首页> 外文会议>NATO/CCMS International Technical Meeting on Air Pollution Modeling and Its Application; 20070924-28; Aveiro(PT) >7.4 Evaluating the Effects of Emission Reductions on Multiple Pollutants Simultaneously
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7.4 Evaluating the Effects of Emission Reductions on Multiple Pollutants Simultaneously

机译:7.4同时评估减排对多种污染物的影响

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Modeling studies over the Philadelphia metropolitan area have examined how emission control strategies might affect several types of air pollutants simultaneously. NOx reductions in July are predicted to increase ozone in the urban core and decrease it elsewhere, decrease PM_(2.5) and formaldehyde, and slightly increase acetaldehyde and 1,3-butadiene. In January, NOx reductions increase ozone, formaldehyde and acetaldehyde everywhere. VOC reductions decrease aldehydes but have little effect on ozone in this domain. A combination of VOC and NOx reductions reflects the cumulative behavior of each of the emission reductions separately, and minimizes disbenefits for both HAPs and ozone. A comparison of these changes in terms of their effect on health shows that differing behavior of PM_(2.5) and ozone can counterbalance each other to some extent. While changes in HAPs are affected by changes to reduce ozone and PM_(2.5), their effect on health impacts is smaller than PM_(2.5) and ozone. This study supports considering effects of multiple pollutants in determining optimum pollution control strategies.
机译:费城都会区的模型研究已经研究了排放控制策略如何同时影响几种类型的空气污染物。预计7月份NOx的减少将增加城市核心区域的臭氧并减少其他地方的臭氧,降低PM_(2.5)和甲醛,并略微增加乙醛和1,3-丁二烯。一月份,减少NOx会增加各地的臭氧,甲醛和乙醛。减少VOC可以减少醛类,但在此领域对臭氧的影响很小。 VOC和NOx减排量的组合分别反映了每种减排量的累积行为,并使HAP和臭氧的不利影响最小化。从这些变化对健康的影响方面进行比较,可以看出PM_(2.5)和臭氧的不同行为可以在某种程度上相互抵消。虽然HAP的变化会受到减少臭氧和PM_(2.5)的变化的影响,但其对健康影响的影响要小于PM_(2.5)和臭氧。本研究支持在确定最佳污染控制策略时考虑多种污染物的影响。

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