• 제목/요약/키워드: mine drainage discharge

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일광 폐광산 갱내에서 유래된 산성광산배수의 중금속 유출특성 (Discharge Characteristics of Heavy Metals in Acid mine Drainage from the Abandoned Ilgwang Mine)

  • 강동환;권병혁;유훈선;김선옥
    • 지질공학
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    • 제20권1호
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    • pp.79-87
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    • 2010
  • 본 연구지역에서 2009년 3월부터 9월 사이에 5개 지점(배경수(BW), 산성광산배수(AMD0, AMD1, AMD2, AMD3))에서 수온, pH, Eh, EC, DO 성분 등이 현장에서 6회 관측되었으며, 폐광산 갱내 출구부(AMD0) 지점에서는 유량이 측정되었다. 일광 폐광산에서 유출되는 산성광산배수는 pH 3 이하의 강산성수이며, Eh 성분은 400~600 mV의 범위이었다. 산성광산배수의 EC 값은 주변 배경수에 비해 10배 이상 높았으며, DO 성분은 유출지점 하류부로 갈수록 대기와의 접촉을 통해 그 값이 증가되었다. 산성광산배수 내 중금속 이온의 농도는 Fe > Cu > Zn > Mn > As > Cd 순이었으며, Fe 성분의 농도가 81.870~474.30 mg/L 로서 가장 높았다. 중금속 성분별 최대농도 관측시기는 5월(As, Cd), 6월(Fe), 7월(Cu, Zn, Mn) 이었으며, 최소농도는 4월(Cd, Mn)과 9월(Fe, Cu, Zn, As)에 관측되었다. 산성광산배수에 용존된 중금속의 유출질량은 Fe 성분 53.44 kg, Cu 성분 6.25 kg, Zn 성분 5.26 kg, Mn 성분 2.13 kg, As 성분 0.14 kg, Cd 성분 0.04 kg 정도이었다. 폐광산에서 갱내에서 1일 동안 유출되는 6개 중금속의 전체 질량은 67.26 kg 이었으며, Fe 성분이 전체 유출질량의 79% 정도를 차지하고 있었다.

Pilot 규모의 경사판 침전지 시험을 통한 국내 석탄광산배수내 부유물질의 지구화학적 반응특성 및 조정영향 (Geochemical Reaction Processes and Controls on the Coal Mine Drainage using Pilot-scale Inclined Clarifiers)

  • 이상훈;오민아;이재영;권은혜;김도영;김덕민
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제18권7호
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    • pp.73-80
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    • 2013
  • Fine suspended solids from coal mine drainage were treated in the treating plant, using two different pilot-scale inclined clarifiers: radial and lamella types. Suspended solids in the mine drainage were monitored along with other geochemical factors, and metal contents. Fe and Mn are the main chemical components in the drainage, which exist predominantly as total metal forms, whereas dissolved portion is negligible. The raw mine drainage is subject to physical and chemical treatment using $CaCO_3$ and NaOH, therefore the suspended solids are thought to be composed of Fe and Mn precipitates, possibly $Fe(OH)_3$, along with carbonate precipitates. The elemental composition of precipitates are confirmed by SEM-EDS analysis. As nearly all the dissolved ions were precipitated in the primary process by $CaCO_3$, no further aeration or prolonged oxygenation are of necessity in this plant. Adoption of inclined clarifier proved to be effective in treating fine suspended solids in the current plant. Successful application of the inclined clarifier will also be beneficial to improve the current treating process by excluding the current application of chemical agent in the first stage. The final effluents from the pilot plant meet the national standards and the low dissolved Fe and Mn contents are expected not to cause secondary precipitation after discharge.

강원도내 갱내 산성폐수의 수질 특성 (Characteristic of Acid Mine Drainage from Abandoned Mines in Kangwon-Do)

  • 박영구;박준석;김승호
    • 한국응용과학기술학회지
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    • 제21권3호
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    • pp.252-258
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    • 2004
  • This study was performed to evaluate characteristic of acid mine drainages (AMD) from abandoned mines in Kangwon-Do. Youngdong abandoned mine, and Soo and Hambaek abandoned mines in Hamtae were selected for this study. Average pHs of the mine drainages were 3-6.5, and those of Youngdong and Hambaek drainages were very acidic as 3-4. $SO_4^{-2}$ of Youngdong and Hambaek drainages were over 1,600 mg/L, which higher than average value (845 mg/L) of acid mine drainages in nationwide. Cu, Mn, and As concentrations of the drainages were lower than ‘Pollutant Discharge Permission'. Fe concentrations of Youngdong and Hambaek drainages were approximately 96 mg/L, which were two times higher than average value in nationwide. From correlation analysis using SPSS, significant correlation was not discovered between 'contaminants' analyzed in three acid mine drainages.

