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Retrieval of Solar-Induced Chlorophyll Fluorescence at Red Spectral Peak with Tropomi on Sentinel-5 Precursor

机译:在Sentinel-5前体上的红光谱峰值在红光谱峰值下检索太阳肺荧光

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Solar-Induced chlorophyll Fluorescence (SIF) is a signal emitted by chlorophyll molecules after the absorption of solar radiation. SIF is closely related with the photosynthetic activity of vegetation, and it could be used as an indicator of photosynthetic status. SIF retrieved from spaceborne measurements can provide a synoptic perspective of the surface targets. The recently launched TROPOspheric Monitoring Instrument (TROPOMI) on board of Sentinel-5 precursor provides dataset for the retrieval of SIF with an unprecedented resolution in spatial and temporal dimensions. In this study, we implemented a data-driven approach to retrieval of SIF at red spectral peak measured from TROPOMI. We chose a retrieval window ranging from 669 to 686 nm, a subset of TROPOMI's band 5 because this wavelength range is free from atmospheric absorption and covers several solar Fraunhofer lines. Preliminary retrieval results indicated that the modeled spectra through the forward model accurately fit the measured spectra within the fitting window of TROPOMI. Global composites of the red SIF at 685 nm extracted from TROPOMI measurement on 3-13 June, 2019, show reasonably high and low values as expected in different parts of the world. Comparisons with independent far-red TROPOMI SIF product, Normalized difference vegetation index calculated from TROPOMI's apparent reflectance factors, and Moderate Resolution Imaging Spectroradiometer gross primary productivity product show similar spatial patterns, which confirms that the red TROPOMI SIF is able to provide a reasonable tool to map plant productivity across different regions of the globe.
机译:太阳能诱导的叶绿素荧光(SIF)是在吸收太阳辐射之后被叶绿素分子发射的信号。 SIF与植被的光合活性密切相关,它可以用作光合状态的指标。从星载测量中检索的SIF可以提供表面靶标的概要视角。最近在Sentinel-5前体的最近推出的对流层监测仪器(Tropomi)提供了用于检索SIF的数据集,以前所未有的空间和时间尺寸。在这项研究中,我们实施了从rodomi测量的红色光谱峰值处检索SIF的数据驱动方法。我们选择了一个检索窗范围从669至686纳米,TROPOMI的带5,因为该波长范围是从大气吸收和封面多个太阳能弗劳恩霍夫线免费的子集。初步检索结果表明,通过前向模型的建模光谱精确地符合Tropomi的配合窗口内的测量光谱。在2019年6月3日至13日,从Tropomi测量提取的685纳米的红色SIF的全局复合材料在世界不同地区的预期显示了相当高的价值和低值。与独立的远红色卓越SIF产品的比较,从卓越的表观反射因子计算的归一化差异植被指数,以及适度的分辨率成像光谱仪总初级生产力产品显示了类似的空间模式,这证实了红色ropomi SIF能够提供合理的工具地图植物生产力跨全球不同地区。

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