Partitioning N2O emissions within the US Corn Belt using an inverse modeling approach

被引:31
作者
Chen, Zichong [1 ]
Griffis, Timothy J. [1 ]
Millet, Dylan B. [1 ]
Wood, Jeffrey D. [1 ]
Lee, Xuhui [2 ]
Baker, John M. [1 ,3 ]
Xiao, Ke [1 ]
Turner, Peter A. [1 ]
Chen, Ming [1 ]
Zobitz, John [4 ]
Wells, Kelley C. [1 ]
机构
[1] Univ Minnesota, Dept Soil Water & Climate, St Paul, MN 55108 USA
[2] Yale Univ, Sch Forestry & Environm Studies, New Haven, CT 06511 USA
[3] ARS, USDA, St Paul, MN USA
[4] Augsburg Coll, Dept Math, Minneapolis, MN USA
基金
美国农业部;
关键词
NITROUS-OXIDE EMISSIONS; GENERALIZED-MODEL; TALL TOWER; FLUXES; STREAM; PARAMETERIZATION; CONSTRAINTS; METHANE; SOILS; RIVER;
D O I
10.1002/2015GB005313
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Nitrous oxide (N2O) emissions within the US Corn Belt have been previously estimated to be 200-900% larger than predictions from emission inventories, implying that one or more source categories in bottom-up approaches are underestimated. Here we interpret hourly N2O concentrations measured during 2010 and 2011 at a tall tower using a time-inverted transport model and a scale factor Bayesian inverse method to simultaneously constrain direct and indirect agricultural emissions. The optimization revealed that both agricultural source categories were underestimated by the Intergovernmental Panel on Climate Change (IPCC) inventory approach. However, the magnitude of the discrepancies differed substantially, ranging from 42 to 58% and from 200 to 525% for direct and indirect components, respectively. Optimized agricultural N2O budgets for the Corn Belt were 319 +/- 184 (total), 188 +/- 66 (direct), and 131 +/- 118 Gg N yr(-1) (indirect) in 2010, versus 471 +/- 326, 198 +/- 80, and 273 +/- 246 Gg N yr(-1) in 2011. We attribute the interannual differences to varying moisture conditions, with increased precipitation in 2011 amplifying emissions. We found that indirect emissions represented 41-58% of the total agricultural budget, a considerably larger portion than the 25-30% predicted in bottom-up inventories, further highlighting the need for improved constraints on this source category. These findings further support the hypothesis that indirect emissions are presently underestimated in bottom-up inventories. Based on our results, we suggest an indirect emission factor for runoff and leaching ranging from 0.014 to 0.035 for the Corn Belt, which represents an upward adjustment of 1.9-4.6 times relative to the IPCC and is in agreement with recent bottom-up field studies.
引用
收藏
页码:1192 / 1205
页数:14
相关论文
共 60 条
  • [31] Constraints on Carbon Monoxide Emissions Based on Tall Tower Measurements in the US Upper Midwest
    Kim, Su Youn
    Millet, Dylan B.
    Hu, Lu
    Mohr, Michael J.
    Griffis, Tim J.
    Wen, Deyong
    Lin, John C.
    Miller, Scot M.
    Longo, Marcos
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2013, 47 (15) : 8316 - 8324
  • [32] Klein C.D., 2006, 2006 IPCC GUIDELINES
  • [33] Emissions of CH4 and N2O over the United States and Canada based on a receptor-oriented modeling framework and COBRA-NA atmospheric observations
    Kort, Eric A.
    Eluszkiewicz, Janusz
    Stephens, Britton B.
    Miller, John B.
    Gerbig, Christoph
    Nehrkorn, Thomas
    Daube, Bruce C.
    Kaplan, Jed O.
    Houweling, Sander
    Wofsy, Steven C.
    [J]. GEOPHYSICAL RESEARCH LETTERS, 2008, 35 (18)
  • [34] Toward Assimilation of Observation-Derived Mixing Heights to Improve Atmospheric Tracer Transport Models
    Kretschmer, Roberto
    Koch, Frank-Thomas
    Feist, Dietrich G.
    Biavati, Gionata
    Karstens, Ute
    Gerbig, Christoph
    [J]. LAGRANGIAN MODELING OF THE ATMOSPHERE, 2012, 200 : 185 - +
  • [35] Measuring fluxes of trace gases at regional scales by Lagrangian observations:: Application to the CO2 Budget and Rectification Airborne (COBRA) study -: art. no. D15304
    Lin, JC
    Gerbig, C
    Wofsy, SC
    Andrews, AE
    Daube, BC
    Grainger, CA
    Stephens, BB
    Bakwin, PS
    Hollinger, DY
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2004, 109 (D15) : D153041 - 23
  • [36] Accounting for the effect of transport errors on tracer inversions
    Lin, JC
    Gerbig, C
    [J]. GEOPHYSICAL RESEARCH LETTERS, 2005, 32 (01) : 1 - 5
  • [37] A near-field tool for simulating the upstream influence of atmospheric observations: The Stochastic Time-Inverted Lagrangian Transport (STILT) model
    Lin, JC
    Gerbig, C
    Wofsy, SC
    Andrews, AE
    Daube, BC
    Davis, KJ
    Grainger, CA
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2003, 108 (D16)
  • [38] Effects of soil temperature and moisture on methane uptake and nitrous oxide emissions across three different ecosystem types
    Luo, G. J.
    Kiese, R.
    Wolf, B.
    Butterbach-Bahl, K.
    [J]. BIOGEOSCIENCES, 2013, 10 (05) : 3205 - 3219
  • [39] Estimating regional carbon exchange in New England and Quebec by combining atmospheric, ground-based and satellite data
    Matross, Daniel M.
    Andrews, Arlyn
    Pathmathevan, Mahadevan
    Gerbig, Christoph
    Lin, John C.
    Wofsy, Steven C.
    Daube, Bruce C.
    Gottlieb, Elaine W.
    Chow, Victoria Y.
    Lee, John T.
    Zhao, Conglong
    Bakwin, Peter S.
    Munger, J. William
    Hollinger, David Y.
    [J]. TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY, 2006, 58 (05): : 344 - 358
  • [40] Nitrogen fertilizer management for nitrous oxide (N2O) mitigation in intensive corn (Maize) production: an emissions reduction protocol for US Midwest agriculture
    Millar, Neville
    Robertson, G. Philip
    Grace, Peter R.
    Gehl, Ron J.
    Hoben, John P.
    [J]. MITIGATION AND ADAPTATION STRATEGIES FOR GLOBAL CHANGE, 2010, 15 (02) : 185 - 204