• 제목/요약/키워드: atmospheric aerosols

검색결과 383건 처리시간 0.029초

서울과 인천지역 PM10 과 PM2.5 중 2차생성 탄소성분 추정 (The Characteristics of Secondary Carbonaceous Species within PM10 and PM2.5 in Seoul and Incheon Area)

  • 박진수;김신도
    • 한국대기환경학회지
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    • 제21권1호
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    • pp.131-140
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    • 2005
  • To investigate secondary carbonaceous species within PM$_{10}$ and PM$_{2.5}$ in Seoul urban Metropolitan Area (SMA), Korea. atmospheric particulate matters samples were collected at two sites of SMA at UOS (The University Of Seoul station) sites and IHU (InHa University of Incheon station) during the period of 4 to 14 January and 12 to 22 May, 11 to 15 August 2004, and their characteristics were qualitatively discussed. during January and May and August of 2004. Daily average mass concentration 0.095 mg/㎥ in PM$_{10}$ and 0.053 mg/㎥ in PM$_{2.5}$ for mass respectively. were observed in SMA. The concentrations of carbonaceous species contributed 18.4% and 16.4% of PM$_{2.5}$ and PM$_{10}$ during the sampling period, respectively, of which OC accounted for 68% and 52% more of the total carbon (TC). OC and EC concentrations and their mass percentages were higher in PM$_{2.5}$ than in PM$_{10}$ which could be attributed to generation process. Organic aerosols would constitute up to 38% of PM$_{2.5}$ based on the evaluation of 1.6 for the ratio of OC to organic particulate. Secondary organic carbon (SOC) were estimated to be more than 13% and up to 68% of total OC based on the minimum OC/EC ratio of 1.06/1.11 using least square method. Comparisons of OC and EC with trace elements. As results of carbonaceous species analysis, the dominant factor in view of fine particle (PM$_{10}$/PM$_{2.5}$) is primary emission source such as mobile, fossil fuel combustion etc. during winter time in SMA. But in summer periods, remarkable fine particle increasing factor was secondary organic carbon dependent to photochemical reaction. reaction.n. reaction.

Characteristics of Gas- and Particle-phase Acids and $NH_3$ at Urban and Rural Sites in Korea

  • Ma Chang-Jin;Kim Hui-Kang;Kang Gong-Unn;Tohno Susumu;Kasahara Mikio
    • Journal of Korean Society for Atmospheric Environment
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    • 제20권E1호
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    • pp.15-28
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    • 2004
  • To study the characteristics of ammonia and the related compounds, atmospheric aerosols and gases were collected using a triple filter pack sampler, a low volume air sampler, and a three-stage Anderson air sampler in Seoul and Kangwha Island, Korea from Dec. 1996 to Oct. 1997. Ammonia concentrations showed approximately two times higher in summer than in winter at both sites. The highest $HNO_3$ levels were generally observed in summertime at two sampling sites. The average mass concentration of $PM_{2.5}$ in heavily industrialized Seoul was about three times higher than that of Kangwha. In winter, the sum of $NH_4^+$ and its counter ions (such as $Cl^-,\;NO_3^-$, and $SO_4^{2-}$) comprised $30-41\%$ of $PM_{2.5}$ mass concentration at each sampling site. Temperature dependence of particulate nitrate was examined at the urban sampling site. The formation of the nitrate in the fine mode was dependent not only on the amount of precursors but also on the variation of temperature. $(NH_4)_2SO_4$ and $NH_4HSO_4$ coexisted with $NH_4NO_3$ and $NH_4Cl$ at each site. According to the summertime backward trajectory analysis, $NO_3^-$ showed higher level with air parcels transported from northeast Asian continent. On the other hand, the concentration of $SO_4^{2-}$ showed significantly higher level when air masses originated from Pacific Ocean, southern part of Japan, and Korea.

