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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Leaf level detection of solar induced chlorophyll fluorescence by means of a subnanometer resolution spectroradiometer
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Leaf level detection of solar induced chlorophyll fluorescence by means of a subnanometer resolution spectroradiometer

机译:亚纳米分辨率分光光度计检测太阳诱导的叶绿素荧光的叶水平

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A leaf level investigation on the spectral signature of Phaseolus vulgaris was undertaken by using a very high spectral resolution spectroradiometer featuring full width at half maximum of 0.06 nm and spectral range of 635.5-802.5 nm. High spectral resolution allows detection of leaf reflected and emitted radiance fields in two narrow absorption bands at 687 and 760 nm, respectively, where solar irradiance is strongly reduced owing to molecular oxygen absorption of the terrestrial atmosphere. The flux emitted due to chlorophyll fluorescence was measured using the Fraunhofer line depth principle by spectrally modelling the signal, capitalizing on the high resolution of the spectroradiometer devices. An experiment was conducted on two potted bean plants. One was maintained in good health for use as a reference while the other was treated with a photosystem II inhibitor. Collected spectra show that the fluorescence emission produces a pair of characteristic peaks superimposed on the typical leaf-specific reflectance curve. The magnitude of the fluorescence signal of the herbicide-treated leaf was four times greater than that of the control plant, thus indicating damage to the photosynthetic apparatus of the plant. (c) 2006 Elsevier Inc. All rights reserved.
机译:对叶菜豆的光谱特征进行了叶水平研究,方法是使用非常高的光谱分辨率光谱仪,其半峰全宽为0.06 nm,光谱范围为635.5-802.5 nm。高光谱分辨率可分别检测到两个窄吸收带在687和760 nm处的叶片反射和发射的辐射场,在这些吸收带中,由于陆地大气中的分子氧吸收,大大降低了太阳辐射。利用分光辐射计设备的高分辨率,利用弗劳恩霍夫(Fraunhofer)线深度原理通过对信号进行光谱建模,测量了由于叶绿素荧光产生的通量。在两个盆栽的豆类植物上进行了实验。一个保持良好的健康状况,以作为参考,而另一个则用光系统II抑制剂处理。收集的光谱表明,荧光发射产生一对特征峰,这些特征峰叠加在典型的叶比反射率曲线上。除草剂处理过的叶片的荧光信号强度是对照植物的四倍,因此表明该植物的光合作用受到了损害。 (c)2006 Elsevier Inc.保留所有权利。

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