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Impact of tropospheric ozone on the Euro-Mediterranean vegetation

机译:对流层臭氧对欧洲地中海植被的影响

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The impact of ozone (O-3) on European vegetation is largely under-investigated, despite huge areas of Europe are exposed to high O-3 levels and which are expected to increase in the next future. We studied the potential effects of O-3 on photosynthesis and leaf area index (LAI) as well as the feedback between vegetation and atmospheric chemistry using a land surface model (ORCHIDEE) at high spatial resolution (30 km) coupled with a chemistry transport model (CHIMERE) for the whole year 2002. Our results show that the effect of tropospheric O-3 on vegetation leads to a reduction in yearly gross primary production (GPP) of about 22% and a reduction in LAI of 15-20%. Larger impacts have been found during summer, when O-3 reaches higher concentrations. During these months the maximum GPP decrease is up to 4 g C m-2 day-1, and the maximum LAI reduction is up to 0.7 m2 m-2. Since CHIMERE uses the LAI computed by ORCHIDEE to estimate the biogenic emissions, a LAI reduction may have severe implications on the simulated atmospheric chemistry. We found a large change in O-3 precursors that however leads to small changes in tropospheric O-3 concentration, while larger changes have been found for surface NO2 concentrations.
机译:尽管欧洲大片地区暴露于高O-3水平,并且臭氧在未来的将来还会增加,但臭氧(O-3)对欧洲植被的影响仍未得到充分研究。我们使用高空间分辨率(30 km)的陆地表面模型(ORCHIDEE)结合化学迁移模型研究了O-3对光合作用和叶面积指数(LAI)以及植被与大气化学之间的反馈的潜在影响(CHIMERE)的整个2002年。我们的结果表明,对流层O-3对植被的影响导致年度初生总产值(GPP)降低约22%,LAI降低15-20%。在夏季,当O-3浓度升高时,影响更大。在这几个月中,最大GPP下降幅度最大为4 g C m-2 day-1,最大LAI下降幅度最大为0.7 m2 m-2。由于CHIMERE使用ORCHIDEE计算出的LAI来估算生物排放,因此LAI的减少可能会对模拟的大气化学产生严重影响。我们发现O-3前体发生了较大变化,但对流层O-3浓度却发生了微小变化,而表面NO2浓度却发生了较大变化。

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