• 제목/요약/키워드: Acidic Mine Drainage

검색결과 38건 처리시간 0.019초

납석광산에서 발생하는 토양 및 수질오염 실태 : 부산광역시 회동수원지 상류 지역 (The Soil and Water Pollution caused by the Weathering of Pyrophyllite Deposits: Upstream Part of Hoidong Water Reservoir in Pusan)

  • 박맹언;김근수
    • 한국환경과학회지
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    • 제7권2호
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    • pp.149-156
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    • 1998
  • Enoronmental problems caused by certain geologic conditions Include pollution of soil by heavy metal, acidization of souls , acid mine drainage, Pound-water pollution, and natural radioactivity, as well as zoo-logical hazards such as landslide and subsidence. The acrid mine drainage contains large amount of heavy metals nO, therefore. cause serious pollution onto the nearby drainage systems and soils. In spite of this prospective environmental danger, few studies have been done on the acid mine drainage derived from non-metallic ore deposits such as pyrophyllitefNapseok) deposits. The sudo-bearing pyrophyllite ores, alteration zones, and mine talllngs of pyrophylllte deposits produce acrid mine drainage by the okidation of weathering. Compared to the fresh host rocks, the ores and altered rocks of pyrophyllite deposits produce acidic solution which contain higher amount of heavy metals because of OeP lower buffering capacity to acrid solution. The pus of urine water and nearby stream water of pyrophyllite deposits are 2.1~3.7, which are strong- ly acidic and much lower than that (6.2~7.2) of upstream water and than that (6.8~7.6) of the stream water derived from the non-mineralized area. This study reveals that this acrid mine drainage can affect the downstream area which is 8km far from the pyrophyllite deposits, even though the drain Is diluted with abundant non-contaminated river water This suggmists that not only acid mine drainage but also the sulfide-bearing sediments originated from the pyrophyllite deposits move downstream and form acidic water through continuous oxidation reaction. The heavy metals such as Pb, Zn, Cu, Cd, Nl, Mn and Fe are enriched In the mine water of low pH, and their contents decrease as the pH of mine water Increases because of the Influx of fresh stream wainer. SoUs of the Pyrophyulte deposits are characterized by high contents of heavy metals. The stream sediments containing the yellowish brown precipitates formed by neutralization of acid mine drainage occur in all parts of the stream derived from the pyrophyllite deposits, and the sediments also contain high amounts of heavy metals. In summary, the acid mine drainage of the pyrophyllite deposits is located in the upstream part of Hoidong water reservoir in Pusan contains large amounts of heavy metals and flows into the Holdong water reservoir without any purification process. To protect the water of Holdong reservoir, the acid mine drainage should be treated with a proper purification process.

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폐광 전후 삼탄 광산배수의 수질특성과 의의

  • 정영욱;강상수;임길재;홍성규;조원재;조영도;전호석;민정식
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2003년도 추계학술발표회
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    • pp.422-425
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    • 2003
  • This study was carried out to apprehend the variation of quality of mine drainage in the abandoned Samtan coal mine. After closure of coal mine, although still pumping, water level in underground was raised to loom and the concentration of some elements such as Fe and Mn was elevated. At present, the worst pollution source in this area is too the acidic leachate drained from uncovered mine waste impoundment. The flow rate of mine drainage from the adit is ave. about 20,000t/d. If water were flooded and deteriorated due to stopping pumping, the impact of the mine drainage on the stream around the abandoned mine would be more severe. Therefore, It is considered that the prediction of water quality of mine drainage from the adit after stopping pumping will be very important with a view to establishing countermeasures.

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Microbial Amelioration of Acid Mine Drainage Impaired Soil using the Bacterial Consortia of Klebsiella sp. and Raoultella sp.

  • Park, Seon Yeong;Lee, Gi Won;Kim, Chang Gyun
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제26권1호
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    • pp.34-44
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    • 2021
  • Acid mine drainage (AMD) resulting from pyrite oxidation in mining areas, subsequently leads to soil acidification accompanied by lowering pH and high concentration of metals and metalloids in its surrounding environment. Regarding to this, the microbial amelioration has been considered as a promising option for a more cost-effective and eco-friendlier countermeasure, compared to the use of alkaline chemicals. This study was aimed to evaluate influencing factors in microbially-mediated amelioration of acidic soil spiked by simulated AMD. For this, microcosm experiments were conducted by acid-neutralizing bacterial consortium (dominated by Klebsiella sp. and Raoultella sp.) under the various conditions of AMD spikes (0-2,500 mg SO42-/L), together with acidic mine soil (0-100 g) or sphagnum peat (0-5 g) in the 200 mL of nutrient medium. The employed bacterial consortium, capable of resisting to high level of sulfate concentration (up to 1,500 mg SO42-/L) in low pH, generated the ammonium while concomitantly reduced the sulfate, subsequently contributing to the effective soil stabilization with an evolution of soil pH up to neutral. Furthermore, it demonstrates that suitable condition has to be tuned for successful microbial metabolism to facilitate with neutralization during practical application.

