Soil Greenhouse Gas Emissions in Response to Corn Stover Removal and Tillage Management Across the US Corn Belt

被引:56
|
作者
Jin, Virginia L. [1 ]
Baker, John M. [2 ]
Johnson, Jane M. -F. [3 ]
Karlen, Douglas L. [4 ]
Lehman, R. Michael [5 ]
Osborne, Shannon L. [5 ]
Sauer, Thomas J. [4 ]
Stott, Diane E. [6 ]
Varvel, Gary E. [1 ]
Venterea, Rodney T. [2 ]
Schmer, Marty R. [1 ]
Wienhold, Brian J. [1 ]
机构
[1] Univ Nebraska, ARS, USDA, Lincoln, NE 68583 USA
[2] ARS, USDA, St Paul, MN 55108 USA
[3] ARS, USDA, Morris, MN 56267 USA
[4] ARS, USDA, Ames, IA 50011 USA
[5] ARS, USDA, Brookings, SD 57006 USA
[6] ARS, USDA, W Lafayette, IN 47907 USA
基金
美国能源部; 美国农业部;
关键词
Corn stover; Tillage; Residue management; Static vented chamber; Carbon dioxide; Nitrous oxide; Methane; NITROUS-OXIDE EMISSIONS; CARBON-DIOXIDE; RESIDUE MANAGEMENT; ORGANIC-CARBON; N2O EMISSIONS; METHANE FLUXES; CROP-ROTATION; NO-TILLAGE; SYSTEMS; FERTILIZER;
D O I
10.1007/s12155-014-9421-0
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
In-field measurements of direct soil greenhouse gas (GHG) emissions provide critical data for quantifying the net energy efficiency and economic feasibility of crop residue-based bioenergy production systems. A major challenge to such assessments has been the paucity of field studies addressing the effects of crop residue removal and associated best practices for soil management (i.e., conservation tillage) on soil emissions of carbon dioxide (CO2), nitrous oxide (N2O), and methane (CH4). This regional survey summarizes soil GHG emissions from nine maize production systems evaluating different levels of corn stover removal under conventional or conservation tillage management across the US Corn Belt. Cumulative growing season soil emissions of CO2, N2O, and/or CH4 were measured for 2-5 years (2008-2012) at these various sites using a standardized static vented chamber technique as part of the USDA-ARS's Resilient Economic Agricultural Practices (REAP) regional partnership. Cumulative soil GHG emissions during the growing season varied widely across sites, by management, and by year. Overall, corn stover removal decreased soil total CO2 and N2O emissions by -4 and -7 %, respectively, relative to no removal. No management treatments affected soil CH4 fluxes. When aggregated to total GHG emissions (Mg CO2 eq ha(-1)) across all sites and years, corn stover removal decreased growing season soil emissions by -5 +/- 1 % (mean +/- se) and ranged from -36 % to 54 % (n = 50). Lower GHG emissions in stover removal treatments were attributed to decreased C and N inputs into soils, as well as possible microclimatic differences associated with changes in soil cover. High levels of spatial and temporal variabilities in direct GHG emissions highlighted the importance of site-specific management and environmental conditions on the dynamics of GHG emissions from agricultural soils.
引用
收藏
页码:517 / 527
页数:11
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