratios of chemical weathering are altered by algal activity. The lacustrine Si:C atomic ratio is negative feedback regulation by phytoplankton, which may result in this ratio in algal assemblages similar to that in water column. And this regulation suggests lacustrine photosynthetic C fixation in this equilibrium state is quantitative and depends on the DSi concentration. These findings provide new insights into the role of freshwaters in global C and Si biogeochemical cycles.
机译:碳(C)和硅(Si)的生物地球化学循环是调节大气中CO2浓度和气候变化的重要因素。从理论上讲,这些元素是通过化学风化作用和生物化学计量联系在一起的,但尚未在淡水中研究这种耦合。在这里,我们收集了来自美国和英国的全球河流和湖泊的数据,以表征C和Si的生物地球化学循环之间的化学计量。在河流中,HCO3 - / Na + 和DSi / Na + 与DSi:HCO3 之间的显着关系证实了这种耦合− 比可以反映化学风化的矿物来源。然而,在湖泊中,藻类活性改变了化学风化的这些特征比。湖中的Si:C原子比是浮游植物的负反馈调节因子,可能导致藻类组合中的这一比例类似于水柱中的比例。并且该调节表明在这种平衡状态下湖光合作用的光合作用C固定是定量的,并且取决于DSi浓度。这些发现为淡水在全球碳和硅生物地球化学循环中的作用提供了新的见解。

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