• Title/Summary/Keyword: 미세먼지(PM-10)

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광산란 측정장치에 따른 대중교통차량 미세먼지 측정 특성 (Characteristics of PM10 Measured by Different Light-Scattering Instruments in Public Transport Vehicles)

  • 권순박;정우태;박덕신
    • 한국입자에어로졸학회지
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    • 제11권1호
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    • pp.1-8
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    • 2015
  • In this study, indoor $PM_{10}$ concentration was measured by different type of real-time instruments in public transport vehicles. Light-scattering method is widely used in measuring the size of particulate matters and there is two types of light-scattering methods; one is the nephelometer type which measures the light-scattering degree by aerosol cloud, the other is the spectrometer type which measures light-scattering degree by individual particle. We observed the variation of $PM_{10}$ in KTX, subway and express bus carriages by 1-minute resolution and found that there is similar tendency in pattern among 4 light-scattering devices but difference in absolute concentrations. By comparing gravimetric result in a subway cabin, the spectrometer type device, C, was chosen as a reference device. The conversion factors of nephelometer device A-1, A-2, and B were 1.666, 1.463 and 2.125 respectively.

지역별 미세먼지 농도의 알레르기비염 외래이용에 대한 영향 분석 (Analysis on the Effects of Particular Matter Distribution on the Number of Outpatient Visits for Allergic Rhinitis)

  • 박주현;박영용;이은주;이광수
    • 보건행정학회지
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    • 제30권1호
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    • pp.50-61
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    • 2020
  • Background: This study aims to analyze the effects of air pollutants, such as particular matter, to the number of outpatient visits for allergic rhinitis in eup, myeon, and dong administrative boundaries. Methods: Dependent variable was the number of outpatient visits for allergic rhinitis per 10,000 people by region. Independent variables were air pollutants such as PM10, PM2.5, SO2, O3, CO2, NO2, and temperature that estimated by using Kriging analysis in all eup, myeon, and dong boundaries. Panel analysis was applied for the analysis to prove the relation between outpatient visits and the concentration of air pollutants. Results: Analysis results showed that particular matter concentration varied by regions and season. Panel analysis showed that outpatient visits for allergic rhinitis had positive relationships with PM10, PM2.5, SO2, O3, and CO2 in all panel models. Conclusion: Regional variation of particular matter concentration should be considered in establishing regional policies for allergic rhinitis.

서울시 미세먼지 농도에 영향을 미치는 요인 분석 : 기상 요인 및 장거리 이동 물질 중 일산화탄소를 중심으로 (Analyses of factors that affect PM10 level of Seoul focusing on meteorological factors and long range transferred carbon monooxide)

  • 박애경;허종배;김호
    • 한국입자에어로졸학회지
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    • 제7권2호
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    • pp.59-68
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    • 2011
  • The objective of the study was to investigate the main factors that contribute the variation of $PM_{10}$ concentration of Seoul and to quantify their effects using generalized additive model (GAM). The analysis was performed with 3 year air pollution data (2004~2006) measured at 27 urban sites and 7 roadside sites in Seoul, a background site in Gangwha and a rural site in Pocheon. The diurnal variation of urban $PM_{10}$ concentrations of Seoul showed a typical bimodal pattern with the same peak times as that of roadside, and the maximum difference of $PM_{10}$ level between urban and roadside was about $14{\mu}g/m^{3}$ at 10 in the morning. The wind direction was found to be a major factor that affects $PM_{10}$ level in all investigated areas. The overall $PM_{10}$ level was reduced when air came from east, but background $PM_{10}$ level in Gangwha was rather higher than the urban $PM_{10}$ level in Seoul, indicating that the $PM_{10}$ level in Gangwha is considerably influenced by that in Seoul metropolitan area. When hourly variations of $PM_{10}$ were analyzed using GAM, wind direction and speed explained about 34% of the variance in the model where the variables were added as a 2-dimensional smoothing function. In addition, other variables, such as diurnal variation, difference of concentrations between roadside and urban area, precipitation, month, and the regression slope of a plot of carbon monooxide versus $PM_{10}$, were found to be major explanatory variables, explaining about 64% of total variance of hourly variations of $PM_{10}$ in Seoul.

