• 제목/요약/키워드: Heavy Metals Contamination

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폐금속광산 하류 논토양의 중금속 오염도 평가 (Assessment of the Heavy Metal Contamination in Paddy Soils Below Part of the Closed Metalliferous Mine)

  • 김민경;홍성창;김명현;최순군;이종식;소규호;정구복
    • 한국환경농학회지
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    • 제34권1호
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    • pp.6-13
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    • 2015
  • 폐금속광산 주변 토양의 중금속 오염특성을 평가하기 위하여 광산 하류에 위치한 논토양을 대상으로 중금속 오염지수, 부화계수 및 지화학적 농축계수를 조사한 결과는 다음과 같다. 광산 하류 논토양의 중금속 전함량 평균치는 Cd 8.88, Cu 56.7, Pb 809, Zn 754 및 As 37.9 mg/kg이었고, 중금속 중에서 Cd, Pb 및 Zn 평균함량은 우리나라 농경지의 토양오염 우려기준(Cd 4, Pb 200, Zn 300 mg/kg)을 초과하였다. 토양의 전함량에 대한 0.1M HCl 침출성의 함량비율은 Pb 35.1, Cd 27.7, Cu 21.3, Zn 13.8 및 As 10.5% (1M HCl) 순으로 나타났다. 토양 내 중금속의 오염지수 평균치는 3.21, 범위는 0.42~11.92로 나타나 심하게 오염된 상태임을 알수 있었다. 토양의 중금속별 부화계수(EFc) 평균 값은 Cd>Pb>Zn>As>Cu 순으로 높았고, 채취 지점간 편차가 큰 것을 알수 있었다. 토양 중금속별 지화학적 농축계수(Igeo) 평균치는 Cd>Pb>Zn>Cu>As 순으로 높았으며, 특히 Cd, Pb 및 Zn의 Igeo 평균 값이 각각 3.10, 2.64, 2.49로 나타나 다른 성분보다 상대적으로 높게 나타났다.

Assessment of natural radionuclides and heavy metals contamination to the environment: Case study of Malaysian unregulated tin-tailing processing industry

  • Rahmat, Muhammad Abdullah;Ismail, Aznan Fazli;Rodzi, Nursyamimi Diyana;Aziman, Eli Syafiqah;Idris, Wan Mohd Razi;Lihan, Tukimat
    • Nuclear Engineering and Technology
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    • 제54권6호
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    • pp.2230-2243
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    • 2022
  • The tin tailing processing industry in Malaysia has operated with minimal regard and awareness for material management and working environment safety, impacting the environment and workers in aspects of radiation and heavy metal exposure. RIA was conducted where environmental samples were analyzed, revealing concentrations of 226Ra, 232Th and 40K between the range of 0.1-10.0, 0.0-25.7, and 0.1-5.8 Bq/g respectively, resulting in the AED exceeding UNCEAR recommended value and regulation limit enforced by AELB (1 mSv/y). Raeq calculated indicates that samples collected pose a significant threat to human health from gamma-ray exposure. Assessment of heavy metal content via pollution indices of soil and sediment showed significant contamination and enrichment from processing activities conducted. As and Fe were two of the highest metals exposed both via soil ingestion with an average of 4.6 × 10-3 mg/kg-day and 1.4 × 10-4 mg/kg-day, and dermal contact with an average of 5.6 × 10-4 mg/kg-day and 6.0 × 10-4. mg/kg-day respectively. Exposure via accidental ingestion of soil and sediment could potentially cause adverse non-carcinogenic and carcinogenic health effect towards workers in the industry. Correlation analysis indicates the presence of a relationship between the concentration of NORM and trace elements.

경기북부 산업단지 주변 농지의 토양오염도 조사연구 (A Study on Soil Contamination Investigation of Farmland Around Industrial Areas in Northern Gyeonggi Province)

