Mitigation alternatives to decrease nitrous oxides emissions and urea-nitrogen loss and their effect on methane flux

被引:157
作者
Delgado, JA
Mosier, AR
机构
关键词
D O I
10.2134/jeq1996.00472425002500050025x
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) and methane (CH4) are greenhouse gases that are contributing to global warming potential. Nitrogen (N) fertilizer is one of the most important sources of anthropogenic N2O emissions. A field study was conducted to compare N-use efficiency and effect on N2O and CH4 flux, of urea, urea plus the nitrification inhibitor dicyandiamide (U + DCD), and a control release fertilizer, polyolefin coated urea (POCU) in irrigated spring barley (Hordeum vulgare L.) in northeastern Colorado. Each treatment received 90 kg urea-N ha(-1) and microplots labeled with N-15-fertilizer were established. Average N2O emissions were 4.5, 5.2, 6.9, and 8.2 g N ha(-1) d(-1) for control, U + DCD, POCU, and urea, respectively. During the initial 21 d after fertilization, N2O emissions were reduced by 82 and 71% in the U + DCD and POCU treatments, respectively, but continued release of N fertilizer from POCU maintained higher N2O emissions through the remainder of the growing season. No treatment effect on CH4 oxidation in soils was observed. Fertilizer N-15 found 50 to 110 cm below the soil surface was lower in the POCU and U + DCD treatments. At harvest, recovery of N-15-fertilizer in the plant-soil system was 98, 90, and 85% from POCU, urea, and U + DCD, respectively. Grain yield was 2.2, 2.5, and 2.7 Mg ha(-1) for POCU, urea, and U + DCD, respectively. Dicyandiamide and POCU showed the potential to be used as mitigation alternatives to decrease N2O emissions from N fertilizer and movement of N out of the root zone, but N release from POCU does need to be formulated to better match crop growth demands.
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页码:1105 / 1111
页数:7
相关论文
共 46 条
[1]   METHANE CONSUMPTION IN TEMPERATE AND SUB-ARCTIC FOREST SOILS - RATES, VERTICAL ZONATION, AND RESPONSES TO WATER AND NITROGEN [J].
ADAMSEN, APS ;
KING, GM .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1993, 59 (02) :485-490
[2]   THE EFFECT OF CONTROLLED-RELEASE FERTILIZER OSMOCOTE ON GROWTH, YIELD AND COMPOSITION OF ONION PLANTS [J].
AMANS, EB ;
SLANGEN, JHG .
FERTILIZER RESEARCH, 1994, 37 (02) :79-84
[3]  
BEDARD C, 1989, MICROBIOL REV, V53, P68
[4]  
BOLIN B, 1994, 1994 REPORT SCI ASSE
[5]   NITROUS-OXIDE EMISSIONS IN IRRIGATED CORN AS AFFECTED BY NITRIFICATION INHIBITORS [J].
BRONSON, KF ;
MOSIER, AR ;
BISHNOI, SR .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1992, 56 (01) :161-165
[6]   SUPPRESSION OF METHANE OXIDATION IN AEROBIC SOIL BY NITROGEN FERTILIZERS, NITRIFICATION INHIBITORS, AND UREASE INHIBITORS [J].
BRONSON, KF ;
MOSIER, AR .
BIOLOGY AND FERTILITY OF SOILS, 1994, 17 (04) :263-268
[7]  
BRONSON KF, 1993, ASA SPEC P, V55, P133
[8]   DIFFUSION OF SOIL EXTRACTS FOR NITROGEN AND N-15 ANALYSES BY AUTOMATED COMBUSTION MASS-SPECTROMETRY [J].
BURKE, IC ;
MOSIER, AR ;
PORTER, LK ;
ODEEN, LA .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1990, 54 (04) :1190-1192
[9]   ANALYSIS OF SOURCES AND SINKS OF ATMOSPHERIC NITROUS-OXIDE (N2O) [J].
CICERONE, RJ .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1989, 94 (D15) :18265-18271
[10]  
DUXBURY JM, 1993, ASA SPEC P, V55, P1