• Title/Summary/Keyword: 난분해성 물질

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The Degrdation of Pigment-Producing Furfural in Aquatic Waste (환경오염 유해색소의 미생물학적 분해)

  • 하영칠;홍순우;한홍의
    • Korean Journal of Microbiology
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    • v.21 no.4
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    • pp.207-212
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    • 1983
  • Isolated Gram-negative bacteria, being capable of degrading toxic, recalcitrant, and pigment-producing furfural, were tentatively identified as Pseudomonas testosteroni, Pseudomonas maltophilia, Klebsiella Pneumoniae, and Pseudomonas fluorescens. They exhibited synergistic effects between P. testosteroni and the others in the degradation of colourproducing furfural. Synergistic effects and possible sequence of its degradation were attempted by manometric technique. P. testosteroni could degrade furfural to decolourize it and produce ninhydrin-reaction postive substance (NPS) which could be utilized by P. maltophilia and K. pneumoniae and the latter two bacteria could ,degrade furfural to 2-furoic acid as an oxidized form. Finally 2-furoic acid was further oxidized by P. fluorescens. Once NPS and 2-furoic acid were produced, the degradation efficiency was enhanced by competing four bacteria against furfural and 2-furoic acid.

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Remediation Technique for PCBs-and Phenols-Contaminated Soils by Surfactant-Enhanced Desorption (계면활성제 탈착촉진법을 이용한 폴리클로네이티드 바이페닐(PCBs)과 페놀류(Phenols)에 의하여 오염된 지반의 정화방안)

  • 박준범;윤현석;김준섭
    • Journal of the Korean Geotechnical Society
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    • v.15 no.5
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    • pp.241-257
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    • 1999
  • Subsurface contamination of industrial hazardous organic substances is a serious social issue. Decomposing the hydrophobic organic compounds in the subsurface is technically difficult and the compounds can last as long-term contaminant sources of groundwater once they are sorbed on the soil. Although the danger of contaminated subsurface has long been recognized little was known about the effective remediation technique. Focusing on the remediation of the p-Cresol and 3, 5-Dichlorobiphenyl among subsurface contaminants, this paper studies the surfactant-enhanced desorption technique. Nonionic surfactant(Triton X-100) and anionic surfactant(SDS ) were used as desorbing solvents for extracting organic compound sorbed on soil particles. Sorption characteristics of soils and organic compounds were analyzed and the applications of surfactant solution were studied through batch tests and the flexible-wall permeameter tests. As a result of the sorption isotherm tests, a log-log linear relation was obtained between the linear-partition coefficient, $K_p$ and the octanol-water partition coefficient, $K_{ow}$ of each organic compound. The result of the batch test also showed that Triton X-100 at 0.5% of solution desorbs the 3, 5-Dichlorobiphenyl 28 times more than the water in the batch tests. The surfactant-enhanced subsurface remediation technique becomes more effective when the contaminants are hydrophobic and hard to be decomposed.

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Determination of Operational Parameters for TCE Degradation in Photocatalytic Oxidative Reactors (TCE의 분해를 위한 광촉매 산화반응조의 운전인자 도출에 관한 연구)

  • Hur, Joon-Moo;Cheon, Seung-Yul;Kim, Jong-Soo
    • Korean Journal of Environmental Agriculture
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    • v.22 no.2
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    • pp.124-129
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    • 2003
  • The objectives of this study are to manufacture an efficient $TiO_2$, photocatalyst and to delineate optimum operational parameters for TCE (trichloroethylene) degradation in a photocatalytic oxidative reactor. The $TiO_2$ photocatalyst irradiated by 365 nm UV light is expected to increase degradation of TCE in solution by a series of photocatalytic oxidations in the reactor. A new membrane $TiO_2$ photocatalyst wns eventually developed by coating a mixture of Davan-C(0.24 wt%) and PVA(0.16 wt%) on the surface of slips using the slip-casting method. Results show that increase in the number of coating of $TiO_2$ sol on surface of photocatalysts and in the surface thickness improved the endurance and photocatalysts, but these physical modifications caused significant decrease in the overall degradation efficiency of TCE. Pre-aeration or recirculation of the influents to the reactors containing TCE increased degradation efficiency of TCE. The optimum operational conditions far the surface area of photocatalysts and UV light intensity appeared to be $1.47\;mL/cm^2$ and $225\;W/cm^2{\times}100$, respectively, in the reactor. Based on the overall experimental results, the photocatalytic oxidation of TCE with the new membrane $TiO_2$ photocatalyst is found to be very effective under the operational conditions delineated in this study.

