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      Effects of glaciers on nutrient concentrations and phytoplankton in lakes within the Northern Cascades Mountains (USA)

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          Physiographically sensitive mapping of climatological temperature and precipitation across the conterminous United States

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            On the Interpretation of χ 2 from Contingency Tables, and the Calculation of P

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              Shifts in lake N:P stoichiometry and nutrient limitation driven by atmospheric nitrogen deposition.

              Human activities have more than doubled the amount of nitrogen (N) circulating in the biosphere. One major pathway of this anthropogenic N input into ecosystems has been increased regional deposition from the atmosphere. Here we show that atmospheric N deposition increased the stoichiometric ratio of N and phosphorus (P) in lakes in Norway, Sweden, and Colorado, United States, and, as a result, patterns of ecological nutrient limitation were shifted. Under low N deposition, phytoplankton growth is generally N-limited; however, in high-N deposition lakes, phytoplankton growth is consistently P-limited. Continued anthropogenic amplification of the global N cycle will further alter ecological processes, such as biogeochemical cycling, trophic dynamics, and biological diversity, in the world's lakes, even in lakes far from direct human disturbance.
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                Author and article information

                Journal
                Biogeochemistry
                Biogeochemistry
                Springer Science and Business Media LLC
                0168-2563
                1573-515X
                December 2016
                October 24 2016
                December 2016
                : 131
                : 3
                : 373-385
                Article
                10.1007/s10533-016-0264-y
                faa2741e-63d1-451b-a321-dad06ab58528
                © 2016

                http://www.springer.com/tdm

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