• 제목/요약/키워드: $PM_{10}$ concentrations

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부산지역 최근 4년간(2015~2018년) PM10과 PM2.5농도의 시·공간적 변화 특성 (Spaciotemporal Variation of PM10 and PM2.5 Concentration for 2015 to 2018 in Busan)

  • 전병일
    • 한국환경과학회지
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    • 제29권7호
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    • pp.749-760
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    • 2020
  • This study investigates the characteristics of diurnal, seasonal, and weekly roadside and residential concentrations of PM10 and PM2.5 in Busan, as well as relationship with meteorological phenomenon. Annual mean PM10 and PM2.5 concentrations in Busan were 44.2 ㎍/㎥ and 25.3 ㎍/㎥, respectively. The PM2.5/PM10 concentration ratio was 0.58. Diurnal variations of PM10 and PM2.5 concentrations in Busan were categorized into three types, depending on the number of peaks and times at which the peaks occurred. Roadside PM10 concentration was highest on Saturday and lowest on Friday. Residential PM10 concentration was highest on Monday and lowest on Friday. Residential PM2.5 concentration was highest on Monday and Tuesday and lowest on Friday. PM10 and PM2.5 concentrations were highest on Asian dust and haze, respectively. The results indicate that understanding the spaciotemporal variation of fine particles could provide insights into establishing a strategy to control urban air quality.

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.

춘천시 미세먼지 농도의 장기변동 추세 (Long-term Trend of Atmospheric Concentrations of Fine Particles in Chuncheon, Korea)

  • 양지혜;김성락;정진희;한영지
    • 한국대기환경학회지
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    • 제27권5호
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    • pp.494-503
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    • 2011
  • Fine particles ($PM_{2.5}$) were collected and analyzed from December 2005 through December 2009 in Chuncheon, Korea to investigate the long-term trend of $PM_{2.5}$ concentrations. Also $PM_{10}$ concentrations were collected from Environmental Monitoring System operated by Ministry of Environment. Average concentrations of $PM_{2.5}$ and $PM_{10}$ were 30.5 and 58.2 ${\mu}g/m^3$, respectively. Both $PM_{2.5}$ and $PM_{10}$ were significantly affected by meteorological factors including wind speed, wind direction and precipitation. They generally decreased as wind speed increased (p=0.000), and increased when there was a prevailing westerly wind. Low concentrations of $PM_{2.5}$ were observed during rainy days while high concentrations were shown when fog, mist and/or haze occurred.

서해안 안흥에서 관측된 에어로솔의 농도 변화 및 크기분포 특성 (Characteristics of Aerosol Mass Concentrations and Size Distribution Measured at Anheung, Korea)

  • 이권호;이규태;김정호;문관호;안준모
    • 한국대기환경학회지
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    • 제34권5호
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    • pp.677-686
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    • 2018
  • An intensive measurement was conducted to study the mass and number concentrations of atmospheric aerosols in Anheung ($36.679^{\circ}N$, $126.186^{\circ}E$), the west coastal measurement site of Korea during December 2017~April 2018. To evaluate relationships between the aerosols and meteorological parameters, comparisons of Optical Particle Counter (OPC) measured data and Auto Weather System (AWS) data were performed. Measured PM mass concentrations are $PM_{10}=42.814{\pm}30.103{\mu}g/m^3$, $PM_{2.5}=29.674{\pm}25.063{\mu}g/m^3$, $PM_1=28.958{\pm}24.658{\mu}g/m^3$, respectively. The PM ratios showed that the $PM_{10}$ concentrations contained about 67.8% of $PM_{2.5}$, while most part of $PM_{2.5}$ was $PM_1$ (about 97.1%). Timely collocation with AWS data were performed, exploring relations with the PM concentrations. PM concentrations can be explained by wind direction and relative humidity conditions. The significant reductions of fine particles in mass and number concentrations may attribute to actions on particle growth and wet removal. In these results, we suppose that the aerosol concentrations and size distributions are affected by inflow direction and air mass sources from the origin.

대구지역 PM10 오염 관리를 위한 시간적 및 공간적 오염 특성 평가 (Evaluation of Temporal and Spatial PM10 Characteristics for Pollution Management in Daegu area)