Economic Design of Activated Sludge System at the Optimum Sludge Concentration (슬러지 농도 최적화에 따른 합리적인 활성슬러지공정 설계방안 연구)

  • Lee, Byung Joon;Choi, Yun Young
    • Journal of Korea Water Resources Association
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    • v.47 no.5
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    • pp.483-490
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    • 2014
  • The design procedures for a biological reactor and a secondary settling tank (SST) of an activated sludge system are based on the steady state design method (Ekama et al., 1986; WRC, 1984) and the 1-D flux theory design method (Ekama et al., 1997), respectively. This study combined both of the design procedures, to determine the optimum sludge concentration in the reactor and the best design with the lowest cost. The best design of the reactor volume and the SST diameter at the optimum sludge concentration were specified with varying wastewater and sludge characteristics, temperature, sludge retention time (SRT) and peak flow rate. The effects of the influent wastewater characteristics, such as substrate concentration and unbiodegradable particulate fraction, were found to be considerable, but the effect of unbiodegradable soluble fraction was to be negligible. The effects of sludge settling characteristics, were also significant. SRT, as an operating parameter, was found to be an important factor for determining the optimum sludge concentration. However, the effect of temperature was found to be small. Furthermore, for designing a large scale wastewater treatment plant, the number of reactors or SSTs could be estimated, by dividing the total reactor volume or SST area. The new combined design procedure, proposed in this research, will be able to allow engineers to provide the best design of an activated sludge system with the lowest cost.

Methodology Development for the Reuse of Sludge Generated from Fenton's Oxidation Process (펜톤산화 공정에서 발생하는 슬러지의 재활용 방안)

  • Koo, Tai-Wan;Cho, Soon-Haing;Choi, Young-Soo
    • Journal of Korean Society of Environmental Engineers
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    • v.22 no.6
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    • pp.1083-1091
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    • 2000
  • The objective of this study is to develop effective and economical treatment processes for the removal of non-biodegradable organics by reusing the sludge generated from Fenton's Oxidation Process. It was found that about 50% of coagulants and 50% of catalyst can be reduced by reusing the sludge generated from Fenton's Oxidation Process. It was also found that the amount of sludge generation can be reduced in coagulation process and Fenton's Oxidation Process. From the results of bench-scale test, it was found that the average removal efficiency increased to 8.5% and the amount of sludge generation was reduced up to 35% by reusing the sludge as coagulant. The average organic removal efficiency increased to 5.3% and the amount of sludge generation was reduced up to 14% by reusing the sludge as catalyst in Fenton's Oxidation. It can be concluded that the reuse of sludge generated from Fenton's Oxidation Process would be reduced cost of chemical consumption and Fenton's sludge treatment.

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Selection of the Optimum Organic Matter Index for Surface Water Quality Management (지표수 수질관리를 위한 적정 유기물질지표 선정)

  • Han, Dae Ho;Choi, Ji-Yong
    • Journal of Environmental Policy
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    • v.10 no.4
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    • pp.61-80
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    • 2011
  • Through concentrated investments in environmental regulations centered around BOD, which is a biodegradable matter index, and basic environmental infrastructures, national BOD pollution level has continuously improved. Nonetheless, limitations of BOD management system has become evident through nation-wide stagnation and/or increases of refractory organic matters, such as COD, at main drinking water sources, and the need for a new index, which can easily indicate different environmental conditions, has increased. Therefore, this study suggests a new organic management index for a proper management of surface water. $COD_{Cr}$ and TOC were examined as candidates for surface water quality management index, and it was found that TOC was more appropriate than $COD_{Cr}$ as an organic matter management index. Through this study, it was found that TOC possesses following qualities: a more representative index; international acceptability; monitoring program is easier; better availability of analysis techniques; better accuracy and precision of analysis; less time required for analysis; ease of operation; management of disinfection byproducts; connection with present policies; existence of foreign and domestic application case studies; and correlation with water ecosystem.

