• 제목/요약/키워드: Individual fog droplet

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Micro-PIXE as a Technique for Multi-elemental Detection and Localization in Various Atmospheric Environmental Samples

  • Ma, Chang-Jin;Choi, Sung-Boo
    • Journal of Korean Society for Atmospheric Environment
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    • 제24권E1호
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    • pp.54-62
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    • 2008
  • Microbeam PIXE, often called micro-PIXE, is one of powerful tools for analyzing a wide range of elements for various samples. Moreover, it has important applications of interest to the atmospheric science. In the present study, a qualitative elemental imagination for various atmospheric environmental species was attempted using micro-PIXE. Especially, in combination with a novel individual droplet collection method and the micro-PIXE analytical technique, the chemical specification of various individual atmospheric samples could be carried out. Here, we briefly introduce the results of an application of micro-PIXE to the study of atmospheric environment. The detailed spatial resolution of multiple elements for various samples like individual ambient particles, individual raindrops, individual fog droplets, and individual snow crystals could be successfully achieved by scanning 2.6 MeV $H^+$ micro beam ($1{\sim}2{\mu}m$) accelerated by 3 MeV single-end accelerator.

Application of Microbeam Technique to Atmospheric Science

  • Ma Chang-Jin
    • 한국대기환경학회:학술대회논문집
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    • 한국대기환경학회 2005년도 추계학술대회 논문집
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    • pp.67-74
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    • 2005
  • Microbeam PIXE, often called micro-PIXE, is a powerful tool tot analyzing a wide range of elements for various samples, as well as, it has important applications of interest to the atmospheric science. In this study, qualitative elemental imagination for various atmospheric environmental species was attempted using micro-PIXE. Here, we present the results of an application of micro-PIXE to the study of atmospheric environment. The detailed spatial resolution of multiple elements lot various samples like individual ambient particles, individual raindrops, individual fog droplets, and individual snow crystals could be successfully achieved by scanning 2.6 MeV H+ micro beam (1-2 ${\mu}m$) accelerated by 3 MV single-end accelerator.

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