• 제목/요약/키워드: fine and coarse particles

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2006 ~ 2008년 황사기간 중 천안시 대기 입자의 특성 변화 (Changes in aerosol characteristics during 2006 ~ 2008 Asian dust events in Cheonan, Korea)

  • 오세원
    • 한국산학기술학회논문지
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    • 제10권7호
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    • pp.1642-1647
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    • 2009
  • 황사기간 중 천안시 대기 입자의 특성 변화를 파악하기 위해, Cascade Impactor를 장착한 High Volume Air Sampler를 이용하여 대기 시료를 채취하여, 대기 입자의 입경별 질량농도 및 이온, 금속 성분의 농도를 황사기간과 비황사기간에 비교 측정하였다. 황사기간 중 일평균 TSP, PM10, PM2.5 평균 농도가 각각 214.9, 160.3, 95.9${\mu}\;g/m^3$으로, 비황사기간에 비해 각각 평균 3.08, 2.58, 1.95배 증가하였으며, 최대 농도는 TSP, PM10, PM2.5가 각각 850.1, 534.4, 233.3${\mu}\;g/m^3$으로, 비황사기간에 비해 각각 12.19, 8.60, 4.76배까지 증가하였다. 황사기간 중 농도의 증가는 미세입자보다는 조대입자에서 현저하였으며, 미세입자와 조대입자 모두 수용성 이온성분의 증가는 미미한 반면, 토양의 주요 구성 성분인 Fe, Al, Ti의 증가가 뚜렷이 관측되어, 토양구성 금속성분이 황사기간 중 입자 농도 증가의 주요원인 물질임을 확인할 수 있었다.

중유 연소 시 발생하는 미세입자 및 니켈과 바나듐의 대기 중 배출특성 (Emission Characteristics of Fine Particles, Vanadium and Nickel from Heavy Oil Combustion)

  • 장하나;김성현;이주형;황규원;유종익;석정희;서용칠
    • 한국대기환경학회지
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    • 제22권3호
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    • pp.353-360
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    • 2006
  • This study identified a particle size distribution (PSD) of fine particulate matter and emission characteristics of V and Ni by the comparison between anthropogenic sources of oil combustion (industrial boiler, oil power plant, etc.) and lab-scale combustion using a drop-tube furnace. In oil combustion source, the mass fraction of fine particles (less than 2.5 micrometers in diameter) was higher than that of coarse particles (larger than 2.5 micrometers in diameter) in $PM_{10}$ (less than 10 micrometers in diameter) as like in lab-scale oil combustion. In addition to this, it was identified that ultra-fine particles (less than 0.1 micrometers in diameter) had a large distribution in fine particles. Toxic metals like V and Ni had large mass fractions in fine particles, and most of all was distributed in ultra-fine particles. Most of ultra-fine particles containing toxic metals have been emitted into ambient by combustion source because it is hard to control by the existing air pollution control device. Hence, we must be careful on these pollutants because it is obvious that these are associated with adverse health and environmental effect.

Size Distributions of Atmospheric Particles in Cheonan, Korea

  • Oh, Se-Won
    • Journal of Korean Society for Atmospheric Environment
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    • 제22권E1호
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    • pp.45-48
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    • 2006
  • Mass size distributions of atmospheric particles in Cheonan were determined using a high volume air sampler equipped with a 5-stage cascade impactor. Bimodal distributions that are typical for urban atmospheric particles were obtained. A MMD of the fine particle mode was $0.47{\pm}0.05{\mu}m$ with a GSD of $2.72{\pm}0.21$, and those of the coarse particles were $5.15{\pm}0.18{\mu}m\;and\;2.09{\pm}0.09$, respectively. The annual average concentrations of TSP, PM10, PM2.5, and PM1 were 74.1, 67.5, 54.2, and $42.3{\mu}g/m^3$, respectively. Although the daily PM10 concentrations were under the current National Standard, the daily PM2.5 concentrations frequently exceeded the US Standard even in non asian dust periods. The fractions of PM 10, PM2.5, and PM1 in TSP were $0.905{\pm}0.013,\;0.723{\pm}0.022,\;and\;0.572{\pm}0.029$, respectively, and fine mode particles occupied $57{\sim}72%$ of the total particle mass. The results indicate that fine particles were at the concerning level, and should be the target pollutant for the regional air quality strategy in Cheonan.