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Degradation of Endocrine Disrupting Chemicals by Laccase Transformant of Phlebia tremellosa (아교버섯 형질전환체를 이용한 내분비장애 물질의 분해)

  • Yeo, Su-Min;Kim, Myung-Kil;Choi, Hyoung T.
    • Korean Journal of Microbiology
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    • v.44 no.1
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    • pp.10-13
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    • 2008
  • Endocrine disrupting chemicals (EDCs) are hard to be degraded in nature, and are also accumulated in diverse organisms. They finally give negative effects to human through the food web. White rot fungi which have lignin-degrading enzymes have high potentials for degradation of recalcitrant compounds, and a white rot fungus, Phlebia tremellosa, isolated in Korea show good degrading activity against the endocrine disrupting phthalates. We have isolated a laccase cDNA which was involved in the degradation of EDCs, and constructed a laccase expression vector to use in the genetic transformation of P. tremellosa. The expression vector was stably integrated into the chromosomal DNAs and showed increased laccase activity in transformants. One of transformants showed not only increased degradation of several EDCs but also faster estrogenic decreasing activities generated by the EDCs.

Fertilizer and Organic Inputs Effects on CO2 and CH4 Emission from a Soil under Changing Water Regimes (토양 수분 변동 조건에서 시비 및 유기물 투입에 따른 CO2와 CH4 방출 특성)

  • Lim, Sang-Sun;Choi, Woo-Jung;Kim, Han-Yong
    • Korean Journal of Environmental Agriculture
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    • v.31 no.2
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    • pp.104-112
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    • 2012
  • BACKGROUND: Agricultural inputs (fertilizer and organic inputs) and water conditions can influence $CH_4$ and $CO_2$ emission from agricultural soils. This study was conducted to investigate the effects of agricultural inputs (fertilizer and organic inputs) under changing water regime on $CH_4$ and $CO_2$ emission from a soil in a laboratory incubation experiment. METHODS AND RESULTS: Four treatments were laid out: control without input and three type of agricultural inputs ($(NH_4)_2SO_4$, AS; pig manure compost, PMC; hairy vetch, HV). Fertilizer and organic inputs were mixed with 25 g of soil at 2.75 mg N/25 g soil (equivalent to 110 kg N/ha) in a bottle with septum, and incubated for 60 days. During the first 30-days incubation, the soil was waterlogged (1 cm of water depth) by adding distilled water weekly, and on 30 days of incubation, excess water was discarded then incubated up to 60 days without addition of water. Based on the redox potential, water regime could be classified into wetting (1 to 30 days), transition (31 to 40 days), and drying periods (41 to 60 days). Across the entire period, $CH_4$ and $CO_2$ flux ranged from 0 to 13.8 mg $CH_4$/m/day and from 0.4~1.9 g $CO_2$/m/day, and both were relatively higher in the early wetting period and the boundary between transition and drying periods. During the entire period, % loss of C relative to the initial was highest in HV (16.4%) followed by AS (8.1%), PMC (7.5%), and control (5.4%), indicating readily decomposability of HV. Accordingly, both $CH_4$ and $CO_2$ fluxes were greatest in HV treatment. Meanwhile, the lower $CH_4$ flux in AS and PMC treatments than the control was ascribed to reduction in $CH_4$ generation due to the presence of oxidized compounds such as ${SO_4}^{2-}$, $Fe^{3+}$, $Mn^{4+}$, and ${NO_3}^-$ that compete with precursors of $CH_4$ for electrons. CONCLUSION: Green manure such as HV can replace synthetic fertilizer in terms of N input, however, it may increase $CH_4$ emission from soils. Therefore, co-application of green manure and livestock manure compost needs to be considered in order to achieve satisfactory N supply and to mitigate $CH_4$ and $CO_2$ emission.

