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Chemical Characteristics and Source Apportionment ofPM2.5 in Seoul Metropolitan Area in 2010 (2010년도 서울시 대기 중 PM2.5의 성분특성 및 발생원 추정에 관한 연구)

  • Moon, Kwang-Joo;Park, Seung-Myung;Park, Jong-Sung;Song, In-Ho;Jang, Sung-Ki;Kim, Jong-Chun;Lee, Seok-Jo
    • Journal of Korean Society for Atmospheric Environment
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    • v.27 no.6
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    • pp.711-722
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    • 2011
  • This study is aimed to estimate the $PM_{2.5}$ source apportionment at Seoul intensive monitoring site located in Seoul metropolitan area. Time-resolved chemical compositions of $PM_{2.5}$ are measured in real time using ambient ion monitor, semi-continuous carbon monitor, and on-line XRF at Seoul intensive monitoring site in 2010. The mass concentration of $PM_{2.5}$ was simultaneously monitored with eight ionic species (${SO_4}^{2-}$, $NO_3{^-}$, $Cl^-$, $NH_4{^+}$, $Na^+$, $K^+$, $Mg^{2+}$, $Ca^{2+}$), two carbonaceous species (OC and EC), and fourteen elements (Si, K, Ca, Ti, V, Cr, Mn, Fe, Co, Ni, Zn, As, Se, Pb) in 1-hr interval. The data sets were then analyzed using EPA PMF version 3 to identify sources and contributions to $PM_{2.5}$ mass. EPA PMF modeling identified eight PM2.5 sources, including soil dust, secondary sulfate, secondary nitrate, motor vehicle, coal combustion, oil combustion, biomass burning, and municipal incineration. This study found that the average $PM_{2.5}$ mass was apportioned to anthropogenic sources such as motor vehicle, fuel combustion, and biomass burning (61%) and secondary aerosols, including sulfate and nitrate (38%).

Characteristics of Wash-off Metal Pollutants from Highway Toll-Gate Area (고속도로 영업소지역의 강우유출수내 중금속 유출 특성)

  • Lee, Soyoung;Lee, Eunju;Kim, Chulmin;Son, Hyungun;Maniquiz, Marla C.;Son, Youngkyu;Kang, Heeman;Kim, Jeehyeong;Kim, Lee-Hyung
    • Journal of Korean Society on Water Environment
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    • v.23 no.6
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    • pp.945-950
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    • 2007
  • The stormwater runoff from paved area are highly polluted because of particulate materials as well as metals from various vehicular activities. The Division of Road Maintenance in Ministry of Construction and Transportation was recently developed the Guidelines of Environment-kindly Road Maintenance. It is actually requiring the BMP construction to control the nonpoint source pollution as based on the TMDL program. This research is carried out in order to define the characteristics of stormwater runoff from the toll-gate of highways since 2006, which is actually one of the main pollutant sources of paved areas. This monitoring is the first phase work for establishing the treatment facilities in the toll-gates. The one of the main characteristics from toll-gate runoff is the first flush phenomenon containing lots of sediments and metal compounds at the beginning of a storm event. Usually it is used to determine the size of treatment facilities and to calculate the reduced pollutant mass in the facility. The research results shows that the mean EMC vaules for heavy metals are determined to $274.3{\mu}g/L$ for Cd, $1,273.4{\mu}g/L$ for Cr, $1,822.0{\mu}g/L$ for Cu, $6,504.9{\mu}g/L$ for Fe, $14,930.3{\mu}g/L$ for Pb, and $714.1{\mu}g/L$ for Zn. Also the metal mass loadings from the toll-gates are calculated using EMC, watershed area and storm duration.

