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Variable-rate application of high spatial resolution can improve cotton N-use efficiency and profitability

机译:高空间分辨率的可变速率应用可以提高棉棉N利效率和盈利能力

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Spatial crop nitrogen (N) management has advanced over the years by using canopy reflectance data to make N recommendations. But the value of an automated system for variable-rate applications (VRA) has not been extensively demonstrated in cotton. This study evaluated the performance of an integrated system for on-the-go VRA at a 1-m spatial resolution in two different field trials in 2016 and 2017. The VRA system applied consistently less fertilizer N than the farmer practice, 42% and 33% less total N in the 2016 and 2017 field trials, respectively. Despite the reduced N inputs, increased energy-use efficiency (EUE) by 16% and return to N cost by euro81/ha in 2016, VRA still over-applied N because of lack of yield response to N fertilizer. In the 2017 field, VRA yield gains by 5-8% over the farmer practice were not statistically significant and came about after cotton regrowth due to a bollworm infestation. With or without a back-off function in effect, VRA delivered an Economic Optimum N Rate, greatly increased N recovery by 12-22%, EUE by 26% and net return to N by euro190-248/ha in comparison to the farmer. The reduction of N inputs also improved coupling of the soil-crop N cycle by reducing the effects of excess farmer application on soil acidity, electrical conductivity and residual nitrates in the root zone. Under the field conditions of this study, implementation of the high-resolution VRA can result in environmental and economic benefits especially in non-problematic fields where the crop responds to N fertilization.
机译:多年来,空间作物氮气(N)管理通过使用Canopy反射率数据来提出n建议。但是,用于可变速率应用(VRA)的自动化系统的价值尚未在棉花中进行广泛展示。本研究评估了2016年和2017年两种不同现场试验中的1米空间分辨率综合系统的综合系统的性能。VRA系统持续较少的肥料N比农民实践,42%和33分别在2016年和2017年现场试验中少于总数。尽管不降低了N个输入,但2016年恢复了能源利用效率(EUE),并返回N欧元81 /公顷的N成本,VRA仍然过度施加的N,因为缺乏对N肥的效果。在2017年的领域,在农民实践中,弗拉收益率超过5-8%并没有统计学意义,并在棉绒侵扰引起的棉花再生后出现。随着或没有退出函数的影响,VRA提供了经济最佳N率,大大增加了12-22%,与农民相比,净返回到N欧元返回N欧元。通过降低过量农民应用对根区土壤酸度,电导率和残留硝酸盐的影响,N个输入的减少还改善了土壤作物N循环的耦合。在本研究的现场条件下,高分辨率VRA的实施可能导致环境和经济效益,特别是在作物对N施肥的非问题领域。

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