Long-term effects of clipping and nitrogen management in turfgrass on soil organic carbon and nitrogen dynamics: The CENTURY model simulation

被引:124
作者
Qian, YL [1 ]
Bandaranayake, W
Parton, WJ
Mecham, B
Harivandi, MA
Mosier, AR
机构
[1] Colorado State Univ, Dept Hort & Landscape Architecture, Ft Collins, CO 80523 USA
[2] Colorado State Univ, NREL, Ft Collins, CO 80523 USA
[3] No Colorado Water Conservancy Dist, Loveland, CO 80539 USA
[4] Univ Calif Cooperat Extens, Alameda, CA 94502 USA
[5] USDA ARS, Soil Plant Nutr Res Unit, Ft Collins, CO 80522 USA
关键词
D O I
10.2134/jeq2003.1694
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Experiments to document the long-term effects of clipping management on N requirements, soil organic carbon (SOC), and soil organic nitrogen (SON) are difficult and costly and therefore few. The CENTURY ecosystem model offers an opportunity to study long-term effects of turfgrass clipping management on biomass production, N requirements, SOC and SON, and N leaching through computer simulation. In this study, the model was verified by comparing CENTURY-predicted Kentucky bluegrass (Poa pratensis L.) clipping yields with field-measured clipping yields. Long-term simulations were run for Kentucky bluegrass grown under home lawn conditions on a clay loam soil in Colorado. The model predicted that compared with clipping-removed management, returning clippings for 10 to 50 yr would increase soil C sequestration by 11 to 25% and nitrogen sequestration by 12 to 28% under a high (150 kg N ha(-1)yr(-1)) nitrogen (N) fertilization regime, and increase soil carbon sequestration by 11 to 59% and N sequestration by 14 to 78% under a low (75 kg N ha(-1)yr(-1)) N fertilization regime. The CENTURY model was further used as a management supporting system to generate optimal N fertilization rates as a function of turfgrass age. Returning grass clippings to the turf-soil ecosystem can reduce N requirements by 25% from 1 to 10 yr after turf establishment, by 33% 11 to 25 yr after establishment, by 50% 25 to 50 yr after establishment, and by 60% thereafter. The CENTURY model shows potential for use as a decision-supporting tool for maintaining turf quality and minimizing negative environmental impacts.
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页码:1694 / 1700
页数:7
相关论文
共 28 条
[1]   Estimation of soil organic carbon changes in turfgrass systems using the CENTURY model [J].
Bandaranayake, W ;
Qian, YL ;
Parton, WJ ;
Ojima, DS ;
Follett, RF .
AGRONOMY JOURNAL, 2003, 95 (03) :558-563
[2]   SIMULATION OF SOIL ORGANIC-CARBON AND NITROGEN CHANGES IN CEREAL AND PASTURE SYSTEMS OF SOUTHERN AUSTRALIA [J].
CARTER, MR ;
PARTON, WJ ;
ROWLAND, IC ;
SCHULTZ, JE ;
STEED, GR .
AUSTRALIAN JOURNAL OF SOIL RESEARCH, 1993, 31 (04) :481-491
[3]   ENERGETICS OF A SUBURBAN LAWN ECOSYSTEM [J].
FALK, JH .
ECOLOGY, 1976, 57 (01) :141-150
[4]   THE PRIMARY PRODUCTIVITY OF LAWNS IN A TEMPERATE ENVIRONMENT [J].
FALK, JH .
JOURNAL OF APPLIED ECOLOGY, 1980, 17 (03) :689-695
[5]  
*FAO, 2002, FAOSTAT AGR DAT
[6]  
Harivandi M. A., 2001, International Turfgrass Society Research Journal, V9, P882
[7]   Kentucky bluegrass responses to mowing practice and nitrogen fertility management [J].
Heckman, JR ;
Liu, H ;
Hill, W ;
DeMilia, M ;
Anastasia, WL .
JOURNAL OF SUSTAINABLE AGRICULTURE, 2000, 15 (04) :25-33
[8]  
*INT PAN CLIM CHAN, 1997, IPCC GUID NAT GREENH, pCH4
[9]   CARBON STORAGE AND FLUX IN URBAN RESIDENTIAL GREENSPACE [J].
JO, HK ;
MCPHERSON, EG .
JOURNAL OF ENVIRONMENTAL MANAGEMENT, 1995, 45 (02) :109-133
[10]   Simulating trends in soil organic carbon in long-term experiments using the century model [J].
Kelly, RH ;
Parton, WJ ;
Crocker, GJ ;
Grace, PR ;
Klir, J ;
Korschens, M ;
Poulton, PR ;
Richter, DD .
GEODERMA, 1997, 81 (1-2) :75-90