• 제목/요약/키워드: Mine reclamation

검색결과 211건 처리시간 0.022초

Comparison of Bioavailability and Biological Transfer Factor of Arsenic in Agricultural Soils with Different Crops

  • Oh, Se Jin;Kim, Sung Chul;Ok, Yong Sik;Oh, Seung Min;Ji, Won Hyun;Yang, Jae E.
    • 한국토양비료학회지
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    • 제47권6호
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    • pp.518-524
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    • 2014
  • Heavy metal pollution in agricultural field near at the abandoned metal mines has been a critical issue in Korea. In particular, bioaccumulation in plants can have detrimental effect on human health. Main objective of this research was to examine arsenic (As) concentration in soil with varied extraction methods and to determine bioaccumulation and biological transfer factor in different crops. Results showed that bioaccumulation ratio of As for total contents in soil was ordered leafy and stem vegetables (1.19%) > fruit bearing vegetables (0.79%) > pulses (0.40%) > root vegetables (0.36%) with different crop species. Among 6 different extraction methods, all of extraction methods showed high correlation ($R^2=0.87-0.97$) except DTPA ($R^2=0.25$) when comparing As concentration in soil extracted with different extractants and As concentration in each crops. Calculated biological transfer factor was ranged 0.002-0.018 depending on crop species. Overall, concentration of As in crops can be varied and best management practice for minimizing bioaccumulation of As should be considered depending on crop species.

미생물 담체를 이용한 납 제거기작 모의를 위한 수학적 모델의 개발 (Development of a Mathematical Model for Simulating Removal Mechanisms of Heavy Metals using Biocarrier Beads)

  • 서한나;이민희;왕수균
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제18권4호
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    • pp.8-18
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    • 2013
  • Biocarrier beads with dead biomass, Bacillus drentensis, immobilized in polymer polysulfone were synthesized to remove heavy metals from wastewater. To identify the sorption mechanisms and theoretical nature of underlying processes, a series of batch experiments were carried out and a mathematical model was developed to quantify the biosorption of Pb(II) by the biocarrier beads. A series of mass balance equations for representing mass transfer of metal sorbents in biocarrier beads and surrounding solution were established. Major model parameters such as external mass transfer coefficient and maximum sorption capacity, etc. were determined from pseudo-first-order kinetic models and Langmuir isotherm model based on kinetic and equilibrium experimental measurements. The model simulation displays reasonable representations of experimental data and implied that the proposed model can be applied to quantitative analysis on biosorption mechanisms by porous granular beads. The simulation results also confirms that the biosorption of heavy metal by the biocarrier beads largely depended on surface adsorption.

담수답의 특성을 고려한 중금속 오염 농경지의 토양개량공법 효과 검토 (An Investigation on the Effect of Stabilization Methods for Rice Paddies contaminated by Heavy Metal considering Characteristics of submerged Paddy)

  • 유찬;윤성욱;이정훈;최승진;이성민
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 세계 도시지반공학 심포지엄
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    • pp.1455-1471
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    • 2009
  • In order to investigate on the effect of stabilization methods for rice paddies contaminated by heavy metals, a series of lab-scale model test was carried out by applying the characteristics of submerged Paddy soil. To perform the lab-scale model test, columns were made by acrylic with the dimension of diameter=10cm, thickness=0.5cm and were filled with soils which was contaminated were mixed with stabilization agents(lime stone 5% and steel refining slag 5% respectively). To manipulate the reduction condition, soils in the columns were submerged with distilled water. And then soil water and subsurface water in each column were sampled in the regular term and analysed the various physical and chemical properties.

