• 제목/요약/키워드: Contaminated soil remediation

검색결과 575건 처리시간 0.023초

유기산을 이용한 납 오염토양의 복원에 관한 연구 (A Study on the Pb-contaminated Soil Remediation by Organic Acid Washing)

  • 정의덕
    • 한국환경과학회지
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    • 제9권5호
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    • pp.437-441
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    • 2000
  • A study on the removal of Pb ion from Pb-contaminated soil was carried out using ex-site extraction process. Tartaric acid (TA) and iminodiacetic acid sodium salt(IDA) as a washing agent were evaluated as a function of concentration reaction time mixing ratio of washing agent and recycling of washing agent. TA showed a better extraction performance than IDA. The optimum washing condition of TA and IDA were in the ratio of 1:15 and 1:20 between soil and acid solution during 1 hr reaction. The total concentrations of Pb ion by TA and IDA at three repeated extraction were 368.8 ppm and 267.5 ppm respectively. The recovery of Pb ion from washing solution was achieved by adding calcium hydroxide and sodium sulfide form the precipitation of lead hydroxide and lead sulfide and optimum amounts of sodium sulfide and calcium hydroxide were 7 g/$\ell$ for the TA washing solution and 4 g/$\ell$, 5g/$\ell$ for the IDA washing solution respectively. The efficiency of recycle for TA and IDA washing solution were 78.8% , 95.1%, and 89.2%, 96.6% at third extractions under $Na_2S$ and $Ca(OH)_2$, respectively.

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화학약액 추출법에 의한 오염된 흙의 정화 처리법 연구 (Remediation of Contaminated Soil by Aqueous Solution Extraction)

  • 박준범
    • 한국지반공학회지:지반
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    • 제11권4호
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    • pp.87-98
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    • 1995
  • 현장에서 화학약액을 주입하여 탈착을 촉진시킴으로 유기화합물로 오염된 흙을 정화처리하는 방법을 실험실에서 모델링해 보았다. 본 실험에서 UH40이라고 명명된 흙에 페놀(phenol), 애닐린(aniline), 퀴놀린(quinoline), 및 2-낼톨(2-napthol) 등의 유기유해물질을 오염시킨 후, 여러 종류의 화학약액을 사용하여 이 유기물질을 탈착/제거시켜 보았다. 오염물질제거 용액으로는 물, 과산화수소, 산성 및 염기성용액, 그리고 계면활성제를 이용하였다. 현장의 흙의 응력 상태와 약액주입 상황은 삼축압축기를 응용한 투수기(permeameter)로 오염된 흙에 구속음력을 가해주고 등수경사를 유발시켜 약액이 흐르게 함으로써 모델링이 가능하였다. 폐놀과 애닐린은 수산화나트릅과 중성세제에 의해 각각 효과적으로 탈착되었고, 음이온성 세제는 퀴놀린과 2-낼톨의 정화에 효과적이었다.

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Remediation of heavy metal-contaminated soils using eco-friendly nano-scale chelators

  • Lim, Heejun;Park, Sungyoon;Yang, Jun Won;Cho, Wooyoun;Lim, Yejee;Park, Young Goo;Kwon, Dohyeong;Kim, Han S.
    • Membrane and Water Treatment
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    • 제9권3호
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    • pp.137-146
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    • 2018
  • Soil washing is one of the most frequently used remediation technologies for heavy metal-contaminated soils. Inorganic and organic acids and chelating agents that can enhance the removal of heavy metals from contaminated soils have been employed as soil washing agents. However, the toxicity, low removal efficiency and high cost of these chemicals limit their use. Given that humic substance (HS) can effectively chelate heavy metals, the development of an eco-friendly, performance-efficient and cost-effective soil washing agent using a nano-scale chelator composed of HS was examined in this study. Copper (Cu) and lead (Pb) were selected as target heavy metals. In soil washing experiments, HS concentration, pH, soil:washing solution ratio and extraction time were evaluated with regard to washing efficiency and the chelation effect. The highest removal rates by soil washing (69% for Cu and 56% for Pb) were achieved at an HS concentration of 1,000 mg/L and soil:washing solution ratio of 1:25. Washing with HS was found to be effective when the pH value was higher than 8, which can be attributed to the increased chelation effect between HS and heavy metals at the high pH range. In contrast, the washing efficiency decreased markedly in the low pH range due to HS precipitation. The chelation capacities for Cu and Pb in the aqueous phase were determined to be 0.547mmol-Cu/g-HS and 0.192mmol-Pb/g-HS, respectively.

