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Estimating regional terrestrial carbon fluxes for the Australian continent using a multiple-constraint approach II. The Atmospheric constraint

机译:使用多重约束方法II估算澳大利亚大陆的区域陆地碳通量。大气限制

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Bayesian synthesis inversion was applied to in-situ hourly CO_2 concentrations measured at Cape Grim, Australia to refine the estimates of monthly mean gross photosynthesis, total ecosystem respiration and net ecosystem production by the CSIRO Biospheric Model (CBM) for eight regions in Australia for the period 1990-1998. It was found that in-situ measurements of hourly CO_2 concentrations at Cape Grim could provide significant information about the carbon fluxes from Tasmania, central-south and south-east Australia only. The process-based model, CBM, overestimates the ecosystem respiration during summer in south-east Australia, but underestimates ecosystem respiration in Tasmania and central-south Australia. It was concluded that the respiration submodel of CBM should be improved to account for the seasonal variation in the plant and soil respiration parameters in south-east Australia. For the whole period of 1990 to 1998, the mean net ecosystem productions of terrestrial ecosystems in Tasmania, central-south Australia and south-east Australia were estimated to be, respectively, 6±10, 7±27 and -64±18 Mt C yr~(-1). The yearly uptake rate (being negative) of the terrestrial ecosystems in south-east Australia was smallest (-42±55 Mt C yr~(-1)) in 1998 and largest (-91±52 Mt C yr~(-1)) in 1992.
机译:将贝叶斯合成反演应用于澳大利亚Cape Grim的实地每小时CO_2浓度,以通过CSIRO生物圈模型(CBM)对澳大利亚八个地区的月平均总光合作用,总生态系统呼吸作用和净生态系统生产量进行估算1990年至1998年。研究发现,格里姆角每小时CO_2浓度的现场测量仅能提供有关塔斯马尼亚州,中南部和东南部的碳通量的重要信息。基于过程的模型CBM高估了澳大利亚东南部夏季的生态系统呼吸,但低估了塔斯马尼亚州和澳大利亚中南部的生态系统呼吸。结论是,应改进CBM的呼吸子模型,以解决澳大利亚东南部植物和土壤呼吸参数的季节性变化。在1990年至1998年的整个期间,塔斯马尼亚州,澳大利亚中南部和澳大利亚东南部的陆地生态系统的平均净生态系统产量估计分别为6±10、7±27和-64±18 Mt C yr〜(-1)。 1998年澳大利亚东南部陆地生态系统的年吸收率(为负)最小(-42±55 Mt C yr〜(-1)),最大(-91±52 Mt C yr〜(-1) )在1992年。

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