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Equilibrium and Kinetic Studies of the Biosorption of Dissolved Metals on Bacillus drentensis Immobilized in Biocarrier Beads

  • Seo, Hanna;Lee, Minhee;Wang, Sookyun
    • Environmental Engineering Research
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    • 제18권1호
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    • pp.45-53
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    • 2013
  • Biocarrier beads with dead biomass, Bacillus drentensis, immobilized in polymer polysulfone were synthesized to remove heavy metals from wastewater. To identify the sorption mechanisms and theoretical nature of underlying processes, a series of batch experiments were carried out to quantify the biosorption of Pb(II) and Cu(II) by the biocarrier beads. The parameters obtained from the thermodynamic analysis revealed that the biosorption of Pb(II) and Cu(II) by biomass immobilized in biocarrier beads was a spontaneous, irreversible, and physically-occurring adsorption phenomenon. Comparing batch experimental data to various adsorption isotherms confirmed that Koble-Corrigan and Langmuir isotherms well represented the biosorption equilibrium and the system likely occurred through monolayer sorption onto a homogeneous surface. The maximum adsorption capacities of the biocarrier beads for Pb(II) and Cu(II) were calculated as 0.3332 and 0.5598 mg/g, respectively. For the entire biosorption process, pseudo-second-order and Ritchie second-order kinetic models were observed to provide better descriptions for the biosorption kinetic data. Application of the intra-particle diffusion model showed that the intraparticle diffusion was not the rate-limiting step for the biosorption phenomena. Overall, the dead biomass immobilized in polysulfone biocarrier beads effectively removed metal ions and could be applied as a biosorbent in wastewater treatment.

Effect of microbial biopolymers on the sedimentation behavior of kaolinite

  • Yeong-Man Kwon;Seok-Jun Kang;Gye-Chun Cho;Ilhan Chang
    • Geomechanics and Engineering
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    • 제33권2호
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    • pp.121-131
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    • 2023
  • Clay sedimentation has been widely analyzed for its application in a variety of geotechnical constructions such as mine tailing, artificial islands, dredging, and reclamation. Chemical flocculants such as aluminum sulfate (Al2(SO4)3), ferric chloride (FeCl3), and ferric sulfate (Fe(SO4)3), have been adopted to accelerate the settling behaviors of clays. As an alternative clay flocculant with natural origin, this study investigated the settling of xanthan gum-treated kaolinite suspension in deionized water. The sedimentation of kaolinite in solutions of xanthan gum biopolymer (0%, 0.1%, 0.5%, 1.0%, and 2.0% in a clay mass) was measured until the sediment height was stabilized. Kaolinite was aggregated by xanthan gum via a direct electrical interaction between the negatively charged xanthan gum molecules and positively charged edge surface and via hydrogen bonding with kaolinite particles. The results revealed that the xanthan gum initially bound kaolinite aggregates, thereby forming larger floc sizes. Owing to their greater floc size, the aggregated kaolinite flocs induced by xanthan gum settled faster than the untreated kaolinite. Additionally, X-ray computed tomography images collected at various depths from the bottom demonstrated that the xanthan gum-induced aggregation resulted in denser sediment deposition. The findings of this study could inspire further efforts to accelerate the settling of kaolinite clays by adding xanthan gum.

안정화 처리된 폐광산 토양의 생태기능상태 평가를 위한 효소활성도 및 비소호흡유전자의 적용 (Application of Enzymatic Activity and Arsenic Respiratory Gene Quantification to Evaluate the Ecological Functional State of Stabilized Soils Nearby Closed Mines)