Chemical Composition of Post-Harvest Biomass Burning Aerosols in Gwangju, Korea

  • Kim, Young-J.;Ryu, Seong-Y.;Kang, Gong-U.
    • 한국환경과학회:학술대회논문집
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    • 한국환경과학회 2003년도 International Symposium on Clean Environment
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    • pp.79-84
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    • 2003
  • The main objective of this study was to investigate the chemical characteristics of post-harvest biomass burning aerosols from field burning of barley straw in late spring and rice straw in late fall in rural area in Korea. 12-hr integrated intensive sampling of $PM_{10}$ and $PM_{2.5}$ biomass burning aerosols had been conducted continuously at Gwangju, Korea 4-15 June 2001 and 8 October-14 November 2002. The fine and coarse particles of biomass burning aerosols were collected for mass, ionic, elemental, and carbonaceous species analysis. Average fine and coarse mass concentrations of biomass burning aerosols were measured to be 129.6, 24.2 ${{\mu}gm}^{-3}$ in June 2001 and 47.1, 33.2 ${{\mu}gm}^{-3}$ in October to November 2002, respectively. Exceptionally high level of $PM_{2.5}$ concentration up to 157.8 ${{\mu}gm}^{-3}$ well above 24-hour standard was observed during the biomass burning event days under stagnant atmosphere condition. During biomass burning periods dominant ionic species were $Cl^{-}$, ${NO_3}^{-}$, ${SO_4}^{2-}$, and ${NH_4}^{+}$ in fine and coarse mode. In the fine mode $Cl^{-}$ and ${KCl}^{+}$ were unusually rich due to the high content of the semiarid vegetation. High OC values and OC/EC ratios were also measured during the biomass burning periods. Increased amount of fine aerosols with high enrichment, which were originated from biomass burning of post-harvest agricultural waste, resulted in extremely severe particulate air pollution and visibility degradation in the region. Particulate matters from open field burning of agricultural wastes cause great adverse impact on local air quality and regional climate.

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The Effects of TiN Particles on the HAZ Microstructure and Toughness in High Nitrogen TiN Steel

  • Jeong, H.C.;An, Y.H.;Choo, W.Y.
    • International Journal of Korean Welding Society
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    • 제2권1호
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    • pp.25-28
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    • 2002
  • In the coarse grain HAZ adjacent to the fusion line, most of the TiN particles in conventional Ti added steel are dissolved and austenite grain growth is easily occurred during welding process. To avoid this difficulty, thermal stability of TiN particle is improved by increasing the nitrogen content in steel. In this study, the effect of hlgh nitrogen TiN particle on preventing austenite grain growth in HAZ was investigated. Increased thermal stability of TiN particle is helpful for preventing the austenite grain growth by pinning effect. High nitrogen TiN particle in simulated HAZ were not dissolved even at high temperature such as 1400'E and prevented the austenite grain growth in simulated HAZ. Owing to small austenite grain size in HAZ the width of coarse grain HAZ in high nitrogen TiN steel was decreased to 1/10 of conventional TiN steel. Even high heat input welding, the microstructure of coarse grain HAZ consisted of fine polygonal ferrite and pearlite and toughness of coarse grain HAZ was significantly improved.

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개별입자 분석을 위한 대기에어로졸의 시료채취법 (Sampling Method for Individual Particle Analysis of Atmospheric Aerosol)