  • 박진호;권경안;정은희;김재광;김지영;오조교
    • 한국환경보건학회지
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    • 제43권5호
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    • pp.393-400
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    • 2017
  • This study was investigated on pH, heavy metals, oils and solvents in 34 surface soil samples and the samples are collected at two times for 17 farmland sites around 7 industrial areas in Northern Gyeonggi Province. As a result of pH for soil contamination monitoring network, the range of pH showed 4.4~8.4 and average was 6.3. The range of pH for Agricultural land around industrial area was 6.7~7.5 and average indicated 7.1 that mostly showed neutral condition in this area. he average concentrations of Cu, Pb, Ni, As and $Cr^{6+}$ are lower than Korea soil contamination worrisome levels at region 1 and the mean levels of farmland from the soil quality monitoring network. The average concentrations of Zn, Cd and Hg didn't exceed the soil contamination worrisome levels at region 1 but slightly higher than the mean levels of farmland from the soil quality monitoring network. The heavy metal levels of all samples are within Korea soil contamination worrisome levels at region 1. The results showed that the detected heavy metal concentrations ranged from N.D. to ~32.7% of Korea soil contamination worrisome levels at region 1. BTEX, TPH, TCE and PCE were not detected in all samples and thus the farmland around the industrial areas were free from oils and solvents contamination.

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.

Evaluation of contamination for the Andong-dam sediment and a magnetic separation for reducing the contamination level

  • Hong, H.P.;Kwon, H.W.;Kim, J.J.;Ha, D.W.;Kim, Young-Hun
    • 한국초전도ㆍ저온공학회논문지
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    • 제21권2호
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    • pp.31-35
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    • 2019
  • Andong-dam was built up in 1967 and it is one of the biggest dams in Korea. Previous studies showed that the sediments are highly contaminated with heavy metals such as arsenic, cadmium, and lead. Many research projects are going on to find out the source of the contamination, to evaluate the toxicities to ecosystem, to estimate the volume of sediment to be treated and to find out a good remediation method. Reports show that the sediment is highly contaminated and the main contamination source is supposed to be abandoned mines and a zinc refinery located upper stream of the river. A magnetic separation has been tested as a treatment method for the dredged sediment. Lab scale test showed that the magnetically captured portion is about 10% in weight but the contamination of heavy metal is much higher than the contamination of the passed portion. This indicates that a magnetic separation could be applied for the purpose of reduction of sediment to be treated and for increasing the volume of low toxic sediments which can be dumped as general waste. A magnetic separation using a HGMS has been tested for the sediment with variable magnetic field and the results showed the higher magnetic field increase the captured portion but the concentrating effect of heavy metal was weakened. Further study is needed to establish a useful technology and optimization between decontamination and reduction of sediment volume.

매향리 내륙 사격장 토양의 중금속 오염 분포 (Heavy Metal Distribution in Soils from the Maehyang-ri Inland Shooting Range Area)

  • 이준호;박갑성
    • 한국물환경학회지
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    • 제24권4호
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    • pp.407-414
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    • 2008
  • This study was conducted to evaluate the heavy metal contamination in the soils of Maehyang-ri inland shooting range area. The texture of the Maehyang-ri inland shooting range soil was sandy. Extraction of heavy metals reached quasi-equilibrium within 6 hours using shaking with 0.1 N HCl. 95% and 94% of extraction efficiency was observed for Cu and Pb in the Maehyang-ri shooting range soils, respectively. And Cu and Pb contamination of level of the T-1 region soil was $114.4{\pm}5.7mg/kg$ and $362.3{\pm}20.5mg/kg$. This may be due to the effects of mineralogical factor, soil particle size and un-residual fractions such as exchangeable, carbonate, Fe-Mn oxide and organic+sulfide.

The Contamination of Sventoji River Bottom Sediments by Heavy Metals in Ukmerge, Lithuania

  • Valskys, Vaidotas;Motiejunas, Mindaugas;Ignatavicius, Gytautas;Sinkevicius, Stanislovas
    • 한국환경과학회지
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    • 제25권1호
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    • pp.1-10
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    • 2016
  • Bottom sediment pollution with heavy metals of the Sventoji River in Ukmerge, Lithuania using X-ray fluorescence spectrometry is analyzed in this article. During the research, qualitative and quantitative parameters of heavy metal concentrations and their distribution were investigated. This article presents obtained results of study, where bottom sediment samples were examined from both shores of the river of Sventoji. During this research, received data was treated using GIS software, which helped to interpolate the data of concentrations into the research polygon of the river. GIS software also helped to evaluate the urban runoff influence to the bottom sediment quality and exclude sources of pollution. The runoff dischargers which transport surface wastewater to the river were registered before sampling. At the mouth of streams, flowing into the river of Sventoji, additional samples were taken. After comprehensive river bottom sediment research there is a possibility to assess the extent of anthropogenic activity and its impact on the river ecosystem and human health.

