• Title/Summary/Keyword: 생물 오염

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Effects of Organic Amendments on Heavy Mineral Oil Biodegradation (중질유 오염토양의 생물학적 처리에 있어 amendments의 효과)

  • Lee, Sang-Hwan;Kim, Eul-Young;Choi, Ho-Jin
    • Journal of Soil and Groundwater Environment
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    • v.12 no.5
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    • pp.54-63
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    • 2007
  • To examine the effects of amendments on heavy mineral oil degradation, a pilot scale experiment was conducted for over 105days. During the experiment, soil samples were collected and analyzed periodically for the determination of residual hydrocarbon and microbial activities. At the end of the experiment, the initial level of contamination ($6,205{\pm}173mgkg^{-1}$) was reduced by $33{\sim}45%$ in the amendment amended soil; whereas only 8% of the hydrocarbon was eliminated in the non-amended soil. Heavy mineral oil degradation was much faster and more complete in compost amended soils. Enhanced dissipation of heavy mineral oil in compost amended soil might be derived from increased microbial activities (respiration, microbial biomass-C) and soil enzyme activity(lipase, dehydrogenase, and FDA hydrolase) were strongly correlated with heavy mineral oil biodegradaton (P < 0.01).

Bacterial Behavior in Soil under Electric Field and its Effect on Electrokientic Bioremediation (전기장하 토양내에서 미생물 이동특성과 동전기 생물학적복원의 효과)

  • Kim, Sang-Joon;Park, Ji-Yeon;Lee, You-Jin;Yang, Ji-Won
    • KSBB Journal
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    • v.21 no.3
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    • pp.175-180
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    • 2006
  • In this study, it could be found that the microbial movement in soil under electric field mainly occurred by electrophoresis and electroosmosis. The contribution of electrophoresis on the microbial mobility and flux was generally higher than that of electroosmosis. In the electrokinetic(EK) bioremediation of a pentadecane-contaminated soil, the microbial population increased simultaneously at anode and cathode regions of the soil specimen because both electrophoresis and electroosmosis affected on the microbial movement. After initial operation, the microbial population was high in order of anode, middle, and cathode regions due to their negatively-charged surface and oxygen generation at anode. However, the uniform contaminant removal was achieved by the microbial movement with two-directionality.

Development of a test system for analysis of air bubble behavior (에어버블 거동 분석을 위한 실험장치 개발)

  • Lee, Hyo Sang;Chang, Hyung Joon;Lee, Ho Jin
    • Proceedings of the Korea Water Resources Association Conference
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    • 2016.05a
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    • pp.475-475
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    • 2016
  • 생활의 편의를 위하여 인간은 여러 종류의 시설을 만들고 있으며, 이에 필요한 전기를 공급하기 위하여 여러 종류의 발전소를 건설 운영하고 있다. 특히, 원자력 발전은 2014년을 기준으로 전체 전력생산량의 약 30%를 담당하고 있으며, 늘어나는 전력 수요를 감당하기 위하여 다수의 원자력 발전소 건설계획을 수립하고 있다. 원자력 발전소는 발전과정에서 생성되는 고열을 냉각시키기 위하여 다량의 물을 필요로 하기 때문에 연안에 위치한다. 물을 안정적으로 취수하는 것은 원자력 발전소의 안정성 확보에 큰 영향을 미치는 요소이다. 하지만, 유류 등의 오염 물질 또는 해파리 등의 생물체에 의하여 취수구가 마비되어 냉각수를 공급하지 못하는 사고가 종종 발생하고 있다. 원자력 발전소가 발전 중단이 되면 하루 약 10억원의 경제적 손실이 발생할 수 있고, 동일본 대지진의 예에서 확인할 수 있는 바와 같이 2차 피해가 발생하여 엄청난 재앙을 초래할 수 있다. 취수구로 유입되는 유류 등의 오염물질과 생물체를 차단하기 위하여 물리적인 방법과 생물학적 방법을 이용한 여러 가지 장치 및 기법이 고안되고 있지만, 생물학적인 방법은 개체군과 종류의 변화로 그 적용이 곤란하여 물리학적인 방법을 이용한 연구가 주를 이루고 있다. 대표적인 물리학적 장치는 해파리 제거용 그물이 있으나, 포집되는 해파리의 지속적인 제거를 위한 비용적인 문제와, 잠수부의 안전 문제가 발생하고 있다. 이와 같은 문제를 해결하기 위해서 최근 가장 주목받고 있는 방법은 에어버블을 이용하여, 유해 물질과 생물체를 차단하는 방법이다. 에어버블은 수심조건에 영향을 받지 않고, 취수구가 설치된 영역으로 유해물질의 유입 자체를 방어할 수 있어 몇 몇 선진국에서는 실용화 단계에 접어들고 있다. 본 연구에서는 에어버블 거동을 특성을 파악하기 위해서는 에어버블의 상승속도, 특성, 압력 및 수심조건 등을 고려할 수 있는 실험 장치를 개발하는 것을 목적으로 하였다. 이를 위하여 선행연구결과 및 현장조건을 고려하여, 취급이 간단하고, 실험조건 조절이 용이한 원통형 실험 장치를 개발하였다.

