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자료유형
학술저널
저자정보
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한국대기환경학회 한국대기환경학회지(국문) 한국대기환경학회지 제22권 제2호
발행연도
2006.4
수록면
179 - 189 (11page)

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Ambient gas phase mercury concentrations including elemental mercury (Hg<SUP>0</SUP>) were measured at the Potsdam, Stockton, and Sterling sites in NY from 2000 to 2003. Also, concentrations of ambient reactive gaseous mercury (RGM; Hg<SUP>2+</SUP>) were measured at the Potsdam site during one year. The contribution of RGM(4.2±6.4 pg/㎥) was about 0.2~3% of the total gas phase mercury concentration measured (TGM: 1.84±1.24, 1.83±0.32, 3.02±2.14 ng/㎥ in Potsdam, Stockton, and Sterling, respectively) at the receptor sites. Potential Source Contribution Function (PSCF), a hybrid receptor modeling incorporating backward trajectories was performed to identify source areas of TGM. Using PSCF, southern New York, North Carolina, and eastern Massachusetts were identified as important source areas in the United States, while the copper smelters and waste incinerators located in eastern Quebec and Ontario were determined to be significant sources in Canada. The Atlantic Ocean was suggested to be a possible mercury source.
PSCF incorporating back-dispersion and deposition was applied for RGM, as well as PSCF based on 2-days back-trajectories. Two different approaches yielded considerably different results, primarily due to the consideration of dispersion rather than deposition. Using back-trajectory based PSCF, eastern Ohio, southern New York, and southern Pennsylvania where large coal-fired power plants area located were identified as the large sources in US. Metallurgical industry located in eastern Quebec was resolved as well. From the result of backdispersion and deposition based PSCF, Pennsylvania, mining facilities around Lake Superior, Toronto, Boston, MA, Quebec, and coal power plants in NY were identified to be the significant source areas for Potsdam site.

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Abstract
1. 서론
2. 실험 방법
3. 결과 및 고찰
4. 결론
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