Concentration of Vanadium in Jeju Groundwater Using Reverse Osmosis Processes (역삼투 공정을 이용한 제주 지하수의 바나듐 농축)

  • Lee, Ho-Won;Moon, Soo-Hyoung;Ko, Kyung-Soo
    • Membrane Journal
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    • v.18 no.3
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    • pp.241-249
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    • 2008
  • This study is to concentrate vanadium in Jeju groundwater using reverse osmosis processes, and to utilize the concentrate for vanadium water. Groundwater samples were taken from Wahyul, Ayum, and Seogwipo groundwater wells with different in vanadium content each other. Their vanadiuln concentrations were 31.8, 44.5, and 53.0 ppb, respectively. The rejection coefficients of every component in groundwater were increased with the increase of TMP At the TMP of $8 kg_f/cm^2$, the rejection coefficients of vanadium, sodium, potassium, aluminium, iron, and barium were $97.4%{\sim}99.0%,\;97.7%{\sim}97.8%,\;98.0%{\sim}98.3%,\;94.8%{\sim}97.5%,\;88.0%{\sim}96.4.0%$, and $97.9{\sim}98.0%$, respectively. And those of magnesium, calcium, chromium, mauganese, and strontium in three groundwater were more than 99.0% at the same TMP. It was possible that vanadium contents of Wahyul, Ayum and Seogwipo groundwater were concentrated into 58.6, 118.9, and 165.1 ppb, respectively, by 6 stages treatment at the recovery ratio of 15%. And these concentrated water (vanadium water) did not exceed the permissible drinking water standards.

Physicochemical Composition and Heavy Metal Contents on the Sediment of Kwangyang Bay (광양만의 퇴적물에 대한 이화학적 조성 및 중금속 함량)

  • Park, Jong-Chun;Kim, Jin;Lee, Woo-Bum;Lee, Sung-Woo;Joo, Hyun-Soo
    • Korean Journal of Ecology and Environment
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    • v.33 no.1 s.89
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    • pp.31-37
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    • 2000
  • For the purpose of surveying the physicochemical composition of sediment collected from Kwangyang Bay, the percentage of water loss, COD, $H_2S$, grain size and 10 heavy metals were studied at 17 sites. During the surveying period, the changes of the percentage of water loss were appeared $35.5\;{\sim}\;53.8%$. COD and $H_2S$ were showed $3.8\l{\sim}\;12.9\;mg/g$, and $0.1\;{\sim}11.4\;{\mu}g/g$, respectively, In composition of grain size on the sediment, percentages of grain sizes under $74\;{\mu}m$ were varied from 40.5% to 86.7% and above $74\;{\mu}m$ were varied from 11.5% to 43.0%. From the spatial distribution of heavy metal using contour map, we can suppose some heavy metal discharges which affect sediment of Kwangyang Bay, It was estimated that Shinpung creek, Ssang-bong creek, and draining area of sewange treatment plant were the main discharge among the heavy metal output sources. By comparison between present study and heavy metal guideline of nonpolluted sea sediment that is provided by EPA, US, it was showed that the contents of Pb and Hg were acceptable but contents of Mn, Zn, Cu, Fe, As, and Cr were higher than those of EPA guideline.

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Size-resolved Source Apportionment of Ambient Particles by Positive Matrix Factorization at Gosan, Jeju Island during ACE-Asia (PMF 분석을 이용한 ACE-Asia 측정기간 중 제주 고산지역 입자상 물질의 입경별 발생원 추정)

  • Moon K.J.;Han, J.S.;Kong, B.J.;Jung, I.R.;Cliff Steven S.;Cahill Thomas A.;Perry Kelvin D.
    • Journal of Korean Society for Atmospheric Environment
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    • v.22 no.5
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    • pp.590-603
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    • 2006
  • Size-and time-resolved aerosol samples were collected using an eight-stage Davis rotating unit for monitoring (DRUM) sampler from 23 March to 29 April 2001 at Gosan, Jeju Island, Korea, which is one of the super sites of Asia-Pacific Regional Aerosol Characterization Experiment(ACE-Asia). These samples were analyzed using synchrotron X-ray fluorescence for 3-hr average concentrations of 19 elements including Al, Si, S, Cl, K, Ca, Ti, V, Cr, Mn, Fe, Ni, Cu, Zn, As, Se, Br, Rb, and Pb. The size-resolved data sets were then analyzed using the positive matrix factorization(PMF) technique to identify possible sources and estimate their contributions to particulate matter mass. PMF analysis uses the uncertainty of the measured data to provide an optimal weighting. Twelve sources were resolved in eight size ranges($0.09{\sim}12{\mu}m$) and included continental soil, local soil, sea salt, biomass/biofuel burning, coal combustion, oil combustion, municipal incineration, nonferrous metal source, ferrous metal source, gasoline vehicle, diesel vehicle, and volcanic emission. The PMF result of size-resolved source contributions showed that natural sources represented by local soil, sea salt, continental soil, and volcanic emission contributed about 79% to the predicted primary particulate matter(PM) mass in the coarse size range ($1.15{\sim}12{\mu}m$) while anthropogenic sources such as coal combustion and biomass/biofuel burning contributed about 58% in the fine size range($0.56{\sim}2.5{\mu}m$). The diesel vehicle source contributed mostly in ultra-fine size range($0.09{\sim}0.56{\mu}m$) and was responsible for about 56% of the primary PM mass.

