• 제목/요약/키워드: crustal enrichment factor

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다양한 통계기법을 이용한 대전 1,2 공단지역의 미량금속원소의 특성 연구 (A Study on the Characteristics of Airborne Trace Metal Elements using Diverse Statistical Approaches in the Daejeon 1st and 2nd Industrial Complex Area)

  • 이진홍;장미숙;임종명
    • 한국대기환경학회지
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    • 제18권2호
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    • pp.95-112
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    • 2002
  • A precision analysis was conducted for the quantification of trace metal levels in airborne particulates using ICP-MS. According to our study the quantitative analysis using Whatman grade 41 filters produces more precise and representative values of metal concentrations than that using EPM 2000 filters. The mean concentration of PM 10 analyzed during 1998 ~ 2000 was 82 $\mu$g/m$^3$. The concentrations of human carcinogens such as As and Cr were 8.65 and 25.87 ng/m$^3$, respectively, while those of probable human carcinogens such as Cd and Pb were 3.13 and 219.46 ng/m$^3$, respectively. Time-weighted mean concentration, calculated using surface wind speed and direction, indicated that there were differences between metals of crustal origin and metals of anthropogenic origin. The rectorial concentrations of anthropogenic metals and PM 10 were higher for north -west sector with calm or low wind speed conditions than for any other sector with high wind speed conditions. On the contrary, the rectorial concentrations of crustal metals were high with high wind speed. In addition, the sectorial concentrations of crustal metals were more affected by south-west wind directions, which were compared with those of anthropogenic metals. The enrichment factor (EF) values of many anthropogenic metals were higher than 50, while those of crustal metals were lower than 3, respectively. The concentrations of Cr and Ni in Daejeon industrial complex area were 11 times higher than those in the background site of Kuopio in Finland, while that of Pb in the complex area was 22 times higher, respectively.

부산지역 강우의 화학적 특성 II. 중금속의 공급원과 습성침적 플럭스

  • 전은주;양한섭;옥곤;김영섭
    • 한국환경과학회지
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    • 제7권5호
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    • pp.717-723
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    • 1998
  • The concentrations and wet deposition flux into the sea of heavy metals of precipitation in Pusan area were measured and estimated. The samples were collected by polyethylene bottle(30ι) from January to November in 1996, and heavy metals were analyzed by atomic absorption spectrometer. The concentration order of heavy metals was Al >Fe >Zn >Pb >Mn >Cu >Ni >Cd >Co, and they were high at inland sites and low at coastal sites. The enrichment factors for some metals(Zn, Cu, Pb, Cd), based on crustal Al, were significantly greater than unity, and the order was Cd > Pb > Zn > Cu. This evidence suggests Cd and Pb are derived predominantly from non-crustal sources. Al, Fe and Mn contents showed good correlation with each other. Therefore this enrichment factor indicates similar geochemical behavior of these elements. The annual wet depositional flux(mg/ $m^2$ /yr) from Pl site was as follows: Al(121.1). Fe,(177.2), Zn(12.9), Mn(6.19), Pb(14.4), Cu(0.64), Ni(1.03), Cd(1.02) and Co(1.01).

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대기 에어로졸의 체류시간과 화학조성 I. 부산지역에서 주요이온과 중금속의 농도 (Residence Times and Chemical Composition of Atmospheric Aerosols I. Concentration of Major Ions and Heavy Metals in Pusan)

  • 양한섭;전은주;김영일;옥곤
    • 한국환경과학회지
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    • 제8권1호
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    • pp.51-59
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    • 1999
  • Chemical composition of atmospheric aerosols was measured at 4 sites in Pusan. All the samples were collected with a high volume air sampler from January to October 1996, to analyze major ions and heavy metals. Dominant ions of aerosols were S $O_4$$^{2-}$ in anion and N $a^{+}$ in cation. Sulfate, nitrate and ammonium ions in aerosols showed high enrichment factor to soil and seawater composition. The concentrations of heavy metals in aerosols was lowest at the site PI near the coast. The lowest concentrations of major ions and heavy metals mainly appeared in August, probably due to scavenging by frequent rains. Especially, the concentrations of total suspended particulate matter(TSP) and heavy metals in aerosols showed good correlations in Pusan. Based on crustal Al, enrichment factors for some metals(Zn, Cu, Pb, Cd) in aerosols were significantly greater than unity, and the order was Cd > Pb > Zn > Cu. This evidence suggests that Cd and Pb are derived predominantly from non-crustal sources.s.

