• 제목/요약/키워드: road aerosols

검색결과 10건 처리시간 0.029초

PIXE 분석법에 의한 도로변 분진의 원소분석 (Elemental Analysis of Road Aerosols using by a PIXE Method)

  • 최금찬;임경택;조정구;김태형
    • 한국대기환경학회지
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    • 제12권5호
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    • pp.523-528
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    • 1996
  • Aerosol Particles were collected in a heaby traffic region in pusan. Samples were collected in two size fractions with a two-stage sampler during the day and the night. Elemental concentrations of these aerosol particles were determined by a PIXE(Proton Induced X-ray Emission) analysis method. The results suggest that the elements originating mainly from natural sources such as Si, Ca, Fe, Cl, and K are dominent in the coarse fraction, but the elements such as S, Pb, Br, and Zn are dominent in the fine fraction. Br/Pb ratio are evaluated in both coarse and fine size fraction, and which are mainly emitted automobile sources. The study further also discussed other Br/Pb ratio related works described elsewhere. Sulfur in the fine fraction was continuously increased during the sampling period without time variation.

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Analysis of Organic Molecular Markers in Atmospheric Fine Particulate Matter: Understanding the Impact of "Unknown" Point Sources on Chemical Mass Balance Models

  • Bae, Min-Suk;Schauer, James J.
    • 한국대기환경학회지
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    • 제25권3호
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    • pp.219-236
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    • 2009
  • Particle-phase organic tracers (molecular markers) have been shown to be an effective method to assess and quantify the impact of sources of carbonaceous aerosols. These molecular markers have been used in chemical mass balance (CMB) models to apportion primary sources of organic aerosols in regions where the major organic aerosol source categories have been identified. As in the case of all CMB models, all important sources of the tracer compounds must be included in a Molecular Marker CMB (MM-CMB) model or the MMCMB model can be subject to biases. To this end, the application of the MM-CMB models to locations where reasonably accurate emissions inventory of organic aerosols are not available, should be performed with extreme caution. Of great concern is the potential presence of industrial point sources that emit carbonaceous aerosols and have not been well characterized or inventoried. The current study demonstrates that emissions from industrial point sources in the St. Louis, Missouri area can greatly bias molecular marker CMB models if their emissions are not correctly addressed. At a sampling site in the greater St. Louis Area, carbonaceous aerosols from industrial point sources were found to be important source of carbonaceous aerosols during specific time periods in addition to common urban sources (i.e. mobile sources, wood burning, and road dust). Since source profiles for these industrial sources have not been properly characterized, method to identify time periods when point sources are impacting a sampling site, needs to avoid obtaining biases source apportionment results. The use of real time air pollution measurements, along with molecular marker measurements, as a screening tool to identify when point sources are impacting a receptor site is presented.

서울의 일차탄소성분 입자 농도 변화 및 관리 방향 (Trend and policy directions of primary carbonaceous aerosols in Seoul)

  • 최은락;이지이;김용표
    • 한국입자에어로졸학회지
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    • 제20권1호
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    • pp.13-24
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    • 2024
  • The concentrations of polycyclic aromatic hydrocarbons (PAHs) and elemental carbon (EC) in particulate matter, typical primary aerosols have decreased in Seoul between 2003 and 2018 (80% for PAHs and 85% for EC). The yearly mean benzo[a]pyrene (BaP) concentration has been lower than 1 ng/m3 since 2010-2011, the target value set by the European Union (EU) and China. A series of policies related to solid fuel and vehicle in South Korea and China should be effective in the reduction of the ambient PAHs and EC concentrations. But the emission data of PAHs and EC at both countries did not support that hypothesis. Possible causes are uncertainties in the emission inventories of primary carbonaceous aerosols in South Korea and China, although there may be a minor effect of the emissions from North Korea on the concentrations in Seoul. Thus the further policy directions against PAHs and EC such as improvements of emissions inventories and measurements, intensive regulation of non-road mobile sources and control of PAHs derivatives are discussed.

