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Economic feasibility of site-specific optical sensing for managing nitrogen fertilizer for growing wheat

机译:实地光学传感技术管理小麦生长中氮肥的经济可行性

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A site-specific nitrogen fertilizer application system that uses optical reflectance measurements of growing wheat plants to estimate N requirements has been developed. The machine enables unique applications of liquid N fertilizer at a grid level of 0.37 m2. To achieve widespread adoption, the precision application system must be efficient enough to overcome the cost advantage of pre-plant applications of anhydrous ammonia (NH3) relative to top-dress applications of either dry or liquid N sources on growing wheat. The objective of this research is to determine if the system is more profitable than conventional methods. Data from on-farm N fertilizer experiments were collected across three years and nine locations in the Southern Plains of the U.S.A. Net returns were calculated for each of eight treatments. The site-specific precision system was competitive economically, but it was not unambiguously superior to the conventional alternatives because it could not overcome the cost advantage of NH3 pre-plant N sources relative to the cost of applying urea-ammonium nitrate (UAN) during the growing season. The value of the precision system is sensitive to the price of UAN relative to the price of NH3.
机译:已经开发了一种特定地点的氮肥施用系统,该系统使用生长中的小麦植物的光反射率测量值来估算氮需求量。该机器可在0.37 m2的网格高度上独特地应用液态N肥料。为了获得广泛采用,精密施肥系统必须具有足够的效率,以克服无水氨(NH3 )在种植前施肥相对于小麦生长中的干氮或液态氮源追肥的成本优势。这项研究的目的是确定该系统是否比传统方法更有利可图。在美国南部平原的三年和九个地点收集了农场N肥料实验的数据。计算了八种处理方法的净收益。特定地点的精度系统在经济上具有竞争力,但它不能比常规替代系统明显胜过,因为它无法克服NH3 种植前N源的成本优势(相对于使用尿素-硝酸铵的成本( UAN)。精密系统的价值对UAN的价格相对于NH3的价格敏感。

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