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Baseline map of organic carbon in Australian soil to support national carbon accounting and monitoring under climate change

机译:澳大利亚土壤中有机碳的基线图,以支持气候变化下的国家碳核算和监测

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We can effectively monitor soil condition- and develop sound policies to offset the emissions of greenhouse gases-only with accurate data from which to define baselines. Currently, estimates of soil organic C for countries or continents are either unavailable or largely uncertain because they are derived from sparse data, with large gaps over many areas of the Earth. Here, we derive spatially explicit estimates, and their uncertainty, of the distribution and stock of organic C in the soil of Australia. We assembled and harmonized data from several sources to produce the most comprehensive set of data on the current stock of organic C in soil of the continent. Using them, we have produced a fine spatial resolution baseline map of organic C at the continental scale. We describe how we made it by combining the bootstrap, a decision tree with piecewise regression on environmental variables and geostatistical modelling of residuals. Values of stock were predicted at the nodes of a 3-arc-sec (approximately 90 m) grid and mapped together with their uncertainties. We then calculated baselines of soil organic C storage over the whole of Australia, its states and territories, and regions that define bioclimatic zones, vegetation classes and land use. The average amount of organic C in Australian topsoil is estimated to be 29.7 t ha(-1) with 95% confidence limits of 22.6 and 37.9 t ha(-1). The total stock of organic C in the 0-30 cm layer of soil for the continent is 24.97 Gt with 95% confidence limits of 19.04 and 31.83 Gt. This represents approximately 3.5% of the total stock in the upper 30 cm of soil worldwide. Australia occupies 5.2% of the global land area, so the total organic C stock of Australian soil makes an important contribution to the global carbon cycle, and it provides a significant potential for sequestration. As the most reliable approximation of the stock of organic C in Australian soil in 2010, our estimates have important applications. They could support Australia's National Carbon Accounting System, help guide the formulation of policy around carbon offset schemes, improve Australia's carbon balances, serve to direct future sampling for inventory, guide the design of monitoring networks and provide a benchmark against which to assess the impact of changes in land cover, land management and climate on the stock of C in Australia. In this way, these estimates would help us to develop strategies to adapt and mitigate the effects of climate change.
机译:我们可以有效地监测土壤状况,并制定合理的政策来抵消温室气体的排放,仅使用准确的数据来定义基准。目前,由于缺乏稀疏的数据而得出的关于国家或大洲的土壤有机碳的估计值不可用或在很大程度上不确定,因为地球上许多地区都有很大的差距。在这里,我们得出了澳大利亚土壤中有机碳的分布和储量的空间显式估计及其不确定性。我们收集并协调了来自多个来源的数据,以生成有关该大陆土壤中当前有机碳存量的最全面的数据集。使用它们,我们在大陆尺度上绘制了精细的有机碳空间分辨率基线图。我们描述了如何通过结合引导程序,决策树以及对环境变量的分段回归和残差的地统计模型来实现这一目标。在3弧秒(约90 m)网格的节点处预测了库存的值,并将其不确定性一起映射。然后,我们计算了整个澳大利亚,其州和领地以及定义生物气候区,植被类别和土地利用的区域的土壤有机碳储量的基线。澳大利亚表层土壤中有机碳的平均含量估计为29.7 t ha(-1),95%的置信限为22.6和37.9 t ha(-1)。该大陆0-30厘米土壤层中有机碳的总存量为24.97 Gt,95%置信限为19.04和31.83 Gt。这约占全球上层30厘米土壤总量的3.5%。澳大利亚占全球土地面积的5.2%,因此澳大利亚土壤的总有机碳储量为全球碳循环做出了重要贡献,并为封存提供了巨大潜力。作为2010年澳大利亚土壤中有机碳储量的最可靠估算,我们的估算具有重要的应用价值。它们可以支持澳大利亚的国家碳核算体系,帮助指导有关碳补偿计划的政策制定,改善澳大利亚的碳平衡,指导未来的库存清单抽样,指导监测网络的设计,并提供基准以评估碳排放量的影响。澳大利亚碳储量的土地覆盖,土地管理和气候变化。这样,这些估算将有助于我们制定战略来适应和减轻气候变化的影响。

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