마산만과 낙동강 하구역 해양 퇴적토의 중금속 오염도 산정 연구 (Estimation of Heavy Metal Contamination Level in Masan Bay and Nakdong Estuary Sediments)

  • 이준호;양찬근;한경수;이태윤
    • 한국지반환경공학회 논문집
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    • 제21권3호
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    • pp.13-21
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    • 2020
  • 본 연구는 마산만과 낙동강 하구 인근의 해양퇴적토에 포함된 중금속 농도를 측정하여 기존 오염도 산정방법을 이용하여 6개 중금속에 대한 오염도를 평가하고자 하였다. 미국 환경청 기준에 따르면 Cu의 경우 B1지역은 심한오염으로 분류되었고 Ni과 Zn의 경우 일부지역에서 중간정도 오염으로 분류되었다. Igeo, EF, PERF의 분류에 따르면, A와 B 지역은 Cd에 의해 오염이 된 것으로 나타났다. 특히, B1 지역의 경우 Igeo, EF, PERF 값이 전 지역을 통틀어 제일 높은 값을 나타내어 심각한 오염으로 평가되었다. 6개 중금속 모두의 영향을 고려한 mean PEL quotient 분류에 따르면 모든 지역에서 중금속으로 인해 독성이 발생할 확률은 21%로 파악되었다. B1 지역의 Cd 농도는 1.5mg/kg으로 가장 높은 값을 보였고 이는 기존의 연구와 비교해서도 가장 높은 값임을 알 수 있었다. 따라서, 마산만 인근의 퇴적토에 포함된 Cd의 오염이 심각하므로 이에 대한 원인을 밝히고 향후 처리방안에 대해 신중한 접근이 필요할 것으로 사료된다.

Health Risk Assessment through Residents Exposure to Toxic Metals in Soil and Groundwater in the Vicinity of Sanyang Metal Mine

  • Park, Jeong-Hun;Choi, Kyoung-Kyoon
    • 한국환경농학회지
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    • 제31권2호
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    • pp.97-103
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    • 2012
  • BACKGROUND: Metal mines were actively developed in the early twentieth century in Korea; however, most of these mines were closed and abandoned without proper management. Therefore, toxic metal contamination in the vicinity of Korean abandoned metal mines has been reported. A risk assessment for these metals was performed for residents near by abandoned Sanyang metal mine. METHODS AND RESULTS: Soil and groundwater samples were collected from May to October 2007 around the mine. After pretreatment of these samples, metal concentrations were measured and then a risk assessment was performed using the Korean soil-contamination risk assessment guidelines. Cancer risk was the highest from inhalation of Pb-contaminated soil, followed in descending order by As-contaminated soil inhalation and water ingestion. The sum of carcinogenic risks was $3.35{\times}10^{-3}$. The noncarcinogenic risk was observed for inhalation of Hg-contaminated soil (5.71). CONCLUSION: Inhalation of soil in dust was the principal pathway to cause the health risk and most of the risk was attributed to As, Pb,Cd, and Hg contamination.

한국 연안 퇴적물 내 중금속 원소의 자연적 배경농도 연구 (Natural Background Level Analysis of Heavy Metal Concentration in Korean Coastal Sediments)

  • 임동일;최진용;정회수;최현우;김영옥
    • Ocean and Polar Research
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    • 제29권4호
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    • pp.379-389
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    • 2007
  • This paper presents an attempt to determine natural background levels of heavy metals which could be used for assessing heavy metal contamination. For this study, a large archive dataset of heavy metal concentration (Cu, Cr, Ni, Pb, Zn) for more than 900 surface sediment samples from various Korean coastal environments was newly compiled. These data were normalized for aluminum (grain-size normalizer) concentration to isolate natural factors from anthropogenic ones. The normalization was based on the hypothesis that heavy metal concentrations vary consistently with the concentration of aluminum, unless these metals are of anthropogenic origin. So, the samples (outliers) suspected of receivingany anthropogenic input were removed from regression to ascertain the "background" relationship between the metals and aluminum. Identification of these outliers was tested using a model of predicted limits at 95%. The process of testing for normality (Kolmogorov-Smirnov Test) and selection of outliers was iterated until a normal distribution was achieved. On the basis of the linear regression analysis of the large archive (please check) dataset, background levels, which are applicable to heavy metal assessment of Korean coastal sediments, were successfully developed for Cu, Cr, Ni, Zn. As an example, we tested the applicability of this baseline level for metal pollution assessment of Masan Bay sediments.