동아시아 지역의 여름철 온난화가 PM2.5 에어로졸에 미치는 영향 (Impact of East Asian Summer Atmospheric Warming on PM2.5 Aerosols)

  • 김소정;조재희;김학성
    • 한국지구과학회지
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    • 제45권1호
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    • pp.1-18
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    • 2024
  • 2020년 6월 여름철 중위도 동아시아 지역의 온난화가 PM2.5 에어로졸의 생성기작에 미치는 영향을 WRF-Chem 모델에 기상과 기후 입력 자료를 적용하여 산출한 PM2.5 에어로졸 아노말리를 통해 분석하였다. 30년(1991-2020년) 동안 동아시아 지역의 10년 단위 기온 변화 경향은 최근에 겨울보다는 여름에 온난화가 더 커지는 것으로 나타나고 있다. 동아시아 지역의 여름철 온난화는 중국 내륙의 대류권 하층에서는 저기압, 대류권 상층에서는 고기압을 발생시키고 있었다. 대류권 하층 저기압과 상층 고기압의 경계가 티베트고원으로부터 한국으로 낮아지는 지형을 따라 경사져 분포하고 있었다. 중국 동부-황해-한국의 지역에는 저기압과 더불어 북서 태평양 고기압의 발달로 동중국해로부터 온난 다습한 남서 기류가 수렴하고 있었다. 한국에서는 1973년 이래로 6월 중에는 2020년에 가장 높은 기온이 관측되었다. 한편 동아시아 지역에서 강화된 온난화는 중국 동부지역으로부터 한반도로 장거리를 이동하는 PM2.5 에어로졸의 생성을 증가시키고 있었다. WRF-Chem (Weather Research Forecasting model coupled with Chemistry) 모델에 배출량의 변동은 고려하지 않고, 기상 및 기후 입력장(1991-2020년)만을 적용하여 산출한 PM2.5 아노말리는 중국 동부지역으로부터 황해와 한국, 그리고 북서 태평양 지역에 걸쳐 양(+)으로 분포하고 있었다. 따라서, 2020년 6월 동아시아 지역에서 PM2.5 질량 농도에 대한 온난화 기여도는 50% 이상이었다. 특히 PM2.5 에어로졸이 중국 동부로부터 황해를 거쳐 한국으로 장거리 수송되는 과정에서 온난 다습한 남서 기류에 의해 황산염은 습식세정 되고 있지만 질산염은 생성이 촉진되고 있었다.

2008년 동아시아 대륙으로부터 기원이 다른 먼지와 인위적 오염 입자의 광역적 이동 사례에 대한 분석 (An Analysis on the Episodes of Large-scale Transport of Natural Airborne Particles and Anthropogenically Affected Particles from Different Sources in the East Asian Continent in 2008)

  • 김학성;윤마병;손정주
    • 한국지구과학회지
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    • 제31권6호
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    • pp.600-607
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    • 2010
  • 2008년 동아시아 대륙에서 발생기원이 다른 먼지(황사)와 인위적 오염입자의 광역적 이동 사례를 NOAA위성 RGB 합성영상과 지상 입경별 분진(TSP, $PM_{10}$, $PM_{2.5}$)의 질량농도 관측으로 분석하였다. 또한 Terra/Aqua 위성 MODIS(Moderate resolution Imaging Spectroradiometer) 센서의 AOD(Aerosol Optical Depth)와 FW(Fine aerosol Weighting)를 통해 동아시아 지역에서 발생기원이 다른 대기 에어로졸의 분포와 입자 크기 특성을 분석하였다. 중국 북부와 몽골, 그리고 중국 황토고원에서 모래폭풍이 발생하여 광역적으로 이동하여 청원에 먼지입자(황사)로 영향을 주는 6 개의 사례분석을 실시하였다. 질량농도 TSP중 $PM_{10}$은 70%, $PM_{2.5}$는 16%로 조대입자(> $2.5\;{\mu}m$)의 비율이 큰 것은 사막과 반사막의 자연적 발생원에서 생성되었기 때문이다. 그러나, 모래 폭풍이 이동 과정에서 중국 동부의 산업 지역을 거쳐 유입하는 사례에서는 TSP 중 $PM_{2.5}$가 23%까지 증가하기도 했다. 중국 동부로부터 황해를 거쳐 한반도로 유입한 5개 다른 사례의 경우, TSP 중 $PM_{10}$, $PM_{2.5}$가 각각 82, 65%로 나타났다. 이와 같이 $PM_{2.5}$의 상대적 비율이 증가한 것은 인위적 오염입자의 영향 때문이다. 동아시아 지역에서 인위적 오염입자의 광역적 이동 사례에 대한 평균 AOD는 $0.42{\pm}0.17$로 황사에 의한 AOD($0.36{\pm}0.13$)와 비교하여 대기 에어로졸에 대한 비율이 높게 나타났다. 특히, 중국 동부에서 황해, 한반도, 동해에 이르는 광역적 지역에 AOD값이 높게 분포했다. 인위적 오염입자의 사례는 FW가 평균 $0.63{\pm}0.16$로 모래폭풍의 이동 사례의 $0.52{\pm}0.13$ 보다 높은 값을 보였다. 이는 대기 에어로졸에 대한 인위적 미세 오염 입자의 기여도가 클 수 있음을 제시하고 있다.

