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Precision Agriculture and Sustainability

机译:精准农业与可持续发展

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Precision Agriculture (PA) can help in managing crop production inputs in an environmentally friendly way. By using site-specific knowledge, PA can target rates of fertilizer, seed and chemicals for soil and other conditions. PA substitutes information and knowledge for physical inputs. A literature review indicates PA can contribute in many ways to long-term sustainability of production agriculture, confirming the intuitive idea that PA should reduce environmental loading by applying fertilizers andpesticides only where they are needed, and when they are needed. Precision agriculture benefits to the environment come from more targeted use of inputs that reduce losses from excess applications and from reduction of losses due to nutrient imbalances,weed escapes, insect damage, etc. Other benefits include a reduction in pesticide resistance development. One limitation of the papers reviewed is that only a few actually measured directly environmental indices, such as leaching with the use of soil sensors. Most of them estimated indirectly the environmental benefits by measuring the reduced chemical loading. Results from an on-farm trial in Argentina provide an example of how site-specific information and variable rate application could be used in maintaining profitability while reducing N applications. Results of the sensitivity analysis show that PA is a modestly more profitable alternative than whole field management, for a wide range of restrictions on N application levels. These restrictions might be government regulations or the landowner's understanding of environmental stewardship. In the example, variable rate of N maintains farm profitability even when nitrogen is restricted to less than half of the recommended uniform rate.
机译:精准农业(PA)可以以环保的方式帮助管理农作物的生产投入。通过使用特定地点的知识,PA可以针对土壤和其他条件确定肥料,种子和化学品的施用率。 PA用信息和知识代替了物理投入。文献综述表明,PA可以在许多方面为生产农业的长期可持续性做出贡献,这证实了PA应该通过仅在需要的地方和需要的地方施用肥料和杀虫剂来减少环境负荷的直观想法。精准农业对环境的好处来自于更有针对性地使用投入物,这些投入物减少了因过量施用而造成的损失,以及由于养分失衡,杂草逸出,虫害等引起的损失减少。其他好处包括减少了对农药的抗性。所审查论文的局限性在于,只有少数几个实际直接测量的环境指标,例如使用土壤传感器进行浸出。他们中的大多数人通过测量减少的化学负荷间接估算了环境效益。阿根廷农场试验的结果提供了一个示例,说明了如何使用特定地点的信息和可变利率申请来维持盈利能力,同时减少N申请。敏感性分析的结果表明,由于对N种施用水平有广泛的限制,所以与全田管理相比,PA是一种利润稍高的替代方案。这些限制可能是政府法规或土地所有者对环境管理的理解。在此示例中,即使将氮限制在建议的统一比率的一半以下,可变比率的氮也可以维持农场的盈利能力。

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