Study on degradation efficiency and pathways of tetracycline by ferrate(VI) (Ferrate(VI)를 이용한 tetracycline 항생제 분해효율 및 중간생성물 연구)

  • Park, Kyeong Deok;Kim, Il Kyu
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.226-226
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    • 2021
  • Tetractycline은 sulfonamides, penicilines 등과 함께 축산계에서 널리 사용되는 대표적인 항생물질의 한 종류이다. 2011년 사료 내 항생제 투여를 금지한 이후 자가치료 및 예방용으로 사용되고 있으며, 가축의 체내로 투여되는 tetracycline는 주로 분뇨에 포함되어 배출되는데, 강우 등 물 순환에 따라 지표수 및 지하수로 이동하여 미생물에 독성을 일으키거나 내성균이 발생하기도 한다. Tetracycline 등의 항생물질 처리 방식으로 흡착 등 다양한 공정이 제시되고 있다. 본 연구에서는 산화제 중 하나인 ferrate(VI)를 이용하여 tetracycline 분해실험을 수행하였다. ferrate(VI)는 염소산화물 및 H2O2에 비해 비교적 강한 산화력을 가지며, 처리 후 발생되는 철염(Fe3+)은 독성이 없다는 장점이 있다. Ferrate(VI)는 병원균 제거 등에 효과적인 것으로 알려져 있으며, 다양한 난분해성 물질과 항생물질을 성공적으로 분해하여 그 효과를 입증한 바 있다. 본 연구에서는 자체적으로 제조한 potassium ferrate(VI)를 이용하여 다양한 수중 환경에서 tetracycline를 분해하고, 분해특성 및 중간생성물 연구를 수행하였다. Ferrate(VI)는 염기성 환경에서 tetracycline 분해효율이 가장 높은 것으로 나타났으며, 이는 pH에 따른 tetracycline과 ferrate(VI)의 이온화가 가장 큰 원인인 것으로 판단된다. 특히 ferrate(VI)는 pH가 낮을수록 쉽게 환원되는 특징이 있으며, 염기성으로 갈수록 안정화하여 오래 잔류하므로 이러한 결과가 나타난 것으로 판단된다. 중간생성물 조사 결과, ferrate(VI)와 tetracycline 사이의 분해 메커니즘은 주로 OH 라디칼로 인한 것이 대부분이며, hydroxylation과 amino group에서의 demethylation의 형태로 발생하였다. 이후 추가적인 반응으로 benzene ring이 깨지면서 결과적으로 CO2 및 H2O 등으로 무기물화 되는 것으로 판단된다.

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Biodegradation of Phenanthrene by Transformant Trametes versicolor MrP1 (구름버섯의 형질전환체 Trametes versicolor MrP1에 의한 Phenanthrene의 생분해)

  • Choi, Yun-Seong;Choi, Hyoung-Tae;Song, Hong-Gyu
    • Korean Journal of Microbiology
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    • v.43 no.4
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    • pp.273-278
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    • 2007
  • As a model compound of PAHs (polycyclic aromatic hydrocarbons) phenanthrene has been regarded as a toxic material, mutagen and carcinogen in various animals. Biodegradation conditions of phenanthrene such as pH, temperature, shaking speed, stabilizer and cofactor of degrading enzymes were investigated with Trametes versicolor and its transformant T. versicolor MrP1 in YMG medium, minimal medium and soil microcosm. T. versicolor MrP1 can overexpress mrp gene encoding Mn-repressed peroxidase that is involved in fungal degradation. Biodegradations of phenanthrene by T. versicolor and T. versicolor MrP1 were optimally performed in conditions of weak-acid (pH 6.0), $30^{\circ}C$, shaken culture and medium containing 5 mM veratryl alcohol or tryptophan. In these optimal conditions, biodegradation of phenanthrene by T. versicolor MrP1 is 31% higher than that of wild type strain in a minimal medium for 20 days. Biodegradation of phenanthrene by T. versicolor MrP1 was also higher than that of wild type in soil microcosm. T. versicolor MrP1 can be a excellent candidate for the bioremediation of PAHs contaminated environments.