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2002년 부산지역 봄철 황사/비황사시 PM10 중의 중금속 농도 특성 (Characteristics of Heavy Metallic Elements of PM10 for Yellow sand and Non-Yellow sand during Springtime of 2002 at Busan)

  • 전병일
    • 환경영향평가
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    • 제12권2호
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    • pp.99-108
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    • 2003
  • We collected and analyzed PM10 samples to account for the characteristics of heavy metallic elements for yellow sand and non-yellow sand during springtime of 2002 at Busan, The mean PM10 mass concentration for springtime of 2002 was $219.82{\mu}g/m^3$ with the maximum $787.50{\mu}g/m^3$ and the minimum $19.44{\mu}g/m^3$. The mean concentration of metallic elements contained in PM10 are shown as follows : Si>Ca>Fe>Al>Na, respectively. The ratio of mean PM10 mass concentration for yellow sand($362.7{\mu}g/m^3$) to that for non-yellow sand($48.3{\mu}g/m^3$) was 7.5, the significant positive correlation (P<0.05) was found between yellow sand and non-yellow sand. The metallic elements concentration ratios of yellow sand to the non-yellow sand were over 10 times for Al, Ca, Mg, 4~8 times for Fe, Si, Mn. But the concentration of Na, Cu, Zn for non-yellow sand was higher than those of yellow sand. The crustal enrichment factor of Cd, Cu, Pb, Zn, Cr, K, Mn, Na, Ni for yellow sand was higher that of non-yellow sand over 10 times, and concentration rate of soil particles of yellow sand was increased 2.3 times that of nonyellow sand.

광주지역 먼지 특성에 관한 연구 (Characteristics of Ambient Particulate Matter in Gwangju)

  • 서광엽;김승호;이경석;민경우;서희정;강영주;백계진;문용운;신대윤
    • 한국환경보건학회지
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    • 제36권2호
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    • pp.108-117
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    • 2010
  • In this study, ambient particulate matter ($PM_{2.5}$ and $PM_{10}$) levels were measured and their chemical and physical properties were characterized. Two sites in Gwangju were sampled once a month from December 2008 to November 2009. The annual mean concentrations of $PM_{2.5}$ and $PM_{10}$ were $26.9\;{\mu}g/m^3$ and $46.3\;{\mu}g/m^3$, respectively, in Nongseongdong and $26.1\;{\mu}g/m^3$ and $44.8\;{\mu}g/m^3$, respectively, in Duam-dong. $PM_{2.5}$ levels were 1.8 times higher than the USA Environmental Protection Agency (EPA) national ambient air quality standard for $PM_{2.5}$ ($15\;{\mu}g/m^3$). The average $PM_{2.5}/PM_{10}$ ratio of 0.58 suggested that $PM_{2.5}$ is a significant component of the ambient particle pollution. The order of concentration of metallic elements in $PM_{2.5}$ and $PM_{10}$ was Si > Al > Fe > Zn > Pb > Cu > Mn. Cd was not detected. The earth crustal enrichment factors for Cr, Cu, Pb and Zn in $PM_{2.5}$ were higher than those in $PM_{10}$. When the earth crustal enrichment factors for Cr, Cu, Pb and Zn were higher than 10, this suggested influence from anthropogenic sources. The soil contribution ratios for $PM_{2.5}$ and $PM_{10}$ were 11.3% and 16.4%, respectively, and were higher in the fall and winter. Anions (${SO_4}^{-2}$, ${NO_3}^-$, and $Cl^-$) comprise 28.7% of $PM_{2.5}$ and 21.4% of $PM_{10}$. The correlation coefficient of Zn-Fe, Mn-Cu, Fe-Cu and Fe-Mn in $PM_{2.5}$ was high in the sampling sites, and metallic elements were primarily from anthropogenic sources such as fuel combustion and vehicle emissions.

