• 제목/요약/키워드: Engineering Big Data

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대기오염집중측정소별 2013~2015년 사이의 PM2.5 화학적 특성 차이 및 유발인자 조사 (Difference in Chemical Composition of PM2.5 and Investigation of its Causing Factors between 2013 and 2015 in Air Pollution Intensive Monitoring Stations)

  • 유근혜;박승식;김영성;신혜정;임철수;반수진;유정아;강현정;서영교;강경식;조미라;정선아;이민희;황태경;강병철;김효선
    • 한국대기환경학회지
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    • 제34권1호
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    • pp.16-37
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    • 2018
  • In this study, difference in chemical composition of $PM_{2.5}$ observed between the year 2013 and 2015 at six air quality intensive monitoring stations (Bangryenogdo (BR), Seoul (SL), Daejeon (DJ), Gwangju (GJ), Ulsan (US), and Jeju (JJ)) was investigated and the possible factors causing their difference were also discussed. $PM_{2.5}$, organic and elemental carbon (OC and EC), and water-soluble ionic species concentrations were observed on a hourly basis in the six stations. The difference in chemical composition by regions was examined based on emissions of gaseous criteria pollutants (CO, $SO_2$, and $NO_2$), meteorological parameters (wind speed, temperature, and relative humidity), and origins and transport pathways of air masses. For the years 2013 and 2014, annual average $PM_{2.5}$ was in the order of SL ($${\sim_=}DJ$$)>GJ>BR>US>JJ, but the highest concentration in 2015 was found at DJ, following by GJ ($${\sim_=}SJ$$)>BR>US>JJ. Similar patterns were found in $SO{_4}^{2-}$, $NO_3{^-}$, and $NH_4{^+}$. Lower $PM_{2.5}$ at SL than at DJ and GJ was resulted from low concentrations of secondary ionic species. Annual average concentrations of OC and EC by regions had no big difference among the years, but their patterns were distinct from the $PM_{2.5}$, $SO{_4}^{2-}$, $NO_3{^-}$, and $NH_4{^+}$ concentrations by regions. 4-day air mass backward trajectory calculations indicated that in the event of daily average $PM_{2.5}$ exceeding the monthly average values, >70% of the air masses reaching the all stations were coming from northeastern Chinese polluted regions, indicating the long-range transportation (LTP) was an important contributor to $PM_{2.5}$ and its chemical composition at the stations. Lower concentrations of secondary ionic species and $PM_{2.5}$ at SL in 2015 than those at DJ and GJ sites were due to the decrease in impact by LTP from polluted Chinese regions, rather than the difference in local emissions of criteria gas pollutants ($SO_2$, $NO_2$, and $NH_3$) among the SL, DJ, and GJ sites. The difference in annual average $SO{_4}^{2-}$ by regions was resulted from combination of the difference in local $SO_2$ emissions and chemical conversion of $SO_2$ to $SO{_4}^{2-}$, and LTP from China. However, the $SO{_4}^{2-}$ at the sites were more influenced by LTP than the formation by chemical transformation of locally emitted $SO_2$. The $NO_3{^-}$ increase was closely associated with the increase in local emissions of nitrogen oxides at four urban sites except for the BR and JJ, as well as the LTP with a small contribution. Among the meterological parameters (wind speed, temperature, and relative humidity), the ambient temperature was most important factor to control the variation of $PM_{2.5}$ and its major chemical components concentrations. In other words, as the average temperature increases, the $PM_{2.5}$, OC, EC, and $NO_3{^-}$ concentrations showed a decreasing tendency, especially with a prominent feature in $NO_3{^-}$. Results from a case study that examined the $PM_{2.5}$ and its major chemical data observed between February 19 and March 2, 2014 at the all stations suggest that ambient $SO{_4}^{2-}$ and $NO_3{^-}$ concentrations are not necessarily proportional to the concentrations of their precursor emissions because the rates at which they form and their gas/particle partitioning may be controlled by factors (e.g., long range transportation) other than the concentration of the precursor gases.

강제 흡출식 복사선 차폐장치가 온실의 기온측정에 미치는 영향 (Effects of an Aspirated Radiation Shield on Temperature Measurement in a Greenhouse)

  • 정영균;이종구;윤성욱;김현태;안은기;서재석;윤용철
    • 생물환경조절학회지
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    • 제28권1호
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    • pp.78-85
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    • 2019
  • 본 연구에서는 본 연구실에서 자체적으로 제작한 비교적 제작이 간편하고 비용이 저렴한 강제 흡출식 복사선차폐장치(Aspirated Radiation Shield; ARS)로 측정한 실측 데이터를 바탕으로 장치의 성능과 온도 및 상대습도의 측정오차에 대하여 보고하고자 연구를 수행하였다. 그 결과를 요약하면 다음과 같다. ARS장치와 진주기상대에서 측정한 최대, 평균 및 최저온도의 범위는 각각 $2.0{\sim}34.1^{\circ}C$$0.4{\sim}31.5^{\circ}C$, $-6.1{\sim}22.2^{\circ}C$$-5.8{\sim}22.0^{\circ}C$, $-14.1{\sim}16.3^{\circ}C$$-14.0{\sim}15.1^{\circ}C$범위로 나타났다. 최대기온의 최저 및 최고온도에서 각각 $1.6^{\circ}C$$2.6^{\circ}C$정도 교내에서 측정한 값이 약간 높게 나타난 것을 제외하면, 두 기관에서 측정한 온도에 큰 차이가 없는 것을 알 수 있었다. 표준온도계의 측정값과 검증한 결과, ARS장치로 측정한 온도가 표준온도계에 비해 $-2.0^{\circ}C$정도 낮거나 $1.8^{\circ}C$보다 높게 나타나났다. 표준온도계와 상관분석 한 결과, 결정계수는 0.99정도였다. 팬의 유무에 따른 온도의 경우, 전체적으로 팬이 없는 경우가 최고, 평균 및 최저온도가 각각 $0.5{\sim}7.6^{\circ}C$, $0.3{\sim}4.6^{\circ}C$$0.5{\sim}3.9^{\circ}C$정도 높게 나타났다. 그리고 ARS장치와 진주기상대에서 측정한 일평균 상대습도는 전체적으로 ARS장치로 측정한 값이 약간 높은 경향이 있고, 특히 상대적으로 6월 27일, 7월 26일, 29일, 8월 20일에 측정한 값이 각각 5.7%, 5.2%, 9.1% 및 5.8%정도로 다소 높게 나타났지만, 두 기관의 월별 평균치는 2.0~3.0%정도로 미미한 수준이었다. 또한 ARS장치와 아스만 통풍습도계로 측정한 상대습도는 전체적으로 -3.98~+7.78%정도의 범위 내에 있는 것으로 나타났다. 진주기상대와 아스만 통풍습도계로 측정한 상대습도를 상관분석 결과, 결정계수가 각각 0.94 및 0.97정도로써 높은 상관관계를 보였다.