• Title/Summary/Keyword: Mine

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Evaluation of Cu Removal from Mine Water in Passive Treatment Methods : Field Pilot Experiments (자연정화 기반의 현장 파일럿 실험을 통한 광산배수 구리 정화효율 평가)

  • Oh, Youn Soo;Park, Hyun Sung;Kim, Dong Kwan;Lee, Jin Soo;Ji, Won Hyun
    • Economic and Environmental Geology
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    • v.53 no.3
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    • pp.235-244
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    • 2020
  • Copper (Cu), one of the main contaminants in the mine drainage from the closed mine area, needs to be removed before exposed to environment because of its toxicity even in the low concentration. In this study, passive treatment based field pilot experiments using limestone and compost media were conducted during 9 months for enhancing Cu removal efficiency of the mine water treatment facility of S mine located in Goseong, Gyeongsangnam-do in South Korea. The pH increase and Cu removal efficiency showed high value at Successive Alkalinity Producing System ( SAPS) > Reducing and Alkalinity Producing System (RAPS) > limestone reactor in a sequence. The compost media using in SAPS and RAPS contributed to raise pH by organic material decomposition with generating alkalinity, thus, Cu removal efficiency increased. Also, experimental results showed that Cu removal efficiency was proportional to pH increase, meaning that pH increase is the main mechanism for Cu removal. Moreover, Sulfate Reduction Bacteria (SRB) was identified to be most activated in SAPS. It is inferred that the sulfate reduction reaction also contributed to Cu removal. This study has the site significance in that the experiments were conducted at the place where the mine water generates. In the future, the results will be useful to select the more effective reactive media used in the treatment facility, which is most appropriate to remediate mine water from the S mine.

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

  • 이평구;조호영;염승준
    • Economic and Environmental Geology
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    • v.37 no.1
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    • pp.35-48
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    • 2004
  • This paper provides a comprehensive overview of geochemical approaches for investigating and assessing heavy metal contamination in abandoned mine sites. Major sources of contaminants at the abandoned mine sites are mine water, waste rocks, tailings, and chemicals used in beneficiation and mineral processing. Soil, sediment, surface and ground water, and ecological system can be contaminated by heavy metals, which are transported due to erosion of mine waste piles, discharge of acid mine drainage and processed water, and dispersion of dust from waste rocks and tailings. The abandoned mine sites should be characterized using various methods including chemical analysis, mineralogical analysis, acid generation prediction tests, leaching/extraction tests, and field tests. Potential and practical environmental impacts from the abandoned mines should be assessed based on the site characterization.

A Feasibility Assessment of CMDS (Coal Mine Drainage Sludge) in the Stabilization of Mercury Contaminated Soil in Mine Area (광산지역 수은 오염토양 안정화를 위한 석탄광산배수슬러지의 적용성 평가)

  • Koh, Il-Ha;Kwon, Yo Seb;Moon, Deok Hyun;Ko, Ju In;Ji, Won Hyun
    • Journal of Soil and Groundwater Environment
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    • v.25 no.1
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    • pp.53-61
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    • 2020
  • This study assessed the feasibility of coal mine drainage sludge (CMDS) as a stabilizing agent for mercury contaminated soil through pot experiments and batch tests. In the pot experiments with 43 days of lettuce growth, the bioavailability of mercury in the amended soil and mercury content of the lettuce were decreased by 46% and 50%, respectively. These results were similar to those of the soil amended with the sulfide compound (FeS) generally used for mercury stabilization. Thus, CMDS could be an attractive mercury stabilizer in terms of industrial by-product recycling. Batch tests were conducted to examine mercury fractionation including reactions between the soil and acetic acid. The result showed that some elemental fraction changed to strongly bounded fraction rather than residual (HgS) fraction. This made it possible to conclude that mercury adsorption on oxides in CMDS was the major mechanism of stabilization.

