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Modeling The Effects Of Ship Emissions On Coastal Air Quality: A Case Study Of Southern California

机译:模拟船舶排放对沿海空气质量的影响:以南加州为例

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Impact of emissions from ocean-going ships on ozone and particulate matter concentrations is quantified using UCI-CIT model for the South Coast Air Basin of California (SoCAB). The modeling domain encompasses Los Angeles and Long Beach ports and part of the Pacific Ocean that is traversed by ships to visit these ports. Impacts are assessed for a base year (2002) and a future year (2020) by analyzing results from simulations of a three-day summer episode. Contribution of ship emissions to peak l-h and 8-h ozone concentrations is predicted to be up to 29 and 24ppb, respectively, for the year 2002. Similarly, particulate nitrate and sulfate concentrations increase up to 12.8 and 1.7 μg m~(-2), respectively, in the basin when ship emissions are included. Maximum impacts are predicted to occur along the coasts of Ventura and Los Angeles and also at inland locations near Simi Valley. Future year simulations show substantial increase in impacts from ships due to expected growth in ship emissions. Ozone increases are as high as 59 ppb for land-based locations when estimates of ship emissions for 2020 are included. Similarly, particulate nitrate and sulfate increase up to 14 and 2.5 μg m~(-3). The results of this study show that control of ship emissions is important to mitigate air pollution.
机译:使用UCI-CIT模型(加利福尼亚州南海岸空气盆地)(SoCAB)量化了远洋船舶排放物对臭氧和颗粒物浓度的影响。建模领域包括洛杉矶和长滩港口以及一部分被船只横穿以访问这些港口的太平洋。通过分析夏季三天情节的模拟结果,评估基准年(2002年)和未来一年(2020年)的影响。预计到2002年,船舶排放物对峰值lh和8h臭氧浓度的贡献分别达到29ppb和24ppb。类似地,硝酸盐和硫酸盐的颗粒物浓度升高到12.8和1.7μgm〜(-2)。分别包括船舶排放在内的流域。预计最大的影响将发生在文图拉和洛杉矶沿海以及西米谷附近的内陆地区。未来一年的模拟显示,由于船舶排放的预期增长,船舶的影响将大大增加。如果算上2020年船舶排放量的估计值,陆地上的臭氧增加量将高达59 ppb。同样,硝酸盐和硫酸盐的颗粒物增加至14和2.5μgm〜(-3)。这项研究的结果表明,控制船舶排放对于减轻空气污染很重要。

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