서울지역 미세먼지 농도가 호흡기계 및 심혈관계의 외래 방문 및 입원과 진료비에 미치는 영향 (Hospital Visits, Admissions and Hospital Costs among Patients with Respiratory and Cardiovascular Diseases according to Particulate Matter in Seoul)

  • 이형숙
    • 한국환경보건학회지
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    • 제42권5호
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    • pp.324-332
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    • 2016
  • Objectives: The annual average of PM10 in Seoul was $45{\mu}/m^3$, which surpasses the WHO annual guidelines ($20{\mu}/m^3$). Most previous analyses of the effects of PM exposure have been retrospective studies using single hospital data, and fewer studies have attempted to address the relationship of PM10 and hospital costs. This study was conducted to investigate the effects of the concentration of PM10 on hospital visits, admissions and hospital costs in patients with respiratory and cardiovascular diseases. Methods: Medical data from the National Health Insurance Service and the monthly average of PM10 from National Institute of Environmental Research were used to identify the effects of PM10 on hospital visits, admissions and hospital costs. We applied Poisson regression and linear regression to perform the analysis. Results: The relative risks for admissions per $10{\mu}/m^3$ increase in PM10 were 23.11%, 10.2% and 6.9% increases for acute bronchiolitis, asthma and bronchitis, respectively. The relative risk for hospital visits per $10{\mu}/m^3$ increase in PM10 were 10.4%, 6.7% and 5.9% for chronic obstructive pulmonary disease, asthma and chronic sinusitis, respectively. For cardiovascular disease, the relative risk for admissions per $10{\mu}/m^3$ increase in PM10 were 2.2% and 2.1% increases in angina and acute myocardial infarction, respectively. A $10{\mu}/m^3$ increase in the monthly average of PM10 corresponded to 170,723,000 won (95% CI: 125,587,000-215,860,000 won), 123,636,000 won (95% CI: 47,784,000-199,487,000 won) and 78,571,000 won (95% CI: 29,062,000-128,081,000 won) increases in hospital costs for asthma, acute tonsillitis and chronic sinusitis, respectively. Conclusion: Hospital admissions for respiratory and cardiovascular disease were associated with PM10 levels. PM10 exposure is also associated with increased costs for respiratory diseases.

부산 지역 연무 발생일의 미세먼지 중 금속과 이온 성분 농도 특성 (Characteristics of Metallic and Ionic Concentration in Fine Particle during Haze Days in Busan)

  • 전병일
    • 한국환경과학회지
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    • 제26권6호
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    • pp.767-778
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    • 2017
  • This research investigates the characteristics of metallic and ionic elements in $PM_{10}$ and $PM_{2.5}$ on haze day and non-haze day in Busan. $PM_{10}$ concentration on haze day and non-haze day were 85.75 and $33.52{\mu}g/m^3$, respectively, and $PM_{2.5}$ on haze day and non-haze day were 68.24 and $23.86{\mu}g/m^3$, respectively. Contribution rate of total inorganic water-soluble ion to $PM_{10}$ mass on haze day and non haze day were 58.2% and 61.5%, respectively, and contribution rate of total water-soluble ion to $PM_{2.5}$ mass on haze day and non haze day were 58.7% and 64.7%, respectively. Also, contribution rate of secondary ion to $PM_{10}$ mass on haze day and non haze day were 52.1% and 47.5%, respectively, and contribution rate of secondary ion to $PM_{2.5}$ mass on haze day and non haze day were 54.4% and 53.6%, respectively. AC (anion equivalents)/CE (cation equivalents) ratio of $PM_{10}$ mass on haze day and non haze day were 1.09 and 1.0, respectively, and AC/CE ratios of $PM_{2.5}$ mass on haze day and non haze day were 1.12 and 1.04, respectively. Also, SOR (Sulfur Oxidation Ratio) of $PM_{10}$ mass on haze day and non haze day were 0.32 and 0.17, respectively, and SOR of $PM_{2.5}$ on haze day and non haze day were 0.30 and 0.15, respectively. Lastly, NOR (Nitrogen Oxidation Ratio) of $PM_{10}$ on haze day and non haze day were 0.17 and 0.08, respectively, and NOR of $PM_{2.5}$ on haze day and non haze day were 0.13 and 0.06, respectively.