  • 조완근;권기동
    • 한국환경과학회지
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    • 제13권1호
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    • pp.27-36
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    • 2004
  • Present study analyzed the temporal and spatial characteristics of PM10 pollution in Metropolitan Daegu area based on air pollution monitoring station data and measurements of PM10 concentrations in background area in order to provide essential data for efficient PM10 pollution management. The significant variation of spatial and temporal PM10 concentrations in Daegu area was observed during the study years. The highest maximum PM10 concentration(332 $\mu\textrm{g}$/㎥), average concentration(88 $\mu\textrm{g}$/㎥) and frequency exceeding PM10 daily standard(150 $\mu\textrm{g}$/㎥) were all observed in Namsandong located near a major roadway. The hourly and weekly variations of PM10 concentrations had different pattern for the measurement sites. The monthly and seasonal concentrations exhibited a notable characteristic: the maximum concentration was obtained in spring season, most likely due to Yellow sand effects. Furthermore, this temporal variation of PM10 pollution varied with study site. Meanwhile, the PM10 values measured at the monitoring site, Manchondong, were comparable with those of a control site. The average PM10 concentration ranged from 23 $\mu\textrm{g}$/㎥ to 115 $\mu\textrm{g}$/㎥ with a mean value of 53 $\mu\textrm{g}$/㎥ in the former site and from 22 $\mu\textrm{g}$/㎥ to 91 $\mu\textrm{g}$/㎥ with a mean value of 45 $\mu\textrm{g}$/㎥ in the latter site.

부산 항만 주변지역 PM2.5 농도의 월 변화 및 특성 (Variations in the Monthly PM2.5 Concentrations and their Characteristics around the Busan Seaport Area)

  • 강나연;안준건;이선은;현상민
    • 한국환경과학회지
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    • 제30권10호
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    • pp.845-861
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    • 2021
  • This study investigated the variations in monthly PM2.5 concentrations and their characteristics at the sampling site (35.075°N, 129.080°E) around the Busan seaport area for six months (from August 2020 to January 2021). Monthly PM2.5 concentrations in the filtered samples ranged from 8.4 to 42.3 ㎍/m3 (average=19.6±8.2 ㎍/m3, n=50) and were generally high in August, December, and January, and low in September, October, and November. The variations of monthly PM2.5 concentrations showed similar patterns to those of the neighboring national air quality monitoring sites. The contents of Total Carbon (TC), Organic Carbon (OC), Elemental Carbon (EC), and OC/EC ratios in PM2.5 showed large variability during the study period. The OC/EC ratios ranged from 4.2 to 34.4, suggesting that the relative contributions of OC and EC to the PM2.5 concentrations changed temporally and might be related to their formation sources. Variations in the chemical components of and particle size distributions in PM2.5 showed that high PM2.5 concentrations were affected by various sources, such as sea salt and ship emission. The precursor gas concentrations were discussed in terms of monthly variations and their contributions to PM2.5 concentrations. However, further research is needed to understand the characteristics and behaviors of PM2.5 concentrations around the Busan seaport area.

네일샵미용실의 실내공기 중 미세먼지(PM10), 휘발성 유기화합물 (VOCs), 알데하이드류(Aldehydes)의 농도 및 업소 특성에 따른 상관성 분석 (Characteristics of PM10, VOCs and Aldehydes Levels in Nail and Hair Shops)

  • 이보람;곽수영;양원호;전상일;김정수;이기영
    • 한국환경보건학회지
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    • 제43권6호
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    • pp.509-515
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    • 2017
  • Objectives: The purpose of this study was to assess the indoor levels of $PM_{10}$, VOCs and aldehydes in nail shop and hair salon. Methods: The field survey was conducted for 52 hair salons 52 nail shops, and 26 shop-in-shops in Seoul and Daegu city. The field technicians investigated characteristics of each shop including operating time, indoor volume, ventilation and so on. Indoor concentrations of $PM_{10}$, VOCs and aldehydes, indoor temperature and humidity were measured in 12 hair salons, 12 nail shops and 6 shop-in shops. MP Surveryor II (Graywolf, USA) was used to measure $CO_2$ concentration, temperature and humidity for 8 hours. $PM_{10}$ concentrations were measured by minivolume air sampler with Teflon quartz filter ($0.2{\mu}m$ pore size, ${\varphi}$ 47 mm, Graseby-Anderson TEF-DISKTM) for 6 hours. VOCs passive sampler (OVM 3500) was used to collect VOCs for 8 hours and analyzed by GC/MSD. Results: The $CO_2$ concentrations were $759.4{\pm}58.2$ ppm in nail shops, $731.0{\pm}72.5$ ppm in hair salons, and $656.4{\pm}31.2$ ppm in shop-in-shops. The $PM_{10}$ concentrations were $27.5{\pm}14.2{\mu}g/m^3$ in nail shops, $33.1{\pm}6.3{\mu}g/m^3$ in hair salons, and $39.0{\pm}26.9{\mu}g/m^3$ in shop-in-shops. TVOCs concentrations were $3085.4{\pm}1667.8{\mu}g/m^3$ in nail shops, $2131.1{\pm}617.3{\mu}g/m^3$ in hair salons, and $1550.3{\pm}529.0{\mu}g/m^3$ in shop-in-shops. TVOCs concentrations in nail shops were significantly higher than those in hair salons and shop-in-shops (p=0.002). Formaldehyde concentrations were $60.8{\pm}36.6{\mu}g/m^3$ in nail shops, $89.1{\pm}55.4{\mu}g/m^3$ in hair salons, and $45.1{\pm}22.5{\mu}g/m^3$ in shop-in-shops. Conclusion: TVOCs concentrations in nail shop were the highest among others. TVOC concentrations in all stores exceeded indoor air quality stand of indoor air quality control in public-use facilities, etc act.