연무 에어로졸의 조성 및 기류 유입경로별 변화: 2012-2013년 제주도 고산지역 측정 (Compositions of haze aerosols and their variation by inflow pathway of air mass at Gosan site in Jeju Island during 2012-2013)

  • 현동림;송정민;김기주;김원형;강창희;고희정
    • 분석과학
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    • 제27권4호
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    • pp.213-222
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    • 2014
  • 국내 배경지역인 제주도 고산측정소에서 2012~2013년에 대기 미세먼지를 채취하여 분석한 결과로부터 연무와 비현상일의 조성특성을 조사하였다. 연무 시 $nss-SO_4{^{2-}}$, $NO_3{^-}$, $NH_4{^+}$ 농도는 비현상일에 비해 조대입자에서 2.1~3.7배, 미세입자에서 3.1~6.5배로 미세입자에서 더 높게 증가하였고, 특히 $NO_3{^-}$ 농도가 미세입자에서 6.5배 상승하였다. 원소성분들 중에는 S, Zn, Pb, K 등이 비현상일보다 조대입자에서 3.0~5.6배, 미세입자에서 3.2~7.7배 증가하나 Al, Fe, Ca 등은 대부분 조대입자에서 농도가 크게 증가하는 경향을 보였다. 역궤적 분석 결과 연무 시 $nss-SO_4{^{2-}}$, $NO_3{^-}$ 농도는 중국으로부터 유입되었을 때 더 높은 농도를 나타내었고, 특히 기류가 중국남부를 통과했을 때 $NO_3{^-}$ 농도가 더 크게 상승하는 경향을 보였다. 또 $NO_3{^-}/nss-SO_4{^{2-}}$ 농도비는 중국에서 기류가 이동했을 때 조대입자에서 상대적으로 높은 비율을 보이나 미세입자에서는 오히려 한반도를 통과했을 때 더 높은 성분비를 나타내었다.

제주도 고산 PM10, PM2.5, PM1.0 중 OC와 EC의 계절별 변화 특성 (Seasonal Variations of OC and EC in PM10, PM2.5 and PM1.0 at Gosan Superstation on Jeju Island)

  • 임세희;이미혜;강경식
    • 한국대기환경학회지
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    • 제26권5호
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    • pp.567-580
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    • 2010
  • Organic carbon (OC) and elemental carbon (EC) concentrations were determined for $PM_{10}$, $PM_{2.5}$ and $PM_{1.0}$ aerosols particles collected at Gosan Superstation on Jeju Island from August 2007 to September 2008. Aerosols were collected on quartz filters for 24 hours and then OC and EC were analyzed by TOR/IMPROVED method. Mean concentrations of OC and EC were $4.66\;{\mu}g/m^3$ and $1.69\;{\mu}g/m^3$ for $PM_{10}$, $3.95\;{\mu}g/m^3$ and $1.69\;{\mu}g/m^3$ for $PM_{2.5}$, and $3.16\;{\mu}g/m^3$ and $1.42\;{\mu}g/m^3$ for $PM_{1.0}$, respectively. The concentrations of OC and EC comprised 16.4% and 6.0% of $PM_{10}$, 22.9% and 9.8% of $PM_{2.5}$, and 23.0% and 10.0% of $PM_{1.0}$. OC and EC showed a clear seasonal variation with the highest in winter and the lowest in summer. The correlations between the two were also the best during the winter ($R^2$=0.87, 0.94, and 0.95 for $PM_{10}$, $PM_{2.5}$ and $PM_{1.0}$). The ratio of OC/EC exhibited the maximum (7.24) during an Asian dust event due to an increase of OC, which was possibly derived from soil. The mass fraction of both OC and EC was the highest in fall. When OC and EC concentrations were highly elevated, EC1 (the first EC fraction determined at $550^{\circ}C$) and pyrolyzed OC (POC) were dominant subcomponents in winter and OC3 (the third OC fraction determined at $450^{\circ}C$) and POC in spring.

