首页> 外文期刊>Journal of Plant Physiology >BLUE-GREEN FLUORESCENCE AND VISIBLE-INFRARED REFLECTANCE OF CORN (ZEA MAYS L) GRAIN FOR IN SITU FIELD DETECTION OF NITROGEN SUPPLY
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BLUE-GREEN FLUORESCENCE AND VISIBLE-INFRARED REFLECTANCE OF CORN (ZEA MAYS L) GRAIN FOR IN SITU FIELD DETECTION OF NITROGEN SUPPLY

机译:玉米原位田间检测氮的蓝绿色荧光和可见红外反射

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摘要

The sensing of spectral attributes of corn (Zea mays L.) grain from site specific areas of the field during the harvest process may be useful in managing agronomic inputs and production practices on those areas of the field in subsequent growing seasons. Eight levels of nitrogen (N) fertilization were applied to field grown corn at Beltsville, Maryland. These N treatments produced a range of chlorophyll levels, biomass and physiological condition in the live plant canopies. After harvest. spectra were obtained in the laboratory on whole grain samples. Fluorescence emissions were acquired from 400 to 600 nm and percent reflectance were measured in the visible (VIS) near infrared (NIR) and mid-infrared (MIR) regions from 400 nm to 2400 nm. A ultraviolet (UV) excitation band centered at 385 nm was the most effective in producing fluorescence emission differences in the blue-green region of the fluorescence spectrum with maxima centered from 430-470 nm in the blue and with an intense shoulder centered at around 530-560 nm in the green region. Reflectance showed the most spectral differences in the NIR and MIR (970-2330 nm) regions.
机译:在收获过程中,从田间特定区域的玉米(Zea mays L.)谷物的光谱属性感测可能有助于管理随后生长季节中田间那些区域的农艺投入和生产实践。在马里兰州的贝尔茨维尔,向田间种植的玉米施用了八种水平的氮肥。这些N处理在活植物冠层中产生了一系列叶绿素水平,生物量和生理状况。收获后。光谱是在实验室中对全谷物样品获得的。在400至600 nm范围内获得荧光发射,并在400 nm至2400 nm的可见(VIS)近红外(NIR)和中红外(MIR)区域中测量反射率百分比。以385 nm为中心的紫外线(UV)激发带最有效地产生了荧光光谱蓝绿色区域中的荧光发射差异,其中最大值集中在430-470 nm的蓝色中,强烈的肩部集中在530附近-560 nm在绿色区域。反射率在NIR和MIR(970-2330 nm)区域显示最大的光谱差异。

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