임기광산 폐석적치장의 수리침투특성 분석

  • 지상우;정영욱;임길재
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2004년도 임시총회 및 추계학술발표회
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    • pp.394-398
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    • 2004
  • This study was carried out to plan the prevention of the generation and discharge of acid mine drainage (AMD). Hydraulic characteristics were tested with the disk tension infiltrometer around the waste rock dump of the Imgi abandoned pyrophyllite mine in Busan, Korea. Because the waste rock dump of the Imgi mine have very low infiltration rate, most of rain was expected flowing into adjoined stream through the slope or plane as surface flow rather then throughflow or ground water. But slopes of the waste rock dump have many 'V' type erosion gullies and consist multi-layers. These gullies and multi-layers have coarse clastic particle layer which have very large hydraulic conductivity. So through these coarse clastic particle layers a large part of rain flow into ground. And also these layers could be played a function of aeration path, which induced oxidation of sulfide minerals and generation of AMD continuously.tinuously.

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오봉댐 유역의 폐탄광에 의한 오염특성과 감소방안 연구 (Investigation on the Contamination of the Vicinity of Abandoned Coal Mines Located Near the Obong Darn and Preventive Measures)

  • 박선환;장윤영;정정호;손정호;박석효
    • 환경영향평가
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    • 제16권2호
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    • pp.143-156
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    • 2007
  • This study has researched the management status and the pollution level of water, soil, stream sediments of 11 abandoned coal mines out of a total of 12 within Obong-Dam area except Bukyung mine, which was submerged when constructing Obong-Dam, and selected areas which are in needs to have pollution control facilities in the first place. From the results of examination on the runoff at the waste rock pile and mineheads, the runoff from Sueun mine (pH, Fe, Al), Samwon mine (pH, Al), Wangdo mine (pH, Al), Mose mine (pH, Fe, Al) and Daeryeong mine (pH) exceeded the permissible discharge standards of the water quality, but the water at merging point with Obong-Dam after joined with Doma branch satisfied both Water Quality Standards and Drinking Water Quality Standards. In regard to groundwater contamination, it is found that areas where exceeded the Drinking Water Quality Standards are Wangdo mine (pH), Jangjae mine (pH, Zn), Daeryeong mine (pH) whereas all areas satisfied Soil Contamination Warning Standards of Soil Environmental Conservation Law. When comparing a research result on underwater sediments of branches of abandoned mines to the EPA Guidelines for classification of great lakes harbor sediments, Dongguk Gaerim (Fe), Jungwon mine (Fe), Daebo mine (Mn), Samwon mine (Mn) and Daeryeong mine (Mn) showed mid-level of contamination, whereas Sueun (Fe, Mn), Daebo mine (Fe), Woosung mine (Fe, Mn), Wangdo mine (Fe, Mn), Mose mine (Fe) and Daeryeong mine (Fe) showed high-level of contamination. In addition, contamination levels of underwater sediments in Wangsan and Doma branch where abandoned mine's branches merge together, Wangsan branch showed no contamination at all whereas Doma branch shows mid-level of contamination which reflect the Doma branch is affected by waste rock pile and minehead runoff of the abandoned mines in the Doma branch area. It is concluded that Mose mine and Sueun mine required treatment of acid mine drainage. and Wangdo, Jungwon, and Samwon mines were in need of mine tailing and erosion control work. The Samwon mine additionally required a control system for closed minehead runoff. Although the Samwon mine reached a high concentration of Al, Mn $Ca^{2+}$, $SO{_4}^{2-}$ in the runoff, the levels decreased after it was combined with a tributary. It has been concluded that after further monitoring of the cause of pollution, a preventive measure system may be needed to be built.

