N: 90 S: -90 E: 180 W: -180
Description
This data set provides global gridded estimates of atmospheric deposition of total inorganic nitrogen (N), NHx (NH3 and NH4+), and NOy (all oxidized forms of nitrogen other than N2O), in mg N/m2/year, for the years 1860 and 1993 and projections for the year 2050. The data set was generated using a global three-dimensional chemistry-transport model (TM3) with a spatial resolution of 5 degrees longitude by 3.75 degrees latitude (Jeuken et al., 2001; Lelieveld and Dentener, 2000). Nitrogen emissions estimates (Van Aardenne et al., 2001) and projection scenario data (IPCC, 1996; 2000) were used as input to the model. The model output grids were subdivided into 50 km x 50 km sub-grids to create spatially defined deposition maps. The gridded data were assigned to continental and marine regions using boundaries delineated on a world data coverage from ESRI (1993).The data are stored as ASCII text files (.txt), in tab delimited format. The data can be used to produce maps that illustrate both the temporal and spatial variability of atmospheric deposition of N, NHx, and NOy as well as the degree of alteration and regional heterogeneity in deposition through time. Nine data files are provided to produce the following maps:Global N Deposition (1860, 1993, and 2050)Global NHx Deposition (1860, 1993, and 2050)Global NOy Deposition (1860, 1993, and 2050).
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Publications Citing This Dataset
| Title | Year Sort ascending | Author | Topic |
|---|---|---|---|
| Global manure nitrogen production and application in cropland during 18602014: a 5 arcmin gridded global dataset for Earth system modeling | Zhang, Bowen, Tian, Hanqin, Lu, Chaoqun, Dangal, Shree R. S., Yang, Jia, Pan, Shufen | Nitrogen Compounds, Nitrogen Oxides, Fertilizers, Nutrient Cycling, Agricultural Expansion, Industrialization | |
| Global methane and nitrous oxide emissions from terrestrial ecosystems due to multiple environmental changes | Tian, Hanqin, Chen, Guangsheng, Lu, Chaoqun, Xu, Xiaofeng, Ren, Wei, Zhang, Bowen, Banger, Kamaljit, Tao, Bo, Pan, Shufen, Liu, Mingliang, Zhang, Chi, Bruhwiler, Lori, Wofsy, Steven | Nitrogen Compounds, Nitrogen Oxides, Soil Classification, Soil Chemistry, Soil Bulk Density, Nitrogen, Carbon, Soil Horizons/Profile, Soil Moisture/Water Content, Soil Water Holding Capacity | |
| Modelling the demand for new nitrogen fixation by terrestrial ecosystems | Xu-Ri, Prentice, I. Colin | Nitrogen Compounds, Nitrogen Oxides | |
| Processbased TRIPLEXGHG model for simulating N2O emissions from global forests and grasslands: Model development and evaluation | Zhang, Kerou, Peng, Changhui, Wang, Meng, Zhou, Xiaolu, Li, Mingxu, Wang, Kefeng, Ding, Juhua, Zhu, Qiuan | Nitrogen Compounds, Nitrogen Oxides | |
| Preindustrial nitrous oxide emissions from the land biosphere estimated by using a global biogeochemistry model | Xu, Rongting, Tian, Hanqin, Lu, Chaoqun, Pan, Shufen, Chen, Jian, Yang, Jia, Zhang, Bowen | Nitrogen Compounds, Nitrogen Oxides, Fertilizers, Nutrient Cycling, Agricultural Expansion, Industrialization | |
| Widespread anthropogenic nitrogen in northwestern Pacific Ocean sediment | Kim, Haryun, Lee, Kitack, Lim, Dhong-Il, Nam, Seung-Il, Kim, Tae-Wook, Yang, Jin-Yu T., Ko, Young Ho, Shin, Kyung-Hoon, Lee, Eunil | Nitrogen Compounds, Nitrogen Oxides | |
| Simulation of land use impacts on sediment and nutrient transfer in coastal areas of Western Cape, South Africa | Gebel, Micha, Burger, Stephan, Wallace, Michael, Malherbe, Hanlie, Vogt, Hannah, Lorz, Carsten | Nitrogen Compounds, Nitrogen Oxides | |
| Response of Water Use Efficiency to Global Environmental Change Based on Output From Terrestrial Biosphere Models | Zhou, Sha, Yu, Bofu, Schwalm, Christopher R., Ciais, Philippe, Zhang, Yao, Fisher, Joshua B., Michalak, Anna M., Wang, Weile, Poulter, Benjamin, Huntzinger, Deborah N., Niu, Shuli, Mao, Jiafu, Jain, Atul, Ricciuto, Daniel M., Shi, Xiaoying, Ito, Akihiko, Wei, Yaxing, Huang, Yuefei, Wang, Guangqian | Nitrogen Compounds, Nitrogen Oxides | |
| Two centuries of nitrogen dynamics: Legacy sources and sinks in the Mississippi and Susquehanna River Basins | Van Meter, K. J., Basu, N. B., Van Cappellen, P. | Nitrogen Compounds, Nitrogen Oxides | |
| Decrease in winter respiration explains 25% of the annual northern forest carbon sink enhancement over the last 30 years | Yu, Zhen, Wang, Jingxin, Liu, Shirong, Piao, Shilong, Ciais, Philippe, Running, Steven W., Poulter, Benjamin, Rentch, James S., Sun, Pengsen | Nitrogen Compounds, Nitrogen Oxides | |