수도권 대기 미세먼지 1999-2008년 추이 분석 (Analysis of the trend of atmospheric PM10 concentration over the Seoul Metropolitan Area between 1999 and 2008)

  • 김용표
    • 환경영향평가
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    • 제19권1호
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    • pp.59-74
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    • 2010
  • The trend of the PM10 concentrations in the Seoul Metropolitan Area (SMA) is reviewed and relative contributions of major contributors (paved road emissions and long-range transport from outside the SMA) are discussed. It was shown that the PM10 concentrations in the SMA have generally decreased except Incheon between 1999 and 2005. Further, it was identified that the difference of the PM10 mass concentration between the roadside stations and urban ambient stations has decreased between 2004 and 2008. Based on the emission estimates, it was suggested that the reduction of resuspension of aerosols on the road is the major reason for that. Based on the modeling results, it was identified that outside effects be about 30% of the ambient PM10 concentration in the SMA. Further research and policy issues to identify major sources of PM10 in the SMA are discussed.

전주, 군산, 남원지역 강수의 Sr, Pb동위원소 지화학 (The Sr and Pb Isotopic and Geochemical Properties of the Atmospheric Bulk Deposition of Jeonju, Gunsan, and Namweon Areas)

  • 전서령;정재일
    • 자원환경지질
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    • 제38권4호
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    • pp.463-479
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    • 2005
  • 전북의 전주, 군산, 남원지역에서 주기적으로 채수된 강수(bulk deposition)를 지화학적으로 고찰하고 Sr과 Pb 동위원소의 환경추적인자로서의 적용 여부를 알아보고자 하였다. 강수는 pH $4\~7$의 약산성내지 산성을 띄며, 건기에는 높고, 우기에는 자연산성도 수준인 5.0수준을 유지한다. 강수에 의한 희석작용으로, 우기이후의 강수는 TDS 및 EC도 낮아지나 다시 건기에 들어서면서 상승한다. 겨울철에는 난방연료의 연소에 의해 $SO_4$$NO_3$이 높은 함량을 보이며, 여름철은 $CO_2$가스의 영향으로 탄산농도가 약간 높은 경향을 보인다 양이온은 겨울철에 Na의 함량이 높고, 봄부터 여름철에는 Ca의 함량이 높게 나타난다. 지리산에 인접한 남원이 전반적으로 낮은 EC 및 TDS값을 가지고 인구밀집과 도시화가 심한 전주지역은 대체로 높다. 남원지방은 다량의 수목의 호흡작용에 의한 대기중 이사화탄소의 함량이 높아 여름철 탄산 농도가 타 지역에 비해 높다. 군산지역은 해염의 영향으로 대기중 Cl의 함량이 높다. Al, Cu, Zn은 TDS와 상관계수 0.5이상의 양호한 상관관계를 보여 이들 원소가 미량원소 중 강수의 화학적 성상에 영향을 미치는 원소들 이라고 볼 수 있다. $^{87}Sr/^{86}Sr$ 값은 0.7109-0.7128으로 세 지역 모두 유사하며, 해수보다 다소 높은 값을 보이고 있어 주변의 토양입자, 꽃가루, 기타 인위기원의 에어로졸 등의 영향이 있음을 암시하나 지역 전반에 걸친 자세한 동위원소적 고찰이 있어야만 보다 정확한 해석이 가능할 것으로 생각된다. 강수의 Pb 동위원소 조성도 세 지역 모두 유사하며, 서울 에어로졸의 Pb 동위원소 조성 범위내에 포함되고 북경의 에어로졸 범위에서는 약간 벗어나 있다. 이는 한반도내의 대기 중에 함유되어 있는 Pb은 모두 유사한 기원으로 휘발유의 연소에서 발생하는 것으로 생각되며, 중국으로부터 기원한 Pb의 존재 가능성은 내포하고 있으나 그 기여율은 적을 것으로 보인다.

