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首页> 外文期刊>Field Crops Research >Improving in-season nitrogen recommendations for maize using an active sensor.
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Improving in-season nitrogen recommendations for maize using an active sensor.

机译:使用有源传感器改善玉米的季节氮建议。

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An active crop canopy reflectance sensor could be used to increase N-use efficiency in maize (Zea mays L.), if temporal and spatial variability in soil N availability and plant demand are adequately accounted for with an in-season N application. Our objective was to evaluate the success of using an active canopy sensor for developing maize N recommendations. This study was conducted in 21 farmers' fields from 2007 to 2009, representing the maize production regions of east central and southeastern Pennsylvania, USA. Four blocks at each site included seven sidedress N rates (0-280 kg N ha-1) and one at-planting N rate of 280 kg N ha-1. Canopy reflectance in the 590 nm and 880 nm wavelengths, soil samples, chlorophyll meter (SPAD) measurements and above-ground biomass were collected at the 6th-7th-leaf growth stage (V6-V7). Relative amber normalized difference vegetative index (ANDVIrelative) and relative SPAD (SPADrelative) were determined based on the relative measurements from the zero sidedress treatment to the 280 kg N ha-1 at-planting treatment. Observations from the current study were compared to relationships between economic optimum N rate (EONR) and ANDVIrelative, presidedress NO3 test (PSNT), or SPADrelative that were developed from a previous study. These comparisons were based on an absolute mean difference (AMD) between observed EONR and the previously determined predicted relationships. The AMD for the relationship between EONR and ANDVIrelative in the current study was 46 kg N ha-1. Neither the PSNT (AMD=66 kg N ha-1) nor the SPADrelative (AMD=72 kg N ha-1) provided as good an indicator of EONR. When using all the observations from the two studies for the relationships between EONR and the various measurements, ANDVIrelative (R2=0.65) provided a better estimate of EONR than PSNT (R2=0.49) or SPADrelative (not significant). Crop reflectance captured similar information as the PSNT and SPADrelative, as reflected in strong relationships (R2relative) provided as good or better an indicator of EONR than PSNT or SPADrelative, and provides an opportunity to easily adjust in-season N applications spatially.
机译:如果土壤氮素的有效利用和植物需求的时间和空间变化能够充分考虑在内,那么可以使用一个活跃的作物冠层反射率传感器来提高玉米(Zea mays L.)的氮素利用效率。季N申请。我们的目标是评估使用主动冠层传感器制定玉米N推荐值的成功性。这项研究于2007年至2009年在21个农民田间进行,代表了美国宾夕法尼亚州中东部和东南部的玉米生产地区。每个地点的四个街区包括7个施肥N比例(0-280 kg N ha -1 )和一个种植时施氮280 kg N ha -1 。在第6至第7叶片生长期(V6-V7)收集了590 nm和880 nm波长的冠层反射率,土壤样品,叶绿素仪(SPAD)测量和地上生物量。根据从零边饰处理到280 kg N ha <的相对测量值,确定相对琥珀色归一化差异植物营养指数(ANDVI relative )和相对SPAD(SPAD relative )。 sup> -1 栽植处理。将当前研究的观察结果与经济最佳N率(EONR)和ANDVI relative ,predress NO NO 3 检验(PSNT)或SPAD relative < / sub>是根据先前的研究开发的。这些比较是基于观察到的EONR与先前确定的预测关系之间的绝对平均差(AMD)。本研究中EONR与ANDVI relative 之间的关系的AMD为46 kg N ha -1 。 PSNT(AMD = 66 kg N ha -1 )和SPAD relative (AMD = 72 kg N ha -1 )均未提供是EONR的良好指标。当使用两项研究的所有观测值来研究EONR与各种度量之间的关系时,ANDVI relative ( R 2 = 0.65)提供了一个与PSNT( R 2 = 0.49)或SPAD relative 相比,EONR的估算值更好(无显着性)。这些变量之间的强关系( R 2 relative 类似的信息。与PSNT或SPAD relative 相比,使用有源传感器(即ANDVI relative )的作物冠层反射率可作为EONR的更好或更好的指标,并提供了轻松调整内部- N个季节在空间上的应用。

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