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Redox control of N:P ratios in aquatic ecosystems

机译:水生生态系统中N:P比例的氧化还原控制

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摘要

The ratio of dissolved fixed inorganic nitrogen to soluble inorganic phosphate (N:P) in the ocean interior is relatively constant, averaging ~16 : 1 by atoms. In contrast, the ratio of these two elements spans more than six orders of magnitude in lakes and other aquatic environments. To understand the factors influencing N:P ratios in aquatic environments, we analyzed 111 observational datasets derived from 35 water bodies, ranging from small lakes to ocean basins. Our results reveal that N:P ratios are highly correlated with the concentration of dissolved O below ~100 omol Lp#. At higher concentrations of O, N:P ratios are highly variable and not correlated with O; however, the coefficient of variation in N:P ratios is strongly related to the size of the water body. Hence, classical Redfield ratios observed in the ocean are anomalous; this specific elemental stoichiometry emerges not only as a consequence of the elemental ratio of the sinking flux of organic matter, but also as a result of the size of the basins and their ventilation. We propose that the link between N:P ratios, basin size and oxygen levels, along with the previously determined relationship between sedimentary tp#eN and oxygen, can be used to infer historical N:P ratios for any water body.
机译:海洋内部溶解的固定无机氮与可溶性无机磷酸盐(N:P)的比率相对恒定,按原子平均约为16:1。相反,在湖泊和其他水生环境中,这两种元素的比例超过六个数量级。为了了解影响水生环境中氮磷比的因素,我们分析了从35个水体(从小湖到海盆)的111个观测数据集。我们的结果表明,N:P比值与低于约100 omol Lp#的溶解O浓度高度相关。在较高的O浓度下,N:P的比例变化很大,并且与O不相关。但是,N:P比值的变化系数与水体的大小密切相关。因此,在海洋中观察到的经典雷德菲尔德比是反常的。这种特定的元素化学计量不仅是由于有机物下沉通量的元素比而产生的,而且还由于盆的大小及其通风而产生。我们建议将N:P比率,流域大小和氧气水平之间的联系,以及先前确定的tp#eN和氧气沉积之间的关系,用于推断任何水体的历史N:P比率。

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