• 제목/요약/키워드: Remediation of polluted soils

검색결과 10건 처리시간 0.021초

지구통계 기법을 활용한 토양 오염범위 산정 및 불확실성 평가 (Evaluation of Geostatistical Approaches for better Estimation of Polluted Soil Volume with Uncertainty Evaluation)

  • 김호림;김경호;윤성택;황상일;김형돈;이군택;김영주
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제17권6호
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    • pp.69-81
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    • 2012
  • Diverse geostatistical tools such as kriging have been used to estimate the volume and spatial coverage of contaminated soil needed for remediation. However, many approaches frequently yield estimation errors, due to inherent geostatistical uncertainties. Such errors may yield over- or under-estimation of the amounts of polluted soils, which cause an over-estimation of remediation cost as well as an incomplete clean-up of a contaminated land. Therefore, it is very important to use a better estimation tool considering uncertainties arising from incomplete field investigation (i.e., contamination survey) and mathematical spatial estimation. In the current work, as better estimation tools we propose stochastic simulation approaches which allow the remediation volume to be assessed more accurately along with uncertainty estimation. To test the efficiency of proposed methods, heavy metals (esp., Pb) contaminated soil of a shooting range area was selected. In addition, we suggest a quantitative method to delineate the confident interval of estimated volume (and spatial extent) of polluted soil based on the spatial aspect of uncertainty. The methods proposed in this work can improve a better decision making on soil remediation.

폐금속광산 하부 농경지 토양의 중금속오염과 그 복구방법으로서 반전객토의 효율성 (Pollution of Heavy Metals in Paddy Soils Around the Downstream Area of Abandoned Metal Mine and Efficiency of Reversed Soil Method as Its Remediation)

  • 나춘기;이무성;정재일
    • 자원환경지질
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    • 제30권2호
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    • pp.123-135
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    • 1997
  • In order to investigate the dispersion patterns and contamination level of heavy metals in the soil-ecosystem and to evaluate the efficiency of soil remediation by reversed soil method, soils and plants were collected from the Dongjin Au-Ag-Cu mine area and analysed for heavy metals. The dispersion patterns of heavy metals in soils and plants show that heavy metal pollutions caused by waste rump around Dongjin mine are mainly found in the vicinity of the waste rump and in the southward slanting of mine. Toxic metallic pollutants from the mine influence heavy metal contents in paddy soils in downstream area, and may be a potential sources of heavy metal pollution on crop plants. Soil samples collected from the remediated rice farming field by reversed method show similar levels of heavy metal content to those from the polluted rice farming field, but topsoil enrichment of heavy metals are not found. Heavy metal contents of the rice plants collected from remediated rice farming field are significantly lower than those from polluted rice farming field, and it suggests that the reversed soil method is effective for the reduction of bioavailability of heavy metals.

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펜톤유사반응을 이용한 광미중에 비소의 불용화 (Immobilization of Arsenic in Tailing by Fenton-like reaction)

  • 정익재;최용수
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2002년도 총회 및 춘계학술발표회
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    • pp.127-130
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    • 2002
  • Recently, the contamination with heavy metals in closed mines has been seriously considered since it can disturb human health through the polluted drinking-water and crops. Therefore, the concerns about the remediation of polluted land and treatment technology for hazardous matters have been accelerated. However, any of practical methods for treatment and/or remediation have not been yet suggested. In this research, a novel technology was studied to immobilize arsenic in tailings and soils disturbed by mining. In this technology, Fenton-like reaction were applied to immobilize arsenic in tailings. In the examination of Fenton-like reaction using pure pyrite, $H_2O$$_2$ and arsenic, the concentrations of extracted arsenic and iron were reduced up to 90 and 75%, respectively From the result of SEM-EDS, the Immobilization of arsenic was observed on the surface of pyrite. Thus, it can be said that the coating and/or adsorption prevents the extraction of arsenic.

