• Title/Summary/Keyword: 생물 오염

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The Pilot-scale Treatability Studies of Co-Composting for the Remediation of Diesel Contaminated Soil during the Winter (동절기 유류 오염토양 복원을 위한 Co-composting기술의 현장 적용성 연구)

  • 마정재;고형석;황종식;정민정;최상일;김국진
    • Journal of Korea Soil Environment Society
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    • v.4 no.2
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    • pp.193-201
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    • 1999
  • This study was conducted to check the applicability of pilot-scale co-composting for the remediation of diesel contaminated soil during the winter. Nutrients and microbes were added to enhance the efficiency of bioremediation and fermenting composts were also added to stimulate the microbial activities. As a result. the soil pile was kept at adequate temperature for the bioremediation during the test period of 30∼40 days and initial concentration(2,340mg TPH/kg dry soil) was reduced to 216mg TPH/kg dry soil (approximately 91% removal). During the initial 10∼30 days, it was found that the TPH concentration and the microbial population were rapidly reduced and increased. respectively. The co-composting technology studied can be effectively applied to remediate the diesel contaminated soil during the winter.

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입자상 잔류성 유기오염 물질에 의한 원형 미세플라스틱 오염 연구

  • Kim, Seung-Gi
    • Proceeding of EDISON Challenge
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    • 2016.03a
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    • pp.576-581
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    • 2016
  • 해양환경에서 큰문제가 되고 있는 아주 작은 크기의 플라스틱 입자인 미세플라스틱(Microplastic)은 잔류성이 크고 생물축적성이 있는 잔류성 유기오염 물질(POP)을 잘흡착하여 해양환경과 먹이사슬에 지대한 피해를 끼친다. 본 연구에서는 해양에 존재하는 대표적인 미세플라스틱 uPVC와 입자상의 잔류성 유기오염 물질 PAH를 원형 실린더로 가정하여 해양 환경에서 침강하고 있는 미세플라스틱이 잔류성 유기오염 물질에 의해 오염될 가능성을 알아보았다 이를 위해 표층및 심층수 환경에서 반지름에 따른 충돌효율과 접촉 시간을 구하여 두 실린더가 접촉할 시간의 기댓값인 기대 접촉시간을 계산하였다.

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A Pilot Scale Biostimulation Study for In-situ Remediation of Organic Pollutants and PAHs contained in Coastal Sediment (연안 해역퇴적물에 함유된 유기오염물과 PAHs의 현장정화를 위한 파일럿 규모의 생물활성촉진연구)

  • Bae, Byung-Uk;Woo, Jung-Hui;Subha, Bakthavachallam;Song, Young-Chae
    • Journal of Navigation and Port Research
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    • v.40 no.6
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    • pp.441-450
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    • 2016
  • A pilot scale biostimulation experiment was performed under field conditions to degrade organic pollutants and PAHs (Polycyclic Aromatic Compounds) in contaminated coastal sediment. During the experiment, the seawater temperature around the sediment varied from $16.5^{\circ}C$ to $21^{\circ}C$, while the sediment pH was stable at 8.4-8.5. The experiment was conducted over a one year period with a control group and a sample group with a applied biostimulant composed of acetate, sulfate, and nitrate. Chemical oxygen demand decreased 39% in the control group and 79% in the sample group. Volatile solids were reduced from 15 to 7 g/kg in the control group and 2.5 g/kg in the sample group. Out of the 2-, 3- ,4- ,5-, and 6-rings of the 16 vital PAHs, the compound including naphthalene (2-ring), took 2 months to degrade completely, while the degradation efficiency was 55.6% in the control group during the same period. In the case of the 3-ring and 4-ring PAHs, complete degradation in the sample and 46% - 100% degradation in control was observed after one year of the experiment. The 5-ring and 6-ring PAHs were degraded to about 77%-100% in the sample group and 26%-87% in the control group during the one year of the experiment. The study results show that biostimulation is a very effective method to improve the degradation rate of organic pollutants and PAHs (Polycyclic Aromatic Compounds) in contaminated coastal sediment.

