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An expert system model for mapping tropical wetlands and peatlands reveals South America as the largest contributor

机译:用于映射热带湿地和泥炭地的专家系统模型将南美展示为最大的贡献者

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Wetlands are important providers of ecosystem services and key regulators of climate change. They positively contribute to global warming through their greenhouse gas emissions, and negatively through the accumulation of organic material in histosols, particularly in peatlands. Our understanding of wetlands' services is currently constrained by limited knowledge on their distribution, extent, volume, interannual flood variability and disturbance levels. We present an expert system approach to estimate wetland and peatland areas, depths and volumes, which relies on three biophysical indices related to wetland and peat formation: (1) long-term water supply exceeding atmospheric water demand; (2) annually or seasonally water-logged soils; and (3) a geomorphological position where water is supplied and retained. Tropical and subtropical wetlands estimates reach 4.7 million km(2) (Mkm(2)). In line with current understanding, the American continent is the major contributor (45%), and Brazil, with its Amazonian interfluvial region, contains the largest tropical wetland area (800,720 km(2)). Our model suggests, however, unprecedented extents and volumes of peatland in the tropics (1.7 Mkm(2) and 7,268 (6,076-7,368) km(3)), which more than threefold current estimates. Unlike current understanding, our estimates suggest that South America and not Asia contributes the most to tropical peatland area and volume (ca. 44% for both) partly related to some yet unaccounted extended deep deposits but mainly to extended but shallow peat in the Amazon Basin. Brazil leads the peatland area and volume contribution. Asia hosts 38% of both tropical peat area and volume with Indonesia as the main regional contributor and still the holder of the deepest and most extended peat areas in the tropics. Africa hosts more peat than previously reported but climatic and topographic contexts leave it as the least peat-forming continent. Our results suggest large biases in our current understanding of the distribution, area and volumes of tropical peat and their continental contributions.
机译:湿地是生态系统服务的重要提供者和气候变化的主要监管机构。它们积极促进通过温室气体排放的全球变暖,并通过组织溶胶中的有机材料积累,特别是在泥炭地。我们对湿地服务的理解目前受到对其分销,范围,体积,际洪水变异性和干扰水平有限的有限知识。我们提出了一个专家系统方法来估计湿地和泥炭地区,深度和卷,依赖于湿地和泥炭地层相关的三个生物物理指数:(1)长期供水超过大气需求; (2)每年或季节性的防水土壤; (3)提供和保留水的地貌位置。热带和亚热带湿地估计达到470万公里(2)(MKM(2))。根据目前的理解,美国大陆是主要的贡献者(45%)和巴西,其亚马逊跨越地区包含最大的热带湿地地区(800,720公里(2))。然而,我们的模型表明,热带地区的前所未有的范围和泥炭块(1.7毫升(2)和7,268(6,076-7,368)Km(3)),这是三倍的电流估计。与现有的理解不同,我们的估计表明,南美洲而不是亚洲对热带泥炭地区和群体的贡献最多贡献(CA.4%,两者44%)部分相关的一些尚未解释的深层沉积物,但主要是在亚马逊盆地延伸但浅泥炭。巴西带来了泥炭地区和体积贡献。亚洲占据热带泥炭区的38%和印度尼西亚的批量作为主要区域贡献者,仍然是热带地区最深层和最延伸的泥炭地区的持有者。非洲宿主比以前报告更多的泥炭,但气候和地形背景将其作为最低的泥炭成形大陆。我们的结果表明我们目前对热带泥炭分配,地区和大陆的理解以及大陆贡献的巨大偏见。

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