Denitrification and Nitrous Oxide Emissions in Annual Croplands, Perennial Grass Buffers, and Restored Perennial Grasslands

被引:35
|
作者
Iqbal, Javed [1 ]
Parkin, Timothy B. [2 ]
Helmers, Matthew J. [3 ]
Zhou, Xiaobo [4 ]
Castellano, Michael J. [1 ]
机构
[1] Iowa State Univ, Dept Agron, Ames, IA 50014 USA
[2] USDA ARS, Natl Lab Agr & Environm, Ames, IA 50014 USA
[3] Iowa State Univ, Agr & Biosyst Engn, Ames, IA 50014 USA
[4] Monsanto Co, St Louis, MO 63167 USA
关键词
NITRATE REMOVAL; ACETYLENE INHIBITION; SHALLOW GROUNDWATER; FILTER STRIPS; SOIL; SEDIMENT; DYNAMICS; N2O; MINERALIZATION; MANAGEMENT;
D O I
10.2136/sssaj2014.05.0221
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
Inclusion of perennial vegetation filter strips (PFSs) in the toeslope of annual cropland watersheds can decrease NO3--N losses to ground and surface waters. Although PFSs are similar to riparian buffers, the processes responsible for NO3--N removal from PFSs are not well understood. Our objectives were to (i) determine the importance of denitrification as a sink for NO3--N loss from PFSs and (ii) evaluate how PFSs alter the biophysical processes that affect the relative importance of N2O and N-2 emissions. To address our objectives, we used a coupled field laboratory approach with experimental watersheds that included the following treatments: (i) PFSs covering the bottom 10% of the watershed and an annual corn-soybean crop rotation covering the remaining upslope 90% (PFS); (ii) 100% corn-soybean rotation (CORN); and (iii) 19-yr-old 100% restored native grassland (RNG). In situ N2O flux rates and laboratory N2O/(N-2 + N2O) ratios were highest in CORN watersheds followed by PFS and RNG watersheds. In contrast, potentially mineralizable C and denitrification enzyme activity (DEA) were highest in PFS and RNG watersheds and lowest in CORN watersheds. Furthermore, there was a negative correlation between N2O/(N-2 + N2O) ratio and DEA. In the laboratory, N-2 fluxes were highest in PFS followed by RNG and CORN. These results indicate that PFS watersheds support greater total denitrification while emitting less N2O than croplands. Greater potentially mineralizable C in PFS and RNG suggest C availability is an important factor affecting more complete denitrification. These results suggest PFSs function similar to riparian buffers and have potential to reduce NO3--N losses from annual croplands by denitrification to N-2.
引用
收藏
页码:239 / 250
页数:12
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