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우리나라 농경지 중금속 동태 및 작물흡수 연구동향 (Current research trends for heavy metals of agricultural soils and crop uptake in Korea)

  • 이지호;김지영;고우리;정은정;;정구복;김두호;김원일
    • 한국환경농학회지
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    • 제31권1호
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    • pp.75-95
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    • 2012
  • BACKGROUND: Increase of heavy metals in agricultural ecosystem has become a social issue nationwide as it is related to public health. This review was performed to find out more systematic and integrated future researches on heavy metals using up to date articles published in the Korean journals related to agricultural environment. METHODS AND RESULTS: Researches on heavy metals in agricultural soils and plant uptake were categorized by the establishment of criteria, analytical methods, monitoring, management of source, characteristics and behavior in soil, plant uptake, bioavailability affecting physico -chemical properties in soil, risk assessment and soil remediation. In the early 1990s, the monitoring for heavy metals in soil has been widely performed. Accumulation of heavy metals in contaminated soil and availability to plants has also attracted interests to study the soil remediation using various physico-chemical methods. The phytoavailability and phytotoxicity of heavy metals have been mainly studied to assess the safety of agro-products using risk assessment techniques in the 2000s. CONCLUSION: Future direction of research on heavy metal in agricultural environment must be carried out by ensuring food safety and sustainability. A steady survey and proper management for polluted regions should be continued. Law and regulation must be modified systematically. Furthermore, studies should expand on mitigation of heavy metal uptake by crops and remediation of polluted fields.

SVE 및 생물학적 공법을 이용한 TPH 오염토양처리에 관한 연구 (The Study on the Remediation of Contaminated Soil as TPH using SVE and Bioremediation)

  • 김정권
    • 한국환경과학회지
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    • 제17권1호
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    • pp.97-105
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    • 2008
  • This study examined the contaminated soils with an indicator of TPH using SVE (Soil Vapor Extraction) and biological treatments. Their results are as follows. Water content in the polluted soils slowly decreased from 15% during the initial experimental condition to 10% during the final condition. Purification of polluted soils by Bioventing system is likely to hinder the microbial activity due to decrease of water content. Removal rate of TPH in the upper reaction chamber was a half of initial removal rate at the 25th day of the experiment. The removal rate in the lower reaction chamber was 45% with concentration of 995.4 mg/kg. When the Bioventing is used the removal rate at the 14th day of the experiment was 53%, showing 7 day shortenting. Since the Bioventing method control the microbial activity due to dewatering of the polluted soil, SVE method is likely to be preferable to remove in-situ TPH. The reactor that included microbes and nutrients showed somewhat higher removal rate of TPH than the reactor that included nurtients only during experimental period. In general, the concentration showed two times peaks and then decreased, followed by slight variation of the concentration in low concentration levels. Hence, in contrast to SVE treatment, the biological treatment tend to show continuous repetitive peaks of concentration followed by concentration decrease.

유류 오염지역 토양의 위해성 평가 및 사전복원목표 산정 사례연구 (Case Study of Health Risk Assessment and Preliminary Remediation Goals Calculation for the Petroleum Contaminated Site)

  • 정규혁
    • Environmental Analysis Health and Toxicology
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    • 제17권4호
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    • pp.347-355
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    • 2002
  • As concerns on the effects of soil contamination on human health have grown, more efforts have been made to quantify the effects. One of such efforts is the development of risk assessment methodology. The fundamental objectives of this approach is to investigate the alternative options that reduce the risk of hazardous chemicals results from environmental pollution, which will eventually lead to an accomplishment of removement of identified toxicants in polluted environment. The U.S. EPA Risk Assessment guidance for the superfund (RAGS) provides a methods for assessing the health risk of contaminated soils and determining the preliminary remediation goals (PRGs). Using this approach, we assessed the health risk and preliminary remediation goals of petroleum contaminated site in Kyounggi province.

