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A coupled model of photosynthesis-transpiration based on the stomatal behavior for maize (Zea mays L.) grown in the field

机译:基于田间生长的玉米(Zea mays L.)气孔行为的光合作用-蒸发耦合模型

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摘要

The study presents a theoretical basis of a stomatal behavior-based coupled model for estimating photosynthesis, A, and transpiration, E. Outputs of the model were tested against data observed in a maize (Zea mays L.) field. The model was developed by introducing the internal conductance, g(ic), to CO2 assimilation, and the general equation of stomatal conductance, g(sw), to H2O diffusion, into models of CO2 and H2O diffusion through the stomata of plant leaves. The coupled model is easier for practical use since the model only includes environmental variables, such as ambient CO2 concentration, leaf temperature, humidity and photosynthetic photon flux received at the leaves within the canopy. Moreover, concept of g(ic), and factors controlling A and E were discussed, and applicability of the model was examined with the data collected in the maize field.
机译:这项研究为估计光合作用,光合作用和蒸腾作用E的气孔行为耦合模型提供了理论基础。针对玉米(Zea mays L.)田间观察到的数据测试了模型的输出。该模型是通过将内部电导g(ic)引入到CO2同化中以及将气孔电导g(sw)引入到H2O扩散的一般方程中来建立的,该模型将CO2和H2O扩散到植物叶片的气孔中。耦合模型更易于实际使用,因为该模型仅包含环境变量,例如环境CO2浓度,叶片温度,湿度和在冠层叶片处接收的光合光子通量。此外,讨论了g(ic)的概念以及控制A和E的因素,并利用在玉米田中收集的数据检查了该模型的适用性。

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