| Contrasting changes in gross primary productivity of different regions of North America as affected by warming in recent decades | Mekonnen, Zelalem A., Grant, Robert F., Schwalm, Christopher | Nitrogen Compounds, Nitrogen Oxides | |
| Implementation of data citations and persistent identifiers at the ORNL DAAC | Cook, Robert B., Vannan, Suresh K.S., McMurry, Benjamin F., Wright, Daine M., Wei, Y., Boyer, Alison G., Kidder, J.H. | Carbon, Nitrogen, Soil Water Holding Capacity, Soil Bulk Density, Soil Chemistry, Soil Classification, Soil Moisture/Water Content, Soil Horizons/Profile, Nitrogen Compounds, Nitrogen Oxides, Forests, Biomass, Discharge, Soil Depth, Albedo, Leaf Characteristics, Photosynthetically Active Radiation, Carbon, Respiration Rate, Atmospheric Water Vapor, Runoff, Ecosystem Functions, Agricultural Lands, Atmospheric Carbon Dioxide, Longwave Radiation, Shortwave Radiation, Air Temperature, Precipitation Amount, Land Use/Land Cover Classification, Surface Winds, Humidity, Solar Radiation, Net Radiation, Surface Pressure, Snow Depth, Land Surface Temperature, Radiative Flux, Water Vapor, Soil Temperature, Heat Flux, Wetlands, Inundation | |
| A comprehensive framework to assess the sustainability of nutrient use in global livestock supply chains | Uwizeye, Aimable, Gerber, Pierre J., Schulte, Rogier P.O., de Boer, Imke J.M. | Nitrogen Compounds, Nitrogen Oxides | |
| Effects of different N sources on riverine DIN export and retention in a subtropical high-standing island, Taiwan | Huang, Jr-Chuan, Lee, Tsung-Yu, Lin, Teng-Chiu, Hein, Thomas, Lee, Li-Chin, Shih, Yu-Ting, Kao, Shuh-Ji, Shiah, Fuh-Kwo, Lin, Neng-Huei | Nitrogen Compounds, Nitrogen Oxides | |
| Increasing net ecosystem biomass production of Canada's boreal and temperate forests despite decline in dry climates | Hember, Robbie A., Kurz, Werner A., Coops, Nicholas C. | Nitrogen Compounds, Nitrogen Oxides | |
| Mechanisms driving the soil organic matter decomposition response to nitrogen enrichment in grassland soils | Riggs, Charlotte E., Hobbie, Sarah E. | Nitrogen Compounds, Nitrogen Oxides | |
| Rapid N2O fluxes at high level of nitrate nitrogen addition during freeze-thaw events in boreal peatlands of Northeast China | Cui, Qian, Song, Changchun, Wang, Xianwei, Shi, Fuxi, Wang, Lili, Guo, Yuedong | Nitrogen Compounds, Nitrogen Oxides | |
| Temporal nutrient dynamics in the Mediterranean Sea in response to anthropogenic inputs | Moon, JiYoung, Lee, Kitack, Tanhua, Toste, Kress, Nurit, Kim, IlNam | Nitrogen Compounds, Nitrogen Oxides | |
| Dependence of ombrotrophic peat nitrogen on phosphorus and climate | Toberman, Hannah, Tipping, Edward, Boyle, John F., Helliwell, Rachel C., Lilly, Allan, Henrys, Peter A. | Nitrogen Compounds, Nitrogen Oxides, Sunshine, Air Temperature, Rain, Precipitation Amount | |
| Impacts of climate variability and extremes on global net primary production in the first decade of the 21st century | Pan, Shufen, Tian, Hanqin, Dangal, Shree R. S., Ouyang, Zhiyun, Lu, Chaoqun, Yang, Jia, Tao, Bo, Ren, Wei, Banger, Kamaljit, Yang, Qichun, Zhang, Bowen | Nitrogen Compounds, Nitrogen Oxides | |
| Ecosystem carbon stocks and sequestration potential of federal lands across the conterminous United States | Tan, Zhengxi, Liu, Shuguang, Sohl, Terry L., Wu, Yiping, Young, Claudia J. | Nitrogen Compounds, Nitrogen Oxides | |
| Changes in forest biomass over China during the 2000s and implications for management | Sun, Zhenzhong, Peng, Shushi, Li, Xiran, Guo, Zhaodi, Piao, Shilong | Nitrogen Compounds, Nitrogen Oxides | |
| Nitrogen addition changes grassland soil organic matter decomposition | Riggs, Charlotte E., Hobbie, Sarah E., Bach, Elizabeth M., Hofmockel, Kirsten S., Kazanski, Clare E. | Nitrogen Compounds, Nitrogen Oxides | |
| Nitrogen and phosphorous limitation reduces the effects of land use change on land carbon uptake or emission | Wang, Ying-Ping, Zhang, Qian, Pitman, Andrew J, Dai, Yongjiu | Nitrogen Compounds, Nitrogen Oxides | |
| Anthropogenic nitrogen deposition predicts local grassland primary production worldwide | Stevens, Carly J., Lind, Eric M., Hautier, Yann, Harpole, W. Stanley, Borer, Elizabeth T., Hobbie, Sarah, Seabloom, Eric W., Ladwig, Laura, Bakker, Jonathan D., Chu, Chengjin, Collins, Scott, Davies, Kendi F., Firn, Jennifer, Hillebrand, Helmut, Pierre, Kimberly J. La, MacDougall, Andrew, Melbourne, Brett, McCulley, Rebecca L., Morgan, John, Orrock, John L., Prober, Suzanne M., Risch, Anita C., Schuetz, Martin, Wragg, Peter D. | Nitrogen Compounds, Nitrogen Oxides |