Diversity of Arbuscular Mycorrhizal Fungi Associated with a Sb Accumulator Plant, Ramie (Boehmeria nivea), in an Active Sb Mining

  • Wei, Yuan;Chen, ZhiPeng;Wu, FengChang;Li, JiNing;ShangGuan, YuXian;Li, FaSheng;Zeng, Qing Ru;Hou, Hong
    • Journal of Microbiology and Biotechnology
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    • 제25권8호
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    • pp.1205-1215
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    • 2015
  • Arbuscular mycorrhizal fungi (AMF) have great potential for assisting heavy metal hyperaccumulators in the remediation of contaminated soils. However, little information is available about the symbiosis of AMF associated with an antimony (Sb) accumulator plant under natural conditions. Therefore, the objective of this study was to investigate the colonization and molecular diversity of AMF associated with the Sb accumulator ramie (Boehmeria nivea) growing in Sb-contaminated soils. Four Sb mine spoils and one adjacent reference area were selected from Xikuangshan in southern China. PCR-DGGE was used to analyze the AMF community composition in ramie roots. Morphological identification was also used to analyze the species in the rhizosphere soil of ramie. Results obtained showed that mycorrhizal symbiosis was established successfully even in the most heavily polluted sites. From the unpolluted site Ref to the highest polluted site T4, the spore numbers and AMF diversity increased at first and then decreased. Colonization increased consistently with the increasing Sb concentrations in the soil. A total of 14 species were identified by morphological analysis. From the total number of species, 4 (29%) belonged to Glomus, 2 (14%) belonged to Acaulospora, 2 (14%) belonged to Funneliformis, 1 (7%) belonged to Claroideoglomus, 1 (7%) belonged to Gigaspora, 1 (7%) belonged to Paraglomus, 1 (7%) belonging to Rhizophagus, 1 (7%) belonging to Sclervocystis, and 1 (7%) belonged to Scutellospora. Some AMF sequences were present even in the most polluted site. Morphological identification and phylogenetic analysis both revealed that most species were affiliated with Glomus, suggesting that Glomus was the dominant genus in this AMF community. This study demonstrated that ramie associated with AMF may have great potential for remediation of Sb-contaminated soils.

Priority Assessment for Remediation of Heavy Metals Closed/Abandoned Mine Areas Using Pollution Indexes

  • 김휘중;양재의;박병길;공성호;이재영;전상호
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2006년도 총회 및 춘계학술발표회
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    • pp.183-193
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    • 2006
  • Several metalliferous and coal mines, including Seojin and Okdong located at the Kangwon province, were abandoned or closed since 1989 due to the mining industry promotion policy and thus disposed an enormous amount of mining wastes without a proper treatment facilities, resulting in water and soil pollution in the downstream areas. However, no quantitative assessment was made on soil and water pollution by the transport of mining wastes such as acid mine drainage, mine tailing, and rocky waste. In this research, total and fractional concentrations of heavy metals in mining wastes were analyzed and accordingly the degree of water and soil pollutions in the stream area were quantitatively assessed employing the several pollution indices. Concentrations of Ni, Cd, and Pb in soils near the abandoned coal mine areas were 1,240.0, 25.0 and 1,093.0 mg/kg, respectively, and these concentrations were higher than those in soils near the closed metalliferous mine areas. Also Cu concentrations in soils near the tailing dams were about 1967 mg/kg, which is considered as very polluted level. Results demonstrated that soil at the abandoned mine areas were highly contaminated by AMO, tailing, and effluents of the mining wastes. Therefore, a prompt countermeasure on the mining waste treatment and remediation of the codntaminated water and soil should be made to the abandoned or closed metalliferous and coal mines located at the abandoned mine area.