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A Preliminary Research of Design and Operation of Riparian Buffer Zones for Reduction of Water Pollutants and Construction of Wildlife Habitat (수질정화 및 생태서식처 조성을 위한 수변완충지대 설계 및 운영 방안 기초연구)

  • Chung, Sang-Joon;Woo, Hyo-Seop;Oh, Jong-Min;Choi, I-Song;Ahn, Hong-Gyu
    • Proceedings of the Korea Water Resources Association Conference
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    • 2006.05a
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    • pp.1073-1077
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    • 2006
  • 급속한 산업화로 인한 오염물질의 증가와 생물서식처의 감소는 수자원과 생태계를 위협하고 있다. 국내의 경우 수자원의 질을 개선하기 위해 '90년대 초부터 하수처리시설 등의 저감시설을 대폭 확충하였으나 현재까지 팔당호 등 주요상수원이 목표수질에 못 미치고 있으며 그 원인은 유입오염물질의 $22{\sim}37%$를 차지하는 비점오염원으로 지목되고 있다. 또한 생태.경관적 가치가 높은 수변지역은 각종 개발로 생물서식처가 급속도로 감소하여 종 다양성 보전 측면에서 대책마련이 시급한 실정이다. 이와 유사한 상황에 직면한 선진외국에서는 '하천회랑(river corridor)' 또는 '토양 및 생태시스템을 포함하는 수역과 육역의 점이(漸移)지대'를 의미하는 이른바 '수변완충지대(Riparian Buffer Zones)'의 오염정화 및 생태조성 효과 등의 연구를 통해 효율적 조성방안을 제시하고 있으며 다양한 형태로 현장에 적용하고 있다. RBZs의 일반적인 기능으로는, 유사나 오염물질의 여과 및 차단(필터링 효과), 영양염류의 저감, 하천변 식생을 통한 수자원의 정화 및 강턱의 안정화, 홍수로 인한 하천침식의 방지, 수변 생물 서식처 제공, 수변 그늘 제공에 의한 수온상승 방지, 심미 교육 위락 공간 제공 등이다. 본 연구에서는 외국의 RBZs(Riparian Buffer Zones)가이드라인을 참고하여 국내실정에 맞는 파일럿 규모의 시험완충지를 설계 및 조성하였다. 시험완충지는 남한강 연안에 초본류, 갈대류, 관목류, 자연식생, 혼합식생 등 5가지 'dry biotope'형태로 설치하여 1년간 계절별로 운영하였다. 또한 실험의 정량화와 다양한 조건변화를 위해 차수막, 위어, 유량.농도 조절장치, 라이시미터 등 보조시설을 설치하였고, 정기적인 모니터링을 실시하였다. 조사결과 외국사례를 살펴보면 RBZs의 적정 폭은 수질정화기능의 경우 $15{\sim}30m$, 생태서식처 기능은 최소 90m이상으로 제시되며, 시험완충지의 수질정화효과는 SS, T-N, T-P, TOC의 평균저감율이 각각 50%이상으로 나타났다. 식생모니터링 결과, 환삼덩굴 등 우점종의 잠식속도는 약 15일이며 갈대와 갯버들의 경우 우기시 인공목책호안과 동일한 침식방지 효과를 보이는 것으로 관찰되어 식생의 주기적인 모니터링과 지역 특성에 적합한 우점종 선정이 매우 중요한 것으로 판단된다.

