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Development and critical evaluation of a generic 2-D agro-hydrological model (SMCR_N) for the responses of crop yield and nitrogen composition to nitrogen fertilizer\ud

机译:通用二维农业水文学模型(SMCR_N)的开发和关键评价,用于作物产量和氮素组成对氮肥的响应\ ud

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摘要

Models play an important role in optimizing fertilizer use in agriculture to maintain sustainable crop production and to minimize the risk to the environment. In this study, we present a new Simulation Model for Crop Response to Nitrogen fertilizer (SMCR_N). The SMCR_N model, based on the recently developed model EU-Rotate_N for the N-economies of a wide range of crops and cropping systems, includes new modules for the estimation of N in the roots and an associated treatment of the recovery of soil mineral N by crops, for the reduction of growth rates by excessive fertilizer-N, and for the N mineralization from soil organic matter. The validity of the model was tested against the results from 32 multi-level fertilizer experiments on 16 different crop species. For this exercise none of the coefficients or parameters in the model was adjusted to improve the agreement between measurement and simulation. Over the practical range of fertilizer-N levels model predictions were, with few exceptions, in good agreement with measurements of crop dry weight (excluding fibrous roots) and its %N. The model considered that the entire reduction of soil inorganic N during growth was due to the sum of nitrate leaching, retention of N in fibrous roots and N uptake by the rest of the plant. The good agreement between the measured and simulated uptakes suggests that in this arable soil, losses of N from other soil processes were small. At high levels of fertilizer-N yields were dominated by the negative osmotic effect of fertilizer-N and model predictions for some crops were poor. However, the predictions were significantly improved by using a different value for the coefficient defining the osmotic effect for saline sensitive crops. The developed model SMCR_N uses generally readily available inputs, and is more mechanistic than most agronomic models and thus has the potential to be used as a tool for optimizing fertilizer practice.
机译:模型在优化农业肥料使用以维持可持续的作物生产并最大程度地降低对环境的风险方面起着重要作用。在这项研究中,我们提出了一种新的作物对氮肥的响应模拟模型(SMCR_N)。 SMCR_N模型基于最新开发的EU-Rotate_N模型,适用于多种农作物和农作系统的N-经济,它包括用于估算根中N以及对土壤矿物质N回收进行相关处理的新模块。作物,以减少氮肥过量导致的增长率,以及土壤有机质中氮的矿化。针对来自16种不同农作物的32个多层次肥料实验的结果,测试了模型的有效性。对于此练习,模型中的任何系数或参数均未进行调整以改善测量与仿真之间的一致性。在肥料氮水平的实用范围内,除少数例外,模型预测与作物干重(不包括纤维根)及其%N的测量值高度吻合。该模型认为,生长过程中土壤无机氮的全部减少是由于硝酸盐浸出,纤维根中氮的保留以及其余植物吸收氮的总和。实测吸收量与模拟吸收量之间的良好一致性表明,在这种耕作土壤中,其他土壤过程中氮的损失很小。在氮肥水平高的情况下,氮肥的负渗透作用决定了氮肥的高产量,而对某些作物的模型预测很差。但是,通过使用不同的系数来定义盐敏感作物的渗透作用,可以大大改善预测结果。开发的模型SMCR_N使用通常容易获得的输入,并且比大多数农艺模型更具机械性,因此有潜力用作优化肥料操作的工具。

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