석탄광의 산성갱내배수 처리.이용.제어에 관한 연구 -한국형 특수갱배수 정화장치 시작품 현지적용실험- (Study on the Treatment, Utilization and Control of the Acid Mine Drainage for Colliery - An on-site test on the Applicability of a Korean-type Prototype for Mine Drainage Purification-)

  • 이춘택
    • 기술사
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    • 제19권4호
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    • pp.11-21
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    • 1986
  • Mine drainage from coal mines is mostly acidic, polluted and/or contaminated, even if its quantity has increased substantially during recent days. This causes two kinds of problems arising at mining districts; one is the environmental disruption and the other is insufficient water supply for living, employee's bathing and industrial purposes. In order to mitigate the aforementioned problems, a specific equipment of Korea type for mine drainage purification has been developed and its prototype manufactured, followed by its applicability tests implemented at mine site. The results of the tests indicates that the new equipment developed is much lower than and economical compared to, other existing neutralization facilities at home and abroad in capital investment at installation stage, the consumption of neutralizing chemicals at operation stage and the requirements of installation site. Whangji area where the prototype water treatment equipment is installed has been sustaining a short supply of usable water, especially in dry seasons and supplementing about 40㎥ of water brought from a location farther than 4km in distance to meet water requirements. The prototype water treatment equipment is however considered capable of providing compressor cooling water in sufficient amount from winter season In the future.

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거풍 폐광산 폐기물 적치장 지하수 및 침출수 수질의 시기별 변화 (Seasonal Variations of Water Quality within the Waste Impoundments of Geopung Mine)

  • 안주성;임길재;정영욱
    • 자원환경지질
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    • 제42권3호
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    • pp.207-216
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    • 2009
  • 폐광지역 광산폐기물 적치장에서 발생하는 산성 침출수 및 이의 영향을 직접적으로 받는 하부 지하수의 수질변화 양상을 자동계측자료 및 시기별 시료 분석으로 평가하였다. 연구지역은 충북 옥천군의 폐광산인 거풍광산이며 한차례 복토작업이 이루어졌으나 산성배수 발생은 지속되었다. 건기의 지하수 시료는 강산성(pH 3.3${\sim}$4.6) 및 높은 총용존고형물질 함량(338${\sim}$3330 mg/L)으로서 전형적인 산성배수의 특성을 보였으며 우기에 중금속 함량 증가(TDS 414${\sim}$4890 mg/L)와 pH 2.7${\sim}$3.6으로 보다 강한 산성을 나타내었다. 지표침출수 시료도 유사한 수질변화양상을 보이며 강우시 지표 유거수는 폐석과의 직접 반응으로 강산성(pH 3.0${\sim}$3.4)을 나타내었다. 시료내 주성분 및 중금속원소들 간의 상관성이 전반적으로 높게 나타났으며 개별 성분들의 건우기 함량 증감양상 외에 전체 시기별 수질조성의 큰 변화는 보이지 않았다. 연구지역 광산폐기물 표면에는 금속 수화황산염 등의 다양한 2차 염류가 풍부하게 생성되어있으며 이들의 강우에 용해되어 침출수 및 하부 지하수의 수질에 직접적으로 영향을 주는 것으로 판단한다. 향후 보다 심각한 기후조건에서도 우수한 효율을 나타낼 수 있는 복토 및 처리기법이 요구된다.

폐광산 배수와 퇴적물의 중금속 오염과 생물독성 평가 (Assessment of Heavy Metal Contamination and Biological Toxicity of Mine Drainages and Sediments from Abandoned Mines)

  • 이현준;김효진;오현주;조기종;김정규;정진호
    • 한국물환경학회지
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    • 제23권2호
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    • pp.287-293
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    • 2007
  • Heavy metal contamination and biological toxicity of mine drainages and sediments in abandoned mines were studied. Mine drainages had pH at a range of 2.94~7.86, and contained heavy metals at a toxic level. For coal mines, toxicity of mine drainage to Daphnia magna was attributable to acidic pH. In addition to the low pH, suspended heavy metals such as Zn and Cu contributed to toxicity of mine drainages at abandoned metalliferous mines. All mine sediments studied in this work showed biological toxicity to Chironomus riparius, having mortality at a range of 15~60%. However, its relationship with physicochemical properties including heavy metal content of the sediments was not statistically explained. Exceptionally clay ($< 2{\mu}m$ particle) content was negatively correlated with the biological toxicity for sediment samples collected at the same abandoned mines.

