• 제목/요약/키워드: remediation efficiency

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흡착재와 Electrokinetic 기법을 이용한 납 오염토의 고정화 (Immobilization of Lead in Contaminated Soil by Ekectrokinetic Remediation and Adsorbent)

  • 한상재;김병일;이군택;김수삼
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제10권2호
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    • pp.1-11
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    • 2005
  • 본 논문은 납 오염토에 대한 정회를 목적으로 EK 기법을 적용할때 기존의 EK 기법의 한계성을 극복하고자 향상기법으로써 흡착재(Apatite, Zeolite)를 이용하여 중금속의 고정화를 시도하였다. EK 추출을 위해서 우선 납에 대한 흡착능 실험을 실시하였고 오염농도, 전압조건, 가동시간 등을 달리하여 납이온을 흡착재 설치 위치로 이동시켜 고정화를 유도하였다. 그 결과 설험 조건에 따라 오염물의 이동 특성이 달라 정화 효율에 차이가 있었으며 전극교환과 흡착재의 설치 위치의 추가로 고정화 효율을 증진시켜 시료의 전 구간에서 미국 EPA의 TCLP 용출기준을 만족시킬 수 있었다. 특히 인회석의 흡착 고정화 능력은 탁월한 것으로 판명되어 EK 향상기법으로써 흡착재의 적용 기능성을 확인하였다.

온도에 따른 원유분해미생물의 생물학적 정화효율 평가 (Evaluation of Bioremediation Efficiency of Crude Oil Degrading Microorganisms Depending on Temperature)

  • 김종성;이인;정태양;오승택;김국진
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제21권1호
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    • pp.72-79
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    • 2016
  • Bioremediation is one of the most effective ways to remediate TPH-contaminated sites. However, under actual field conditions that are not at the optimum temperature, degradation of microorganisms is generally reduced, which is why the efficiency of biodegradation is known to be significantly affected by the soil temperature. Therefore, in this study, the labscale experiment was conducted using indigenous crude oil degrading microorganisms isolated from crude oil contaminated site to evaluate the remediation efficiency. Crude oil degrading microorganisms were isolated from crude oil contaminated soil and temperature, which is a significant factor affecting the remediation efficiency of land farming, was adjusted to evaluate the microbial crude oil degrading ability, degradation time, and remediation efficiency. In order to assess the field applicability, the remediation efficiency was evaluated using crude oil contaminated soil (average TPH concentration of 10,000 mg/kg or more) from the OO premises. Followed by the application of microorganisms at 30℃, the bioremediation process reduced its initial TPH concentration of 10,812 mg/kg down to 1,890 mg/kg in 56 days, which was about an 83% remediation efficiency. By analyzing the correlation among the total number of cells, the number of effective cells, and TPH concentration, it was found that the number of effective microorganisms drastically increased during the period from 10 to 20 days while there was a sharp decrease in TPH concentration. Therefore, we confirmed the applicability of land farming with isolated microorganisms consortium to crude oil contaminated site, which is also expected to be applicable to bioremediation of other recalcitrant materials.

전극배치에 따른 2차원적 동전기 정화 특성의 수치해석 (The Numerical Analysis of Two-Dimensional Electrokinetic Remediation Characteristics Dependent on Electrode Configurations)

  • 김수삼;한상재;김병일
    • 대한토목학회논문집
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    • 제26권5C호
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    • pp.291-301
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    • 2006
  • 본 논문에서는 HERO-2D를 이용하여 전극배치에 따른 2차원 동전기 정화 특성을 예측하였다. 즉 1차원 전극배치와 2차원 전극배치에 대해 전극 간 간격을 변화시키면서 나타나는 동전기 현상을 예측하고, 이러한 예측결과를 토대로 소비 전력량, 전극 설치 비용과의 상관관계를 분석하여 각각의 전극배치마다의 전극간격을 결정하였다. 연구 결과 대상지역의 높은 정화효율이 요구되는 경우에는 높은 전체 정화효율을 나타내는 전극배치를 채택하는 것이, 대상부지에서 시공상의 어려움이 예상되는 경우에는 2차원 전극배치에 비해 시공이 용이한 1차원 전극배치를 채택하는 것이 바람직한 것으로 나타났다. 4각형 전극배치는 전력소비량과 단위전력당 정화속도, 그리고 전극설치비용 등 경제성 면에서 다른 전극배치보다 우수함을 보여주고 있기 때문에, 시공에 투입되는 비용 절감을 목적으로 할 경우에 적용한다면 최적의 결과를 얻을 수 있을 것이라 판단된다.

