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Remote estimation of nitrogen and chlorophyll contents in maize at leaf and canopy levels

机译:在叶和冠层水平上远程估算玉米中氮和叶绿素含量

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摘要

Leaf and canopy nitrogen (N) status relates strongly to leaf and canopy chlorophyll (Chl) content. Remote sensing is a tool that has the potential to assess N content at leaf, plant, field, regional and global scales. In this study, remote sensing techniques were applied to estimate N and Chl contents of irrigated maize (Zea mays L.) fertilized at five N rates. Leaf N and Chl contents were determined using the red-edge chlorophyll index with R~2 of 0.74 and 0.94, respectively. Results showed that at the canopy level, Chl and N contents can be accurately retrieved using green and red-edge Chl indices using near infrared (780-800 nm) and either green (540-560 nm) or red-edge (730-750 nm) spectral bands. Spectral bands that were found optimal for Chl and N estimations coincide well with the red-edge band of the MSI sensor onboard the near future Sentinel-2 satellite. The coefficient of determination for the relationships between the red-edge chlorophyll index, simulated in Sentinel-2 bands, and Chl and N content was 0.90 and 0.87, respectively.
机译:叶片和冠层的氮(N)状态与叶片和冠层的叶绿素(Chl)含量密切相关。遥感是一种有潜力评估叶片,植物,田间,区域和全球范围内氮含量的工具。在这项研究中,应用遥感技术估算了以5 N比例施肥的灌溉玉米(Zea mays L.)的N和Chl含量。用红边叶绿素指数测定叶片N和Chl含量,R〜2分别为0.74和0.94。结果表明,在冠层水平上,可以使用绿色和红色边缘Chl指数(使用近红外(780-800 nm)和绿色(540-560 nm)或红色边缘(730-750)准确检索Chl和N含量nm)光谱带。发现对Chl和N估计最佳的光谱带与不久的将来的Sentinel-2卫星上的MSI传感器的红边带非常吻合。在Sentinel-2波段模拟的红边叶绿素指数与Chl和N含量之间的关系的确定系数分别为0.90和0.87。

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