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Isoprene and monoterpene emission rate variability: Model evaluations and sensitivity analyses

异戊二烯 单萜 光合有效辐射 大气科学 环境科学 气温日变化 指数函数 化学 光合作用 物理 数学 共聚物 生物化学 数学分析 有机化学 聚合物
作者
Alex Guenther,P. R. Zimmerman,P. C. Harley,Russell K. Monson,Ray Fall
出处
期刊:Journal of Geophysical Research [American Geophysical Union]
卷期号:98 (D7): 12609-12617 被引量:1730
标识
DOI:10.1029/93jd00527
摘要

The emission of isoprene and monoterpenes from plants is influenced by light and leaf temperature, which account for almost all short‐term variations (minutes to days) and a large part of spatial and long‐term variations. The temperature dependence of monoterpene emission varies among monoterpenes, plant species, and other factors, but a simple exponential relationship between emission rate ( E ) and leaf temperature ( T ), E = E s [exp (β( T − T s ))], provides a good approximation. A review of reported measurements suggests a best estimate of β = 0.09 K −1 for all plants and monoterpenes. Isoprene emissions increase with photosynthetically active radiation up to a saturation point at 700–900 μmol m −2 s −1 . An exponential increase in isoprene emission is observed at leaf temperatures of less than 30°C. Emissions continue to increase with higher temperatures until a maximum emission rate is reached at about 40°C, after which emissions rapidly decline. This temperature dependence can be described by an enzyme activation equation that includes denaturation at high temperature. Algorithms developed to simulate these light and temperature responses perform well for a variety of plant species under laboratory and field conditions. Evaluations with field measurements indicate that these algorithms perform significantly better than earlier models which have previously been used to simulate isoprene emission rate variation. These algorithms account for about 90% of observed diurnal variability and can predict diurnal variations in hourly averaged isoprene emissions to within 35%.

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