인자분석을 통한 대기 입자상 물질의 입경별 발생원 추정-Drum impactor를 이용한 2002년 5월 제주도 고산지역 측정을 중심으로 (Size-segregated Sources of Aerosol Estimated by Factor Analysis-For the Measurement using Drum Impactor at Gosan, Jeju Island in May 2002)

  • 한진석;문광주;공부주;류성윤;김영준
    • 한국대기환경학회지
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    • 제20권5호
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    • pp.685-695
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    • 2004
  • Size-segregated measurements of aerosol composition are used to estimate the transport of natural and anthropogenic aerosols at Gosan site during May 2002. The results of measurement show that not only soil dust but also anthropogenic aerosols, including sulfur and enriched trace metals such as Pb, Zn, Cu, are transported to Gosan. This study combines the size- and time-resolved aerosol composition measurements with factor analysis in order to identify some source materials. As a result, coarse particles (2.5${\mu}m$~12${\mu}m$) are influenced by soil, sea-salt, coal, coal combustion, and nonferrous sources. But fine particles have different sources. The fine particles, which the diameter is from 0.56${\mu}m$ to 2.5${\mu}m$, are more affected by road dust, oil combustion, industry. municipal incineration, and ferrous metal sources. The very fine particles, from 0.09${\mu}m$ to 0.56${\mu}m$, mainly supplied by biomass burning, oil combustion, nonferrous and ferrous metal sources.

포항지역 대기 중 초미세먼지(PM$_{2.5}$)의 오염특성평가 (Characterization of Concentrations of Fine Particulate Matter in the Atmosphere of Pohang Area)

  • 백성옥;허윤경;박영화
    • 대한환경공학회지
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    • 제30권3호
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    • pp.302-313
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    • 2008
  • 본 연구는 포항지역 대기 중 PM$_{2.5}$의 물리 화학적 성분들의 농도분포특성을 파악하여 PM$_{2.5}$에 대한 배출원 기여도를 정량적으로 추정하고 PM$_{2.5}$농도 변동에 영향을 미치는 배출원을 알아보고자 하였다. 시료채취지점은 포항지역 내의 대조적인 두 지점인 공업지역과 주거지역에서 각 1개 지점을 선정하였다. 시료채취는 2003년 3월부터 12월에 걸쳐서 계절별 10$\sim$15일 동안 고용량공기시료채취기를 이용하여 24시간 연속 채취였다. PM$_{2.5}$ 시료에 함유된 화학성분들은 산추출하여 ICP와 이온크로마토그래피로 분석하였다. PM$_{2.5}$의 전체평균은 공업지역이 36.6 $\mu$g/m$^3$, 주거지역에서 30.6 $\mu$g/m$^3$로 나타났다. 계절별로는 두 지점 모두 봄철에 가장 높은 농도를 보이고 있으며 다음으로 겨울철, 가을철, 여름철의 순으로 나타났다. 두 측정지점에서 PM$_{2.5}$ 중 가장 많이 함유된 화학성분들은 이차생성입자를 형성하는 성분인 NO$_3^-$, SO$_4^{2-}$으로 나타났으며 각각의 농도는 공업지역에서 4.2 및 8.6 $\mu$g/m$^3$, 주거지역에서 3.7 및 6.9 $\mu$g/m$^3$로 나타났다. 반면, 공업지역에서는 Fe, Mn, Cr 등의 금속성분 농도가 주거지역에 비해 상당히 높게 나타나 공업지역이 철강산업의 영향을 반영하고 있는 것으로 추측된다. 포항지역 대기 중 PM$_{2.5}$의 농도 변동에 미치는 주요 영향인자를 파악하기 위하여 주성분 분석 및 다중회귀분석을 실시한 결과, 공업지역과 주거지역에서 가장 중요한 변수는 도로 비산먼지와 이차생성입자인 것으로 나타났으며, 이들 변수의 변동이 전체 PM$_{2.5}$ 농도변동에 가장 큰 영향을 미친다는 것을 알 수 있었다. 또한 포항지역 PM$_{2.5}$에 대한 주요 발생원의 기여도를 평가하기 위하여 CMB 모델링을 수행한 결과 공업지역의 경우 기여도가 큰 발생원은 토사 및 도로상의 비산먼지로 나타났고 그 다음으로 이차생성입자, 자동차, 해염입자, 금속산업의 순을 보였으며 주거지역도 이와 유사한 양상을 보였다. 이와 같은 결과를 토대로 국내에서 측정된 먼지시료를 대상으로 CMB 모델링 수행 시 그 적용한계성과 문제점 등을 고찰하였다.