Reversely Zoned Compositional Variations and their Origins of the Andong Pluton, Andong Batholith, Korea (안동심성암체의 역누대 초성변화와 그 성인)

  • 황상구;이보현
    • Economic and Environmental Geology
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    • v.35 no.1
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    • pp.75-95
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    • 2002
  • The Andong pluton in the Andong Batholith is composed of comagmatic plutonic rocks, in which the lithofacies comprise hornblende biotite tonalite in the central paft biotite granodiorite in the marginal paft and porphyritic biotite granite at the topside (noJthea~tern paft) of the pluton. The pluton is petrographically and petrochemically zoned, having more mafic center than margin and topside. Distribution pallern of the lithofacies represents a reverse zoning in the pluton. Modal and chemical data in the pluton show progressive and gradual compositional variations from the centrer via the margin to the topside. Quartz and K-teldspar increase toward the topside of the pluton, whereas hornblende, biotite and color index increase toward the center. The bulk composition in the pluton is also reversely zoned, with high $Si0_2$ and $K_{2}O$ in the topside facies, and high MnO, CaO, $Ti0_2$, $Fe_{2}O_{3}$t, MgO and $P_{2}O_{5}$ in the central facies. The reverse zoning is also evident in higher Cr. V, Ni, Sc and Sr of the more mafic tonalite in the interior. The reversely zoned pluton results from remobilization (resurgence) of the lower more mafic compositional zone into the upper more felsic zones of the pluton modified by thennogravitational diffusion and fractional crystallization. In the initial stages of evolution, the pluton was a petrochemical system that fonned chemical compositional zonation with mafic tonalitic magma in the lower. granodioritic one in the middle and granitic one in the upper paft of the magma chamber. Periodic influxes of more mafic magma from the ba~e resulted in mingling of liquids and redistribution of minerals, and may have triggered the remobilil.ation of the lower compositional zone into the upper more felsic zones.

A Study on the Characteristics of Soil in the Asian Dust Source Regions of Mongolia (황사발원지 (몽골) 토양에 대한 특성 분석)

  • Kim, Deok-Rae;Kim, Jeong-Soo;Ban, Soo-Jin
    • Journal of Korean Society for Atmospheric Environment
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    • v.26 no.6
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    • pp.606-615
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    • 2010
  • This study aims to identify the characteristics of soil in Mongolia, one of the major Asian dust sources that influence the Korean Peninsula. Soil particle size was analyzed and the result shows that sand (57.5~97.3%) was identified prominently in most regions, followed by silt (2.5~34.7%) and clay (0.0~7.8%). Soil pH of the covered regions were in the range 7.1~10.1, either weak alkaline or strong alkaline. Analysis of ion species in the soil samples exhibited that $Na^+$ ($91.9\;mg\;kg^{-1}$), $Cl^-$ ($65.9\;mg\;kg^{-1}$), and $Ca^{2+}$ ($53.5\;mg\;kg^{-1}$) were detected more in the soil than other species such as ${SO_4}^{2-}$ ($19.2\;mg\;kg^{-1}$), ${NO_3}^-$ ($46.6\;mg\;kg^{-1}$), ${NH_4}^+$ ($3.9\;mg\;kg^{-1}$), $K^+$ ($22.0\;mg\;kg^{-1}$), and $Mg^{2+}$ ($10.2\;mg\;kg^{-1}$). As for heavy metal content in the soil, concentrations of soil-borne metals including Fe, Al, Ca, Mg, and K tended to be high, while metals that come from manmade sources Pb, Cd, Cr, V, and Ni were remarkably low. The concentration of organic carbon (OC) was relatively high at $15.9\;{\mu}g\;mg^{-1}$, while elemental carbon (EC), directly released in the process of fossil fuel combustion, was not detected at all or found in very small amounts. The result indicates that pollution from manmade sources scarcely occurred. The analysis results from this study may contribute to improving modeling accuracy by providing input data for Asian dust prediction models, and be used as base data for determining the process of physiochemical transformation of Asian dust during long-range transport.