부산 서부지역의 대기 중 PM10 농도와 화학적 조성 분석 (PM10 Concentration and Chemical Composition in Western Area of Busan)

  • 황용식;전병일
    • 한국환경과학회지
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    • 제12권6호
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    • pp.627-633
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    • 2003
  • 2001년 3월부터 2002년 2월까지 부산의 신라대학교 옥상에서 측정한 PM$_{10}$의 질량농도와 화학적 성분을 조사한 결과 다음과 같은 결론을 얻었다. 1) PM$_{10}$의 질량농도는 평균 98.21 $\mu\textrm{g}$/㎥로 나타났으며, 최고농도는 330.56 $\mu\textrm{g}$/㎥로서 연간 기준치인 80 $\mu\textrm{g}$/㎥를 초과하였다. 또한 K(1.23 $\mu\textrm{g}$/㎥)>Ca (1.12 $\mu\textrm{g}$/㎥)>Na(0.79 $\mu\textrm{g}$/㎥))>Al(0.76 $\mu\textrm{g}$/㎥)>Fe (0.75 $\mu\textrm{g}$/㎥) 순으로서 높은 조성을 보였고, Cd (2.72 ng/㎥)이 가장 낮은 질량 농도를 보였다. 2) Cd, Ni, Pb 및 Zn은 평균 지각농축계수가 10이상의 인위적인 기원으로 봄철과 여름철에 비하여 서풍계열의 바람이 우세한 겨울철에 매우 높은 값을 보였으며, 연구 지역의 서쪽에 인접한 사상공단과 서남쪽에 위치한 신평 .장림공단으로부터 서풍계열의 바람을 타고 이동되었음을 알 수 있었다. 또한 이들 중금속은 미세입자의 조성에 많은 영향을 미치는 것으로 나타났으며, 평균 토양입자의 기여율은 9.5%로 나타났다. 3) PM$_{10}$의 조성에 관여하는 금속 원소들은 토양, 해양 및 인위적인 오염물질에 의한 기원을 동시에 포함하고 있으나 해양기원보다는 토양 및 인위적인 기원들 간의 상관성이 우세하게 나타났다.

2005년 봄철 부산 서부지역 PM10, PM2.5의 금속성분 특성 (The Metallic Elements of PM10 and PM2.5 in Western Region of Busan in the Springtime of 2005)

  • 전병일
    • 환경영향평가
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    • 제16권5호
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    • pp.327-340
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    • 2007
  • The $PM_{10}$ and $PM_{2.5}$ aerosols were collected at Busan from March to May, 2005, and the concentrations of some metallic elements were analysed to study their characteristics. The mean concentration of $PM_{10}$ was $66.5{\pm}23.0{\mu}g/m^3$ with a range of 22.2 to $118.1{\mu}g/m^3$. The mean concentration of $PM_{2.5}$ was $46.1{\pm}17.2{\mu}g/m^3$ with a range of 9.7 to $83.3{\mu}g/m^3$. The ratio of $PM_{2.5}/PM_{10}$ was 0.69 at Busan. The distribution of metallic elements for $PM_{10}$ and $PM_{2.5}$ were Cd${\ldots}$ ${\ldots}$ $PM_{10}$ were $94.9{\mu}g/m^3$ and $63.7{\mu}g/m^3$, respectively. And The mean mass concentrations of Asian dust and non Asian dust in $PM_{2.5}$ were $56.9{\mu}g/m^3$ and $45.1{\mu}g/m^3$, respectively. The mean values of crustal enrichment factors for five elements (Cd, Cu, Pb, V and Zn) were all higher than 10, possibly suggesting the influence of anthropogenic sources. The soil contribution ratios for $PM_{10}$ and $PM_{2.5}$ were 20.5% and 19.4, respectively.

