• 제목/요약/키워드: ZnS:Mn,Cu,Cl

검색결과 52건 처리시간 0.018초

공주제일광산 수계에 분포하는 지하수, 지표수, 토양 및 퇴적물의 환경지구화학적 특성과 중금속 오염 (Environmental Geochemistry and Heavy Matel Contamination of Ground and Surface Water, Soil and Sediment at the Kongjujuil Mine Creek, Korea)

  • 이찬희
    • 자원환경지질
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    • 제32권6호
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    • pp.611-631
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    • 1999
  • Enviromental geochemisty and heary metal contamination at the Kongjueil mine creek were underaken on the basis of physicohemical properties and mineralogy for various kinds of water (surface, mine and ground water),soil, precipitate and sediment collected of April and December in 1998. Hydrgeochemical composition of the water samples are characterized by relatively significant enricant of Ca+Na, alkiali ions $NO_3$ and Cl inground and surfore water, wheras the mine waters are relatively eneripheral water of the mining creek have the characteristics of the (Ca+Mg)-$(HCO_3+SO_4)$type. The pH of the mine water is high acidity (3.24)and high EC (613$\mu$S/cm)compared with those of surface and ground water. The range of $\delta$D and $\delta^{18}O$ values (relative to SMOW) in the waters are shpwn in -50.2 to -61.6% and -7.0 to -8.6$\textperthousand$(d value=5.8 to 8.7). Using computer program, saturation index of albite, calcite, dolomite in mine water are nearly saturated. The gibbiste, kaolinite and smectite are superaturated in the surface and ground water, respectively. Calculated water-mineral reaction and stabilities suggest that weathing of silicate minerals may be stable kaolinite owing to the continuous water-rock reaction. Geochemical modeling showed that mostly toxic heavy metals may exist larfely in the from of metal-sulfate $(MSO_4\;^2)$and free metal $(M^{2+})$ in nmine water. These metals in the ground and surface water could be formed of $CO_3$ and OH complex ions. The average enrichment indices of water samples are 2.72 of the groundwater, 2.26 of the surface water and 14.15 of the acid mine water, normalizing by surface water composition at the non-mining creek, repectively. Characteristics of some major, minor and rate earth elements (Al/Na, K/Na, V/Ni, Cr/V, Ni/Co, La/Ce, Th/Yb, $La_N/Yb_N$, Co/Th, La/Sc and Sc/Th) in soil and sediment are revealed a narrow range and homogeneous compositions may be explained by acidic to intermediate igneous rocks. And these suggested that sediment source of host granitic gneiss colud be due to rocks of high grade metamorphism originated by sedimentary rocks. Maximum concentrations of environmentally toxic elements in sediment and soil are Fe=53.80 wt.% As=660, Cd=4, Cr=175, Cu=158, Mn=1010, Pb=2933, Sb=4 and Zn=3740 ppm, and extremely high concentrations are found are found in the subsurface soil near the ore dump and precipitates. Normalizing by composition of host granitic gneiss, the average enerichment indices are 3.72 of the sediments, 3.48 of the soils, 10.40 of the precipitates of acid mine drainage and 6.25 of the soils near the main adit. The level of enerichment was very severe in mining drainage sediments, while it was not so great in the soils. mineral composition of soil and sediment near the mining area were partly variable being composed of quartz, mica, feldspar, chlorite, vermiculite, bethierin and clay minerals. reddish variable being composed of quartz, mica, feldspar, chlorite, vermiculite, bethierin and clay minerals. Reddish brown precipitation mineral in the acid mine drainage identifies by schwertmanite. From the separated mineralgy, soil and sediment are composed of some pyrite, arsenopyite, chalcopyrite, sphalerite, galena, malachite, goethite and various kinds of hydroxied minerals.

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시설원예 용수 공급을 위한 지하수 정수 요구도 분석 (The Demand Analysis of Water Purification of Groundwater for the Horticultural Water Supply)

  • 이태석;손진관;진유정;이동관;장재경;백이;임류갑
    • 한국산학기술학회논문지
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    • 제21권12호
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    • pp.510-523
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    • 2020
  • 본 연구에서는 시설원예 농가 중 지하수 수질에 문제가 있는 농가와 지하수를 원활히 사용하는 농가의 수질 성분을 분석하고 비교하였다. 이를 통해, 국내 수경재배 시설을 대상으로 지하수 수질에 따라 양액 재배용 원수로 사용 가능성을 평가하였다. 지하수 수질에 문제가 없는 농가의 지하수는 평균적으로 pH 6.61, EC 0.27 dS/m, NO3-N 7.64 mg/L, NH4+-N 0.80 mg/L, PO4-P 0.09 mg/L, K+ 6.26 mg/L, Ca2+ 18.57 mg/L, Mg2+ 4.38 mg/L, Na+ 20.85 mg/L, Cl- 18.10 mg/L, S2- 7.97 mg/L, HCO3- 55.06 mg/L, Fe 0.09 mg/L, Mn 0.01 mg/L, Zn 0.04 mg/L, Cu 0.01 mg/L, B 0.04 mg/L, Si4+ 8.93 mg/L, Mo 0.01 mg/L로 나타났으며, 모두 양액 재배용 원수의 수질기준을 만족하였다. 반면, 지하수 수질에 문제가 있는 농가의 경우 대다수의 항목이 양액재배용 원수의 수질기준을 초과하였다. 이러한 성분분석 결과로 보아 작물재배에 적합하지 않은 수질의 지하수를 정수하여 원수로 사용하는 것은 지하수의 재충전, 토양정화 측면에서 효과가 있다고 판단된다. 본 연구결과를 바탕으로 농업용 정수시스템을 구성한다면 우선처리 대상 항목 및 연계 항목을 추측할 수 있어 설계가 용이할 것으로 판단된다. 또한 이러한 농업용 정수시스템을 정착시킨다면 시설원예 단지에서 직접 지하수를 사용하면서 재충전 및 재이용할 수 있고, 결과적으로 지속가능한 농업과 국토 정화에 이바지 할 수 있는 기본 정보를 제공한다.