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Modeling of Stomatal Conductance for Estimating Ozone Uptake of Fagus crenata Under Experimentally Enhanced Free-air Ozone Exposure

机译:实验性增强自由空气臭氧暴露下气孔电导率模型估算深层蟾蜍的臭氧吸收

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摘要

We examined a performance of the multiplicative stomatal conductance model to estimate the stomatal ozone uptake for Fagus crenata. Parameterization of the model was carried out by in-situ measurements in a free-air ozone exposure experiment. The model performed fairly well under ambient conditions, with low ozone concentration. However, the model overestimated stomatal conductance under enhanced ozone condition due to ozone-induced stomatal closure. A revised model that included a parameter representing ozone-induced stomatal closure showed better estimation of ozone uptake. Neglecting ozone-induced stomatal closure induced a 20 % overestima-tion of the stomatal uptake of ozone. The ozone-induced stomatal closure was closely related to stomatal ozone uptake rather than accumulated concentrations of ozone exceeding 40 nmol mol~(-1). Our results suggest that ozone-induced stomatal closure should be implemented to stomatal conductance model for estimating ozone uptake for F. crenata. The implementation will contribute to adequate risk assessments of ozone impacts on F. crenata forests in Japan.
机译:我们检查了乘性气孔电导模型的性能,以估计海藻对气孔臭氧的吸收。通过在自由空气臭氧暴露实验中的现场测量对模型进行参数化。该模型在环境条件下表现良好,臭氧浓度低。然而,由于臭氧引起的气孔关闭,该模型高估了臭氧条件增强时的气孔导度。修改后的模型包括代表臭氧引起的气孔关闭的参数,可以更好地估计臭氧的吸收。忽略臭氧引起的气孔关闭会导致臭氧对气孔吸收的高估20%。臭氧引起的气孔关闭与气孔臭氧的吸收密切相关,而不是累积的臭氧浓度超过40nmol mol〜(-1)。我们的研究结果表明,应在气孔导度模型中实施臭氧诱导的气孔关闭,以估计海藻的臭氧吸收量。该实施将有助于对臭氧对日本樱桃海桑F森林的臭氧影响进行充分的风险评估。

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