Evaluating Different Catch Crop Strategies for Closing the Nitrogen Cycle in Cropping Systems-Field Experiments and Modelling

被引:29
作者
Boldt, Matthias [1 ]
Taube, Friedhelm [2 ]
Vogeler, Iris [1 ,3 ]
Reinsch, Thorsten [1 ]
Kluss, Christof [1 ]
Loges, Ralf [1 ]
机构
[1] Univ Kiel, Grass & Forage Sci Organ Agr, D-24118 Kiel, Germany
[2] Wageningen Univ, Dept Grass & Forage Sci Organ Agr, POB 338, NL-6700 AH Wageningen, Netherlands
[3] Aarhus Univ, Dept Agroecol, DK-8830 Tjele, Denmark
关键词
N leaching; N uptake; legumes and non-legumes; frost-killed and frost-tolerant catch crops; APSIM;
D O I
10.3390/su13010394
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
For arable stockless farming systems, the integration of catch crops (CC) during the fallow period might be a key for closing the nitrogen (N) cycle, reducing N leaching and increasing the transfer of N to the subsequent crop. However, despite considerable research efforts, the fate of N in such integrated systems remains unclear. To address this, a two-year field experiment was carried out in northern Germany with different CC, including frost-tolerant and frost-killed CC. The experiment started following a two-year ryegrass/red clover ley, which was subsequently sown with a cereal (CE) or a grain legume (field pea, PE). This provided two contrasting systems with high residual N in autumn. The results showed high N uptake of the CC, ranging from 84 to 136 kg N ha(-1) with PE as the pre-crop, and from 33 to 110 kg N ha(-1) with CE. All CC reduced N leaching compared with the control, a bare fallow over autumn/winter. Of the various CC, the frost-killed CC showed higher leaching compared with the other CCs, indicating mineralisation of the CC residue in the later autumn/winter period. The process based APSIM (Agricultural Production SIMulator) model was used to simulate N cycling for a cereal grain legume rotation, including a frost-killed and a frost resistant CC. While the model simulated the biomass and the N uptake by the crops, as well as the reduction of N leaching with the use of CC well, it under-estimated N leaching from the frost-killed CC. The study showed that all CC were affective at reducing N leaching, but winter hard catch crops should be preferred, as there is a risk of increased leaching following the mineralisation of residues from frost-killed CC.
引用
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页码:1 / 22
页数:22
相关论文
共 67 条
[21]   Evaluation of different agronomic strategies to reduce nitrate leaching after winter oilseed rape (Brassica napus L.) using a simulation model [J].
Henke, J. ;
Boettcher, U. ;
Neukam, D. ;
Sieling, K. ;
Kage, H. .
NUTRIENT CYCLING IN AGROECOSYSTEMS, 2008, 82 (03) :299-314
[22]   Crop modelling based analysis of site-specific production limitations of winter oilseed rape in northern Germany [J].
Hoffmann, M. P. ;
Jacobs, A. ;
Whitbread, A. M. .
FIELD CROPS RESEARCH, 2015, 178 :49-62
[23]   Nitrogen management in crop rotations after the break-up of grassland: Insights from modelling [J].
Hoffmann, Munir P. ;
Isselstein, Johannes ;
Roetter, Reimund P. ;
Kayser, Manfred .
AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 2018, 259 :28-44
[24]   APSIM - Evolution towards a new generation of agricultural systems simulation [J].
Holzworth, Dean P. ;
Huth, Neil I. ;
deVoil, Peter G. ;
Zurcher, Eric J. ;
Herrmann, Neville I. ;
McLean, Greg ;
Chenu, Karine ;
van Oosterom, Erik J. ;
Snow, Val ;
Murphy, Chris ;
Moore, Andrew D. ;
Brown, Hamish ;
Whish, Jeremy P. M. ;
Verrall, Shaun ;
Fainges, Justin ;
Bell, Lindsay W. ;
Peake, Allan S. ;
Poulton, Perry L. ;
Hochman, Zvi ;
Thorburn, Peter J. ;
Gaydon, Donald S. ;
Dalgliesh, Neal P. ;
Rodriguez, Daniel ;
Cox, Howard ;
Chapman, Scott ;
Doherty, Alastair ;
Teixeira, Edmar ;
Sharp, Joanna ;
Cichota, Rogerio ;
Vogeler, Iris ;
Li, Frank Y. ;
Wang, Enli ;
Hammer, Graeme L. ;
Robertson, Michael J. ;
Dimes, John P. ;
Whitbread, Anthony M. ;
Hunt, James ;
van Rees, Harm ;
McClelland, Tim ;
Carberry, Peter S. ;
Hargreaves, John N. G. ;
MacLeod, Neil ;
McDonald, Cam ;
Harsdorf, Justin ;
Wedgwood, Sara ;
Keating, Brian A. .
ENVIRONMENTAL MODELLING & SOFTWARE, 2014, 62 :327-350
[25]  
Justes E., 2017, Cover crops for sustainable farming, P1, DOI DOI 10.1007/978-94-024-0986-4_1
[26]   Estimating economic and environmental trade-offs of managing nitrogen in Australian sugarcane systems taking agronomic risk into account [J].
Kandulu, John ;
Thorburn, Peter ;
Biggs, Jody ;
Verburg, Kirsten .
JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2018, 223 :264-274
[27]   Roots contribute more to refractory soil organic matter than above-ground crop residues, as revealed by a long-term field experiment [J].
Katterer, Thomas ;
Bolinder, Martin Anders ;
Andren, Olof ;
Kirchmann, Holger ;
Menichetti, Lorenzo .
AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 2011, 141 (1-2) :184-192
[28]   Analysis and classification of data sets for calibration and validation of agro-ecosystem models [J].
Kersebaum, K. C. ;
Boote, K. J. ;
Jorgenson, J. S. ;
Nendel, C. ;
Bindi, M. ;
Fruehauf, C. ;
Gaiser, T. ;
Hoogenboom, G. ;
Kollas, C. ;
Olesen, J. E. ;
Rotter, R. P. ;
Ruget, F. ;
Thorburn, P. J. ;
Trnka, M. ;
Wegehenkel, M. .
ENVIRONMENTAL MODELLING & SOFTWARE, 2015, 72 :402-417
[29]  
Knorzer H., 2011, JAST-B, V1, P698
[30]   Above- and belowground nitrogen uptake of winter catch crops sown after silage maize as affected by sowing date [J].
Komainda, Martin ;
Taube, Friedhelm ;
Kluss, Christof ;
Herrmann, Antje .
EUROPEAN JOURNAL OF AGRONOMY, 2016, 79 :31-42