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首页> 外文期刊>Global change biology >Can we measure terrestrial photosynthesis from space directly, using spectral reflectance and fluorescence?
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Can we measure terrestrial photosynthesis from space directly, using spectral reflectance and fluorescence?

机译:我们能否使用光谱反射率和荧光直接测量太空中的陆地光合作用?

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摘要

Attempts to estimate photosynthetic rate or gross primary productivity from remotely sensed absorbed solar radiation depend on knowledge of the light use efficiency (LUE). Early models assumed LUE to be constant, but now most researchers try to adjust it for variations in temperature and moisture stress. However, more exact methods are now required. Hyperspectral remote sensing offers the possibility of sensing the changes in the xanthophyll cycle, which is closely coupled to photosynthesis. Several studies have shown that an index (the photochemical reflectance index) based on the reflectance at 531 nm is strongly correlated with the LUE over hours, days and months. A second hyperspectral approach relies on the remote detection of fluorescence, which is a directly related to the efficiency of photosynthesis. We discuss the state of the art of the two approaches. Both have been demonstrated to be effective, but we specify seven conditions required before the methods can become operational.
机译:试图从遥感吸收的太阳辐射中估计光合速率或总初级生产力取决于对光利用效率(LUE)的了解。早期的模型假设LUE是恒定的,但是现在大多数研究人员尝试针对温度和湿度应力的变化对其进行调整。但是,现在需要更精确的方法。高光谱遥感提供了检测与光合作用紧密相关的叶黄素循环变化的可能性。几项研究表明,基于531 nm反射率的指标(光化学反射率指标)在小时,天和月中与LUE高度相关。第二种高光谱方法依赖于荧光的远程检测,这与光合作用的效率直接相关。我们讨论了这两种方法的最新技术。两种方法都被证明是有效的,但是我们指定了该方法开始运行之前需要满足的七个条件。

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