  • 박재은;이병태;이상우;김순오;손아정
    • 대한환경공학회지
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    • 제39권5호
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    • pp.265-276
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    • 2017
  • 폐광산은 방치된 광미 등으로 인하여 주변환경에 복합적인 중금속 오염을 야기한다. 이를 방지하기 위하여 국내에서는 1990년대 중반부터 석회석 등의 안정화제와 복토를 이용한 안정화 공법을 기반으로 토양개량사업이 시행 중이다. 복원된 토양의 상부에서는 작물의 재배로 인해 중금속이 고정된 안정화 층이 지화학적 변화를 겪게 되며 이에 따른 중금속의 용출 및 이동이 가능하므로 토양개량사업을 마친 토양에 대한 질 평가 등의 사후 관리는 반드시 필요하다. 토양의 질 평가를 하기 위해서는 이화학적 분석 또는 생물학적인 분석을 개별적으로 하기보다는 이들을 결합한 종합적인 분석이 필요하며 이를 통해 토양의 생태기능상태(ecological functional state)를 평가할 수 있다. 본 연구에서는 대상시료로 경상북도 봉화군 풍정 광산, 전라남도 광양시 점동 광산, 충청남도 서산시 서성 광산 인근 안정화 처리 토양과 안정화 처리가 되지 않은 오염, 비오염 토양을 선정하였다. 토양의 이화학적 성질인 pH, CEC, LOI와 중금속 농도를 측정하였고, 미생물 효소활성도와 비소환원유전자를 정량하였다. 다변량 통계분석을 바탕으로 모든 데이터를 분석하여 토양 생태기능상태를 평가하였다. 안정화 심도 토양과 상부복토, 하부오염토 간의 상관관계를 확인한 결과, 안정화 심도 토양에서 중금속의 농도가 높게 측정되었다. 그리고 풍정광산에서는 안정화 처리 심도 토양이 하부오염토와 유사한 특성을, 점동, 서성 광산에서는 안정화 심도 토양이 상부복토와 유사한 특성을 나타내었는데 이는 점동, 서성 광산 주변 상부복토의 생태기능상태가 좋지 않을 수 있음을 시사한다.

폐탄광 산림복구지의 수종별 탄소 저장량 추정: 자작나무, 잣나무, 소나무류 식재지를 중심으로 (Estimation of carbon storage in reclaimed coal mines: Focused on Betula platyphylla, Pinus koraiensis and Pinus spp. plantations)

  • 김광은;김성준;김현준;장한나;김형섭;박용하;손요환
    • 환경생물
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    • 제38권4호
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    • pp.733-743
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    • 2020
  • 본 연구는 폐탄광에서 산림으로 복구된 지역의 임목, 낙엽층, 토양, 그리고 산림의 총 탄소 저장량을 추정하고, 수종별 탄소 저장량 차이를 비교하기 위해 수행되었다. 이를 위하여 강원도, 경상북도, 전라남도의 폐탄광 산림복구지에서 자작나무, 잣나무, 소나무류(소나무, 리기다소나무, 곰솔)가 서로 다른 시기에 식재된 산림과 주변의 일반 산림을 조사하였다. 일반 산림에 비하여 폐탄광 산림복구지 내 낙엽층 및 토양(ton C ha-1; 자작나무: 3.31±0.59 및 28.62±2.86, 잣나무: 3.60±0.93 및 22.26±5.72, 소나무류: 4.65±0.92 및 19.95±3.90), 그리고 산림의 총 탄소 저장량(ton C ha-1; 자작나무: 54.81±7.22, 잣나무: 47.29±8.97, 소나무류: 45.50±6.31)은 낮게 나타났으며, 임목 탄소 저장량(ton C ha-1; 자작나무: 22.57±6.18, 잣나무: 21.17±8.76, 소나무류: 20.80±6.40)은 자작나무가 식재된 곳에서만 낮은 결과가 나타났다. 수종별로 토양 탄소 저장량을 제외한 임목, 낙엽층, 산림의 총 탄소 저장량에서 차이가 나타나지 않았으며, 임목 및 산림의 총 탄소 저장량은 복구 후 경과시간에 따라 증가하는 경향을 보였다. 한편, 폐탄광 산림복구지의 자작나무와 소나무류에서 토양 pH 및 CEC가 낮게 나타났으며, 수종별 불안정탄소, 유효인산, 미생물 바이오매스 탄소가 일반 산림토양보다 2배 이상 낮은 결과를 보였다. 폐탄광 산림복구지에 석회 및 유기질 비료의 시비와 경운을 통해 토양 성질을 개선하고, 가지치기 및 간벌 등과 같은 산림관리로 임목 생육을 증진시키면 폐탄광 산림복구지 내 탄소 저장량을 증가시킬 수 있을 것으로 기대된다.

