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首页> 外文期刊>Journal of the air & waste management association >PM source identification at Sunland Park, New Mexico, using a simple heuristic meteorological and chemical analysis
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PM source identification at Sunland Park, New Mexico, using a simple heuristic meteorological and chemical analysis

机译:使用简单的启发式气象和化学分析在新墨西哥州桑兰公园的PM来源识别

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摘要

The causes for evening low-wind PM,, and PM,., peaks at Sunland Park, NM, were investigated by using wind sector analysis and by assessing relationships between PM loadings and meteorological parameters through canonical ordination analysis. Both PM10 and PM2.5 concentrations during the evening hours accounted for similar to50% of their respective 24-hr averages, and the PM10 was mainly composed of coarse material (PM10-2.5 amounted to 77% of PM10). A wind sector analysis based on data from three surface meteorological monitoring stations in the region narrowed the potential source region for PM10 and PM2.5 to an area within a few kilometers south of Sunland Park. Canonical ordination analysis confirmed that the peak frequently occurred under stable conditions with weak southerly winds. Chemical analyses of PM showed that elemental and organic carbon (EC and OC, respectively) dominate PM2.5 and inorganic elements dominate PM10-2.5. The combined data for EC/OC, geologic elements, and various trace elements indicate that under low wind and stable conditions, traffic-related PM emissions (motor vehicle exhausts and re-suspended road dust) from the south of the site are the most likely sources for the evening PM10 and PM2.5 peaks.
机译:通过使用风能部门分析并通过规范排序分析评估了PM负荷与气象参数之间的关系,研究了新墨西哥州桑兰公园(Sunland Park)夜间低风PM和PM。高峰的原因。晚上的PM10和PM2.5浓度均接近其各自24小时平均值的50%,并且PM10主要由粗物质组成(PM10-2.5占PM10的77%)。根据来自该地区三个地面气象监测站数据的风能分析,将PM10和PM2.5的潜在来源区域缩小到了Sunland公园以南几公里以内的区域。规范的定序分析证实,该高峰经常发生在稳定的条件下,南风偏弱。 PM的化学分析表明,元素碳和有机碳(分别为EC和OC)占PM2.5的主导,而无机元素占PM10-2.5的主导。 EC / OC,地质元素和各种微量元素的组合数据表明,在低风和稳定条件下,最有可能从站点南部排放与交通有关的PM排放物(机动车尾气和悬浮的道路扬尘)晚上PM10和PM2.5高峰的来源。

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