固氮
环境科学
氮气
水柱
水生生态系统
氮气循环
沉积物
栖息地
海洋学
生态学
活性氮
生物
地质学
化学
古生物学
有机化学
作者
Robinson W. Fulweiler,Shelby Rinehart,Jason M. Taylor,Michelle C. Kelly,Megan E. Berberich,Nicholas E. Ray,Autumn Oczkowski,Sawyer Balint,Mar Benavides,Matthew J. Church,Brianna M. Loeks,Silvia E. Newell,Malin Olofsson,Henry Oppong Tuffour,Sarah S. Roley,Carmella Vizza,Samuel T. Wilson,Subhadeep Chowdhury,Peter M. Groffman,J. Thad Scott
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2025-06-12
卷期号:388 (6752): 1205-1209
被引量:4
标识
DOI:10.1126/science.adt1511
摘要
Biological nitrogen fixation is a key driver of global primary production and climate. Decades of effort have repeatedly updated nitrogen fixation estimates for terrestrial and open ocean systems, yet other aquatic systems in between have largely been ignored. Here we present an evaluation of nitrogen fixation for inland and coastal waters. We demonstrate that water column and sediment nitrogen fixation is ubiquitous across these diverse aquatic habitats, with rates ranging six orders of magnitude. We conservatively estimate that, despite accounting for less than 10% of the global surface area, inland and coastal aquatic systems fix 40 (30 to 54) teragrams of nitrogen per year, equivalent to 15% of the nitrogen fixed on land and in the open ocean. Inland systems contribute more than half of this biological nitrogen fixation.
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