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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >ESTIMATING LEAF BIOCHEMISTRY USING THE PROSPECT LEAF OPTICAL PROPERTIES MODEL
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ESTIMATING LEAF BIOCHEMISTRY USING THE PROSPECT LEAF OPTICAL PROPERTIES MODEL

机译:使用预期的叶片光学性质模型估算叶片的生物化学性质

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Thc biophysical, biochemical, and optical properties of 63 fresh leaves and 58 dry leaves were measured to investigate the potential of remote sensing to estimate the leaf biochemistry from space. Almost 2000 hemispherical reflectance and transmittance spectra were acquired from 400 nm to 2500 nm using a laboratory spectrophotometer. The amount of chlorophyll, water protein, cellulose, hemicellulose, lignin, and starch was determined on these leaves using standard wet chemistry techniques. These experimental data were used to improve the PROSPECT model, a simple but effective radiative transfer model that calculates the leaf optical properties with a limited number of input parameters: a structure parameter and the leaf biochemistry. The new model construction mainly consisted in. providing specific absorption coefficients for the biochemical constituents; the comparison with absorption spectra of pure materials derived from the literature showed good agreement. In the inversion, however, it was necessary to group some leaf components in order to estimate leaf biochemistry with reasonable accuracy. Predictive power varied with the chemistry variable, wavelengths used in analysis, and whether leaves were fresh or dry. r(2) ranged from 0.39 to 0.88 for predictions on dry leaves; on fresh leaves, water and chlorophyll had high r(2) values, 0.95 and 0.68 respectively, carbon based compounds reasonable r(2), from 0.50 to 0.88, while the estimation of protein is still at issue. [References: 21]
机译:测量了63片鲜叶和58片干叶的生物物理,生化和光学特性,以研究遥感技术从空间估算叶片生物化学的潜力。使用实验室分光光度计在400 nm至2500 nm范围内获得了近2000个半球反射率和透射率光谱。使用标准的湿化学技术测定这些叶片上的叶绿素,水蛋白,纤维素,半纤维素,木质素和淀粉的含量。这些实验数据用于改进PROSPECT模型,PROSPECT模型是一种简单但有效的辐射转移模型,可使用有限数量的输入参数(结构参数和叶片生物化学)来计算叶片的光学特性。新模型的构建主要包括为生化成分提供特定的吸收系数。从文献中获得的纯净材料与吸收光谱的比较显示出很好的一致性。但是,在反演中,有必要对一些叶片成分进行分组,以便以合理的准确性估算叶片的生物化学。预测能力随化学变量,分析中使用的波长以及叶子是新鲜还是干燥而变化。对于干叶的预测,r(2)的范围从0.39到0.88;在新鲜叶子上,水和叶绿素的r(2)值较高,分别为0.95和0.68,碳基化合物的合理r(2)为0.50至0.88,而蛋白质的估算仍然存在争议。 [参考:21]

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