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Characteristics of Nutrient Removal and Membrane Fouling in a Membrane Bioreactor using Food Waste as an Additional Carbon Source (음식폐기물 응축수를 보조탄소원으로 이용하는 막 결합 생물 응조에서의 질소, 인 제거와 막 오염 특성)

  • Ahn, Young-Tae;Youn, Jong-Ho;Chae, So-Ryong;Shin, Hang-Sik
    • Journal of Korean Society of Environmental Engineers
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    • v.27 no.5
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    • pp.519-524
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    • 2005
  • Due to the low C/N ratio of domestic wastewater characteristic, addition of external carbon source for the effective N and P removal is necessary. High organic content of food waste can be used for the external carbon source in biological nutrient removal processes, The applicability of condensate of food waste (CFW), which is produced during the high-rate fermentation process, was examined in membrane bioreactor for the nutrient removal. Under the various operating conditions, nutrient removal efficiencies and membrane fouling characteristics were evaluated using synthetic wastewater. From nitrate utilization rate (NUR) test, denitrification rate was 0.19 g $NO_3-N/g$ VSS/day. With the addition of CFW increased, average removal efficiencies of T-N and T-P could be increased up to 64% and 41%, respectively. Also the optimal retention time was 3 hr/5 hr for anoxic/aerobic reactor. When applied to real sewage, membrane fouling resistance was increased up to 60%, which could be reduced from $10.4{\times}10^{12}m^{-1}$ to $5.9{\times}10^{12}m^{-1}$ with the control of influent suspended solid concentration. In summary, it was suggested that CFW could be used as an economical and effective carbon source for membrane assisted biological N and P removal.

The Study for Practical use of Bioremediation Agent in Oil-Contaminated Area (해상유출유 오염지역에서의 미생물처리제 활용 방안 연구)

  • Chung Jin-Won;Yoon Joo-yong;Shin Jae-Rouk;Kim Han-Gyu
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.6 no.2
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    • pp.3-15
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    • 2003
  • Recently more than 450 incidents of oil spill a year have occurred in nearshore of Korea, which caused unmeasurelable losses in fisheries and severe damage in marine ecosystem. Two approaches remain paramount in any response to marine oil spill : the enhancement of natural dispersion of the oil by using dispersants, and mechanical recovery using booms and skimmers. A technique currently receiving fresh attention is the enhancement of the natural bioremediation of oil through the application of micro-organisms and/or nutrient. Oil, like many natural substances, will biodegrade over a period of time into simple compounds such as carbon dioxide, water and biomass. Bioremediation is the term used to describe a range of processes which can be used to accelerate natural biodegradation. More specifically biostimulation is the application of nutrients, and bioaugremetation or seeding is the addition of microbes specially selected to degrade oil. Bioremediation is an economically attractive method for the clean-up of oil-contaminated area. Bioremediation has been demonstrated to be an effective oil spill countermeasure for use in cobble, sand beach, salt marsh, and mud flat environment.

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A Field Study on the Enhancement of Landfarming Performance Using Oil-degradable Microbes Adapted to Various Temperature Range (생장 온도 범위별 최적의 유류분해 미생물을 이용한 토양경작 정화기술의 효율성 제고에 관한 현장 적용성 연구)

  • Yu, Jae-Bong;Kim, Jeong-Ho;Kim, Guk-Jin;Oh, Seung-Taek;Lee, Cheol-Hyo;Park, I-Kyong;Chang, Yoon-Young
    • Journal of Soil and Groundwater Environment
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    • v.14 no.5
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    • pp.10-17
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    • 2009
  • Bioremediation has been applied as a proven technology in remediation of TPH contaminated soil. However, the efficiency of biodegradation is dependent on temperature as microbial activity is depressed at lower temperature ranges ($30^{\circ}C{\sim}80^{\circ}C$). The objective of this study was to develop microbes with enhanced activities at the stated temperature conditions and to evaluate the remediation effectiveness of these microbes in TPH contaminated soil. Experiments were conducted to isolate hydrocarbon degradable microbial consortia cultured under different temperature conditions. It was found that there were 5 strains of mesophilic ($30^{\circ}C$) and 3 strains of psychrophilic ($80^{\circ}C$) microbes. The TPH concentration was reduced from 4,044 mg/kg to 1,084 mg/kg, (73.2%) in 10 days by using mesophilic microbial consortia and from 5,427 mg/kg to 1,756 (67.6%) in 50 days with psychrophilic microbial consortia in laboratory cultures under controlled conditions. This rate determination excluded physical degradation such as venting and dilution. A field study was then performed to examine the feasibility of applying these microbes in the land-farming process. In this case, 87.1% of the 2,560 mg/kg TPH contaminated soil was degraded in 56 days. The biodegradation rate coefficient (k) was $0.0374\;day^{-1}$. Findings of this study provide viable options for applying microbes for bioremediation of TPH in lower temperature conditions.

