• Title/Summary/Keyword: 비소오염

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Geochemical and Mineralogical Characterization of Arsenic-Contaminated Soil at Chonam Gold Mine, Gwangyang (광양 초남 금 광산 비소오염 토양의 지화학적 및 광물학적 특성)

  • Kong, Mi-Hye;Kim, Yu-Mi;Roh, Yul
    • Economic and Environmental Geology
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    • v.44 no.3
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    • pp.203-215
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    • 2011
  • Geochemical and mineralogical properties of a contamited soil should be taken into account to decide a remediation strategy for a given contaminant because development and optimization of soil remedial technologies are based on geochemical and mineralogical separation techniques. The objective of this study was to investigate the geochemical and mineralogical characteristics of arsenic-contaminated soils. The arsenic-contaminated soil samples were obtained from Chonam gold mine, Gwangyang, Chonnam, Particle size analysis, sequential extraction, and mineralogical analyses were used to characterize geochemical and mineralogical characteristics of the As-contaminated soils. Particle size analyses of the As-contaminated soils showed the soils contained 17-36% sand, 25-54% silt, 9-28% clay and the soil texture were sandy loam, loam, and silt loam. The soil pH ranged from 4.5 to 6.6. The amount of arsenic concentrations from the sequential soil leaching is mainly associated with iron oxides (1 to 75%) and residuals (12 to 91%). Major minerals of sand and silt fractions in the soils were feldspar, kaolinite, mica, and quartz and minor mineral of which is an iron oxide. Major minerals of clay fraction were composed of illite, kaolinite, quartz, and vermiculite. And minor minerals are iron oxide and rutile. The geochemical and mineralogical analyses indicated the arsenic is adsorbed or coprecipitated with iron oxides or phyllosilicate minerals. The results may provide understanding of geochemical and mineralogical characteristics for the site remediation of arsenic-contaminated soils.

울산광산 내 비소로 오염된 광미의 자연저감 능력에 대한 pH와 산화-환원 전위 영향

  • Park Maeng-Eon;Seong Gyu-Yeol;Lee Pyeong-Gu;Kim Pil-Geun
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2005.04a
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    • pp.182-185
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    • 2005
  • 울산광산 내 지표수와 토양 중의 공극수에 함유되어 있는 비소의 오염현황을 파악하고, pH와 산화-환원 전위 값의 변화에 따른 자연저감 능력을 평가하였다. 유비철석을 비롯한 비소함유 광물은 높은 산화-환원 전위 값과 낮은 pH 조건에서 해리되며, 이후 지하수의 진화과정에서 pH가 상승함에 따라 주로 5가의 비소형태로 존재하게 된다. 울산광산지역 지하수의 비소농도는 Eh가 높은 비포화대와 포화대 지하수의 경계부에서 높은 경향을 나타내며, 포화대의 상부에서는 Eh가 비교적 일정하나 비소 농도는 다양한 분포양상을 보인다. 포화대 하부에서 비소의 함량은 매우 낮으며, Eh 감소에 따라 비소 함량이 비례적으로 감소한다. 반응경로 과정에서 비소농도는 Eh<-0.1(V)인 지하수 포화대에서 가장 낮으며, pH가 상대적으로 낮고 산화-환원 전위값이 높은 비포화대에서 증가되는 경향을 보인다. 풍화 반응 정도가 높은 광미와 토양에서 비소농도 높으나, 용출실험에서 비소가 기준치 이하로 용출되는 것은 풍화반응과 토양에 의한 비소의 자연저감이 진행되고 있음을 반영한다. RMB를 이용한 중금속 제거능력 평가 실내실험에서, 산성과 알칼리 조건 모두에서 제거율이 높은 것으로 나타났다. 인회석과 철산화물질로 구성된 RMB는 친환경적이고 2차 오염문제를 극복할 수 있는 물질로서, 비소의 자연저감 능력을 향상시킬 수 있는 정화처리제로 활용이 가능할 것으로 판단된다.

