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首页> 外文期刊>Journal of the air & waste management association >Spatial PM_(2.5) mobile source impacts using a calibrated indicator method
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Spatial PM_(2.5) mobile source impacts using a calibrated indicator method

机译:空间PM_(2.5)移动源使用校准指示方法的影响

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摘要

Motor vehicles are major sources of fine particulate matter (PM2.5), and the PM2.5 from mobile vehicles is associated with adverse health effects. Traditional methods for estimating source impacts that employ receptor models are limited by the availability of observational data. To better estimate temporally and spatially resolved mobile source impacts on PM2.5, we developed an approach based on a method that uses elemental carbon (EC), carbon monoxide (CO), and nitrogen oxide (NOx) measurements as an indicator of mobile source impacts. We extended the original integrated mobile source indicator (IMSI) method in three aspects. First, we generated spatially resolved indicators using 24-hr average concentrations of EC, CO, and NOx estimated at 4 km resolution by applying a method developed to fuse chemical transport model (Community Multiscale Air Quality Model [CMAQ]) simulations and observations. Second, we used spatially resolved emissions instead of county-level emissions in the IMSI formulation. Third, we spatially calibrated the unitless indicators to annually-averaged mobile source impacts estimated by the receptor model Chemical Mass Balance (CMB). Daily total mobile source impacts on PM2.5, as well as separate gasoline and diesel vehicle impacts, were estimated at 12 km resolution from 2002 to 2008 and 4 km resolution from 2008 to 2010 for Georgia. The total mobile and separate vehicle source impacts compared well with daily CMB results, with high temporal correlation (e.g., R ranges from 0.59 to 0.88 for total mobile sources with 4 km resolution at nine locations). The total mobile source impacts had higher correlation and lower error than the separate gasoline and diesel sources when compared with observation-based CMB estimates. Overall, the enhanced approach provides spatially resolved mobile source impacts that are similar to observation-based estimates and can be used to improve assessment of health effects. Implications: An approach is developed based on an integrated mobile source indicator method to estimate spatiotemporal PM2.5 mobile source impacts. The approach employs three air pollutant concentration fields that are readily simulated at 4 and 12 km resolutions, and is calibrated using PM2.5 source apportionment modeling results to generate daily mobile source impacts in the state of Georgia. The estimated source impacts can be used in investigations of traffic pollution and health.
机译:机动车辆是细颗粒物质(PM2.5)的主要来源,来自移动载体的PM2.5与不良健康影响有关。用于估计使用受体模型的源影响的传统方法受到观察数据的可用性的限制。为了更好地估计对PM2.5的时间上和空间解决的移动源影响,我们开发了一种方法,该方法基于使用元素碳(EC),一氧化碳(CO)和氮氧化物(NOx)测量作为移动源的指示器的方法影响。我们在三个方面扩展了原始集成的移动源指示器(IMSI)方法。首先,我们通过应用为熔断化学传输模型(社区多尺度空气质量模型[CMAQ])模拟和观测的方法,在4公里分辨率下,使用24小时平均浓度的EC,CO和NOx产生空间分辨的指标。其次,我们在IMSI制定中使用了空间解决的排放而不是县级排放。第三,我们将无单位指标空间校准到受体模型化学质量平衡(CMB)估计的每年平均移动源影响。每日总移动源对PM2.5的影响以及独立的汽油和柴油车辆影响,于2002年至2008年的12公里到2008年和4公里到2010年为格鲁吉亚。总体移动和单独的车辆源影响良好地与日常的CMB结果相比,具有高时间相关性(例如,R为0.59至0.88,对于九个位置4公里的分辨率,具有4公里的分辨率)。与基于观察的CMB估计相比,总移动源影响比单独的汽油和柴油源具有更高的相关性和更低的误差。总的来说,增强方法提供了类似于基于观察的估计的空间解决的移动源影响,可用于改善对健康效果的评估。含义:一种方法是基于集成的移动源指示器方法开发的,以估计时空PM2.5移动源影响。该方法采用三种空气污染物浓度领域,可在4和12km分辨率下易于模拟,并使用PM2.5源分摊建模结果校准,以在格鲁吉亚州生成日常移动源影响。估计的源影响可用于对交通污染和健康的调查。

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    Georgia Inst Technol Sch Civil & Environm Engn 311 Ferst Dr Atlanta GA 30332 USA;

    Georgia Inst Technol Sch Civil & Environm Engn 311 Ferst Dr Atlanta GA 30332 USA;

    Georgia Inst Technol Sch Civil & Environm Engn 311 Ferst Dr Atlanta GA 30332 USA;

    Univ Nevada Dept Phys Atmospher Sci Program Reno NV 89557 USA;

    Georgia Inst Technol Sch Civil & Environm Engn 311 Ferst Dr Atlanta GA 30332 USA;

    Georgia Inst Technol Sch Civil & Environm Engn 311 Ferst Dr Atlanta GA 30332 USA;

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