Model Study of the Fate of Hydrocarbons in the Soil-Plant Environment (녹지 토양내 탄화수소화합물의 분포변화에 관한 모델링 연구)

  • Yoon-Young Chang;Kyung-Yub Hwang
    • Journal of Korea Soil Environment Society
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    • v.1 no.2
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    • pp.91-101
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    • 1996
  • In recent years, phytoremediation, the use of plants to detoxify hydrocarbons, has been a promising new area of research, particularly in situ cleanup of large volumes of slightly contaminated soils. There is increasing need for a mathematical model that can be used as a predictive tool prior to actual field implementation of such a relatively new technique. Although a number of models exist for solute-plant interaction in the vegetated zone of soil, most of them have focused on ionic nutrients and some metals. In this study, we developed a mathematical model for simulation of bioremediation of hydrocarbons in soil, associated with plant root systems. The proposed model includes root interactions with soil-water and hydrocarbons in time and space, as well as advective and dispersive transport in unsaturated soil. The developed model considers gas phase diffusion and liquid-gas mass exchanges. For simulation of temporal and spatial changes in root behavior on soil-water and with hydrocarbons, time-specific distribution of root quantity through soil was incorporated into the simulation model. Hydrocarbon absorption and subsequent uptake into roots with water were simulated with empirical equations. In addition, microbial activity in the rhizosphere, a zone of unique interaction between roots and soil microorganisms, was modeled using a biofilm theory. This mathematical model for understanding and predicting fate and transport of compound in plant-aided remediation will assist effective application of plant-aided remediation to field contamination.

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Applications of Acid/Base Modified Activated Carbon for Stabilization of Sediment Contaminated with Organic Compounds (산/염기 개질활성탄을 이용한 유기오염물질 오염 퇴적토 안정화를 위한 적용성 연구)

  • Seunghyun Kang;Jaewoo Park
    • Journal of the Korean GEO-environmental Society
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    • v.25 no.5
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    • pp.5-13
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    • 2024
  • This paper investigates the stabilization feasibility of contaminated sediment contaminated with benzyl butyl phthalate (BBP) using acid/base-modified activated carbon. The efficiency of stabilizers was evaluated by analyzing the impact of the activated carbon on the decomposition and adsorption of the contaminant, along with the biological effects on earthworms. Additionally, the contaminant migration was monitored with the BBP concentration in pore water using low-density polyethylene. The research results indicated that the accumulated concentration of BBP was approximately 2% lower in the experimental group applying a 5% mixture ratio of modified activated carbon compared to the group applying a 10% mixture ratio. The leaching into water was reduced by over 18% in all experimental conditions after 7-day exposure period. Over 25% reduction was observed after 28-day exposure. The pore water concentrations were measured. After 7 days of exposure, the mechanically mixed experimental group exhibited a higher pore water stabilization rate compared to the biologically mixed group. Within the mechanically mixed group, the experimental group with 10% mixture of modified activated carbon showed a 1% higher stabilization rate than the group with 5% mixture. After 28 days of exposure, the biologically mixed experimental group demonstrated a higher pore water stabilization rate compared to the mechanically mixed group. Moreover, within the biologically mixed group, the experimental group with 10% mixture of modified activated carbon showed approximately 0.1% higher stabilization rate than the group with 5% mixture.

Eco-physiological Responses of Roadside Tree Species to Contamination of Soil with Lead (토양 납 오염에 대한 가로수 식물종의 생리생태적 반응)

  • Kim, Han Eol;Song, Uhram
    • Ecology and Resilient Infrastructure
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    • v.2 no.3
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    • pp.237-246
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    • 2015
  • Heavy metal pollution in soil, such as lead contamination, has become an area of interest in Korea because of urbanization and atmospheric deposition from neighboring countries. Therefore, in this research, eco-physiological responses such as chlorophyll contents, antioxidant enzyme activity, photosynthetic rate, biomass and phytoaccumulation abilities were investigated for 4 commonly used native roadside tree species to suggest suitable tree species to cope with lead contamination. The target species, Ginkgo biloba, Prunus yedoensis, Zelkova serrata and Chionanthus retusus showed lead toxicity by significant changes of chlorophyll contents and antioxidant enzyme activities on treatments over 200 mg Pb/kg. However, biomass and photosynthetic rates only showed significant responses of plants in the highest level (5,000 mg/kg) treatment. Especially, G. biloba did not show any significant changes of antioxidant enzyme activity, photosynthetic rate, and biomass even in the highest level treatment. In low level - environmentally realistic treatments, G. biloba and P. yedoensis showed the highest phytoaccumulation rate of lead from soil. Selecting and planting species like G. biloba which have good phytoaccumulation abilities and resistance to lead contamination by further research will be required to deal with emerging lead contamination.