Electrokinetic Soil Flushing with Nonionic Surfactant for Removal of Phenanthrene

  • 이유진;박지연;김상준;기대정;양지원
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2003년도 추계학술발표회
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    • pp.356-359
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    • 2003
  • Polycyclic aromatic hydrocarbons (PAHs) are representative hydrophobic organic carbons (HOCs). Surfactant-enhanced electrokinetic (EK) remediation is an innovative in-situ technology that can effectively remove HOCs from low-permeability soils. In this study, the electrokinetic remediation using Tergitol 15-S-12, a nonionic surfactant, was conducted for the removal of phenanthrene from kaolinite. Tergitol 15-S-12 was used at concentrations of 1.5, 2.0, 2.5 and 7.5 g/L to enhance the solubility of phenanthrene. When the surfactant solution was applied to EK system, high electrical potential gradient was maintained and the amount of electroosmotic flow decreased. Removal efficiency of phenanthrene was proportional to the concentration of Tergitol 15-S-12 because the solubility and mobility of phenanthrene was enhanced by surfactant micelle. Therefore, the suitable concentration of nonionic surfactant Tergitol 15-S-12 is expected to improve the removal efficiency of PAHs in EK remediation.

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초음파동전기기법을 이용한 비소, 카드뮴, 납으로 오염된 사질토 정화 연구 (Removal of As, Cadmium and Lead in Sandy Soil with Sonification-Electrokinetic Remediation)

  • 오승진;오민아;이재영
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제18권7호
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    • pp.1-11
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    • 2013
  • The actively soil pollution by the toxic heavy-metals like the arsenic, cadmium, lead due to the industrialization and economic activity. The uses the electrokinetic remediation of contaminated soil has many researches against the fine soil having a small size in the on going. However, it is the actual condition which the research result that is not effective due to the low surface charge of the particle and high permeability shows in the electrokinetic remediation in comparison with the fine soil in the case of the sandy soil in which the particle size is large. In this research, the electrokinetic remediation and ultrasonic wave fetch strategy is compound applied against the sandy soil polluted by the arsenic, cadmium, and lead removal efficiency of the sandy soil through the comparison with the existing electrokinetic remediation tries to be evaluated. First of all, desorption of contaminants in soil by ultrasonic extraction in the Pre-Test conducted to see desorption effective 5~15%. After that, By conducted Batch-Test results frequency output century 200 Khz, reaction time 30 min, contaminated soil used in experiment was 500 g. Removal efficiency of arsenic, cadmium, lead are 25.55%, 8.01%, 34.90%. But, As, Cd, Pb remediation efficiency less than 1% in EK1(control group).

동전기 기술과 계면활성제를 이용한 clay에서의 Phenanthrene 제거

  • 박지연;이현호;조현정;양지원
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2000년도 창립총회 및 춘계학술발표회
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    • pp.121-124
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    • 2000
  • In-situ soil remediation using electrokinetics has been investigated and the attempts for the removal of hydrocarbons have been continued. In this study, the electrokinetic remediation using three different kinds of surfactnats was conducted for the removal of phenanthrene from clay The used surfactnats were APG, Brij30 and SDS. In the solubility test for phenanthrene, the experimental result was APG

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간접열탈착방식을 이용한 원유오염토양 정화효율 평가 (The Study of Crude Oil Contaminated Soil Remediation by Indirect Thermal Desorption)

  • 이인;김종성;정태양;오승택;김국진
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제21권3호
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    • pp.14-20
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    • 2016
  • Remediation of crude oil contaminated soil is complicate and hard to apply traditional methods because of its persistency, durability, and high viscosity. Therefore, in this study, the efficiency of crude oil contaminated soil remediation was tested by developing a pilot-scale thermal desorption system using the indirect heating method with an exhaust gas treatment. Under optimal condition drawed by temperature and retention time, the remedial efficiency of crude oil contaminated soil and treatability of exhaust gas were analyzed. Total Petroleum Hydrocarbon (TPH) concentration of crude oil contaminated soil was decreased to 69.7 mg/kg on average and the remedial efficiency was measured at 99.60%. Through the exhaust gas, 86.0% of Volatile Organic Compounds (VOC) was degraded and 97.16% of complex malodor was reduced under the suggested optimum operation condition. This study provides important basic data to be useful in scaling up of the indirect thermal desorption system for the remediation of crude oil contaminated soil.