강원도 춘천과 영월에서 측정한 미세먼지 농도 특성 및 고농도 원인 분석 (Characteristics of Fine Particles Measured in Two Different Functional Areas and Identification of Factors Enhancing Their Concentrations)

  • 조성환;김현웅;한영지;김우진
    • 한국대기환경학회지
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    • 제32권1호
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    • pp.100-113
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    • 2016
  • In this study, the characteristics of $PM_{2.5}$ and $PM_{2.5-10}$ concentrations were identified in two different functional areas including Chuncheon and Youngwol, Korea. Even though the anthropogenic emission rates of $PM_{2.5}$ and $PM_{10}$ are approximately four times higher in Youngwol than in Chuncheon their atmospheric concentrations were statistically higher in Chuncheon. In Chuncheon, both $PM_{2.5}$ concentrations and the ratio of $PM_{2.5}/PM_{10}$ increased as relative humidity (RH) increased possibly because the inorganic and/or organic secondary aerosols were actively formed at high RH. This result was also supported by that $PM_{2.5}$ concentration was enhanced under the fog and mist conditions in Chuncheon. On the other hand, both $PM_{2.5}$ and $PM_{2.5-10}$ concentrations clearly increased with the southerly winds blown from the cement production facility in Youngwol. In addition, high $PM_{2.5-10}$ concentrations were observed with high wind speed, low relative humidity, and high $NO_2$ concentrations in Youngwol, suggesting that $PM_{2.5-10}$ was generated through the physical process including crushing and packing procedures followed by resuspension from cement and lime factory.

시정자료를 이용한 황사의 미세먼지 농도추정 방법 연구 (Study of Methodology for Estimating PM10 Concentration of Asian Dust Using Visibility Data)

  • 이효정;이은희;이상삼;김승범
    • 대기
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    • 제22권1호
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    • pp.13-28
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    • 2012
  • The $PM_{10}$ concentration data is useful for indentifying intensity and a transport way of Asian dust. However, it is difficult to identify them properly due to the limited spatial resolution and coverage. Therefore, a methodology to estimate $PM_{10}$ concentration using visibility data obtained from synoptic observation was developed. To derive the converting function, correlation between visibility and $PM_{10}$ concentration is investigated using visibility and $PM_{10}$ concentration data observed at 20 stations in Korea from 2005 to 2009. To minimize bias due to atmospheric moisture, data with higher relative humidity over a critical value were eliminated while deriving $PM_{10}$-visibility relationship. As a result, an exponentially decreasing function of visibility is obtained under the condition that relative humidity is less than 82%. Verification of the visibility converting function to $PM_{10}$ concentration was carried out for the dust cases in 2010. It was found that spatial distributions of $PM_{10}$ calculated by visibility are in good agreement with the observed $PM_{10}$ distribution, especially for the strong dust cases in 2010. And correlation between the derived and observed $PM_{10}$ concentration was 0.63. We applied the function to obtain distributions of $PM_{10}$ concentration over North Korea, in which concentration data are not available, and compared them with satellite derived dust index, IODI distributions for dust cases in 2010. It is shown that the visibility function estimates quite similar patterns of dust concentration with IODI image, which suggests that it can contribute for prediction by indentifying transport route of Asian dust.

부산지역 미세먼지에 대한 건강 취약성 평가 (Health Vulnerability Assessment for PM10 in Busan)

  • 이원정;황미경;김유근
    • 한국환경보건학회지
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    • 제40권5호
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    • pp.355-366
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    • 2014
  • Objectives: This study seeks to evaluate the vulnerability assessment of the human health sector for $PM_{10}$, which is reflected in the regional characteristics and related disease mortality rates for $PM_{10}$ in Busan over the period of 2006-2010. Methods: According to the vulnerability concept suggested by the Intergovernmental Panel on Climate Change (IPCC), vulnerability to $PM_{10}$ is comprised of the categories of exposure, sensitivity, and adaptive capacity. The indexes of the exposure and sensitivity categories indicate positive effects, while the adaptive capacity index indicates a negative effect on vulnerability to $PM_{10}$. Variables of each category were standardized by the rescaling method, and each regional relative vulnerability was computed through the vulnerability index calculation formula. Results: The regions with a high exposure index are Jung-Gu (transportation region) and Saha-Gu (industrial region). Major factors determining the exposure index are the $PM_{10}$ concentration, days of $PM_{10}{\geq}50$, ${\mu}g/m^3$, and $PM_{10}$ emissions. The regions that show a high sensitivity index are urban and rural regions; these commonly have a high mortality rate for related disease and vulnerable populations. The regions that have a high adaptive capacity index are Jung-Gu, Gangseo-Gu, and Busanjin-Gu, all of which have a high level of economic/welfare/health care factors. The high-vulnerability synthesis of the exposure, sensitivity, and adaptive capacity indexes show that Dong-Gu and Seo-Gu have a risk for $PM_{10}$ potential effects and a low adaptive capacity. Conclusions: This study presents the vulnerability index to $PM_{10}$ through a relative comparison using quantitative evaluation to draw regional priorities. Therefore, it provides basic data to reflect environmental health influences in favor of an adaptive policy limiting damage to human health caused by vulnerability to $PM_{10}$.