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Stabilization of As (arsenic(V) or roxarsone) Contaminated Soils using Zerovalent Iron and Basic Oxygen Furnace Slag (영가철(Zerovalent Iron)과 제강슬래그를 이용한 비소(V) 및 록살슨(Roxarsone) 오염토양의 비소 안정화 효율 평가)

  • Lim, Jung-Eun;Kim, Kwon-Rae;Lee, Sang-Soo;Kwon, Oh-Kyung;Yang, Jae-E;Ok, Yong-Sik
    • Journal of Korean Society of Environmental Engineers
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    • v.32 no.6
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    • pp.631-638
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    • 2010
  • The objective of this study was to evaluate the efficiency of zerovalent iron and basic oxygen furnace slag on arsenic stabilization in soils. For this, arsenic (V) contaminated soil and roxarsone contaminated soil were incubated after incorporation with zerovalent iron (ZVI) or basic oxygen furnace slage (BOFS) at four different levels (0%, 1%, 3%, and 5%) for 30 days and then the residual concentrations of arsenic were analysed following extraction with aqua reqia, 1N HCl and 0.01 M $CaCl_2$. The total concentration of arsenic was 2,285 mg/kg in the As(V) contaminated soil and 6.5 mg/kg in the roxarsone contaminated soil. 1 N HCl extractable arsenic concentration in the As(V) contaminated soil was initially 1,351 mg/kg and this was significantly declined by 713~1,034 mg/kg following incubation with ZVI while BOFS treatment showed no effect on the stabilization of inorganic arsenate except 5% treatment which showed around 100 mg/kg reduction in 1N HCl extractable arsenic. Similarly, in the roxarsone contaminated soil 1N HCl extractable concentration of arsenic was reduced from 3.13 mg/kg to 0.69 mg/kg with ZVI treatment increased from 1% to 5% while BOFS treatment did not lead to any statistically significant reduction. Available (0.01M $CaCl_2$ extractable) arsenic was initially 0.85 mg/kg in the As(V) contaminated soil and this declined by 0.79 mg/kg following incorporation with 5% ZVI, which accounted for more than 90% of the available As in the control. When As(V)-contaminated soil was treated with BOFS, the available arsenic was increased due to competing effect of the phosphate originated from BOFS with arsenate for the adsorption sites. For the roxarsone contaminated soil, the greater the treatment of ZVI or BOFS, the lower the available arsenic concentration although it was still higher than that of the control.

Study for the Stabilization of Arsenic in the Farmland Soil by Using Steel Making Slag and Limestone (제강슬래그와 석회석을 이용한 비소오염 농경지 토양 안정화 연구)

  • Lee, Min-Hee;Jeon, Ji-Hye
    • Economic and Environmental Geology
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    • v.43 no.4
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    • pp.305-314
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    • 2010
  • The stabilization process using limestone ($CaCO_3$) and steel making slag as the immobilization amendments was investigated for As contaminated farmland soils around Chonam abandoned mine, Korea. Batch and continuous column experiments were performed to quantify As-immobilization efficiency in soil and the analyses using XRD and SEM/EDS for secondary minerals precipitated in soil were also conducted to understand the mechanism of Asimmobilization by the amendments. For the batch experiment, with 3% of limestone and steel making slag, leaching concentration of As from the contaminated soil decreased by 62% and 52% respectively, compared to that without the amendment. When the mixed amendment (2% of limestone and 1% of steel making slag) was used, As concentration in the effluent solution decreased by 72%, showing that the mixed of limestone and steel making slag has a great capability to immobilize As in the soil. For the continuous column experiments without the amendment, As concentration from the effluent of the column ranged from 50 to $80\;{\mu}g/L$. However, with 2% limestone and 1% steel making slag, more than 80% diminution of As leaching concentration occurred within 1 year and maintained mostly below $10\;{\mu}g/L$. Results from XRD and SEM/EDS analysis for the secondary minerals created from the reaction of the amendments with $As^{+3}$ (arsenite) investigated that portlandite ($Ca(OH)_2$), calcium-arsenite (Ca-As-O) and calcite ($CaCO_3$) were main secondary minerals and the distinct As peaks in the EDS spectra of the secondary minerals can be observed. These findings suggest that the co-precipitation might be the major mechanisms to immobilize As in the soil medium with limestone and steel making slag.