석회석을 이용하여 안정화한 중금속오염 논토양에서 토양과 식물체(벼) 간의 중금속 전이특성 (Partitioning of Heavy Metals between Rice Plant and Limestone-stabilized Paddy Soil Contaminated with Heavy Metals)

  • 고일하;김의영;권요셉;지원현;주완호;김진홍;신복수;장윤영
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제20권4호
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    • pp.90-103
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    • 2015
  • The agricultural soil, meets soil environmental standards whereas agricultural product from the same soil does not meet permissible level of contaminants, is identified in the vicinity of the abandoned mine in Korea. This study estimated the stabilization efficiency of Cd and Pb using limestone through the flood pot test for this kind of agricultural paddy soil. We had the concentration of the monitored contaminants in soil solution for 4 months and analyzed fractionations in soil and concentrations in rice plant. In soil solution of plow layer, the reductive Mn had been detected constantly unlike Fe. The concentrations of Mn in limestone amended soil was relatively lower than that in control soil. This reveals that the reductive heavy metals which become soluble under flooded condition can be stabilized by alkali amendment. This also means that Cd and Pb associated with Mn oxides can be precipitated through soil stabilization. Pb concentrations in soil solution of amended conditions were lower than that of control whereas Cd was not detected among all conditions including control. In contaminants fractionation of soil analysis, the decreasing exchangeable fraction and the increasing carbonates fraction were identified in amended soil when compared to control soil at the end of test. These results represent the reduction of contaminants mobility induced by alkali amendment. The Cd and Pb contents of rice grain from amended soil also lower than that of control. These result seems to be influenced by reduction of contaminants mobility represented in the results of soil solution and soil fractionation. Therefore contaminants mobility (phytoavailability) rather than total concentration in soil can be important factor for contaminants transition from soil to agricultural products. Because reduction of heavy metal transition to plant depends on reduction of bioavailability such as soluble fraction in soil.

Seasonal color change of the oxyhydrous precipitates in the Taebaek coal mine drainage, south Korea, and implications for mineralogical and geochemical controls

