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Estimating Aboveground Biomass and Carbon Stocks in Periurban Andean Secondary Forests Using Very High Resolution Imagery

机译:使用超高分辨率图像估算Periurban安第斯次生林的地上生物量和碳储量

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Periurban forests are key to offsetting anthropogenic carbon emissions, but they are under constant threat from urbanization. In particular, secondary Neotropical forest types in Andean periurban areas have a high potential to store carbon, but are currently poorly characterized. To address this lack of information, we developed a method to estimate periurban aboveground biomass (AGB)—a proxy for multiple ecosystem services—of secondary Andean forests near Bogotá, Colombia, based on very high resolution (VHR) GeoEye-1, Pleiades-1A imagery and field-measured plot data. Specifically, we tested a series of different pre-processing workflows to derive six vegetation indices that were regressed against in situ estimates of AGB. Overall, the coupling of linear models and the Ratio Vegetation Index produced the most satisfactory results. Atmospheric and topographic correction proved to be key in improving model fit, especially in high aerosol and rugged terrain such as the Andes. Methods and findings provide baseline AGB and carbon stock information for little studied periurban Andean secondary forests. The methodological approach can also be used for integrating limited forest monitoring plot AGB data with very high resolution imagery for cost-effective modelling of ecosystem service provision from forests, monitoring reforestation and forest cover change, and for carbon offset assessments.
机译:城郊森林是抵消人为碳排放的关键,但它们一直受到城市化的威胁。特别是,安第斯城郊地区的新热带次生林类型具有很高的碳储存潜力,但目前其特征尚不充分。为了解决这一信息匮乏的问题,我们开发了一种方法,可基于极高分辨率(VHR)GeoEye-1,P宿星- 1A图像和实地测绘数据。具体来说,我们测试了一系列不同的预处理工作流程,以得出针对AGB的原位估计值回归的六个植被指数。总体而言,线性模型与比率植被指数的耦合产生了最令人满意的结果。事实证明,大气和地形校正是改善模型拟合的关键,尤其是在高气溶胶和崎terrain不平的地形(例如安第斯山脉)中。方法和发现为几乎未研究的城郊安第斯次生林提供了基线AGB和碳储量信息。该方法学方法还可用于将有限的森林监测区AGB数据与高分辨率图像集成在一起,以经济有效的方式对森林提供的生态系统服务进行建模,监测再造林和森林覆盖率变化,以及进行碳补偿评估。

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