도시의 산업특성이 미세먼지 농도에 미치는 영향 (The Impacts of Industrial Characteristics of Cities on Fine Dust Levels)

  • 음정인;김형규
    • 한국환경과학회지
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    • 제29권5호
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    • pp.445-455
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    • 2020
  • Fine dust is one of the most critical environmental issues in Korea, and the government recognizes the need to establish customized reduction policies based on regional characteristics. Several studies on air pollutants investigate whether factories affect the distribution of fine dust in a particular region. However, understanding the impact of the entire industry sector requires further investigation. This study identifies the impacts of industrial characteristics on fine dust levels of 141 municipalities across Korea in 2016. A total of 23 variables were used, of which 12 referred to industries and 11 to general characteristics of each city. Due to the high correlation between independent variables, partial least squares (PLS) regression models were used. The analysis identified 14 significant variables for PM10 and 13 for PM2.5. Therefore, the results suggest that local industrial characteristics can significantly influence fine dust levels and provide suggestions for establishing customized reduction policies based on local characteristics.

PM10 농도의 시공간적 분포 특징과 국지적 기온 변화 간의 상관관계: 부산광역시 사례 분석 (Spaciotemporal Distributions of PM10 Concentration and Their Correlation with Local Temperature Changes : a Case Study of Busan Metropolitan City)

  • 박선엽
    • 한국지역지리학회지
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    • 제23권1호
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    • pp.151-167
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    • 2017
  • 본 연구의 목적은 2001~2015년 동안 부산광역시의 $PM_{10}$ 농도가 기온변화 패턴에 미치는 영향을 파악하는 것이다. 최근 15년간 관측된 부산광역시 $PM_{10}$ 농도는 꾸준한 감소 추세를 보이고 있다. 계절적 $PM_{10}$ 농도는 평균적으로 봄철에 가장 높게 나타났고, 겨울철, 여름철, 가을철의 순으로 관측되었지만, 관측 지점별로 계절적 평균 농도 순위는 일정하지 않았다. $PM_{10}$ 농도의 구간별 발생 빈도를 분석한 결과, 가장 높은 빈도로 관측된 미세먼지 농도는 $20{\mu}g/m^3{\sim}60{\mu}g/m^3$ 범위로 조사되었고, 이는 전체 관측일수의 64.6%에 달했다. 황사일과 비황사일의 월평균 농도를 공간적으로 비교한 결과, 황사의 영향이 상대적으로 작은 겨울철에 미세먼지 농도의 서고동저 패턴이 다소 강하게 나타난 반면, 황사의 영향이 증가하는 봄철에는 지역적 차이가 감소하였다. 단순화된 연간 기온 곡선을 이용하여 산출한 월평균 기온증감률을 $PM_{10}$ 농도와 비교한 결과, $PM_{10}$ 농도 변화는 연구지역 평균 기온상승률과 음의 상관관계를 보임에 따라 $PM_{10}$ 농도 감소 추세는 연중 기온 변화 폭(연교차)의 증가 경향으로 이어졌다. 전체적으로 $PM_{10}$ 농도 변화는 연평균기온과는 미미한 상관관계를 나타냈지만, 연평균기온에 지배적인 영향을 주는 겨울철로 국한할 때 $PM_{10}$ 농도와 기온은 비교적 높은 양의 상관관계를 보였다. 에너지 수지 측면에서, $PM_{10}$ 농도 변화는 복사에너지의 반사와 흡수에 따른 복사강제력에 영향을 미쳐 온난화 또는 냉각효과에 기여하게 되는데, 연구지역의 $PM_{10}$ 농도 변화와 기온 변화 간의 상관관계는 시공간적으로 일정하지 않고 도시 대기 질에 연관된 사회경제적 요인이 고려되지 않아 통계적 유의성은 제한적으로 나타났다.

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