봄철 산란계사 사육형태별 미세먼지 및 암모니아 농도 비교 (Comparison of Particulate Matter and Ammonia Emission in Different Types of Laying Hen Poultry Houses during Spring)

  • 홍의철;강보석;강환구;전진주;유아선;김현수;손지선;김희진;윤연서
    • 한국가금학회지
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    • 제48권3호
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    • pp.151-160
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    • 2021
  • 본 연구는 산란계사 사육형태별 봄철의 미세먼지(PM) 및 암모니아(NH3) 배출 농도를 측정하기 위해 수행하였다. 평사, Aviary 그리고 Cage 계사에서 미세먼지 및 암모니아 농도를 3~5월 동안 2주 간격으로 3회(24시간/회) 측정하였다. PM10과 PM2.5 농도는 24시간 동안 유사한 경향을 보였으며, 22:00부터 04:00까지 낮게 나타났다. 평사와 케이지 계사의 PM(PM10, PM2.5) 농도는 유사하게 나타났으며, 일일 편차도 심하게 보이지 않았다. 평사 계사에서는 중앙과 끝에서 24시간 동안 측정한 NH3 농도가 일정하게 나타났다. 측정 위치와 관계없이 평사에서 NH3 농도가 가장 낮게 나타났다. 평사와 Aviary 계사에서는 중앙보다 끝에서 측정된 NH3 농도가 더 높았으나, 케이지 계사에서는 끝에서 측정된 NH3 농도가 더 낮았다. 계사 주변의 PM10과 PM2.5 농도는 각각 57.5 ㎍/m3와 34.0 ㎍/m3이었다. 일평균 PM10과 PM2.5 농도는 Aviary 계사에서 4,730 ㎍/m3와 447.7 ㎍/m3로 가장 높았다. 계사 중앙과 끝의 NH3 농도는 케이지 계사에서 12.0 ppm과 9.31 ppm으로 가장 높았다. PM10과 PM2.5의 배출계수는 케이지에서 가장 낮았으며, NH3의 배출계수는 가장 높았다(P>0.05). 결론적으로, PM(PM10, PM2.5) 농도는 Aviary 계사에서, NH3 농도는 Cage 계사에서 각각 높게 나타났다.

2010~2015년 전라북도 도시대기 PM10의 특성 (Distributions and Origins of PM10 in Jeollabuk-do from 2010 to 2015)

  • 조병수;송미정
    • 한국대기환경학회지
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    • 제33권3호
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    • pp.251-264
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    • 2017
  • Recently, Jeollabuk-do has been reported as a province where the $PM_{10}$concentration is one of the highest levels in South Korea. To explore the characteristics and origins of the $PM_{10}$in Jeollabuk-do, we present one of the first long-term datasets including a statistical analysis of $PM_{10}$concentrations obtained from six cities in the province from 2010 to 2015. During the entire periods, the mean hourly $PM_{10}$concentration was $49.3{\mu}g/m^3$, which correspond to the annual ambient air quality standards for $PM_{10}$in South Korea, and the annual $PM_{10}$concentration of each city showed a similarity in year-to-year variations. In the monthly variation of $PM_{10}$, the $PM_{10}$concentrations showed a maximum value in May that was one of the top levels among the provinces of Korea while the concentrations were dramatically decreased in August showing one of the lowest levels among the provinces in Korea. For the diurnal variation of $PM_{10}$, the $PM_{10}$concentration was enhanced during the rush hours together with gaseous species of $NO_2$, and CO. When the high concentrations of $PM_{10}$were observed (the highest 10% of the $PM_{10}$mass contribution), temperature and relative humidity were low. Using HYSPLIT backward trajectories and cluster analysis for the high $PM_{10}$concentrations, we found that the pollution plumes were transported mainly from China.

서울과 외국 대도시의 미세입자 조성 비교 (Comparison of the fine particle concentrations in Seoul and other foreign mega-cities)

  • 홍선예;이정진;이지연;김용표
    • 한국입자에어로졸학회지
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    • 제4권1호
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    • pp.1-7
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    • 2008
  • Temporal trends of the PM10 and PM2.5 mass concentrations, and the concentrations of chemical species (sulfate, nitrate, ammonium, OC, and EC) in PM2.5 at Seoul are compared with the reported results from other mega cities in the world. The mass concentrations of PM10 and PM2.5 at Seoul show decreasing trend. However, the concentration levels are still higher than other cities except Beijing. The sulfate concentration at Seoul has decreased while those of nitrate and ammonium have increased. The concentrations of OC and EC show no apparent trend.

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