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Positive sampling artifacts of organic carbon fractions for fine particles and nanoparticles in a tunnel environment

机译:隧道环境中细颗粒和纳米颗粒的有机碳组分的正采样伪像

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摘要

The positive artifacts in paniculate organic carbon fractions for fine particles (PM_(2.5)) and nanoparticles (PM_(0.1)) were characterized in a tunnel environment by using the QBQ (a quartz filter behind a quartz filter) method. The OC concentrations of the backup quartz filters ranged from 3.56 to 11.38 μg rrr~(-3) with the average of 6.70 μg m~(-3) for PM_(2.5), and from 2.62 to 7.27 μg m~(-3) with the average of 4.64 μg m~(-3) for PM0.1. The most abundant species on the backup quartz filters was OC1 for both PM_(2.5) and PM_(0.1), accounting for 56.9% and 41.1% of the measured organic carbon, respectively. Most of EC fractions (EC1 -EC3) on the backup filters for PM_(2.5) and PM_(0.1) were below the minimum detection limit. Therefore, only OC contributed to positive artifacts distinctly with the average percentage of 21.7% and 48.0% for PM_(2.5) and PM0.1, respectively. The artifacts for four organic carbon fractions ranged from 36.1% (OC1) to 4.4% (OC4) for PM_(2.5) and from 68.0% (OC1) to 31.9% (OC4) for PM0.1. The uncorrected OC/EC ratios on the front quartz filters were higher by as much as 30% and 107% for PM_(2.5) and PM_(0.1) than those corrected for positive organic artifacts, respectively. That is, much higher percentage of positive artifacts was found for PM_(0.1) OC fractions on the front filters. The comparison of the present and previous studies shows that OC positive artifacts vary widely among various PM fractions and sampling sites attributing to many factors that are worth investigating in the future.
机译:通过使用QBQ(石英过滤器后面的石英过滤器)方法,在隧道环境中表征了细颗粒(PM_(2.5))和纳米颗粒(PM_(0.1))的颗粒状有机碳组分中的正伪影。备用石英滤池的OC浓度范围为3.56至11.38μgrrr〜(-3),其中PM_(2.5)的平均值为6.70μgm〜(-3),并且为2.62至7.27μgm〜(-3) PM0.1的平均值为4.64μgm〜(-3)。备用石英过滤器上最丰富的物质是PM_(2.5)和PM_(0.1)的OC1,分别占所测有机碳的56.9%和41.1%。备用过滤器上针对PM_(2.5)和PM_(0.1)的大多数EC馏分(EC1-EC3)均低于最小检测限。因此,只有OC对PM_(2.5)和PM0.1的平均百分比分别贡献分别为21.7%和48.0%。对于PM_(2.5),四个有机碳馏分的伪影范围从36.1%(OC1)到4.4%(OC4),对于PM0.1,范围从68.0%(OC1)到31.9%(OC4)。对于正面的有机物,PM_(2.5)和PM_(0.1)的未经校正的OC / EC比分别高出30%和107%。也就是说,在前过滤器上发现了PM_(0.1)OC分数的正伪像百分比更高。本研究与先前研究的比较表明,OC阳性假象在不同的​​PM组分和采样位置之间差异很大,这归因于许多值得将来研究的因素。

著录项

  • 来源
    《Atmospheric environment》 |2012年第7期|p.225-230|共6页
  • 作者单位

    Institute of Environmental Engineering, National Chiao Tung University, Hsinchu, Taiwan,SKLLQC, Institute of Earth Environment, Chinese Academy of Sciences, Xi'an, China;

    Institute of Environmental Engineering, National Chiao Tung University, Hsinchu, Taiwan;

    Institute of Environmental Engineering, National Chiao Tung University, Hsinchu, Taiwan;

    SKLLQC, Institute of Earth Environment, Chinese Academy of Sciences, Xi'an, China,Institute of Global Environmental Change, Xi'an fiaotong University, Xi'an, China;

    Environmental Analysis Laboratory, Environmental Protection Administration, Jhongli 320, Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    positive artifacts; organic carbon; PM_(2.5); PM_(0.1); tunnel;

    机译:正面文物有机碳PM_(2.5);PM_(0.1);隧道;

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