The macrobenthic community health was assessed using the Benthic Pollution Index(BPI) in Jinhae Bay, southern coast of Korea (저서오염지수를 이용한 진해만 해역의 저서건강도 평가 )

  • Jin-Young Seo;Jin-Woo Choi
    • Korean Journal of Environmental Biology
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    • v.40 no.4
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    • pp.510-524
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    • 2022
  • For the assessment of the benthic community health of Jinhae Bay using the Benthic Pollution Index, macrobenthic fauna samples were seasonally collected from 23 different sites between February, 2011 and November, 2012. The macrobenthic community health status was classified as "Poor" or "Very Poor" except for the bay mouth part of Jinhae Bay at the northern part of Geoje Island. A large proportion of functional Group IV and even azoic conditions appeared due to summer hypoxia at sites in sheltered regions of Jinhae Bay. Some of the dominant species recruited after summer hypoxia were Paraprionospio patiens, Sigambra bassi, and Theora fragilis belong to typical opportunistic species. By comparing the BPI values of the macrobenthic communities from other special management areas of Korea, Jinhae Bay was considered to have the lowest condition that was heavily polluted among special management areas.

A Study on the Qualitative Characteristics of Non-Regulated Organic Pollutants in Municipal Wastewater (하수성분중 비규제대상 유기오염물질의 정성적 특성에 관한 연구)

  • Shin, Jinhwan;Jeoung, Youngdo
    • Journal of the Korean GEO-environmental Society
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    • v.8 no.3
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    • pp.5-10
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    • 2007
  • The paper presents results of qualitative analysis of non-regulated organic pollutants in municipal wastewater and treated municipal wastewater with flocculation, ozone and UV process using GC-MS. The majority of the pollutants in the influent of the municipal wastewater treatment facility were either food related or due to the diffuse discharge from products used both in households and in industry. In the case of biological treatment process removed some organic pollutants effectively. But some organic pollutants were not removed with biological treatment. Thus, additional steps to improve the quality of effluent municipal wastewater will require a more rigorous control of consumer products used in household and municipal wastewater process using advanced treatment processs. The obtained data contributed to the evaluation of pollutants discharges to the ecosystem as well as to the characterization of pollution sources in the basin.

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A Study to caving organism in Hwa Am-Cave (화암동굴의 동굴생물에 관한 연구)

  • 김병우
    • Journal of the Speleological Society of Korea
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    • v.41 no.42
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    • pp.27-40
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    • 1995
  • 동굴 생물의 실태를 조사한다는 것은 이 동굴이 그대로 살아 있는가 아니면 이미 폐허화된 동굴인가를 판가름할 수 있는 좋은 근거가 된다. 본 연구는 화암동굴의 동굴 생물들이 서식할 수 있는 생태환경을 조사 분석하고 이들 동굴 생물들의 분포 상태가 어떠한가를 연구 조사한 것이다. 앞으로 이들 동굴 생물의 생태 환경이 그대로 존속되고 있는지 아니면 훼손 오염되어 생태 환경이 보존되고 있지 아니한가를 비교 분석 관찰하는 자료가 될 것이다. 실지 현지 조사한 근거를 토대로 기록한 자료이기 때문에 이 연구 결과가 영원히 보존되어야 하겠다.(중략)

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A Case Study on the Environmental Pollution in Caves (개방동굴의 환경오염 사례연구)

  • Shin, Dong-Won;Jung, Kyu-Whan;Cho, Yong-Ho
    • Journal of the Speleological Society of Korea
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    • no.87
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    • pp.18-22
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    • 2008
  • A cave starts to be destructed and damaged as soon as it's open to the public. Due to many convenience facilities for tour visitors, it's gradually polluted. For example, lamplight causes green and black mold while temperature rise caused by many tourists and lamplight brings vatting and exfoliation. In addition, visitors'reckless behavior have caused water pollution and destructed cave creatures' habitat.