The Principles and Practice of Induced Polarization Method (유도분극 탐사의 원리 및 활용)

  • Kim, Bitnarae;Nam, Myung Jin;Jang, Hannuree;Jang, Hangilro;Son, Jeong-Sul;Kim, Hee Jun
    • Geophysics and Geophysical Exploration
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    • v.20 no.2
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    • pp.100-113
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    • 2017
  • Induced polarization (IP) method is based on the measurement of a polarization effect known as overvoltage of the ground. IP techniques have been usually used to find mineral deposits, however, nowadays widely applied to hydrogeological investigations, surveys of groundwater pollution and foundation studies on construction sites. IP surveys can be classified by its source type, i.e., time-domain IP estimating chargeability, frequency-domain IP measuring frequency effect (FE), and complex resistivity (CR) and spectral IP (SIP) measuring complex resistivity. Recently, electromagnetic-based IP has been studied to avoid the requirement for spike electrodes to be placed in the ground. In order to understand IP methods in this study, we: 1) classify IP surveys by source type and measured data and illustrate their basic theories, 2) describe historical development of each IP forward modeling and inversion algorithm, and finally 3) introduce various case studies of IP measurements.

한국산 장뇌산삼의 부위별 유용성분함량 및 추출용매조건의 영향

  • 김준한;문혜경;강우원;김종국
    • Proceedings of the Korean Society of Postharvest Science and Technology of Agricultural Products Conference
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    • 2003.10a
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    • pp.150.2-151
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    • 2003
  • 한국산 장뇌산삼의 열매, 잎, 줄기 및 뿌리를 -7$0^{\circ}C$ 동결건조 분말화시킨 시료에 대한 추출용매와 농도에 따른 유용성분의 함량을 비교, 분석하였다. 추출액의 당도는 잎과 줄기의 80% 에탄올추출액이 각각 22.58%와 22.53%로 가장 높았고, pH는 4.43-7.41 수준이었고, 갈변도는 흡광도가 잎과 뿌리 80% 에탄올추출액이 1.803과 1.085로 가장 높았다. 색도의 경우 L값는 줄기 100% 증류수추출액이 24.56, 열매 80% 메탄올추출액이 24.35로 가장 높았고, 뿌리와 잎 80% 에탄올추출액이 각각 17.47과 19.59로 가장 낮은 값을 나타내었다. a값은 잎100% 증류수추출액이 0.41로 가장 높았고, 줄기 80%메탄올추출 액이 -0.49로 가장 낮은 값을 보였다. b값은 줄기 80% 메탄올추출액이 3.69로 가장 높았고, 열매 100% 증류수추출액 이 0.45로 가장 낮은 값이었다. 주요 유리당은 sucrose, glucose 및 fructose 이었고, 유리당 총함량은 열매와 줄기 100% 증류수추출액이 각각 6733 mg/100g과 6142 mg/100g으로 가장 많은 량을 함유하였고, sucrose는 뿌리 80% 메탄올추출액 이 3673 mg/100g으로, glucose 및 fructose는 줄기 80% 에탄올추출액과 잎 80% 메탄올추출액에 각각 4283 mg/100g과 1897 mg/100g으로 높은 함유량을 나타내었다. 또한 잎과 줄기에는 xylose가 304-524 mg/100g 수준으로 함유되어 있었고, 뿌리에는 maltose가 소량 함유하고 있었다. 주요 유기산으로는 citric acid, tartaric acid 및 malic acid가 확인되었고, citric acid는 뿌리 80% 메탄올추출액이 1849 mg/100g으로 가장 높은 함량이었고, tartaric acid는 잎 80% 메탄올추출액이 3263 mg/100g으로 가장 높은 함량이었고, malic acid는 뿌리 80% 메탄올추출액이 1856 mg/100g으로 가장 높은 함량이었으며, 뿌리 80% 메탄올추출액에는 succinic acid, malonic acid 및 oxalic acid 등이 확인되었다. 유리아미노산은 L-Arginine, ${\gamma}$-Amino-n-butyric acid, Ethanolamine, L-Proline, $\beta$-Alanine 및 L-sarcosine 등 총 35종이 확인되었고, L-Arginine은 251-7379 mg/100g 수준으로 특히, 뿌리 80% 메탄올추출액에는 1319 mg/100g으로 총함유량의 79.13%로 매우 높은 함유량을 나타내었다. P, K, Na, Ca 및 Mg 등이 주된 무기질로 확인되었고, 그 중 P는 줄기 100% 증류수추출액에 15563 mg/100g으로 가장 높았고, K은 잎 80% 메탄을 추출액에 4952 mg/100g, Ca과 Na은 잎과 열매 100% 증류수추출액에 각각 3052 mg/100g과 1798 mg/100g, Mg은 잎 100% 증류수추출액에 950 mg/100g으로 매우 높은 함유량을 보였고, 또한 미량원소로는 Zn, Cu, Cr, Mn, Co, Mo, Fe 등이 함유되어 있었다.