동전기 정화기술을 이용한 Zn, Ni, F 복합오염 토양의 정화 (Electrokinetic Remediation of Soil Contaminated with Zn, Ni and F)

  • 조정민;류병곤;박성우;김경조;백기태
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제14권1호
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    • pp.36-43
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    • 2009
  • Zn, Ni 및 불소로 복합 오염된 토양의 정화를 위해서 동전기 정화(Electrokinetic remediation)기술을 적용하였다. 토양에서 탈착된 불소는 음이온 형태이고, Zn, Ni은 양이온으로 존재하기 때문에 간극수가 이동하는 전기삼투(electro-osmosis)와 이온이 이동하는 전기이동(electro-migration)의 두 가지 기작에 의해 제거되는 경향이 달랐다. 불소는 알칼리 조건에서 토양으로부터의 탈착이 증가하고, Zn과 Ni은 산성조건에서 탈착이 증가된다. 두 가지 탈착 특성이 다른 오염물질을 순차적 pH조절을 통해 효과적으로 제어할 수 있었다. 정전압 하에서의 영향을 평가하기 위하여 2V/cm를 적용하여으며, 2주간의 실험을 통해 Zn은 20.5%, Ni은 2.5%, 불소는 57.4% 제거되었다. Zn과 Ni의 제거율은 낮았으나 토양 ph조절을 통해 이동 가능함을 확인하였다. 토양 pH조절을 통하여 특성이 다른 복합오염물질을 동전기 정화 기술로 제거할 수 있을 것으로 사료된다.

우리나라 현존 토양정화 기술의 해양오염퇴적물 정화사업 적용 가능성 검토: 중금속 (Feasibility of Present Soil Remediation Technologies in KOREA for the Control of Contaminated Marine Sediment: Heavy Metals)

  • 김경련;최기영;김석현;홍기훈
    • 대한환경공학회지
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    • 제32권12호
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    • pp.1076-1086
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    • 2010
  • 해양오염퇴적물 정화기술의 조속한 국내 정착을 위하여, 육상 토양오염 정화공법들이 해양퇴적물에도 적용될 수 있는지를 해양오염퇴적물 정화사업이 고려되는 울산 방어진과 진해 행암만의 퇴적물을 대상으로 해양오염퇴적물에 활용 가능한 설비를 갖춘 입자분리 및 세척의 세 공법을 사용하여 중금속 제거 가능성을 위주로 평가하였다. 모래에 비하여 중금속 농도가 높은 울산 방어진의 니질 및 점토질에서 각 공법별 중금속 제거 정도는 입자분리의 경우, 비소(As) 81.5%, 수은(Hg) 93.8%이고, 세척의 경우, 카드뮴(Cd) 72.2%, 수은(Hg) 87.1%이며, 같은 분야의 다른 세척의 경우, 카드뮴(Cd) 70.8%, 납(Pb) 65.6%로 나타났다. 실증실험 결과로부터 사용한 입자분리 및 세척 공법은 모래뿐만 아니라 니질과 점토질 크기의 미세입자에 함유된 중금속까지 효과적으로 처리할 수 있다는 것을 확인하였다. 또한 입자분리보다 입경별 분리, 공정수에 의한 세척, 산 또는 유기용매 등 첨가제에 의한 물리적, 화학적 반응 등 처리공정으로 구성된 세척공법에 의한 중금속 제거가 보다 효과적인 것으로 나타났다. 한편 모든 조건에서 처리한 산물의 중금속 농도는 토양오염우려기준 중 3지역 기준에 적합하므로, 중금속 처리뿐만 아니라 처리한 산물을 육상에서 매립지용 복토재, 토목, 건설용 재생토사 등으로 재이용하기위한 처리기술로서 적합한 것으로 판단된다.

정화토의 순환골재 재활용 가능성 평가 (Evaluation of Potential Utility of Reclaimed Soil from Remediation Sites)

  • 한수호;김정욱;전순원;박승호;박형민;민선기;정명채
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제26권6호
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    • pp.27-35
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    • 2021
  • This study examined the possibility of reutilization of soil reclaimed from contaminated sites after completing remediation. The current status of soil remediation methods in Korea was reviewed and physicochemical properties of soil before and after remediation processes were examined to access the recycling possibility of reclaimed soils based on Recycling Aggregate Quality Standard. The most commonly practiced soil remediation techniques are soil washing, land farming, and thermal desorption. These techniques tend to deteriorate various soil properties including electrical conductivity(EC), organic matter content(OM), available P2O5, and cation exchange capacity(CEC). Evaluation of the properties of soil retrieved after each remediation process indicated soil washing may yield the most suitable soil for use as a filling, covering, back-filling, road pavement, and blocking materials, In addition, the soils reclaimed from land farming and thermal desorption have potential utility as a filling, covering and road pavement materials.

