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Source Allocation of Long-Range Asian Dusts Transportation across the Taiwan Strait by Innovative Chemical-Assisted Identification Methods

机译:通过创新的化学辅助识别方法,通过台湾海峡远程亚洲粉尘运输的来源分配

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摘要

This study used the backward trajectory calculation to obtain the transportation routes of Asian dusts and further combined the chemical composition with the enrichment factor (EF) and the grey relational analysis (GR) to identify the potential sources of eighteen Asian dust storm (ADS) events. The results showed that the chemical compositions of atmospheric particles sampled at the Pescadores Islands were very similar to source soils fugitively emitted from Inner Mongolia, which could assist in identifying the source regions of Asian dusts. This study further compared the source allocation of Asian dusts obtained from EF, GR, and backward trajectory, which showed that the source regions of Asian dusts obtained from these three methods were quite similar. The similarity of backward trajectory and GR reached as high as 83.3%.Moreover, the similarity of backward trajectory calculation and EF or GR was up to 77.8% while that of the GR and EF was up to 83.3%. Overall, these three methods can successfully allocate the source regions of Asian dusts by 66.7%. Moreover, these innovative chemical-assisted methods can be successfully applied to identify the source regions of Asian dusts for 18 ADS events.
机译:这项研究用来了落后的轨迹计算,以获得亚洲粉尘的运输路线,并进一步将化学成分与富集因子(EF)和灰色关系分析(GR)相结合,以确定十八亚洲尘暴(广告)事件的潜在来源。结果表明,PESCADORES岛中采样的大气颗粒的化学成分非常相似,与从内蒙古逃逸的源土壤,这可以有助于识别亚洲粉尘的源区。本研究进一步比较了从EF,GR和向后轨迹获得的亚洲粉尘的源分配,这表明从这三种方法获得的亚洲粉尘的源区非常相似。向后轨迹和GR的相似性高达83.3%.Moreover,后向轨迹计算和EF或GR的相似性高达77.8%,而GR和EF的相似性高达83.3%。总的来说,这三种方法可以成功地将亚洲粉尘的源区分配66.7%。此外,这些创新的化学辅助方法可以成功应用于识别18个广告事件的亚洲粉尘的源区。

著录项

  • 来源
    《Advances in Meteorology》 |2014年第2期|共10页
  • 作者单位

    Institute of Environmental Engineering National Sun Yat-Sen University Kaohsiung 80424 Taiwan;

    Institute of Environmental Engineering National Sun Yat-Sen University Kaohsiung 80424 Taiwan;

    Institute of Environmental Engineering National Sun Yat-Sen University Kaohsiung 80424 Taiwan;

    Institute of Environmental Engineering National Sun Yat-Sen University Kaohsiung 80424 Taiwan;

    Department of Safety Health and Environmental Engineering National Kaohsiung First University Kaohsiung 824 Taiwan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学);
  • 关键词

    Source; Allocation; Long-Range;

    机译:来源;分配;远程;

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