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A long-term precision agriculture system sustains grain profitability

机译:长期精确农业系统维持粮食盈利能力

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After two decades of availability of grain yield-mapping technology, long-term trends in field-scale profitability for precision agriculture (PA) systems and conservation practices can now be assessed. Field-scale profitability of a conventional or 'business-as-usual' system with an annual corn (Zea mays L.)-soybean (Glycine max [L.]) rotation and annual tillage was assessed for 11 years on a 36 ha field in central Missouri during 1993 to 2003. Following this, a 'precision agriculture system' (PAS) with conservation practices was implemented for the next 11 years to address production, profit and environmental concerns. The PAS was multifaceted and temporally dynamic. It included no-till, cover crops, crop rotation changes, site-specific N and variable-rate or zonal P, K and lime. Following a recent evaluation of differences in yield and yield variability, this research compared profitability of the two systems. Results indicated that PAS sustained profits in the majority (97%) of the field without subsidies for cover crops or payments for enhanced environmental protection. Profit was only lower with PAS in a drainage channel where no-till sometimes hindered soybean stands and wet soils caused wheat (Triticum aestivum L.) disease. Although profit gains were not realized after 11 years of PA and conservation practices, this system sustained profits. These results should help growers gain confidence that PA and conservation practices will be successful.
机译:经过二十年的粮食产量绘图技术,现在可以评估精密农业(PA)系统和保护实践的实地规模盈利能力的长期趋势。在36公顷的田地中评估了每年玉米(Zea Mays L.) - 大豆(甘氨酸Max [L.])旋转和年耕作的常规或常规'系统的现场盈利能力在1993年至2003年的密苏里州中部。在此之后,在未来11年内实施了“精密农业系统”(PAS),以解决生产,利润和环境问题。 PAS是多方刻录和时间动态的。它包括无直接,覆盖作物,作物旋转变化,特定于特定的N和可变速率或Zonal P,K和石灰。在最近评估产量和产量变异性差异之后,这项研究比较了两个系统的盈利能力。结果表明,无大多数(97%)领域的PAS持续利润,无需补贴涵盖作物或支付加强环保。利润仅在排水道中的PAS较低,其中没有有时阻碍大豆架和湿土壤导致小麦(Triticum Aestivum L.)疾病。虽然在PA和保护实践11年后,利润收益并未实现,但该系统持续利润。这些结果应该帮助种植者获得信心,即PA和保护做法将是成功的。

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