• 제목/요약/키워드: Soil-remediation

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토양세척법에 의한 클레이사격장 납 오염토양의 정화에 관한 연구 (A Study on the Remediation of Lead Contaminated Soil in a Clay Shooting Range with Soil Washing)

  • 이인화;설명수
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제15권5호
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    • pp.23-31
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    • 2010
  • For an efficient remediation of Pb-contaminated soil (S-1) in a clay shooting range, a soil washing test was performed with mineral acid, organic acid, chelating agent, and chloride. The Pb extraction efficiency of extractant (0.1 M) used in the washing test showed the order of HCl > $Na_2$-EDTA > NTA > DTPA > citric acid > malic acid > succinic acid > acetic acid > $CaCl_2$ > $MgCl_2$, for S-1 soil. As compared to initial Pb concentration, extraction efficiency by the concentration of extractant was 93.35%, 80.80%, 73.92%, and 24.57% in S-1 soil for HCl (0.5 M, pH 1.10), $Na_2$-EDTA (0.01 M, pH 3.99), citric acid (0.5 M, pH 1.27), and $MgCl_2$ (0.1 M, pH 8.82), respectively. S-1 soil had 56.83% of residue form and 43.17% of non-residue form (18.04% of exchangeable form), respectively. Although the concentrations of these fractions sharply decreased after HCl washing, since the exchangeable forms with relatively large mobility are still distributed as high as 18.78% (to Pb total content in residual soils) in S-1 soil, it is necessary to devise a proper management plan for residual soils after soil washing application.

디젤로 오염된 군부대 토양에 대하여 토착미생물 4종을 이용한 생분해법의 TPH 제거 효율 규명 (TPH Removal of the Biodegradation Process Using 4 Indigenous Microorganisms for the Diesel Contaminated Soil in a Military Camp)

  • 박민호;이민희
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제17권3호
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    • pp.49-58
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    • 2012
  • Batch experiments using indigenous and commercialized adventive microorganisms were performed to investigate the feasibility of the biodegradation process for the diesel contaminated soil, which was taken in US Military Camp 'Hialeah', Korea. TPH concentration of the soil was determined as 3,819 mg/kg. Four indigenous microorganisms having high TPH degradation activity were isolated from the soil and by 16S rRNA gene sequence analysis, they were identified as Arthrobacter sp., Burkholderia sp., Cupriavidus sp. and Bacillus sp.. Two kinds of commercialized solutions cultured with adventive microorganisms were also used for the experiments. Various biodegradation conditions such as the amount of microorganism, water content and the temperature were applied to decide the optimal bioavailability condition in the experiments. In the case of soils without additional microorganisms (on the natural attenuation condition), 35% of initial TPH was removed from the soil by inhabitant microorganisms in soil for 30 days. When the commercialized microorganism cultured solutions were added into the soil, their average TPH removal efficiencies were 64%, and 54%, respectively, which were higher than that without additional microorganisms. When indigenous microorganisms isolated from the contaminated soil were added into the soil, TPH removal efficiency increased up to 95% (for Bacillus sp.). According to the calculation of the average biodegradation rates for Bacillus sp., the remediation goal (87% of the removal efficiency: 500 mg/kg) for the soil would reach within 24 days. Results suggested that TPH removal efficiency of biodegradation by injecting indigenous microorganisms is better than those by injecting commercialized adventive microorganisms and only by using the natural attenuation.

연안 저질 개선을 위한 석탄회 조립물의 활용 (Application of Granulated Coal Ash for Remediation of Coastal Sediment)

  • 김경회;이인철;류성훈;사이토 타다시;히비노 타다시
    • 한국해양환경ㆍ에너지학회지
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    • 제17권1호
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    • pp.1-7
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    • 2014
  • 본 논문에서는 석탄회 조립물을 이용한 저질개선 기술의 안전성 및 저질개선기구에 대해 논하고, 일본 카이타만 석탄회 조립물 피복구간에서의 저질개선효과에 대해 검토하였다. 석탄회 조립물의 중금속 농도 및 용출량은 일본의 환경기준을 만족하는 것으로 조사되었으며, 석탄회 조립물의 저질개선기능은 다음과 같이 요약할 수 있다. (1) 인산염 및 황화수소의 제거 (2) 산성 저질의 중화 (3) 투수성의 증가 및 이로 인한 환원상태 저질의 개선 (5) 지반강도의 증가 (6) 부착성 조류의 서식 기반. 일본 카이타만에서 실시한 현장실증실험 결과로부터 연안저질의 pH중화, 인산염 및 황화수소 농도 감소 등 석탄회 조립물의 저질개선효과가 검증되었으며, 이에 따른 저서생물의 증가가 확인되었다. 석탄회 조립물을 이용한 연안저질의 개선기술이 실용화 된다면 오염저질의 정화에 소요되는 비용의 절감은 물론 산업부산물인 석탄회의 재활용에 기여할 것으로 기대된다.

