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Direct estimation of aboveground forest productivity through hyperspectral remote sensing of canopy nitrogen

机译:通过冠层氮的高光谱遥感直接估算地上森林生产力

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The concentration of nitrogen in foliage has been related to rates of net photosynthesis across a wide range of plant species and functional groups and thus represents a simple and biologically meaningful link between terrestrial cycles of carbon and nitrogen. Although foliar N is used by ecosystem models to predict rates of leaf-level photosynthesis, it has rarely been examined as a direct scalar to stand-level carbon gain. Establishment of such relationships would greatly simplify the nature of forest C and N linkages, enhancing our ability to derive estimates of forest productivity at landscape to regional scales. Here, we report on a highly predictive relationship between whole-canopy nitrogen concentration and aboveground forest productivity in diverse forested stands of varying age and species composition across the 360 000-ha White Mountain National Forest, New Hampshire, USA. We also demonstrate that hyperspectral remote sensing can be used to estimate foliar N concentration, and hence forest production across a large number of contiguous images. Together these data suggest that canopy-level N concentration is an important correlate of productivity in these forested systems, and that imaging spectrometry of canopy N can provide direct estimates of forest productivity across large landscapes. [References: 82]
机译:叶子中的氮浓度与广泛的植物物种和功能组的净光合作用速率有关,因此代表了陆地碳和氮循环之间的简单且生物学上有意义的联系。尽管生态系统模型使用叶面氮来预测叶片水平光合作用的速率,但很少将其作为直立标量转化为标准水平的碳吸收量。建立这样的关系将大大简化森林碳氮链接的性质,增强我们推算景观到区域尺度森林生产力的能力。在这里,我们报道了在美国新罕布什尔州36万公顷的白山国家森林中,不同年龄和物种组成的不同林分林中,全冠层氮浓度与地上森林生产力之间的高度预测性关系。我们还证明,高光谱遥感可用于估算叶面氮浓度,从而估计大量连续图像中的森林产量。这些数据加在一起表明,冠层水平的氮浓度是这些森林系统中生产力的重要相关因素,冠层氮的成像光谱可以直接估算整个大片森林的生产力。 [参考:82]

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