소형 자동차 페인트 도장부스에서 발생하는 점착성 paint aerosol 처리장치에서 제거성능 (Removal Performance of Sticky Paint Aerosol Control System Generated from Small Scale Car Paint Overspray Booth)

  • 이재랑;;전성민;이강산;손종렬;박영옥
    • 한국대기환경학회지
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    • 제31권1호
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    • pp.54-62
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    • 2015
  • Small scale paint overspray booths are being operated nationwidely, for repair of passenger car body parts. paint aerosols are emitted from the paint overspray booth in operations. In paint overspray booth operations without ventilation system and air pollutants collection unit, it may land on nearby equipment. In this study a removal of sticky paint aerosol for application of the small-scale overspray paint booth. it's cause the surface of filter bag from generated sticky paint aerosol. To remove adhesion of paint aerosol the agglomerating agents are injected and mixed with sticky paint aerosols prior to reach the filter bag. The paint spray rate was set as $10{\pm}5g/min$ from air-atomized spray guns in the spray booth, injection rate of agglomerating was $10{\pm}5g/min$ in the mixing chamber. The filtration velocity including air pollutants varied from 0.2 m/min to 0.4 m/min. Bag cleaning air pressure was set as $5.0kg_f/min$ for detaching dust cake from surface of filter bag. Bag cleaning interval at the filtration velocity of 0.2 m/min was around 3 times longer than that of the 0.4 m/min. The residual pressure drop maintained highest value at the highest filtration velocity. Fractional efficiency of 99.952%~99.971% was possible to maintain for the particle size of 2.5 microns. Total collection efficiency at the filtration velocity of 0.2 m/min was 99.42%. During this study we could confirm high collection efficiency and long cleaning intervals for the test with filtration velocity of 0.2 m/min indicating an optimal value for the given dimensions of the test unit and test operating conditions.

Characterization of Summertime Aerosol Particles Collected at Subway Stations in Seoul, Korea Using Low-Z Particle Electron Probe X-ray Microanalysis

  • Kim, Bo-Wha;Jung, Hae-Jin;Song, Young-Chul;Lee, Mi-Jung;Kim, Hye-Kyeong;Kim, Jo-Chun;Sohn, Jong-Ryeul;Ro, Chul-Un
    • Asian Journal of Atmospheric Environment
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    • 제4권2호
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    • pp.97-105
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    • 2010
  • A quantitative single particle analytical technique, denoted low-Z particle electron probe X-ray microanalysis (low-Z particle EPMA), was applied to characterize particulate matters collected at two underground subway stations, Jegidong and Yangje stations, in Seoul, Korea. To clearly identify the source of the indoor aerosols in the subway stations, four sets of samples were collected at four different locations within the subway stations: in the tunnel; at the platform; near the ticket office; nearby outdoors. Aerosol samples collected on stages 2 and 3 ($D_p$: $10-2.5\;{\mu}m$ and $2.5-1.0\;{\mu}m$, respectively) in a 3-stage Dekati $PM_{10}$ impactor were investigated. Samples were collected during summertime in 2009. The major chemical species observed in the subway particle samples were Fe-containing, carbonaceous, and soil-derived particles, and secondary aerosols such as nitrates and sulfates. Among them, Fe-containing particles were the most popular. The tunnel samples contained 85-88% of Fe-containing particles, with the abundance of Fe-containing particles decreasing as the distances of sampling locations from the tunnel increased. The Fe-containing subway particles were generated mainly from mechanical wear and friction processes at rail-wheel-brake interfaces. Carbonaceous, soil-derived, and secondary nitrate and/or sulfate particles observed in the underground subway particles likely flowed in from the outdoor environment by human activities and the air-exchange between the subway system and the outdoors. In addition, since the platform screen doors (PSDs) limit air-mixing between the tunnel and the platform, samples collected at the platform at the Yangjae station (with PSDs) showed a marked decrease in the relative abundances of Fe-containing particles compared to the Jegidong station (without PSDs).

