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Application of a counting technique to determine certain and uncertain geographic regions of emission sources

机译:应用计数技术确定排放源的某些不确定区域

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摘要

Potential source contribution functions (PSCF) are frequently used to determine possible emission sources of airborne pollutants. A counting technique was developed to correct for regions erroneously identified by conventional PSCE While conventional PSCF uses empirically determined weighting factors to correct for these erroneous regions, the proposed technique counts trajectories passing through a location of interest and in adjacent regions to objectively determine its identification as a source region. Conventional PSCF plots and modified version using this new counting technique were created for total PM2.5 and nitrate PM(2.)5 mass concentration data collected between July 2001 and September 2002. The modified PSCF eliminated erroneous potential emission sources regions and also identified potential emission sources during episodic events. These episodic source regions were not observed with conventional PSCF plots. The PSCF plots of total PM2.5 mass concentration displayed geographic regions where power plants in Southern Ontario, Michigan and Ohio were located. Similarly, the PSCF plots of nitrate PM2.5 mass concentrations displayed areas in Canada and the United States related to agricultural regions. Two episodic emission sources corresponding with forest fires in Quebec and the Prairie Provinces were also identified by the modified PSCF. Interestingly, the Prairie forest fires were identified as a nitrate source, unlike the Quebec forest fires. (c) 2005 Elsevier B.V. All rights reserved.
机译:潜在的源贡献函数(PSCF)通常用于确定空气污染物的可能排放源。开发了一种计数技术来校正常规PSCE错误识别的区域,而常规PSCF使用凭经验确定的加权因子来校正这些错误区域,所提出的技术对经过目标位置和相邻区域的轨迹进行计数,以客观地确定其识别为源区域。针对2001年7月至2002年9月期间收集的总PM2.5和硝酸盐PM(2.)5质量浓度数据创建了常规PSCF图和使用此新计数技术的修改版本。修改后的PSCF消除了错误的潜在排放源区域,并确定了潜在的突发事件中的排放源。使用常规PSCF图未观察到这些情节性源区域。总PM2.5质量浓度的PSCF图显示了安大略省南部,密歇根州和俄亥俄州的发电厂所在的地理区域。同样,硝酸盐PM2.5质量浓度的PSCF图显示了加拿大和美国与农业地区有关的地区。修改后的PSCF还确定了与魁北克省和草原省的森林大火相对应的两种情景排放源。有趣的是,与魁北克森林大火不同,草原森林大火被确定为硝酸盐源。 (c)2005 Elsevier B.V.保留所有权利。

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