포항지역 오존의 수직분포 특성

Characteristics of Vertical Ozone Distributions in the Pohang Area, Korea

  • 김지영 (세종대학교 지구과학과 대기환경연구실) ;
  • 윤용훈 (기상연구소 해양기상연구실) ;
  • 송기범 (세종대학교 지구과학과 대기환경연구실) ;
  • 김기현 (세종대학교 지구과학과 대기환경연구실)
  • Kim, Ji-Young (Atmospheric Environment Laboratory, Department of Earth Sciences, Sejong University) ;
  • Youn, Yong-Hoon (Marine Meteorology Laboratory, Meteorological Research Institute) ;
  • Song, Ki-Bum (Atmospheric Environment Laboratory, Department of Earth Sciences, Sejong University) ;
  • Kim, Ki-Hyun (Atmospheric Environment Laboratory, Department of Earth Sciences, Sejong University)
  • 발행 : 2000.06.28

초록

본 연구진은 포항지역을 중심으로 1995년부터 1997년의 3년간 오존존데로 관측한 고도별 오존농도 및 오존전량 자료를 이용하여 오존의 수직분포특성에 대한 연구를 수행하였다. 오존의 수직분포를 체계적으로 밝히기 위해, 지상(100m), 대류권(10km), 하부 성층권(20km), 중부 성층권(30km)을 대표 고도로 설정하여 오존농도의 시 ${\cdot}$ 공간적 분포특성에 대한 비교분석을 시도하였다. 지상(100m) 오존의 경우, 포항제철이 인접해 있음에도 불구하고, 전반적으로 청정지역에서와 유사한 농도분포를 유지하였다. 봄과 여름에 높고 가을과 겨울에 낮은 농도분포는 기상인자들과의 상관성을 고려할 때, 대체로 광화학 반응에 의한 결과로 보여진다. 대류권(10km) 및 하부 성층권(20km)의 경우 춘고하저(春高夏低)의 전형적인 북반구 대류권 오존의 시간적 경향성을 나타내었다. 이는 고도별 오존농도간의 분석결과 성층권 오존의 대류권 이동 및 광화학 반응과 역전층 형성에 의한 결과로 추정된다. 중부 성층권(30km) 오존의 경우 지상 오존의 농도분포 경향과 매우 유사한 월주기 및 계절주기를 취하였다. Brewer 분광광도계에 의한 오존전량은 성층권 오존량 (Umkehr 법)에 의해 크게 좌우되며, 오존전량은 유해자외선 (UV-B)과의 상관성은 미미하나, 운량과는 음의 상관성을 갖는 것으로 나타났다. 본 연구의 결과 지상권뿐만 아니라 대류권 및 성층권 오존의 시간적 특성을 이해하는데 있어 포항이 해안도시라는 지리학적인 요인이 매우 중요하다는 점을 확인할 수 있다.

In order to investigate the factors and processes affecting the vertical distributions of ozone, we analyzed the ozone profile data measured using ozonesonde from 1995 to 1997 at Pohang city, Korea. In the course of our study, we analyzed temporal and spatial distribution characteristics of ozone at four different heights: surface (100m), troposphere (10km), lower stratosphere (20km), and middle stratosphere (30km). Despite its proximity to a local, but major, industrial complex known as Pohang Iron and Steel Co. (POSCO), the concentrations of surface ozone in the study area were comparable to those typically observed from rural and/or unpolluted area. In addition, the findings of relative enhancement of ozone at this height, especially between spring and summer may be accounted for by the prevalence of photochemical reactions during that period of year. The temporal distribution patterns for both 10 and 20km heights were quite compatible despite large differences in their altitudes with such consistency as spring maxima and summer minima. Explanations for these phenomena may be sought by the mixed effects of various processes including: ozone transport across two heights, photochemical reaction, the formation of inversion layer, and so on. However, the temporal distribution pattern for the middle stratosphere (30km) was rather comparable to that of the surface. We also evaluated total ozone concentration of the study area using Brewer spectrophotometer. The total ozone concentration data were compared with those derived by combining the data representing stratospheric layers via Umkehr method. The results of correlation analysis showed that total ozone is negatively correlated with cloud cover but not with such parameter as UV-B. Based on our study, we conclude that areal characteristics of Pohang which represents a typical coastal area may be quite important in explaining the distribution patterns of ozone not only from surface but also from upper atmosphere.

키워드

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