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.

국내 폐 광산 환경오염 실태 및 처리 현황 (Environmental Pollution and Reclamation in the Abandoned Mines in Korea)

  • 정영욱;민정식
    • 한국지구물리탐사학회:학술대회논문집
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    • 한국지구물리탐사학회 2001년도 정기총회 및 제3회 특별지포지움
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    • pp.75-89
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    • 2001
  • 국내 폐석탄 광산은 334 개, 폐금속 광산은 약 900 여개로 알려져 있다. 이러한 폐광산에서는 환경오염과 지반침하 등 안전문제가 발생하고 있다. 폐광산에서 환경오염은 주로 폐갱도, 채굴적 그리고 광산폐기물 적치장에서 유출되는 산성광산배수 문제와 중금속이 함유된 광산폐기물의 침식 및 유실로 인한 주변 토양오염 등을 들 수 있다. 폐석탄 광산 및 폐금속 광산의 갱내수를 조사 분석한 결과, 일부 폐광산 갱내수들은 산성수이며 금속성분이 고농도로 함유된 폐수로 나타나고 폐탄광 배수의 수질은 지역적으로 차이가 있다. 폐광산배수의 정화는 물리화학적 처리시 막대한 운영비가 소요되므로 폐갱도 석회석 충전과 소택지 등 자연정화처리법으로 처리되고 있다. 현재 폐금속 광산 폐기물은 환경오염 방지를 위해 주로 매립법으로 복구되고 있다.

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폐탄광 배수에 의해 오염된 하천의 화학적 특성과 미생물 활성 (KDICical Characteristics and Microbial Activity of Streams Contaminated by The Abandoned Coal Mine Drainage)

  • Cho, Kyoung-Suk;Ryu, Hee-Wook;Chang, Young-Keun
    • The Korean Journal of Ecology
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    • 제19권5호
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    • pp.365-373
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    • 1996
  • A survey was carried out to investigate the contamination of streams by the acid mine drainage originated from the abandoned coal mines and coal refuse piles. The physico-KDICical characteristics such as pH, sulfate and elements concentrations in the water and sediment in streams were analyzed. Microbial activity in the sediment was evaluated by measuring dehydrogenase activities. At sites contaminated by acid mine drainage, the pH of the water and sediment declined to acidic range from neutral due to the accumulation of sulfate. The dehydrogenase activity ranged from 12 to $170{\mu}g-TPF{\cdot}g-dry\;soil^{-1}{\cdot}24h^{-1}$ at the contaminated sites, whereas uncontaminated sites had activities of 1,176~4,259 ${\mu}g-TPF{\cdot}g-dry\;soil^{-1}{\cdot}24h^{-1}$. The dehydrogenase activity was significantly affected by low pH of the sediment, indicating that high concentration of sulfate inhibited microbial activity. The concentrations of heavy metals such as Pb and Fe in contaminated sdeiment (37~46 ppm Pb; 46,000~464,000 ppm Fe) were much higher than those in the uncontaminated sediment. The concentration of Al in the contaminated water acidfied by coal mine drainage was in the range of 11 to 42 ppm. Compared with those in the uncontaminated sediment, the concentrations of Mn, Mg and Ca in contaminated sediment were low because of the leaching from soil to water by the acidfied stream water.

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Estimation of Alkali Overdosing in a Lime Neutralization Process for Acid Mine Drainage

  • Cheong, Young-Wook;Cho, Dong-Wan;Lee, Jin-Soo;Hur, Won
    • 공업화학
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    • 제33권1호
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    • pp.109-112
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    • 2022
  • Lime has been used for the neutralization of acidic waste because it is cheap and available in large quantities. The resulting sludge often contains a considerable amount of unreacted lime due to alkali overdosing, even during automatic neutralization processes, which mainly arises from the poor solubility of lime. The sludge cake from lime neutralization of Ilkwang Mine also contained high percentages of calcium and magnesium. The elemental content of the sludge cake was compared with those obtained from a simulation of the lime neutralization facility installed at Ilkwang Mine. A Goldsim® model estimated the degree of lime overdosing to be 19.1% based on the fractions of ferrous oxide. The analysis suggests that resolubilization of aluminum hydroxide could occur in the settling basin, in which pH exceeded 10 due to the continued dissolution of the overdosed lime. The present study demonstrated that chemical analysis of sludge combined with process simulation could provide a reasonable estimate of mass balance and chemistry in a neutralization facility for acid mine drainage.