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A Study on Heavy Metal Concentrations in Waste Water Produced in the Casting Pickling Process at Dental Technical Laboratories (치과기공소 주조체 산세척과정에서 발생하는 폐수내 중금속 농도)

  • Jeong, Da-i;Sakong, Joon
    • Journal of Environmental Health Sciences
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    • v.44 no.1
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    • pp.55-62
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    • 2018
  • Objectives: This study set out to measure the heavy metal concentrations in waste water produced in the casting pickling process at dental technical laboratories and examine the actual state of its treatment. Methods:The investigator measured the concentrations of each heavy metal at 55 dental technical laboratories using an inductively coupled plasma optical emission system. Results: The annual usage of electrolytes was under 10 L in 50 (90.9%), and was 10L or more in five (9.1%) laboratories. Among the laboratories, 15 (27.3%) commissioned the treatment of waste,12 (21.8%) treated the waste with general sewage,and 28 (50.9%) treated the waste in aseptic tank. The arithmetic $mean{\pm}standard$ deviation and the geometric mean of chrome(Cr) were $75.3{\pm}50.9$ and 58.3 mg/L; those of cobalt (Co) were $112.3{\pm}106.7$ and 66.1 mg/L; those of nickel (Ni) were $62.9{\pm}83.5$ and 8.9 mg/L; those of molybdenum (Mo) were $17.1{\pm}13.4$ and 12.0 mg/L; those of iron (Fe) were $31.5{\pm}44.1$ and 6.2 mg/L; those of lead (Pb) were $0.3{\pm}0.3$ and 0.3 mg/L; those of beryllium (Be) were $3.6{\pm}3.6$ and 2.0 mg/L. The hydrogen ion concentration was under pH 2 across all the samples. Conclusions: The findings show that the dental technical laboratories were not doing well with the separation, storage, collection, and treatment of the electrolytes they discarded, and that most of the electrolytes were introduced through the general sewage or aseptic tank. The causes of this include alack of perception among the practitioners at dental technical laboratories and contracted companies avoiding collection for economic reasons. There is a need for education to improve the perceptions of waste water treatment among the practitioners at dental technical laboratories. Environment-related departments should be stricter with legal applications in the central and local governments. It is also required to provide proper management of commissioned treatment.