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- W2298756688 abstract "Ozone sensitivity can be determined by identifying individual species or species ratios that are consistently different under conditions of NOx-sensitive and VOC-sensitive ozone formation. These indicator species may provide a useful tool in the assessment of the relative effectiveness of VOC versus NO* controls. Following this approach, the model predictions for O, sensitivity relative to NO% and VOC levels in Switzerland are correlated to the afternoon concentration ratios of indicator species such as O /NO,, O. /NOy, HCHO/NOy and HoOo/HNO,. These correlations are based on a series' of simulations with varying rates of emissions and two different wind conditions. A base case in summer 1993 with light west wind was compared with a case having a stagnant meteorology. Results showed that the correlations varied when the meteorology is different. In a stagnant meteorology, VOC-sensitive chemistry is predicted to be linked to afternoon ratios approximately O,/NOz < 10, O,/NOy < 8, HCHO/NOy < 0.3, and HiOo/HNO, < 0.5. Higher ratios correspond to NO* sensitive ozone formation. In a light west wind situation, these ratios were shifted to higher values. Correlations were established also on the basis of a simulation for the year 2000 using a standard development of emissions. These results indicated that the correlations between NO%-VOC sensitivity and indicator species remain the same for 1993 and 2000 although the emission rates are different." @default.
- W2298756688 created "2016-06-24" @default.
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- W2298756688 date "1997-08-21" @default.
- W2298756688 modified "2023-09-23" @default.
- W2298756688 title "Indicator Species For 03, Sensitivity Relative To NOxAnd VOC In Switzerland And Their Dependence OnMeteorology" @default.
- W2298756688 cites W2137741627 @default.
- W2298756688 cites W2288815784 @default.
- W2298756688 doi "https://doi.org/10.2495/air970851" @default.
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