Permeable Reactive Barrier Using Atomizing Slag Material for Waste Contaminant Management

  • Chung Ha-Ik;Kim Sang-Keun;Chang Won-Seok
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2005년도 INTERNATIONAL SYMPOSIUM ON SOIL & GROUNDWATER ENVIRONMENT
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    • pp.122-122
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    • 2005
  • The remediation for contaminated soil and groundwater in contaminated site and waste site has to be compact and economic in maintaining and operating the system. In this study, the atomized slag was tested if they are an effective reactive material in permeable reactive barrier This novel reactive system technology was applied to the treatment of leachate from unplanned waste landfill. The system was optimized and developed to be commercialized.

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철도 유류 오염토양의 복원방안에 관한 기초연구 (A Basic Study on the Remediation of Railroad Oil-contamination Soil)

  • 정우성;박덕신;양지원
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2003년도 추계학술대회 논문집(III)
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    • pp.484-490
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    • 2003
  • Fundamental data was obtained to apply to the real contaminated soil of railroad by analyzing pollutant-elimination efficiency and process variables through electro-kinetic technology as well as by investigating Pollution sources of railroad soil contaminated by oil and pollution propensities.

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Monitoring of petroleum hydrocarbon degradative potential of indigenous microorganisms in ozonated soil

  • 안영희;정해룡;;;최희철;김인수
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2003년도 추계학술발표회
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    • pp.152-157
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    • 2003
  • Diesel-contaminated soils were ozonated for different times (0 - 900 min) and incubated for 9 wk to monitor petroleum hydrocarbons (PH)-degradative potential of indigenous microorganisms in the soils. Increased ozonation time decreased not only concentration of PH but also number of microorganisms in the soils. Microorganisms in the ozonated soils increased during 9-wk incubation as monitored by culture- and nonculture-based methods. Higher (1-2 orders of magnitude) cell number was observed by quantitative analysis of soil DNA using probes detecting genes encoding 165 rRNA(rrn), naphthalene dioxygenase (nahA), toluene dioxygenase (todC), and alkane hydroxylase (alkB) than microbial abundance estimated by culture-based methods. Such PH-degraders were relatively a few or under detection limit in 900-min ozonated soil. Further PH-removal observed during the incubation period supported the presence of PH-degraders in ozonated soils. Highest reduction (25.4%) of total PH (TPH) was observed in 180-min ozonated soil white negligible reduction was shown in 900-min ozonated soil during the period, resulting in lowest TPH-concentration in 180-min ozonated soil among the ozonated soils. Microbial community composition in 9-wk incubated soils revealed slight difference between 900-min ozonated and unozonated soils as analyzed by whole cell hybridization using group-specific rRNA-targeted oligonucleotides. Results of this study suggest that appropriate ozonation and subsequent biodegradation by indigenous microorganisms may be a cost-effective and successful remediation strategy for PH-contaminated soils.

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유류/중금속 복합오염토양 정화를 위한 다단 토양세척 효율평가 (Performance Evaluation of the Multistage Soil Washing Efficiency for Remediation of Mixed-contaminated Soil with Oil and Heavy Metals)

  • 김대호;박광진;조성희;김치경
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제22권2호
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    • pp.33-40
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    • 2017
  • In typical remediation practices, separate washing systems have to be applied to clean up the soils contaminated with both oil and heavy metals. In this study, we evaluated the efficiency of successive two-stage soil washing in removal of mixed-contaminants from soil matrix. Two-stage soil washing experiments were conducted using different combinations of chemical agent: 1) persulfate oxidation, followed by organic acid washing, and 2) Fenton oxidation, followed by inorganic acid washing. Persulfate oxidation-organic acid washing efficiently removed both organic and inorganic contaminants to meet the regulatory soil quality standard. The average removal rates of total petroleum hydrocarbons (TPH), Cu, Pb, and Zn were 88.9%, 82.2%, 77.5%, and 66.3% respectively, (S/L 1:10, reaction time 1 h, persulfate 0.5 M, persulfate:activator 3:1, citric acid 2 M). Fenton oxidation-inorganic acid washing also gave satisfactory performances to give 89%, 80.9%, 87.1%, and 67.7% removal of TPH, Cu, Pb, and Zn, respectively (S/L 1:10, reaction time 1 hr, hydrogen peroxide 0.3 M, hydrogen peroxide:activator 5:1, inorganic acid 1 M).