군산지역 부유분진의 계절적 농도변화와 화학적 조성에 대한 연구 (Chemical Compositions Trends of Airbone PArticles at Kunsan)

  • 오진만;김득수
    • 한국대기환경학회지
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    • 제17권6호
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    • pp.475-485
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    • 2001
  • The presence of airborne particles in the earth atmosphere expert important controls on the global climate because of their effects on the radiative balance. However, there are major uncertainties associated with the direct and indirect radiative effects of aerosols. In addition, their physicochemical properties cannot only the decline of air quality but also damage human health. Airborne particles were collected by two different commercial air samples, high volume sampler(for TSP) and low volume sampler(for P $M_{10}$ ) at the campus of Kunsan National University during February to September, 2000. In most cases, TSP and P $M_{10}$ were sampled once a week for the duration of 24 hours from 9:00 a.m. In addition samples were collected more intenisve, when the yellow dust was expected. Each sample was analyzed for pH and major ions concentration (C $l^{[-10]}$ , S $O_4$$^{2-}$, N $O_3$$^{[-10]}$ , N $a^{+}$, N $H_4$$^{+}$, $K^{+}$, $Mg^{2+}$, $Ca^{2+}$) by ion chromatography and atomic absorption spectrophotometry. Acidity (pH) of TSP and P $M_{10}$ ranged from 5.09 to 8.51 and from 6.22 to 7.54, respectively. The concentrations of airborne particles were found to satisfy both the short and long-term air quality standards during the sampling period. If the ratio of ionic concentrations originating from None sea salt(Nss) to sea salt(ss) in aerosol samples was concerned, it was found that the ionic concentrations from marine environment contributed dominantly in total mass concentration in the airborne particles. When seasonal trends were examined, the TSP concentrations in spring were higher than those of other seasons. It may result form frequent occurrences of yellow dust and during the spring season. The concentration ratio of P $M_{10}$ to TSP ranged from 0.78 to 1 during the sampling period. pH in the airborne particle was highest during spring, but the other seasons maintained almost same level. These results suggest that alkaline species in yellow dust can directly neutralize aerosol acidity. During spring season, yellow dust could be a positive factor that can defer the acidification of surface soil and water by neutralizing acidic aerosols in the atmosphere.osphere.

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기상모델자료와 기계학습을 이용한 GK-2A/AMI Hourly AOD 산출물의 결측화소 복원 (Spatial Gap-filling of GK-2A/AMI Hourly AOD Products Using Meteorological Data and Machine Learning)

  • 윤유정;강종구;김근아;박강현;최소연;이양원
    • 대한원격탐사학회지
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    • 제38권5_3호
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    • pp.953-966
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    • 2022
  • 에어로솔(aerosol)은 대기 질을 악화시키는 등 인체 건강에 악영향을 끼치므로 에어로솔의 분포 및 특성에 대한 정량적인 관측이 필수적이다. 최근 전 지구 규모에서의 주기적이고 정량적인 정보 획득 수단으로 위성관측 Aerosol Optical Depth (AOD) 영상이 다양한 연구에 활용되지만 광학센서 기반의 위성 AOD 영상은 구름 등의 조건을 가진 일부 지역에서 결측을 가진다. 이에 본 연구는 위성자료의 결측복원을 위하여 격자형 기상자료와 지리적 요소를 입력변수로 하여 Random Forest (RF) 기반 gap-filling 모델을 생성한 이후, gap-free GK-2A/AMI AOD hourly 영상을 산출하였다. 모델의 정확도는 -0.002의 Mean Bias Error (MBE), 0.145의 Root Mean Square Error (RMSE)로, 원자료의 목표 정확도보다 높으며 상관계수 0.714로 복원 대상이 대기변수인 점을 감안하면 상관계수 측면에서도 충분한 설명력을 갖춘 모델이다. 정지궤도 위성의 높은 시간 해상도는 일변화 관측에 적합하며 대기보정을 위한 입력, 지상 미세먼지 농도 추정, 소규모 화재 또는 오염원 분석 등 타 연구를 위한 자료 활용 측면에서 중요하다.