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A methodology for precision nitrogen fertilization in high-input farming systems

机译:高投入耕作系统中精确施氮的方法

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摘要

Nitrogen (N) emissions to ground and surface waters have become a major concern in many regions. In reaction, policy makers are tightening environmental constraints on agriculture, resulting in a call for more efficient management systems. This study presents a methodology for precision N fertilization in high-input farming systems applying split fertilizer strategies. Essentially, the method uses a mechanistic simulation model to quantify (i) soil mineral-N levels and (ii) N uptake rates on a real-time basis. Early warning signals are generated once N concentrations drop below a critical threshold level, indicating that additional fertilizer should be applied. Thresholds are not static, but defined in relation to actual uptake rates. Spatial variation is incorporated through the concept of management units: i.e., stable units with relatively homogeneous characteristics in terms of water regimes and nutrient dynamics. Separate simulations are conducted for each management unit, based on selectedrepresentative soil profiles. The proposed methodology was tested in a winter wheat (Triticum aestivum L.) field during the 1998 growing season. Six experimental strips were delineated receiving either 'precise' or traditional fertilization. Precision fertilization proved efficient in reducing fertilizer inputs (-23 percent), while slightly improving grain yields (+3 percent) and hectoliter weights (+4 percent). Results clearly illustrate the significance of precision management in the process of increasing fertilizer use efficiency.
机译:地下水和地表水的氮(N)排放已成为许多地区的主要问题。作为回应,政策制定者正在加强对农业的环境限制,从而呼吁建立更有效的管理体系。这项研究提出了一种应用分割肥料策略在高投入农业系统中精确施氮的方法。本质上,该方法使用机械模拟模型来实时定量(i)土壤矿物质氮含量和(ii)氮吸收率。一旦氮浓度降至临界阈值以下,便会产生预警信号,表明应施肥。阈值不是一成不变的,而是根据实际吸收率来定义的。空间变化是通过管理单位的概念纳入的:即在水位和养分动态方面具有相对均一特征的稳定单位。基于选定的代表性土壤剖面图,对每个管理单元进行单独的模拟。在1998年生长季节期间,该方法在冬小麦(Triticum aestivum L.)田间进行了测试。划定了六个实验条接受“精确”施肥或传统施肥。事实证明,精确施肥可有效减少肥料投入(-23%),同时略微提高谷物产量(+ 3%)和百升重量(+ 4%)。结果清楚地说明了精确管理在提高肥料使用效率过程中的重要性。

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