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From instantaneous to continuous: Using imaging spectroscopy and in situ data to map two productivity-related ecosystem services

机译:从瞬时到连续:使用成像光谱和原位数据绘制两种与生产力相关的生态系统服务

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摘要

Spatially well-informed decisions are essential to sustain and regulate processes and ecosystem services (ES), and to maintain the capacity of ecosystems to supply services. However, spatially explicit ES information is often lacking in decision-making, or exists only as ES maps based on categorical land cover data. Remote sensing (RS) opens new pathways to map ES, in particular biophysical ES supply. We developed an observation-based concept for spatially explicit and continuous ES mapping at landscape scale following the biophysical part of the ES cascade. We used Earth observations in combination with in situ data to map ecosystem properties, functions, and biophysical ES supply. We applied this concept in a case study to map two ES: carbon dioxide regulation and food supply. Based on Earth observations and in situ data, we determined the ecosystem property Sun-Induced chlorophyll Fluorescence (SIF) to indicate ecosystem state and applied scaling models to estimate gross primary production (GPP) as indicator for ecosystem functioning and consequently carbon dioxide regulation and food supply as ES.
机译:在空间上了解情况的决策对于维持和调节流程和生态系统服务(ES),以及维持生态系统提供服务的能力至关重要。但是,决策中通常缺少空间明确的ES信息,或者仅作为基于分类土地覆盖数据的ES映射存在。遥感(RS)开辟了绘制ES的新途径,尤其是生物物理ES的供应。我们根据ES级联的生物物理部分,为景观级别的空间显式和连续ES映射开发了基于观测的概念。我们将地球观测与原位数据结合使用,绘制了生态系统的特性,功能和生物物理ES供应的地图。我们在案例研究中应用了此概念,以绘制两个ES:二氧化碳法规和食品供应。基于地球观测和原位数据,我们确定了生态系统属性太阳诱导的叶绿素荧光(SIF)来指示生态系统状态,并应用了比例模型来估算初级生产总值(GPP)作为生态系统功能以及二氧化碳调节和食物的指标作为ES供应。

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