Expanding the WOFOST crop model to explore options for sustainable nitrogen management: A study for winter wheat in the Netherlands

被引:5
|
作者
Berghuijs, Herman N. C. [1 ,2 ]
Silva, Joao Vasco [1 ,3 ]
Reidsma, Pytrik [1 ]
de Wit, Allard J. W. [2 ]
机构
[1] Wageningen Univ, Plant Prod Syst, POB 430, NL-6700AK Wageningen, Netherlands
[2] Wageningen Environm Res, POB 47, NL-7800AA Wageningen, Netherlands
[3] Int Maize & Wheat Improvement Ctr CIMMYT, Sustainable Agrifood Syst Program, 12 5km peg Mazowe Rd, Harare, Zimbabwe
关键词
Crop growth model; Wofost; Nitrogen use efficiency; Winter wheat; ORGANIC-MATTER DYNAMICS; YIELD GAPS; SIMULATION-MODEL; USE EFFICIENCY; WATER-FLOW; SOIL; SYSTEM; APSIM; MINERALIZATION; RICE;
D O I
10.1016/j.eja.2024.127099
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Nitrogen (N) management is essential to ensure crop growth and to balance production, economic, and environmental objectives from farm to regional levels. This study aimed to extend the WOFOST crop model with N limited production and use the model to explore options for sustainable N management for winter wheat in the Netherlands. The extensions consisted of the simulation of crop and soil N processes, stress responses to N deficiencies, and the maximum gross CO2 assimilation rate being computed from the leaf N concentration. A new soil N module, abbreviated as SNOMIN (Soil Nitrogen for Organic and Mineral Nitrogen module) was developed. The model was calibrated and evaluated against field data. The model reproduced the measured grain dry matter in all treatments in both the calibration and evaluation data sets with a RMSE of 1.2 Mg ha-1 and the measured aboveground N uptake with a RMSE of 39 kg N ha-1. Subsequently, the model was applied in a scenario analysis exploring different pathways for sustainable N use on farmers' wheat fields in the Netherlands. Farmers' reported yield and N fertilization management practices were obtained for 141 fields in Flevoland between 2015 and 2017, representing the baseline. Actual N input and N output (amount of N in grains at harvest) were estimated for each field from these data. Water and N-limited yields and N outputs were simulated for these fields to estimate the maximum attainable yield and N output under the reported N management. The investigated scenarios included (1) closing efficiency yield gaps, (2) adjusting N input to the minimum level possible without incurring yield losses, and (3) achieving 90% of the simulated water-limited yield. Scenarios 2 and 3 were devised to allow for soil N mining (2a and 3a) and to not allow for soil N mining (2b and 3b). The results of the scenario analysis show that the largest N surplus reductions without soil N mining, relative to the baseline, can be obtained in scenario 1, with an average of 75%. Accepting negative N surpluses (while maintaining yield) would allow maximum N input reductions of 84 kg N ha-1 (39%) on average (scenario 2a). However, the adjustment in N input for these pathways, and the resulting N surplus, varied strongly across fields, with some fields requiring greater N input than used by farmers.
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页数:20
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