• 제목/요약/키워드: HF2V

검색결과 212건 처리시간 0.018초

충남탄전, 대동누층군의 셰일과 탄질암에 관한 암석화학 및 환경지구화학적 특성 (Petrochemistry and Environmental Geochemistry of Shale and Coal from the Daedong Supergroup, Chungnam Coal Field, Korea)

  • 이찬희;이현구;김경웅
    • 자원환경지질
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    • 제30권5호
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    • pp.417-431
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    • 1997
  • Characteristics of sedimentary rocks and enrichment of toxic elements in shale and coal from the Chungnam coal field were investigated based upon geochemistry of major, trace and rare earth elements. Shale and coal of the area are interbedded along the Traissic to the Jurassic Daedong Supergroup, which can be subdivided into grey shale, black shale and coal. The coal had been mined, however all the mines are abandonded due to the economic problems. The shale and coal are characterized by relatively low contents of $SiO_2$, and $Al_2O_3$ and high levels of loss-on-ignition (LOI), CaO and $Na_2O$ in comparison with the North American Shale Composite (NASC). Light rare earth elements (La, Ce, Yb and Lu) are highly enriched with the coal. Ratios of $Al_2O_3/Na_2O$ and $K_2O/Na_2O$ in shale and coal range from 30.0 to 351.8 and from 4.2 to 106.8, which have partly negative correlations against $SiO_2/Al_2O_3$ (1.24 to 6.06), respectively. Those are suggested that controls of mineral compositions in shale and coal can be due to substitution and migration of those elements by diagenesis and metamorphism. Shale and coal of the area may be deposited in terrestrial basin deduced from high C/S (39 to 895) and variable composition of organic carbon (0.39 to 18.40 wt.%) and low contents of reduced sulfur (0.01 to 0.05 wt.%). These shale and coal were originated from the high grade metamorphic and/or igneous rocks, and the rare earth elements of those rocks are slightly influenced with diagenesis and metamorphism on the basis of $Al_2O_3$ versus La, La against Ce, Zr versus Yb, the ratios of La/Ce (0.38 to 0.85) and Th/U (3.6 to 14.6). Characteristics of trace and rare earth elements as Co/Th (0.07 to 0.86), La/Sc (0.31 to 11.05), Se/Th (0.28 to 1.06), V/Ni (1.14 to 3.97), Cr/V (1.4 to 28.3), Ni/Co (2.12 to 8.00) and Zr/Hf (22.6~45.1) in the shale and coal argue for inefficient mixing of the simple source lithologies during sedimentation. These rocks also show much variation in $La_N/Yb_N$ (1.36 to 21.68), Th/Yb (3.5 to 20.0) and La/Th (0.31 to 7.89), and their origin is explained by derivation from a mixture of mainly acidic igneous and metamorphic rocks. Average concentrations in the shale and coal are As=7.2 and 7.5, Ba=913 and 974, Cr=500 and 145, Cu=20 and 26, Ni=38 and 35, Pb=30 and 36, and Zn=77 and 92 ppm, respectively, which are similar to those in the NASC. Average enrichment indices for major elements in the shale (0.79) and coal (0.77) are lower than those in the NASC. In addition, average enrichment index for rare earth elements in coal (2.39) is enriched rather than the shale (1.55). On the basis of the NASC, concentrations of minor and/or environmental toxic elements in the shale and coal were depleted of all the elements examined, excepting Cr, Pb, Rb and Th. Average enrichment indices of trace and/or potentially toxic elements (As, Cr, Cu, Ni, Pb, U and Zn) are 1.23 to 1.24 for shale and 1.06 to 1.22 for coal, respectively.

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옥천대 흑색셰일 및 점판암 분포지역 암석-토양-농작물 시스템에서의 As및 관련 원소들의 분산과 이동 (Migration and Enrichment of Arsenic in Rock-Soil-Crop Plant System in Areas Covered with Black Shale and Slates of Okchon Zone)

  • 이지민;전효택
    • 자원환경지질
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    • 제36권4호
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    • pp.295-304
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    • 2003
  • 옥천대의 흑색셰일 및 점판암이 존재하는 덕평-추부 지역의 암석-토양-작물계에서의 As의 부화정도, 분산양상, 환경지구화학적 관점에서 판단되는 잠재적 위해도의 평가를 위하여 암석, 토양 및 농작물시료를 채취하여 INAA, ICP-AES, ICP-MS를 이용하여 As을 포함한 잠재적 특성원소의 화학분석을 수행하였다. 암석분석의 결과 덕평 및 추부지역의 흑색셰일에서 As의 평균 함량은 각각 23 mg/kg, 57 mg/kg 로 전 세계 계일 및 흑색셰일의 평균값보다 부화된 값을 나타하였다. 이외에도 Ba, Cr, Mn, Mo, Ni, Se, U 및 V가 매우 부화된 양상을 보였다. 흑색셰일로부터 유래된 토양중의 As는 덕평지역의 밭토양은 28 mg/kg, 추부지역의 밭토양과 논토양은 33 mg/kg와 23 mg/kg로 농작물에 독성을 줄 수 있는 토양중의 잠재적 독성원소들의 최대 허용한계치(tolerable level) 보다도 부화된 값을 나타냈다. 토양시료들에 대한 As의 함량과 Mo, Se, U, Cu, Sb, Tl 간에는 비교적 좋은 양의 상관관계를 보였다 흑색 셰일 기반암 지역의 토양에서 재배된 농작물 시료에 대한 화학분석 결과, 벼의 줄기와 잎에 As의 축적이 매우 커서 덕평과 추부지역에서 각각 1.14 mg/kg와 1.35 mg/kg의 함량을 보인다. 토양내의 원소 함량과 작물 내로의 흡수정도인 생물학적 흡수계수(BAC, biological absorption coefficient)의 산출결과, As는 벼줄기와 잎>옥수수 잎>고추>콩잎=깻잎>옥수수 줄기>옥수수 열매의 순으로 감소하였으며, As가 열매와 같은 cereal products보다 잎과 식물에 토양으로부터 더 많은 양이 농축된다는 것을 추론학 수 있다.