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首页> 外文期刊>Tellus, Series B. Chemical and Physical Meteorology >Stomatal conductance changes due to increasing carbon dioxide levels: Projected impact on surface ozone levels
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Stomatal conductance changes due to increasing carbon dioxide levels: Projected impact on surface ozone levels

机译:二氧化碳含量增加导致气孔电导率变化:预计对表面臭氧含量的影响

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The impact of increasing levels of carbon dioxide on stomatal conductance and surface ozone levels was investigated using a global three-dimensional general circulation model (GCM) coupled to an interactive land surface scheme and a chemistry model. Pre-industrial, present day and doubled present day levels of carbon dioxide were used. This approach was used to examine the sensitivity of modelled surface ozone levels to changes in stomatal conductance via dry deposition. A doubled level of carbon dioxide was found to increase surface ozone levels by between 2 and 8 ppb in all four seasons owing to reduced dry deposition fluxes, although the location and extent of the changes were very different between each season. No change in levels of nitrogen oxides (NO and NO2) was modelled. A similar experiment to examine the same effect on modelled pre-industrial ozone levels showed that the ozone levels over Europe were only slightly smaller (by 1–1.5 ppb) when the CO2 level was decreased from 369 ppm to 280 ppm.
机译:二氧化碳的增加对气孔导度和地表臭氧水平的影响是使用全球三维通用环流模型(GCM)结合交互式陆地表面方案和化学模型研究的。使用了工业化前的当前水平和当前水平的两倍水平的二氧化碳。该方法用于检查模拟表面臭氧水平对通过干法沉积气孔电导率变化的敏感性。由于干燥沉积通量减少,发现在整个四个季节中,二氧化碳含量翻倍都会使表面臭氧含量增加2至8 ppb,尽管每个季节之间变化的位置和程度差异很大。没有模拟氮氧化物(NO和NO2)含量的变化。一项类似的试验研究了对模型化前工业臭氧水平的相同影响,结果表明,当二氧化碳水平从369 ppm降至280 ppm时,欧洲的臭氧水平仅略小(降低了1-1.5 ppb)。

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