Bioassessment of Heavy Metals, Nanoparticles, and Soils Contaminated with Metals using Various Bioassays (다양한 독성법을 이용한 중금속, 나노입자 및 금속오염 토양 평가)

  • Kong, In Chul;Shi, Yu Tal;Lee, Min Kyung;Kang, Il Mo
    • Economic and Environmental Geology
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    • v.48 no.3
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    • pp.261-271
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    • 2015
  • Toxicity results of metals, nanoparticles (NPs), and soils contaminated with metals were introduced on this review. Following methods were used: seed germination, bioluminescence, enzyme activity, and mutation. In general, different sensitivities were observed, depending on types of bioassays and pollutants. Among tested seeds, sensitivities of Lactucus and Raphanus were greater than others. Of single metal exposure, effect by As(III) was greater than others, and high revertant mutation ratio (5.1) was observed at 1 mg/L arsenite, indicating high mutagenicity. No general pattern was observed on the effect of metal mixture, but synergistic effect was observed with seeds. In case of soils, no correlation was observed between total metal contents and toxicity. Toxicity of NPs was observed as follows: CuO > ZnO > NiO > $TiO_2$, $Fe_2O_3$, $Co_3O_4$. Especially, no considerable effects were observed by $TiO_2$, $Fe_2O_3$, and $Co_3O_4$ under tested concentration (max. 1,000 mg/L). The evaluation results of interactive toxic effects using various bioassays may comprise a useful tool for the bioassessment of various environmental pollutants.

Interaction Between Plants and Rhizobacteria in Phytoremediation of Heavy Metal- Contaminated Soil (중금속 오염 토양의 식물상 복원에 있어 식물과 근권세균의 상호작용)

  • Koo So-Yeon;Cho Kyung-Suk
    • Microbiology and Biotechnology Letters
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    • v.34 no.2
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    • pp.83-93
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    • 2006
  • In heavily industrialized areas, soil sites are contaminated with high concentrations of heavy metals. These pollutants are highly accumulated to the human body through the food web and cause serious diseases. To remove heavy metals from the soil, a potential strategy is the environmental friendly and cost effective phytoremediation. For the enhancement of remediation efficiency, the symbiotic interaction between the plant and plant growth-promoting rhizobacteria (PGPR) has been attended. In this review, the interaction of the plant and PGPR in the heavy metal-contaminated soil has been reviewed. The physicochemical and biological characteristics of the rhlzosphere can influence directly or indirectly on the biomass, activity and population structure of the rhizobacteria. The root exudates are offered to the soil microbes as useful carbon sources and growth factors, so the growth and metabolism of rhizobacteria can be promoted. PGPR have many roles to lower the level of growth-inhibiting stress ethylene within the plant, and also to provide iron and phosphorus from the soil to plant, and to produce phytohormone such as indole acetic acid. The plant with PGPR can grow better in the heavy metal contaminated soil. Therefore higher efficiency of the phytoremediation will be expected by the application of the PGPR.

Development of a Bioscrubber for Treatment of VOC Emissions from Contaminated Soil with Hydrocarbons (유류오염토양으로부터 발생하는 VOC가스처리를 위한 바이오스크러버 개발)

  • 장윤영;황경엽;곽재호;최대기
    • Journal of Korea Soil Environment Society
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    • v.2 no.1
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    • pp.83-90
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    • 1997
  • Aiming at the treatment of large volumes of gas with a low concentration of poorly water soluble VOC(Volatile Organic Compound), a new system is proposed: the combination absorption tower/bioreactor. In the scrubber part of the bioscrubbing system, the contaminating compounds are absorbed in a aqueous phase. The contaminated scrubbing liquid is transported to the bioreactor, where the compounds are biodegraded by aerobic microorganisms (mainly to carbon dioxide, water, and biomass). In this study, separation of a volatile organic compound(VOC) out of a waste gas stream has been carried out using a re-cyclable high boiling point extrant(HBE). The liquid stream containing a high boiling point entrant(HBE) scrubs the gas stream in a direct gas-liquid countercurrent contacting operation in a packed tower for the removal of said component from the gaseous stream. A packed-bed column using Pall Ring was set up in order to simulate practical conditions for the scrubbing tower. The liquid stream transported to the bioreactor is recovered and recycled to the scrubber. The model gas, which contained 400 mg/$\textrm{m}^3$ of toluene, at a rate of 100 L/min, flowed into the packed column where the scrubbing liquid trickled over the packing in countercurrent to the rising gas at 10~15L/min. The bioscrubber designed for large volume air streams containing VOCs showed removal efficiency up to 80% in an optimum operating conditions during the tests fer removing toluene from an air stream by scrubbing the air stream with HBE.

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