Distribution of heavy metals and cyanide in tailings, soils, and stream sediments around Gubong disused mine (구봉광산 주변 토양에서의 중금속과 시안의 분포)

  • 김선태;윤양희;박제안;심의섭
    • Journal of Korea Soil Environment Society
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    • v.4 no.1
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    • pp.35-47
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    • 1999
  • Mine tailings, soils. stream sediments around Gubong disused mine were analyzed in order to investigate their distribution and pollution levels of heavy metals and cyanide. The average contents of As, Cd, Cu. Hg, Pb, Zn, and CN ̄ in mine tailings were 6.93$\times$$10^{3}$, 56.9, 209, 5.03, 3.25$\times$$10^{3}$, 1.89$\times$$10^{3}$, 21mg/kg respectively. The pollution indices that calculated by the tolerance level of Kloke were 42~95 and the pH values were slightly alkaline in mine tailings. The contents of heavy metals and cyanide in field soils near the mine were higher than the paddy soils. The contents of heavy metals in the stream sediment were up to that of the tailings, so contamination from the mine tailings were serious.

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Exposure and human risk assessment of toxic heavy metals on abandoned metal mine areas

  • Lee Jin-Soo;Chon Hyo-Taek
    • 한국지구물리탐사학회:학술대회논문집
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    • 2003.11a
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    • pp.515-517
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    • 2003
  • In order to assess the risk of adverse health effects on human exposure to arsenic and heavy metals influenced by past mining activities, environmental geochemical surveys were undertaken in the abandoned metal mine areas (Dongil Au-Ag-Cu-Zn, Okdong Cu-Pb-Zn, Songcheon Au-Ag, Dongjung Au-Ag-Pb-Zn, Dokok Au-Ag-Cu and Hwacheon Au-Ag-Pb-Zn mines). Arsenic and other heavy metals were highly elevated in the tailings from the Dongil, the Songcheon and the Dongjung mines. High concentrations of heavy metals except As were also found in tailings from the Okdong, the Dokok and the Hwacheon mines. These significant concentrations can impact on soils and waters around the tailing dumps. Risk compounds deriving from mine sites either constitute a toxic risk or a carcinogenic risk. The hazard index (H.I.) of As in the Dongil, the Okdong, the Songcheon and the Hwacheon mine areas was higher value more than 1.0. In the Okdong and the Songcheon mine areas, H.I. value of Cd exceeded 1.0. These values of As and Cd were the highest in the Songcheon mine area. Therefore, toxic risks for As and Cd exist via exposure (ingestion) of contaminated soil, groundwater and rice grain in these mine areas. The cancer risk for As in stream or ground water used for drinking water from the Songcheon, the Dongil, the Okdong, the Dongjung and the Hwacheon mine areas was 3E-3, 8E-4, 7E-4, 2E-4 and 1E-4, respectively.

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A Study on the Field test of the Ready-mixed Shotcrete using in the Large-scale Mine (광산 대규격 갱도에 대한 레디믹스트 숏크리트의 현장 적용성 평가)

  • Kim, Dong-Min;Lee, Heung-Soo;Shin, Hong-Jun;Kang, Dong-Jun
    • Proceedings of the Korean Geotechical Society Conference
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    • 2009.09a
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    • pp.1511-1516
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    • 2009
  • In recent years, the large-scale shaft have been appling in domestic mine for mass production using a large machine, the safety of mine also have been increasing. And the new trial that shotcrete of tunnel field was apply to mine support was progressed. But, the conditions of domestic mine was different from that of tunnel, so, the batch plant of tunnel could not be installed in mine field because of low economical efficiency and difficulty for selection of site. Ready-mixed Shotcrete that mixed with high quality materials and could be controled shotcrete quality is producted in plants and transported to field, so do not need to batch plant. In this study, The Field test of the Ready-mixed Shotcrete was performed in the large-scale mine and was compared with the quality of Field mix shotcrete. As the result of the Field test, compressive strength and rebound of Ready-mixed Shotcrete were superior to these of Field mix shotcrete.