  • 천성우;박정호
    • 한국환경과학회지
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    • 제33권2호
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    • pp.113-119
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    • 2024
  • In this study, the most suitable sampling methods for the bimodal mass distribution characteristics and individual particle analysis of atmospheric aerosols were investigated. Samples collected in Quartz, Teflon, and Nuclepore filters were analyzed for individual particles using scanning electron microscopy with an energy-dispersive X-ray spectrometer (SEM/EDS). Then, the pore diameter of the filter and the collection flow rate were determined using the theoretical collection efficiency calculation formula for two-stage separation sample collection of coarse and fine particles. The Nuclepore filter was found to be the most suitable filter for identifying the physical and chemical characteristics of atmospheric aerosols since it was able to separate the sample and count the different sized particles better than either Quartz or Teflon. Nuclepore filters with 8.0 ㎛ and 0.4 ㎛ pores were connected in series and exposed to a flow rate of 16.7 L/min for two-stage separation sampling. The results show that it is possible to separate and collect both coarse and fine particles. We expect that the proposed methodology will be used for future individual particle analysis of atmospheric aerosols and related research.

Low-Z Electron Probe X-ray Microanalysis 분석법을 이용한 해안인근 지역의 대기입자 분석 (Characterization of Individual Atmospheric Particles, Collected in Susan, Korea, Using Low-Z Electron Probe X-ray Microanalysis)

  • 김혜경;노철언
    • 한국대기환경학회지
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    • 제19권5호
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    • pp.503-513
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    • 2003
  • A single particle analytical technique, called low-Z electron probe X-ray microanalysis (low-Z EPMA) was applied to characterize atmospheric particles collected in Busan, Korea, over a daytime period in Dec. 2001. The ability to quantitatively analyze the low-Z elements, such as C, N, and 0, in microscopic volume enables the low-Z EPMA to specify the chemical composition of individual atmospheric particle. Various types of atmospheric particles such as organics, carbon-rich, aluminosilicates, silicon oxide, calcium carbonate, iron oxide, sodium chloride, sodium nitrate, ammonium sulfate, and titanium oxide were identified. In the sample collected in Busan, sodium nitrate particles produced as a result of the reaction between sea salt and nitrogen oxides in the atmosphere were most abundantly encountered both in the coarse and fine fractions. On the contrary, original sea salt particles were rarely observed. The fact that most of the carbonaceous particles were distributed in the fine fraction implies that their origin is anthropogenic.

황사와 연무 시 PM10 및 PM2.5 미세먼지 조성 비교: 2010-2011년 고산지역 측정 (Composition comparison of PM10 and PM2.5 fine particulate matter for Asian dust and haze events of 2010-2011 at Gosan site in Jeju Island)

  • 김기주;이승훈;현동림;고희정;김원형;강창희
    • 분석과학
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    • 제27권1호
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    • pp.1-10
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    • 2014
  • 제주도 고산측정소에서 $PM_{10}$, $PM_{2.5}$ 미세먼지를 채취하여 주요 성분을 분석한 결과로부터 입경분포 및 오염 특성을 조사하였다. $NH{_4}{^+}$, nss-$SO{_4}^{2-}$, $K^+$, $CH_3COO^-$은 대체적으로 미세입자 분포하고, $NO{_3}{^-}$은 조대와 미세입자에 고루 분포하였으나 $Na^+$, $Cl^-$, $Mg^{2+}$, nss-$Ca^{2+}$은 대부분 조대입자에 분포되는 경향을 보였다. 황사 시에 조대입자와 미세입자에서 nss-$Ca^{2+}$이 36.7배, 15.0배 증가하고, $NO{_3}{^-}$은 조대입자에서 3.2배, 미세입자에서 3.1 배 높았다. 또 Al, Fe, Ca, K, Mg, Ti, Mn, Sr, Ba의 농도도 크게 증가하였다. 연무 시에는 nss-$SO{_4}^{2-}$, $NO{_3}{^-}$, $NH{_4}{^+}$ 농도가 조대입자에서 1.3~2.6배, 미세입자에서 1.5~4.2배 상승하였고, 특히 미세입자에서 $NO{_3}{^-}$ 농도가 크게 상승하였다. 고산지역 미세입자의 오염원 특성을 조사한 결과, 조대입자는 해염 영향이 가장 크고, 다음으로 토양, 인위적 오염원 순으로 영향을 많이 받았으나 미세입자는 인위적인 오염원 영향이 더 크고, 다음으로 해양과 토양 유입의 영향을 많이 받고 있는 것으로 나타났다.