  • Kim, J. J.;C. O. Choo;Kim, S. J.;K. Tazaki
    • 한국광물학회:학술대회논문집
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    • 한국광물학회.한국암석학회 2001년도 공동학술발표회 논문집
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    • pp.38-39
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    • 2001
  • The seasonal changes in pH, Fe, Al and SO$_4$$\^$2-/ contents of acid drainage released from coal mine dumps play a major role in precipitation of metal hydroxides in the Taebaek coal field area, southeastern Korea. Precipitates in the creeks underwent a cycle of the color change showing white, reddish brown and brownish yellow, which depends on geochemical factors of the creek waters. White precipitates consist of Al-sulfate (basaluminite and hydrobasaluminite) and reddish brown ones are composed of ferrihydrite and brownish yellow ones are of schwertmannite. Goethite coprecipitates with ferrihydrite and schwertmannite. Ferrihydrite formed at higher values than pH 5.3 and schwertmannite precipitated below pH 4.3, and goethite formed at the intermediate pH range between the two minerals. With the pH being increased from acid to intermediate regions, Fe is present both as schwertmannite and goethite. From the present observation, the most favorable pH that basauluminte can precipitate is in the range of pH 4.45-5.95. SEM examination of precipitates at stream bottom shows that they basically consist of agglomerates of spheroid and rod-shape bacteria. Bacteria species are remarkably different among bottom precipitates and, to a less extent, there are slightly different chemical compositions even within the same bacteria. The speciation and calculation of the mineral saturation index were made using MINTEQA2. In waters associated with yellowish brown precipitates mainly composed of schwertmannite, So$_4$ species is mostly free So$_4$$\^$2-/ ion with less AlSo$_4$$\^$+/, CaSo$\sub$(aq)/, and MgSo$\sub$4(aq)/. Ferrous iron is present mostly as free Fe$\^$2+/, and FeSo$\sub$4(aq)/ and ferric iron exists predominantly as Fe(OH)$_2$$\^$+/, with less FeSo$\sub$4(aq)/, Fe(OH)$_2$$\^$-/, FeSo$_4$$\^$-/ and Fe$\^$3+/, respectively Al exists as free Al$\^$3+/, AlOH$_2$$\^$-/, (AlSo$_4$)$\^$+/, and Al(So$_4$)$\^$2-/. Fe is generally saturated with respect to hematite, magnetite, and goethite, with nearly saturation with lepidocrocite. Aluminum and sulfate are supersaturated with respect to predominant alunite and less jubanite, and they approach a saturation state with respect to diaspore, gibbsite, boehmite and gypsum. In the case of waters associated with whitish precipitates mainly composed of basaluminite, Al is present as predominant Al$\^$3+/ and Al(SO$_4$)$\^$+/, with less Al(OH)$\^$2+/, Al(OH)$_2$$\^$+/ and Al(SO$_4$)$\^$2-/. According to calculation for the mineral saturation, aluminum and sulfate are greatly supersaturated with respect to basaluminite and alunite. Diaspore is flirty well supersaturated while jubanite, gibbsite, and boehmite are already supersaturated, and gypsum approaches its saturation state. The observation that the only mineral phase we can easily detect in the whitish precipitate is basaluminite suggests that growth rate of alunite is much slower than that of basaluminite. Neutralization of acid mine drainage due to the dilution caused by the dilution effect due to mixing of unpolluted waters prevails over the buffering effect by the dissolution of carbonate or aluminosilicates. The main factors to affect color change are variations in aqueous geochemistry, which are controlled by dilution effect due to rainfall, water mixng from adjacent creeks, and the extent to which water-rock interaction takes place with seasons. pH, Fe, Al and SO$_4$ contents of the creek water are the most important factors leading to color changes in the precipitates. A geochemical cycle showing color variations in the precipitates provides the potential control on acid mine drainage and can be applied as a reclamation tool in a temperate region with four seasons.

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폐자원(폐석회, 굴패각, 바닥재)을 이용한 토양 중화제 개발 연구 (A Study on the Development of Soil Neutrailizing-agent using Waste Materials (Waste-lime, Oyster, Bottom-ash))

  • 오승진;조미현;박찬오;정문호;이재영
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제17권6호
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    • pp.92-101
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    • 2012
  • Korea shows the soil pH is 5.8 ~ 6.2 by many factors including the geological structure and climate condition. There is known as the cause for soil acidification by weathering of the mineral, excessive use of the chemical fertilizer, and extensively diffused acid rain. The purpose of research is environmentally-friendly material neutralization technology development utilizing the waste resources against by acid soil. The experiment analyze the physico-chemical property of the acid soil and waste resource materials (waste lime, oyster shell, bottom ash). The Batch-Test was performed under 3 stage. As a result, the acid soil showed up acid soil about 3.19. And waste lime, oyster, bottom ash showed the alkalinity with 9.62, 10.08, 9.17. In case of 1 batch-test experimental result, waste lime and oyster shell, the alkalinity was shown over 7.5 and the good efficiency was showed, on the other hands, the bottom ash showed the pH 4 the neutralization efficiency which is low. waste resource materials to be applied to 2 steps was chosen as the waste lime except the bottom ash and oyster. In 2 step batch-test experiment, it was exposed to be the most appropriate in case of doing the combination ratio of the waste lime and oyster shell with 9 : 1. It was exposed to be efficient most in the effeciency and aspect of economical efficiency combination ratio of the soil and materials was 9.6 : 0.6 with 3 step batch-test experimental result.