폐광산지역의 오염특성 조사와 평가를 위한 지구화학적 접근방법 (Geochemical Approaches for Investigation and Assessment of Heavy Metal Contamination in Abandoned Mine Sites)

  • 이평구;조호영;염승준
    • 자원환경지질
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    • 제37권1호
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    • pp.35-48
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    • 2004
  • 본 논문에서는 폐광산지역의 오염특성 조사와 평가를 위한 지구화학적 접근방법에 대하여 정리ㆍ기술하였다. 폐광산지역의 주요 오염원은 갱내수, 광석, 광미 및 선광을 위해 사용한 화학약품 등이고 산성광산배수의 배출, 광산폐기물의 유실, 유해성 침출수의 배출, 광미와 분진의 분산 등에 의해 중금속이 이동/확산되어 주변토양, 퇴적물, 지표수, 지하수, 생태계에 광역적/지속적으로 심각한 영향을 미친다. 따라서 오염원, 주변 토양, 지표수, 지하수 등에 대한 화학분석, 광물학적분석, 광산산성배수 예측실험, 물리/지화학탐사와 같은 현장실험 등의 방법을 이용한 조사를 통해 폐광산이 주변 환경에 미치는 잠재적이고 실제적인 영향이 조사$.$평가 되어야한다.

가행광산 지역의 비점오염물질 유출특성 (Characteristics of NPS Pollution from a Coal Mining)

  • 서지연;신민환;원철희;최용훈;정명숙;임경재;최중대
    • 한국물환경학회지
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    • 제26권3호
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    • pp.474-481
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    • 2010
  • This study was conducted to describe the characteristics of Non-point source (NPS) Pollution discharge from a coal mining area in Korea. The study areas is located on the Dogye site, Samchuk, Kangwon Province Coal Corporation and the Jangsung site, Taebaek, Kangwon Province Coal Corporation. The monitoring system was installed at a drainage channel and water samples and rainfall events were collected during March 2008 to February 2009. The collected water samples were analyzed with respect to SS, BOD, $COD_{Cr}$, $COD_{Mn}$, T-N, T-P, and TOC, respectively. It was observed that the runoff and water quality were largely influenced by mine drainage. Also a significant relationship was observed from the correlation between flow and water quality, flow and NPS. And estimated Event Mean Concentration (EMC), NPS pollution loads were Dogey coal mine and Taeback coal mine respectively. As the study progresses in the future, runoff and pollution loads will be updated.

바이오매트 형성에 의한 산성광산배수 내 중금속 유출질량 제거효율 (Removal Efficiency of Heavy Metals in Acidic Mine Drainage from Microbial Mats)

  • 유훈선;권병혁;김박사;소윤환;강동환
    • 한국환경과학회지
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    • 제21권6호
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    • pp.667-676
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    • 2012
  • This research investigated to reduce mass of heavy metals in AMD(acid mine drainage) by microbial mats formed on the channel bed. As, Cd, Cu, Fe, Mn and Zn components were monitored in water and microbial mats, at three points (AMD1, AMD2 and AMD3), in a total of six times. Average daily discharge mass of heavy metals was highest in July, Fe component contained more than 76% of total discharge mass. Discharge mass of heavy metals of AMD and heavy metal contents in microbial mats decreased with downstream at channel. Heavy metal components that average daily discharge mass is over 0.5 kg were Fe, Cu and Zn, and they were highest in July. Average removal efficiency of heavy metals in AMD was highest about 21% in Fe, this microbial mats were due to form from precipitation of Fe component in AMD by aerobic iron bacteria. Relative content for As component in microbial mats than AMD was over 16 times, this As components were due to absorb at iron oxide and iron hydroxide on the surface of microbial mats.

삼보광산 수계 하천수질 및 퇴적토의 오염도 평가 (Contamination Assessment of Water Quality and Stream Sediments Affected by Mine Drainage in the Sambo Mine Creek)