서해안 대가 분진의 화학 조성 및 기원에 대한 연구 (1) (Chemical Composition and Sources of Atmospheric Particulates Collected on the West Coast of Korea)

  • 최만식;조성록;이동수
    • 한국대기환경학회지
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    • 제5권2호
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    • pp.72-83
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    • 1989
  • Twenty-five atmospheric particulates were collected using a high volume aerosol sampler from Septermber to December, 1988 on a site located on the West coast of Korea and analysed for twelve elements (Na, Mg, Al, Mn, Fe, Cu, Co, Ni, Zn, Ag, Cd, and Pb) by AAS. The particles being mainly crustal minerals, large quantity of spherical fly ashes were also observed. In order to identify the origin of trace metals in atmospheric particulates, enrichment factor, interelemental correlation and factor analysis were performed. Based upon these analysis, the twelve elements can be classified into three groups; the elements dominantly present in soil particles (Al, Mn, Fe, Co, and Ni), those in sea salt aerosols (Na and Mg), and those in air pollution-derived particles (Cu, Cd, Pb, Ag and Zn).

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The distribution characteristics of trace elements of fine ambient particulate in Korea

  • Lim, Jong-Myoung;Lee, Jin-Hong;Kim, Ki-Hyun
    • 분석과학
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    • 제18권3호
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    • pp.241-249
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    • 2005
  • 기기 중성자방사화분석법을 이용하여 대전시 도로변 대기분진(PM2.5)을 대상으로 As, Mn, Se, V, Zn 등의 독성금속을 포함하여 약 30여종의 미량성분을 분석하였다. 도로변 PM 2.5내 미량성분들의 농도는 자연적 발생원에 기인한 원소가 높게 나타났으며, 특히 K과 Fe이 671과 $653ng/m^3$으로 높은 농도를 보였다. 반면, Lu과 Dy는 0.01과 $0.04ng/m^3$으로 가장 낮은 농도를 보여 최대농도와 최소농도 간에는 $10^5$ 이상으로 차이가 벌어져 있음을 알 수 있었다. PM2.5와 미량성분간의 상관분석 결과, 도로변 지역에서 발생되는 PM2.5는 토양기원의 미량성분과 더 큰 상관을 보였다. 인자분석결과, 연구대상지역의 오염원은 재비산된 토양입자, 화석연료의 연소, 자동차 배기가스, 삼원촉매장치, 해염입자, 재련공장 등으로 확인되었다. 그리고 부화계수분석의 결과는 인자분석으로부터 발견된 사실과 부합함을 알 수 있었다.

서울지역의 PM10 중 미량원소의 특성 평가 (Trace Elements Characterization of PM10 in Seoul Area)

  • 신은상;최민규;영선우;정용삼
    • 한국대기환경학회지
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    • 제18권5호
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    • pp.363-372
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    • 2002
  • PM$_{10}$ aerosols were collected using low volume air sampler every month intervals from September 1992 to August 1991 in Seoul. These samples were analyzed for 20 trace elements (Al, As, Ba, Br, Ca, Cl, Co, Cr, Fe, K, Mn, Na, Ni, Pb, Sc, Se, Si, Ti, V and Zn) by INAA (instrumental neutron activation analysis), XRF (x-ray fuorescence spectrometer), and ICP (inductively coupled plasma). PM$_{10}$ mass concentrations higher than 70 $\mu$g/m$^3$ were 32% of 60 samples and had significantly higher concentrations in spring and winter than in summer and fall (p-value<0.001). The elements of As, Br, Cl, Ni, Pb, Se, V, and Zn are enriched by factors of 20 to 2,000 relative to their natural abundance in crustal soil. To further identify common sources of pollution-related trace elements, factor analysis was applied to the trace elements concentration data. Major sources that contribute to the atmospheric loading of these elements were found to include fossil fuel combustion, automobile and waste incineration (33.2%), metal processing industry (18.2%), and soil(29.8%).8%).