Remediation of cesium-contaminated fine soil using electrokinetic method

  • Kim, Ilgook;Kim, June-Hyun;Kim, Sung-Man;Park, Chan Woo;Yang, Hee-Man;Yoon, In-Ho
    • Membrane and Water Treatment
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    • 제11권3호
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    • pp.189-193
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    • 2020
  • In this study, electrokinetic remediation equipment was used to remove cesium (Cs) from clay soil and waste solution was treated with sorption process. The influence of electrokinetic process on the removal of Cs was evaluated under the condition of applied electric voltage of 15.0-20.0 V. In addition to monitoring the Cs removal, electrical current and temperature of the electrolyte during experiment were investigated. The removal efficiency of Cs from soil by electrokinetic method was more than 90%. After electrokinetic remediation, Cs was selectively separated from soil waste solution using sorbents. Various adsorption agents such as potassium nickel hexacyanoferrate (KNiHCF), Prussian blue, sodium tetraphenylborate (NaTPB), and zeolite were compared and KNiHCF showed the highest Cs removal efficiency. The Cs adsorption on KNiHCF reached equilibrium in 30 min. The maximum adsorption capacity was 120.4 mg/g at 0.1 g/L of adsorbent dosage. These results demonstrated that our proposed process combined electrokinetic remediation of soil and waste solution treatment with metal ferrocyanide can be a promising technique to decontaminate Cs-contaminated fine soil.

Effects of Plant and Soil Amendment on Remediation Performance and Methane Mitigation in Petroleum-Contaminated Soil

  • Seo, Yoonjoo;Cho, Kyung-Suk
    • Journal of Microbiology and Biotechnology
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    • 제31권1호
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    • pp.104-114
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    • 2021
  • Petroleum-contaminated soil is considered among the most important potential anthropogenic atmospheric methane sources. Additionally, various rhizoremediation factors can affect methane emissions by altering soil ecosystem carbon cycles. Nonetheless, greenhouse gas emissions from soil have not been given due importance as a potentially relevant parameter in rhizoremediation techniques. Therefore, in this study we sought to investigate the effects of different plant and soil amendments on both remediation efficiencies and methane emission characteristics in diesel-contaminated soil. An indoor pot experiment consisting of three plant treatments (control, maize, tall fescue) and two soil amendments (chemical nutrient, compost) was performed for 95 days. Total petroleum hydrocarbon (TPH) removal efficiency, dehydrogenase activity, and alkB (i.e., an alkane compound-degrading enzyme) gene abundance were the highest in the tall fescue and maize soil system amended with compost. Compost addition enhanced both the overall remediation efficiencies, as well as pmoA (i.e., a methane-oxidizing enzyme) gene abundance in soils. Moreover, the potential methane emission of diesel-contaminated soil was relatively low when maize was introduced to the soil system. After microbial community analysis, various TPH-degrading microorganisms (Nocardioides, Marinobacter, Immitisolibacter, Acinetobacter, Kocuria, Mycobacterium, Pseudomonas, Alcanivorax) and methane-oxidizing microorganisms (Methylocapsa, Methylosarcina) were observed in the rhizosphere soil. The effects of major rhizoremediation factors on soil remediation efficiency and greenhouse gas emissions discussed herein are expected to contribute to the development of sustainable biological remediation technologies in response to global climate change.

비포화대 오염정화 설계를 위한 공압파쇄 모사 해석 (A Numerical Analysis on Pneumatic Fracturing for in-situ Remediation)

  • 권미선;박은규;이철효;김용성;김남진
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제15권6호
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    • pp.53-63
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    • 2010
  • Pneumatic fracturing is an emerging tool to enhance the remediation efficiency of contaminated unsaturated zones by injecting high pressure air and inducing artificial fracture networks. Pneumatic fracturing is reported to be well suited for the cases where the contaminated unsaturated zone thickness is less than 5 m as many contaminated domestic sites in Korea. Nevertheless, there have been almost no studies carried out on the site-specific efficiency and the optimized design of pneumatic fracturing considering the unsaturated zone characteristics of Korea. In this study, we employ numerical simulations to compare the efficiency of pneumatic fracturing on the aspect of the site remediation and the porosity improvement at several hypothetic unsaturated zones composed of four typical soil types. According to the simulation results, it is found that the zone with fine grains soil such as clay and silt shows better efficiency than the zone composed of coarse grains in terms of air flow and porosity enhancements. The results imply that pneumatic fracturing may improve the efficiency of site reclamation by jointly or independently applied to the many contaminated sites in Korea.