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중부지역에 위치한 폐광산 주변의 오염물질 이동성 평가 (Evaluation about Contaminant Migration Near Abandoned Mine in Central Region)

  • 이종득;김태동;전기석;김휘중
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제15권6호
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    • pp.29-36
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    • 2010
  • Several mines including Namil, Solim and Jungbong which are located in the Gyeonggi and Kangwon province have been abandoned and closed since 1980 due to "The promotion policy of mining industry". An enormous amount of mining wastes was disposed without proper treatment, which caused soil pollution in tailing dam and ore-dressing plant areas. However, any quantitative assessment was not performed about soil and water pollution by transporting mining wastes such as acid mine drainage, mine tailing, and rocky waste. In this research, heavy metals in mining wastes were analyzed according to leaching method which used 0.1 N HCl and total solution method which used Aqua-regia to recognize the ecological effect of distance from hot spot. We sampled tailings, rocky wastes and soils around the abandoned mine. Chemical and physical parameters such as pH, electrical conductivity (EC), total organic carbon (TOC), soil texture and heavy metal concentration were analyzed. The range of soil's pH is between 4.3 and 6.4 in the tailing dam and oredressing plant area due to mining activity. Total concentrations of As, Cu, and Pb in soil near ore dressing plant area are 250.9, 249.3 and 117.2 mg/kg respectively, which are higher than any other ones near tailing dam area. Arsenic concentration in tailing dams is 31.0 mg/kg, which is also considered as heavily polluted condition comparing with the remediation required level(RRL) in "Soil environment conservation Act".

GWP (Global Warming Potential)를 고려한 가시박 바이오차르의 토양 납 제거 효과 분석 (A Study of Burcucumber Biochars to Remediate Soil Pb Considering GWP (Global Warming Potential))

  • 김유진;박한;김민호;서성희;옥용식;유가영
    • 대한환경공학회지
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    • 제37권7호
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    • pp.432-440
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    • 2015
  • 유기물의 열분해로 생성되는 바이오차는 토양 탄소 저장량을 증가시킴으로써 기후변화를 완화할 수 있는 전략으로 소개되고 있다. 또한 바이오차는 토양의 흡착능을 증대시켜 중금속으로 오염된 토양을 정화할 수 있다고 보고된다. 본 연구는 두 종류 바이오차의 토양 중금속 제거 효과와 함께 기후변화 완화효과를 동시에 알아보기 위해 수행되었다. 두 종류의 바이오차는 가시박 및 차 찌꺼기 바이오매스를 열분해 하여 준비했다. 납으로 오염된 농경지 토양은 바이오차 및 바이오매스와 혼합되어 60일 동안 배양하였다. $CO_2$, $CH_4$, $N_2O$는 배양 기간 동안 주기적으로 측정되었고 토양 분석은 배양 종료 후 아세트산을 이용한 납 추출량을 비롯한 생화학적 요소에 대해 수행하였다. 그 결과, 배양 후 납의 양은 BC_Ch에서 71% 만큼 감소했다. 배양 중 $CO_2$$N_2O$ 발생은 BC_Ch, TW_Ch에서 각각 BC_Bm, TW_Bm 대비 약 24%, 34% 감소하였다. $CH_4$ 발생은 바이오차 처리에 의한 유의한 차이를 나타내지 않았다. GWP 계산 과정에서 온실가스($CO_2$, $CH_4$, $N_2O$), 토양에 처리한 가시박 및 차 찌꺼기 바이오매스와 바이오차, 토양 내 총 탄소량을 고려하였으며, 바이오차 투입으로 토양 내 납의 농도가 감소한 BC_Ch를 제외한 나머지 처리구와 대조구에 제올라이트를 투입하였다고 가정하여 GWP 계산을 수행하였다. BC_Ch가 GWP 측면에서 가장 유리한 것을 보였는데, 이는 가시박 바이오차가 높은 납 흡착과 토양 내 탄소 격리 효과를 나타냈기 때문으로 사료된다. 결론적으로, 가시박으로부터 생성한 바이오차를 투입하는 것이 토양 오염 저감과 기후변화 완화 효과를 동시에 기대할 수 있는 전략임을 시사한다.