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Development of Integrated Simulator of Water Transport and Plant Growth as an Evaluation Tool of Arid Land Afforestation for CO2 Fixation

机译:开发水运与植物生长综合模拟器作为干旱土地绿化固碳评价工具

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References(11) Cited-By(2) Carbon sequestration by afforestation of arid land is one of a few effective countermeasures against the carbon dioxide problem. In order to attain net fixation of carbon dioxide, the quantity of carbon dioxide generated by the implementation of afforestation should be less than that fixed by the tree growth by afforestation. As an evaluation tool for afforestation technologies for arid land, we propose an integrated simulator consisting of soil-water transport, transpiration, photosynthesis, and plant growth models. The aim of this approach is to estimate the quantity of the carbon fixed by afforestation. The simulation results on the irrigation and soil-water transport indicated the importance of soil depth for water maintenance. Also, the growth efficiency of photosynthesized carbon for planted trees was estimated by comparing simulation results and experimental data. Although the simulator constructed herein was based on the climatic and land conditions at our experimental site at Sturt Meadows in Western Australia, the structure of this simulator can be used not only for afforestation in our experimental site, but also for other areas with similar conditions.
机译:参考文献(11)引用(2)干旱土地的植树造林是解决二氧化碳问题的有效措施之一。为了实现二氧化碳的净固定,通过植树造林产生的二氧化碳数量应少于通过植树造林而产生的二氧化碳数量。作为干旱地区造林技术的评估工具,我们提出了一个集成的模拟器,该模拟器包括水土运输,蒸腾作用,光合作用和植物生长模型。这种方法的目的是估计通过造林固定的碳量。灌溉和水土运输的模拟结果表明土壤深度对于维持水的重要性。此外,通过比较模拟结果和实验数据来估算种植树木的光合作用碳的生长效率。尽管此处构建的模拟器是基于我们在西澳大利亚州Sturt Meadows的实验点的气候和土地条件,但是此模拟器的结构不仅可以用于我们实验点的绿化,而且可以用于条件类似的其他地区。

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