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Artículo

Anthropogenic Perturbations to the Atmospheric Molybdenum Cycle

Wong, Michelle Y.; Rathod, Sagar D.; Marino, Roxanne; Li, Longlei; Howarth, Robert W.; Alastuey, Andres; Alaimo, Maria Grazia; Barraza, Francisco; Carneiro, Manuel Castro; Chellam, Shankararaman; Chen, Yu Cheng; Cohen, David D.; Connelly, David; Dongarra, Gaetano; Gómez, Darió; Hand, Jenny; Harrison, R.M.; Hopke, Philip K.; Hueglin, Christoph; Kuang, Yuan Wen; Lambert, Fabrice; Liang, James; Losno, Remi; Maenhaut, Willy; Milando, Chad; Monteiro, Maria Inês Couto; Morera Gómez, Yasser; Querol, Xavier; Rodríguez, Sergio; Smichowski, Patricia NoraIcon ; Varrica, Daniela; Xiao, Yi Hua; Xu, Yangjunjie; Mahowald, Natalie M.
Fecha de publicación: 02/2021
Editorial: American Geophysical Union
Revista: Global Biogeochemical Cycles
ISSN: 0886-6236
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Ciencias Medioambientales

Resumen

Molybdenum (Mo) is a key cofactor in enzymes used for nitrogen (N) fixation and nitrate reduction, and the low availability of Mo can constrain N inputs, affecting ecosystem productivity. Natural atmospheric Mo aerosolization and deposition from sources such as desert dust, sea-salt spray, and volcanoes can affect ecosystem function across long timescales, but anthropogenic activities such as combustion, motor vehicles, and agricultural dust have accelerated the natural Mo cycle. Here we combined a synthesis of global atmospheric concentration observations and modeling to identify and estimate anthropogenic sources of atmospheric Mo. To project the impact of atmospheric Mo on terrestrial ecosystems, we synthesized soil Mo data and estimated the global distribution of soil Mo using two approaches to calculate turnover times. We estimated global emissions of atmospheric Mo in aerosols (<10 μm in diameter) to be 23 Gg Mo yr−1, with 40%–75% from anthropogenic sources. We approximated that for the top meter of soil, Mo turnover times range between 1,000 and 1,000,000 years. In some industrialized regions, anthropogenic inputs have enhanced Mo deposition 100-fold, lowering the soil Mo turnover time considerably. Our synthesis of global observational data, modeling, and a mass balance comparison with riverine Mo exports suggest that anthropogenic activity has greatly accelerated the Mo cycle, with potential to influence N-limited ecosystems.
Palabras clave: AEROSOL DEPOSITION , NITROGEN FIXATION , NITROGENASE , NUTRIENT LIMITATION , PARTICULATE MATTER
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
Identificadores
URI: http://hdl.handle.net/11336/211102
URL: https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2020GB006787
DOI: https://doi.org/10.1029/2020GB006787
Colecciones
Articulos(SEDE CENTRAL)
Articulos de SEDE CENTRAL
Citación
Wong, Michelle Y.; Rathod, Sagar D.; Marino, Roxanne; Li, Longlei; Howarth, Robert W.; et al.; Anthropogenic Perturbations to the Atmospheric Molybdenum Cycle; American Geophysical Union; Global Biogeochemical Cycles; 35; 2; 2-2021; 1-25
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