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首页> 外文期刊>Global change biology >Gross primary productivity and transpiration flux of the Australian vegetation from 1788 to 1988 AD: effects of CO2 and land use change
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Gross primary productivity and transpiration flux of the Australian vegetation from 1788 to 1988 AD: effects of CO2 and land use change

机译:1788年至1988年澳大利亚植被总初级生产力和蒸腾通量:二氧化碳和土地利用变化的影响

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摘要

We present a novel approach to estimating the transpiration flux and gross primary productivity (GPP) from Normalized Difference Vegetation Index, leaf functional types, and readily available climate data. We use this approach to explore the impact of variations in the concentration of carbon dioxide in the atmosphere ([CO2]) and consequent predicted changes in vegetation cover, on the transpiration flux and GPP. There was a near 1:1 relationship between GPP estimated with this transpiration flux approach and that estimated using a radiation-use efficiency (RUE) approach. Model estimates are presented for the Australian continent under three vegetation-[CO2] scenarios: the present vegetation and hypothetical 'natural' vegetation cover with atmospheric CO2 concentration ([CO2]) of 350 mumol mol(-1) (pveg(350) and nveg(350)), and for the 'natural' vegetation with [CO2] 280 mumol mol(-1) (nveg(280)). Estimated continental GPP is 6.5, 6.3 and 4.3 Gt C yr(-1) for pveg(350), nveg(350) and nveg(280), respectively(.) The corresponding transpiration fluxes are 232, 224 and 190 mm H2O yr(-1). The contribution of the raingreen and evergreen components of the canopy to these fluxes are also estimated.
机译:我们提出了一种新方法,可从归一化植被指数,叶片功能类型和随时可用的气候数据估算蒸腾通量和总初级生产力(GPP)。我们使用这种方法来探索大气中二氧化碳浓度([CO2])的变化以及随之而来的植被覆盖度预测变化对蒸腾通量和GPP的影响。用这种蒸腾通量方法估算的GPP与使用辐射使用效率(RUE)方法估算的GPP之间几乎有1:1的关系。在三种植被-[CO2]情景下,给出了澳大利亚大陆的模型估算值:现有植被和假设的“自然”植被覆盖,大气CO2浓度([CO2])为350摩尔·摩尔(-1)(pveg(350)和nveg(350)),以及[CO2] 280摩尔mol(-1)的“天然”植被(nveg(280))。估计的pveg(350),nveg(350)和nveg(280)的大陆GPP分别为6.5、6.3和4.3 Gt C yr(-1)..相应的蒸腾通量为232、224和190 mm H2O yr( -1)。还估算了冠层的雨绿和常绿成分对这些通量的贡献。

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