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

  • Lee, Hyun-Joon;Kim, Hyo-Jin;Oh, Hyun-Ju;Cho, Kijong;Kim, Jeong-Gyu;Jung, Jinho
    • Journal of Korean Society on Water Environment
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    • v.23 no.2
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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.

Determining the reuse of metal mine wastes based on leaching test and human health risk assessment

  • Ju, Won Jung;Hwang, Sun Kyung;Jho, Eun Hea;Nam, Kyoungphile
    • Environmental Engineering Research
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    • v.24 no.1
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    • pp.82-90
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    • 2019
  • Meeting the regulations based on the short-term leaching tests may not necessarily assure the environmental and human health safety of reusing mine wastes. This study investigated heavy metal leachability of four metal mine waste samples (e.g., Z, Y, H, and M) and human health risk of reusing them as construction materials. The heavy metal leachability did not depend on the total heavy metal contents. For example, the Z sample contained greater amounts of As and Fe than Zn, but the leachates contained only Zn at a detectable level. This can be attributed to the crystalline structure and heavy metal fractions of the mine wastes. The leaching test results suggested that the four mine waste samples are potentially reusable. But the Z and M samples reused in industrial areas imposed carcinogenic risks. This was largely attributed to As that is exposed via dermal contact. The Y and H samples reused in residential areas imposed carcinogenic risk. The major exposure route was the ingestion of crops grown on the mine wastes and Cr was the major concern. The two-stage assessment involving leaching tests and risk assessment can be used to promote safe reuse of mine wastes.

Strategic investigation of development of mine reclamation technology based on third-stage road map (3단계 기술개발 로드맵에 따른 광해방지 기술 발전 전략 고찰)

  • Yang, Injae;Ji, Wonhyun;Park, Jayhyun
    • Journal of the Korean Society of Mineral and Energy Resources Engineers
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    • v.55 no.6
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    • pp.538-545
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    • 2018
  • It is necessary to develop systematic mine reclamation technology according to mid- and long-term road maps to effectively promote mine reclamation projects. Evaluating the main achievements of the mine reclamation technology according to the first and second-stage roadmaps revealed the necessity of sharing the R&D achievements. In this study, by reviewing the key issues of the third-stage roadmap and considering the major technical needs of in-and-out customers, the strategic development direction of sustainable mine reclamation technology through expanded sharing of R&D achievement was examined.

Fly Ash Application for Reduction of Acid Mine Drainage (AMD) as Runoff and Leachate Released from Mine Waste Disposal Sites

  • Oh, Se Jin;Moon, Sung Woo;Oh, Seung Min;Kim, Sung Chul;Ok, Yong Sik;Lee, Bup Yeol;Lee, Sang Hwan;Yang, Jae E.
    • Korean Journal of Soil Science and Fertilizer
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    • v.47 no.6
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    • pp.533-539
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    • 2014
  • Mine wastes such as acid mine drainage (AMD) can cause the detrimental effects on surrounding environment, thereby eventually threatening human health. Main objective of this study was to evaluate the neutralizing effect of fly ash (FA) as a stabilizing material AMD. Field plot was constructed in a coal waste depot which has caused aluminium-whitening adjacent to the stream. Different mixing ratios of FA were applied on a top of the soil, and then the physicochemical properties of runoff and soil were monitored. Constructed plots were as following: control (mine waste only (W)), mine waste + 20% ($w\;w^{-1}$)of FA (WC20M), mine waste + 40% ($w\;w^{-1}$)of FA (WC40M), and WC40M dressed with a fresh soil at the top (WC40MD). Result showed that initial pH of runoff in control was 5.09 while that in WC40M (7.81) was significantly increased. For a plot treated with WC40M, the concentration of Al in runoff was decreased to $0.22mg\;L^{-1}$ compared to the W as the control ($4.85mg\;L^{-1}$). Moreover, the concentration of Fe was also decreased to less than half at the WC40M compared to the control. Application of FA can be useful for neutralizing AMD and possibly minimizing adverse effect of AMD in mining area.