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The Treasure Valley secondary aerosol study II: modeling of the formation of inorganic secondary aerosols and precursors for southwestern Idaho

机译:金银谷二次气溶胶研究II:西南爱达荷州无机二次气溶胶和前驱物形成的模型

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Many locations with very high mixing ratios of ammonia, nitrogen oxides and relatively low sulfate mixing ratios are found in urban areas of the western United States during the wintertime. These urban areas may also experience episodes with high humidity with high levels of secondary inorganic ammonium nitrate particles. Photochemical simulations of the formation of secondary sulfate and ammonium nitrate aerosol were made to investigate possible secondary particle control strategies for Treasure Valley, Idaho. The simulation conditions were based on the field study of Kuhns et al. (Atmos. Environ. 2002, this issue). It was found that under these conditions that almost all of the sulfate and approximately 95% of the nitric acid would be found in the particulate phase. Reductions in the emission rates of volatile organic compounds were found to be most effective in reducing secondary inorganic aerosol concentrations while reductions in nitrogen oxide emission rates would be expected to increase aerosol concentrations. This response of aerosol formation rates is due to the effects of the nitrogen oxide and volatile organic compound emission rates on the concentration of hydroxyl radical mixing ratios. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 24]
机译:在冬季,在美国西部的城市地区发现了许多氨,氮氧化物和硫酸盐的混合比非常高的地区。这些城市地区还可能会发生高湿度的二次无机硝酸铵颗粒含量高的事件。进行了次级硫酸盐和硝酸铵气溶胶形成的光化学模拟,以研究爱达荷州金银谷可能的次级颗粒控制策略。模拟条件基于Kuhns等人的现场研究。 (Atmos。Environ。2002年,此问题)。已发现在这些条件下,几乎所有的硫酸盐和约95%的硝酸都将存在于颗粒相中。发现降低挥发性有机化合物的排放速率对于降低次生无机气溶胶浓度最为有效,而减少氮氧化物的排放速率则有望提高气溶胶浓度。气溶胶形成速率的这种响应是由于氮氧化物和挥发性有机化合物排放速率对羟基自由基混合比浓度的影响。 (C)2002 Elsevier Science Ltd.保留所有权利。 [参考:24]

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