토양 세척법을 이용한 하천 퇴적토 복원 설계

  • 이정산;차종철;이민희;이정민
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2003.09a
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    • pp.342-345
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    • 2003
  • 비소로 오염된 폐광산주변 하천 퇴적토 오염 복원을 위한 토양세척법의 복원효율을 규명하였다. 세척액에 대한 비소제거 효율을 규명하기 위해 오염된 3종류의 하천 퇴적토에 대하여 초산, 구연산, 염산 각 0.01, 0.05, 0.1, 0.5, 1N 수용액과 증류수(pH 5.41)에 대한 세척실험을 실시하였다. 실험결과 세척 효율은 염산과 구연산 용액의 경우 0.05N 이상에서 저농도의 구연산을 제외하고 99.9% 이상의 제거효과를 나타내었다. 초산의 경우 1N의 경우에도 36%와 71%의 낮은 세척 효율을 보였으며, 증류수로 세척한 경우에는 20% 내외의 세척 효율을 나타내었다. 이러한 세척 효율은 본 오염지역의 복원목표를 토양오염 우려기준의 40% 농도(2.4mg/kg)로 설정하여 하천퇴적토를 복원할 수 있음을 나타내고 있으며, 결론적으로 오염 퇴적토의 농도 분포에 따라 적절한 세척액을 선택한다면 세척 효과를 훨씬 증대시킬 수 있으리라 사료된다. 본 연구를 통한 세척효율 결과는 연구지역을 포함한 전국 각지의 폐광산 복원공정 설계에 중요한 자료로 활용될 수 있을 것으로 판단된다.

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Remediation Design Using Soil Washing and Soil Improvement Method for As Contaminated Soils and Stream Deposits Around an Abandoned Mine (토양 세척법과 석회를 첨가한 토양 안정화 공법을 이용한 폐광산 주변 비소 오염 토양 및 하천 퇴적토 복원)

  • 이민희;이정산;차종철;최정찬;이정민
    • Economic and Environmental Geology
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    • v.37 no.1
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    • pp.121-131
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    • 2004
  • Removal efficiencies of soil washing and soil improvement processes to remediate farmland soils and stream deposits around Goro abandoned mine were investigated with batch and column experiments. For As-contaminated farm-land soils around Goro mine, batch tests to quantify As extraction rate from contaminated soils and lime treated contaminated soils were performed. The contaminated soil mixed with lime decreased As extraction rate less than one fourth, suggesting that the soil improvement method mixed with lime dramatically decrease As extraction rate. A storage dam will be constructed in the lower part of the main stream connected to Goro abandoned mine and the amount of As extracted from the bottom soils of reservoir could be the main source to contaminate water of reservoir. The decrease of As extraction amount from the bottom in reservoir, caused by the application of the soil improvement method was investigated from the physically simulated column experiment and results showed that As extraction rate decreased to one forty when 1% lime mixed soil improvement was applied to contaminated soils. For contaminated stream deposits connected Goro mine, the removal efficiency of the soil washing method was investigated with batch experiments. Hydrochloric acid, citric acid, acetic acid and distilled water were used as soil washing solution and 0.01, 0.05, 0.1, 0.5, 1.0 N of washing solution were applied to extract As. When washing with 0.05 N of hydrochloric acid or citric acid, more than 99.9% of As was removed from stream deposits, suggesting that As contaminated stream deposits around Goro mine be successfully remediated with the soil washing process. Total volumes of contaminated soils and deposits needed for remediation were calculated based on three different reme-diation target concentrations and the operation cost of soil washing for calculated soil volumes was estimated. Results from this research could be directly used to make a comprehensive countermeasure to remediate contaminated area around Goro mine and also many contaminated areas similar to this research area.

A Study on Input Ratio of Immobilizing Agents in Arsenic and Lead Contaminated Soil (비소.납 복합오염토양의 고정화제 적정비율 투입에 관한 연구)

  • Lee, Eui-Sang;Lee, Kyoung-Chan
    • Proceedings of the KAIS Fall Conference
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    • 2006.05a
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    • pp.582-584
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    • 2006
  • 비소와 납으로 동시에 오염된 복합오염토양 내 중금속 고정화제(비소응집제, 인산염인)를 이용하여 불용화하고자 하였다. 고정화제를 무게비율로 각각 투입하였을 때, 비소응집제와 인산염인을 0.2wt%로 동시에 첨가한 결과가 가장 높은 고정화율을 보였다.