Application of Representative $PM_{2.5}$ Source Profiles for the Chemical Mass Balance Study in Seoul

  • Kang, Choong-Min;Kang, Byung-Wook;SunWoo, Young;Lee, Hak-Sung
    • Journal of Korean Society for Atmospheric Environment
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    • 제24권E1호
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    • pp.32-43
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    • 2008
  • Source samples were collected to construct source profiles for 9 different source types, including soil, road dust, gasoline/diesel-powered vehicles, a municipal incinerator, industrial sources, agricultural/biomass burning, marine aerosol, and a coal-fired power plant. Seasonal profiles for 'Chinese aerosol', aerosols derived from the urban area of China, were reconstructed from seasonal $PM_{2.5}$ compositions reported in Beijing, China. Ambient $PM_{2.5}$ at a receptor site was also measured during each of the four seasons, from April 2001 to February 2002, in Seoul. The Chemical Mass Balance receptor model was applied to quantify source contributions during the study period using the estimated source profiles. Consequently, motor vehicle exhaust (33.0%), in particular 23.9% for diesel-powered vehicles, was the largest contributor affecting the $PM_{2.5}$ levels in Seoul, followed by agricultural/biomass burning (21.5%) and 'Chinese aerosol' (13.1%), indicating contributions from long-range transport. The largest contributors by season were: for spring, 'Chinese aerosol' (31.7%); for summer, motor vehicle exhaust (66.9%); and for fall and winter, agricultural/biomass burning (31.1% and 40.1%, respectively). These results show different seasonal patterns and sources affecting the $PM_{2.5}$ level in Seoul, than those previously reported for other cities in the world.

3-Stage DRUM 샘플러를 이용한 광주 도심지역의 봄철과 여름철 PM2.5 원소적 조성 비교 (Elemental Composition of PM2.5 Particulate with a 3-Stage DRUM Sampler during Spring and Summer Seasons in Urban Area of Gwangju, Korea)

  • 류성윤;김영준
    • 한국대기환경학회지
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    • 제21권6호
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    • pp.699-708
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    • 2005
  • To characterize the elemental composition of fine particles in urban area, $PM_{2.5}$ was collected by a 3-stage DRUM impactor at Gwangju during spring and summer. Time and size resolved concentrations for 19 trace elements were obtained by synchrotron X-Ray fluorescence analysis. Trace elements in summer were distributed in smaller size range compared to those in spring. Almost trace element concentrations in fine particles were highly increased during the Asian dust. In spring, soil elements such as Si, K, Ca, Ti and Fe had low enrichment factors indicating the dominant influence of soil dust. However, all elements had high enrichment factors in summer implying that these elements could be emitted from the anthropogenic sources. Factor analysis was conducted with the elemental composition data in order to identify anthropogenic sources of aerosols in urban area during spring and summer. Fine particles in spring have several sources such as soil dust originating from China continental region, coal and oil combustion, biomass burning, sea salt, ferrous and nonferrous metal sources. On the other hand, fine particles in summer were influenced by road dust, gasoline vehicle as well as coal and oil combustion, sea salt, ferrous and nonferrous metal sources.