  • 정구복;권순익;홍성창;김민경;채미진;김원일;이종식;강기경
    • 한국환경농학회지
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    • 제31권2호
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    • pp.122-128
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    • 2012
  • 폐금속 광산에서 유출되는 광산배수로 인한 하류 수계의 환경오염 영향을 검토하기 위하여 삼보광산 하류 수계 내 하천수질, 퇴적토양 및 인근 논토양에 대한 중금속 오염도를 평가한 결과는 다음과 같다. 삼보광산 주변 광미댐 침출수의 Cd 평균 농도(0.018~0.035 mg/L)는 우리나라 농업용수 수질기준(0.01 mg/L)을 초과하였고, 미량성분 중 Zn, Fe 및 Mn 함량도 FAO의 관개용수 최대 권고치(Zn 2.0, Fe 5.0, Mn 0.2 mg/L)를 초과 하였다. 광산 하류 논토양의 Pb, Zn 평균함량은 우리나라 농경지의 토양오염 우려기준(Pb 200, Zn 300 mg/kg)을 초과 하였고, 중금속 오염지수 평균치는 상리가 1.2로 내리지역0.45보다 높게 나타났다. 광산 하류 수계 내 퇴적토의 Cd, Pb 및 Zn 함량은 우리나라 하천용지의 토양오염 우려기준(Cd 10, Pb 400, Zn 600 mg/kg)을 초과하였다. 또한 퇴적토의 중금속 오염지수(PI)는 상리지역 0.98~7.32, 내리지역 0.34~5.27로 지점별 편차가 컸으며, 하류 1km 지점 합류지점(SN-1, SN-2)까지 오염된 것으로 나타났다. 퇴적토의 부화계수(EFc) 평균치는 Cd>Pb>Zn>As>Cu>Cr>Ni 순으로 지점간의 편차가 큰 것으로 나타났다. 퇴적토의 중금속별 지화학적농축계수(Igeo)는 지점별로 약간의 차이는 있으나 Zn>Cd>Pb>Cu>As>Cr>Ni 순으로 높았으며, 특히 Zn의 경우 광산 침출수 영향을 받은 퇴적토에서 경보오염에서 위험오염(Igeo 3.1~6.2) 상태로 심하게 오염된 것으로 나타났다. 결과적으로 삼보광산 하류 하천수질 및 퇴적토의 오염도 평가를 종합해 볼 때 광산 침출수의 영향이 하류 수계 1 km 이상(SN-1, SN-2)까지 미치는 것을 확인할 수 있었다.

삼보광산 하류 수계의 계절별 수질변화와 오염도 평가 (Monitoring of Seasonal Water Quality Variations and Environmental Contamination in the Sambo Mine Creek, Korea)

  • 정구복;이종식;김원일;류종수;윤순강
    • 한국환경농학회지
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    • 제27권4호
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    • pp.328-336
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    • 2008
  • 폐금속 광산에서 유출되는 광산배수로 인한 수계의 수질오염 영향을 파악하기 위하여 삼보광산 광미댐 침출수 및 하류 하천수의 화학성분 및 미량금속을 분석 검토한 결과는 다음과 같다. 삼보광산 주변 광미댐 침출수의 pH 값은 $5.8{\sim}6.9$ 사이로 중성에 가까운 약산성이였다. 주 광미댐 침출수의 주요 용존 화학성분 평균치는 EC 1.77 dS/m, $SO_4^{2-}$ 929, $K^+$ 14.6, $Ca^{2+}$ 263.3, $Mg^{2+}$ 46.9 mg/L 이였다. 특히 화학성분 중 EC 값과 $SO_4^{2-}$ 농도는 벼의 농업용수 피해한계 농도 (EC 1.0 dS/m, $SO_4^{2-}$ 54.0 mg/L)를 상회하였다. 광산 침출수의 Cd 평균 농도($0.016{\sim}0.021\;mg/L$)는 농업용수 수질기준인 0.01 mg/L을 초과하였고, Cd 최고치는 수질기준의 4배정도 높았다. 또한 미량금속 중 Zn, Fe 및 Mn 농도는 FAO의 관개용수 최대 권고치(Cd 0.01, Zn 2.0, Fe 5.0, Mn 0.2 mg/L)를 초과하였고, 특히 Zn 및 Mn 평균 농도는 권고치의 $8{\sim}26$배, $45{\sim}313$배 이상 높았다. 본 조사결과에서 광산배수에 의한 수계의 수질오염은 하류 1 km 이상까지 영향을 미치는 것으로 나타났다. 광산배수와 하천수의 수질항목 중 pH 값은 용존 Cd, Zn, Al 및 Mn 농도와 부의 상관을, 주 오염성분인 EC 값, $SO_4^{2-}$$Ca^{2+}$ 농도는 각각의 Cd, Zn, Al 및 Mn 농도와 고도의 정의 상관을 보였다. 또한 주요 화학성분 중에서는 pH 값이 EC 값 및 $SO_4^{2-}$ 농도와 부의 상관을 보였다.