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Arsenic Concentrations of Groundwater and Rice Grains in Bangladesh and Phytoremediation (방글라데시의 지하수와 쌀의 비소오염 및 식물정화법)

  • Islam, Jahidul Mohammad;Kim, Bomchul;Laiju, Nahida;Nasirullah, Tarek;Miah, Mohammad Nuruddin
    • Journal of Korean Society on Water Environment
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    • v.26 no.1
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    • pp.116-124
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    • 2010
  • While groundwater is the major source for drinking and irrigation purposes, arsenic (As) contamination of groundwater is a serious issue in Bangladesh. With a view to reduce As contamination in drinking water the guideline value recommended for Bangladesh is 0.05 mg/L. We assessed groundwater As in an As-affected Sadar Upazilla (small administrative unit) in the District (administrative unit) of Chapai Nabwabganj during 2006, where 50% hand tube well water were above the recommended limit (0.05 mg/L) during dry season. Almost 20% tube well waters were above the recommended limit during rainy season, perhaps due to the dilution of water table. The groundwater in Bangladesh contaminates surface soils and plants thereby As entering the food chain. In 2005, we examined the As levels in different rice varieties grown in different Districts of Bangladesh and the As concentrations in rice grain ranged from 0.07~1.12 mg/kg while the concentrations in 3 rice varieties were above the recommended limit (1 mg/kg rice grain) and the maximum concentration was 1.12 mg/kg rice grain in the rice variety BR 11. With few exceptions, the As content of rice grain in Bangladesh is not considered to be concentration of greater health concern as yet. We also observed enhanced root uptake, efficient root-to shoot translocation, and a much elevated tolerance through internal detoxification all contribute to As hyperaccumulation in a plant, ladder brake fern (Pteris vittata L.). But the phytoremediation technique might not be an appropriate tool to reduce the As calamity in the vast areas of Bangladesh. To mitigate the As problem of Bangladesh, better coordination among governmental agencies and many other organizations will be required to combat the disaster.

플럭 형성 비소 오염토양에 대한 토양세척기법의 적용성 연구

  • Hwang Jeong-Seong;Choi Sang-Il;Han Sang-Geun;Kim Ju-Yeong
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2005.04a
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    • pp.264-267
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    • 2005
  • 플럭 형성 비소 오염토양에 대한 토양세척기법의 적용성 실험결과, 세척용액 100 mM과 500 mM의 농도에서 대상 토양에 대한 비소 용출량은 수산화나트륨이 염산보다 높은 효율을 보였으며, 농도 1000 mM의 경우에는 염산이 비교적 우세한 세척효율을 보였다. 토양오염공정시험법에 의한 세척후 토양내 잔류비소 농도의 경우, 염산이 수산화나트륨과 비슷하거나 다소 우세함을 알 수 있었다. 세척 대상 토양의 Cut-off size limit을 선정하여 토양세척시 생성되는 플럭을 제거하지 않고 반복 세척한 결과, 수산화나트륨의 농도 200 mM은 1000 mM에 비하여 잔류된 비소량이 비슷하거나 비교적 높았으며, 2가지 농도에 대하여 총 5회 반복 세척한 토양의 비소 농도는 토양환경보전법의 가지역 우려기준 농도인 6 mg/kg에 근접한 결과를 보였으나, 염산의 경우 총 5회 세척시 비소의 농도가 약 9 mg/kg으로 비소 잔류량이 보다 큼을 알 수 있었다. 플럭을 제거한 후 반복 세척시 수산화나트륨의 농도 1000 mM이 200 mM에 비하여 토양 세척효율이 증가하였으며, 1000 mM로 5회 세척시 잔류비소 농도가 가지역 우려기준 농도에 근접한 약 6.7 mg/kg이었고 염산을 이용하여 세척한 경우에는 3회 세척시 약 6.7 mg/kg 4, 5회 반복 세척시 각각 약 3.9, 3.3 mg/kg으로 가지역 우려기준에 적합한 농도조건이 됨을 알 수 있었다.

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폐금은광산 주변지역의 수계내 하상퇴적물에서의 비소 용출 및 자연수의 오염특성

  • 이지민;전효택;이진수
    • Proceedings of the KSEEG Conference
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    • 2003.04a
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    • pp.89-92
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    • 2003
  • 폐금은광산 지역은 토양, 작물 및 수계와 같은 지구화학적 환경에서의 비소의 부화가 환경오염의 특성으로 나타난다. 오염지역에 대한 시료채취 지점 상부에 존재하는 암석과 토양의 풍화산물인 하상퇴적물을 대상으로 하는 연구는 이들의 해당 집수지역에 존재하는 원소들의 평균 함량을 반영하므로 환경오염평가 및 광역지구화학도의 작성에 적절한 대상 시료로 사용되어 왔다. (중략)

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