영가철 및 산업폐기물을 활용한 비소오염토양의 안정화 효과조사 (Investigation of Stabilization Effect on Arsenic Contamination Soils using Zerovalent Iron and Industrial by-products)

  • 유찬;윤성욱;백승환;박진철;이정훈;임영철;최승진;장민
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 춘계 학술발표회 초청강연 및 논문집
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    • pp.229-241
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    • 2008
  • In order to investigate stabilization effect on As-contaminated soils treated by zero-valent iron(ZVI) and industrial by-products, batch tests and column tests were carried out with As-contaminated soils collected from farmland around the abandoned mine site. In batch tests, ZVI and industrial by-products(blast furnace slag, steel refining slag and oyster shell powder) were used as treatment materials to reduce As. Industrial by-products were mixed with As-contaminated soils, in the ratio of 1%, 3%, 5% and 7% on the weight base of dried soil. After incubation, all samples showed the reduction of As concentration and it was expected that ZVI and steel refining slag were effective treatment materials to remove As among treatment materials used in batch test. In column tests, columns were made by acrylic with the dimension of diameter=10cm, height=100cm, thickness=1cm and these columns were filled with untreated soils and treated soils mixed with ZVI and steel refining slag(mixing ratio=3%). Distilled water was discharged into the columns with the velocity of 1 pore-volume/day. During test, pH, EC, Eh and As concentration were measured in the regular term(1 pore-volume). As a result, ZVI and steel refining slag were shown 93%, 62% reduction of As concentration respectively by comparison with untreated soils. Therefore, if ZVI and steel refining slag are used as treatment materials in As-contaminated soils, it is expected that the As concentration in soils is reduced effectively.

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나선형패들이 장착된 토양전기분해장치를 이용한 중금속 오염토양 정화에 관한 연구 (A Study on Remediation of Heavy Metal Contaminated Soil using a Soil Electrolysis Apparatus with Spiral Paddle)

  • 이준희;최영익;정진희
    • 한국환경과학회지
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    • 제26권6호
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    • pp.797-802
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    • 2017
  • This study aimed to remove organic matter and heavy metals that could affect the recycling of soils contaminated by heavy metals, by means of electrolysis, carried out simultaneously with the leaching of the soil. To ensure better experimental equipment, a soil electrolysis apparatus, equipped with spiral paddles, was used to agitate the heavy-metal-contaminated soil effectively. The heavy-metal-contaminated soil was electrolyzed by varying the voltage to 5 V(Condition 1), 15 V(Condition 2), and 20 V(Condition 3), under the optimal operating conditions of the electrolysis apparatus, as determined through previous studies. The results showed that the pH of the electrolyte solution and the heavy-metal-contaminated soil, after electrolysis, tended to decrease with an increase in voltage. The highest removal efficiencies of TOC and $COD_{Cr}$ were 18.8% and 29.1%, 38.8% and 4.2%, and 33.3% and 50.0%, under conditions 1, 2 and 3, respectively. Heavy metals such as Cd and As were not detected in this experiment. The removal efficiencies of Cu, Pb and Cr were 4.7%, 8.3% and 2.1%, respectively, under Condition 1, while they were 42.9%, 15.2% and 22.1%, respectively, under Condition 2, and 4.7%, 23.0%, and 24.9%, respectively, under Condition 3. These results suggest that varying the voltage with the soil electrolysis apparatus for removing contaminants for the recycling of heavy-metal-contaminated soil allows the selective removal of contaminants. Therefore, the results of this study can be valuable as basic data for future studies on soil remediation.

Sequential Extraction을 이용한 중금속(납.구리)과 토양 결합 기작 연구 (Characteristics of Heavy Metals In Contaminated Soil-Metal Binding Mechanism through Sequential Extraction in Soils with Lead and Copper)

  • 조미영;현재혁;김원석
    • 한국토양환경학회지
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    • 제4권3호
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    • pp.77-84
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    • 1999
  • 본 논문에서는 고농도의 중금속 (납, 구리)으로 오염된 세 가지의 토양을 대상으로 sequential extraction 방법을 사용하여 토양과 중금속의 차이에 따른 결합 특성을 밝혀내고자 하였다. 고농도의 납과 구리로 오염된 토양을 형태별로 추출하였을 때 토양의 특성과 중금속의 종류에 따라 다른 결과를 보였다. 납은 문화동 토양에서는 Carbonate 형태가 37.7%로 가장 높았고 농토는 Amorphous Fe oxide 형태가 23.9%, 공단 토양에서는 Exchangeable 형태가 22.9%로 나타났다. 이에 비하여 구리는 세 가지 토양에서 공통적으로 Organically bound 형태가 농토에서 26.1%, 문화동 토양은 20.4%. 공단 토양에서는 24.1%로 높게 나타났고 Carbonate 형태와 Amorphous Fe oxide형태의 비율도 높게 나타났다. 또한 Crystallized Fe oxide 형태와 Residuals 형태도 납보다 높은 비율을 나타냄으로서 구리가 납보다는 토양과 강한 결합을 형성하는 것으로 생각된다. 이러한 토양과 중금속의 결합 특성은 오염 토양의 복원시 유용한 자료가 될 수 있다.

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