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Fueling the Source: Mapping and Modeling Carbon and Woody Resources for Continental Africa

机译:燃料来源:非洲大陆的碳和木本资源制图和建模

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Complex interactions among climate change and ecosystem processes (plant demographics, tree-grass interactions, grazers, browsers, fire and nitrogen) challenge our ability to predict future carbon stocks in Africa and other tropical regions. Recent work suggests Africa has a near zero decade-scale carbon balance, but that climate fluctuations induce sizeable variability in ecosystem productivity and savanna fires, greatly enhancing the inter-annual variability in global atmospheric [CO_2]. If, indeed, Africa's net biogenic carbon balance is near-zero, this also has profound implications for the socioeconomically and culturally vital availability and sustainable harvest of wood and charcoal for fuel. We present remote sensing based woody biomass assessments for sub-Saharan Africa (SSA) using a combination of optical and radar datasets, and spatially explicit estimates of fuel-wood demand derived from country-scale statistics. We describe a simplified, low-dimensional model of African ecosystems and use it to explore carbon and fuel-wood dynamics in response to climate variability and disturbance factors.
机译:气候变化与生态系统过程之间的复杂相互作用(植物种群,树木与草之间的相互作用,放牧者,浏览器,火和氮)挑战了我们预测非洲和其他热带地区未来碳储量的能力。最近的工作表明,非洲的十年碳平衡接近于零,但气候波动导致生态系统生产力和热带稀树草原火灾发生相当大的可变性,从而大大增强了全球大气的年际可变性[CO_2]。如果确实非洲的生物净碳净平衡接近于零,那么这对于社会经济和文化上至关重要的可得性以及对木材和木炭作为燃料的可持续收成也将产生深远的影响。我们结合光学和雷达数据集,以及根据国家/地区规模统计数据得出的燃木需求的空间明确估计,对撒哈拉以南非洲(SSA)进行基于遥感的木质生物量评估。我们描述了非洲生态系统的简化,低维模型,并使用它来研究碳和薪柴动态,以应对气候变化和干扰因素。

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