• Title/Summary/Keyword: Pseudomonas sp..Biodegradation

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Biodegradation Kinetics of 4-Chlorophenol by Pseudomonas sp. EL-091S (Pseudomonas sp. EL-091S에 의한 4-Chlorophenol의 분해 Kinetics)

  • Son, Jun-Seog;Lee, Geon;Lee, Sang-Joon
    • Journal of Environmental Science International
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    • v.2 no.2
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    • pp.95-102
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    • 1993
  • In order to find the most fitted biodegradation model, biodegradation models to the initial 4-chlorophenol concentrations were investigated and had been fitted by the linear regression. The degrading bacterium, EL-091S, was selected among phenol-degraders. The strain was identified with Pseudomows sp. from the result of taxonomical studies. The optimal condition for the biodegradation was as fellows: secondary carbon source, concentration of ammonium nitrate, temperature and pH were 200mg/l fructose, 600 mg/l, $30^{\circ}C$ and 7.0 respectively. The highest degradation rate of the 4-chlorophenol was about 58% for 24 hours incubation on the optimal condition. Biodegradation kinetics model of 5 mg/l 4-Chlorophenol, 10 mg/l 4-chlorophenol and 50 mg/l 4-chlorophenol were fitted the zero order kinetics model, respectively. Key Words : 4-chlorophenol, Pseudomonas sp., zero order kinetics model.

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Biodegradation of Aromatic Hydrocarbons by Toluene-tolerant Pseudomonas sp. BCNU 154 (Toluene내성세균 Pseudomonas sp. BCNU 154을 이용한 방향족화합물의 분해)

  • 성은미;정영기;이호원;주우홍
    • Journal of Life Science
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    • v.9 no.6
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    • pp.715-721
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    • 1999
  • The biodegradative potentialities of a toluene-tolerant Pseudomonas sp. BCNU 154, isolated from waste water, were investigated. Among 16 aromatic substrates tested, cumene, cyclohexane, ethylbenzene, p-xylene, m-xyene, toluene and diphenylether were metabolized. Pseudomonas sp. BCNU 154 degraded aerobically toluene, ethylbenzene, p-xylene and cumene. With toluene competitive degradation occurred after 12 hours, but with p-xylene and cumene, and with ethylbenzene, 90 and 75% degradation occurred after 12 hours of incubation, respectively.

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Biodegradation of Polychlorinated Biphenyls (PCBs) within Insulating Oil by Pseudomonas sp. P2 (Pseudomonas sp. P2에 의한 절연류 내의 Polychlorinated Biphenyls (PCBs)의 분해)

  • Kim, Jung-Ho;Choi, Sang-Ki;Kim, Young-Ho
    • Journal of Environmental Health Sciences
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    • v.22 no.3
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    • pp.1-7
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    • 1996
  • Polychlorinated Biphenyls(PCBs)의 생물학적 처리가 시도되고 있으며, PCBs를 분해할 수 있는 미생물을 이용할 수 있다. 따라서 본 연구에서는 폐기된 절연유의 생물학적 처리를 위하여 PCBs를 분해하는 균을 분해하였으며, 분해된 균을 이용하여 절연유 내의 Polychlorinated Biphenyls(PCBs) 분해를 회분식 실험에서 연구하였다. 대구의 신천으로부터 유일한 탄소원으로 Biphenyl을 포함하고 있는 고체배지에서 PCBs를 분해할 수 있는 Pseudomonas sp. P2 균주를 분해하였다. PCBs의 용해도를 높이기 위해 사용된 유화제 alkyl aryl ethoxylated phosphate가 200 mg/L에서는 Pseudomonas sp. P2 균주의 성장에 영향을 미치지 않았다. 1000 mg/L의 Biphenyl과 PCBs에 Pseudomonas sp. P2를 접종하여 160시간 배양후에 Biphenyl과 PCBs의 분해가 각각 97.5%, 58.0%였다. Biphenyl 1000 mg/L에서 최대성장율($\mu_{max}$)은 0.34 $day^{-1}$, 0.26 였다. 따라서 염소가 결합되지 않은 Biphenyl는 염소가 결합된 PCBs보다 분해가 빠르게 진행되었다. 또한 Pseudomonas sp. P2는 Biphenyl과 PCBs의 분해로 부터 유도된 황색의 분해대사산물을 확인하였다. 본 연구에서는 Pseudomonas sp. P2 균주가 절연유 내의 PCBs를 분해할 수 있다는 것을 확인하였다.

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Environmental toxicity and biodegradation of Pseudomonas sp. EL-G527 producing biosurfactant

  • Mi Seon, Cha;Hong Ju, Son;Sang Jun, Lee
    • Proceedings of the Korean Environmental Sciences Society Conference
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    • 2002.05b
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    • pp.452-454
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    • 2002
  • A biosurfactant-producing microorganism, .Pseudomouos sp. EL-G527 was isolated from activated sludge by enrichment culture when grown on mineral salt medium containing n-hexadecane as a carbon source. The biosurfactant from .Pseudomonar sp. EL-G527 exhibited lesser toxicity to bacterial population than synthetic surfactants and in the biodegradation test, biosurfactant was rapidly degraded and lost its activity as surface active material after 1 day incubation. In this study, the biosurfactant from Pseudomonas sp. EL-G527 was effective surface-active compound, more biodegradable and less toxic to microbial ecosystem than various synthetic surfactants.

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Biodegradiation of Benzoate by Pseudomonas sp. (Pseudomonas sp.에 의한Benzoate의 생분해)

  • 김교창;정준영
    • Journal of Food Hygiene and Safety
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    • v.11 no.3
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    • pp.165-170
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    • 1996
  • The biodegradation of high concentration of benzoate by enrichment culture with Pseudomonas sp. was investigated. During 50 days continuous culture, average of removal rate of benzoate and COD were 90% and 83%, respectively. And the enzymatic activity of catechol 2,3-dioxygenase was determined in the continuous culture but not Catechol 1,2-dioxygenase. On the other hand, Pseudomonas sp in the culture was investigated with SEM and the result was revealed that the cell shape was more demage according concentration of benzoate.

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Biodegradation Kinetics of Nonylphenol Ethoxylates by Pseudomonas sp. (Pseudomonas sp.에 의한 Nonylphenol Ethoxylates의 Kinetics)

  • 김수정;이종근;이상준
    • Journal of Environmental Science International
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    • v.2 no.4
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    • pp.271-278
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    • 1993
  • Optimal biodegradation kinetics models to the initial nonylphenol ethoxylates-30 concentration were investigated and had been fitted by the linear regression. Microorganisms capable of degrading nonylphenol ethoxylates-30 were isolated from sewage near Ulsan plant area by enrichment culture technique. Among them, the strain designated as EL-10K had the highest biodegradability and was identified as Pseudomonas from results of taxonomical studies. The optimal conditions for the biodegradation were 1.0 g/ι of nonylphenol ethoxylates-30 and 0.02 g/ι of ammonium nitrate at pH 7.0 and 3$0^{\circ}C$. The highest degradation rate of nonylphenol ethoxylates-30 was about 89% for 30 hours incubation on the optimal condition. Biodegradation data were fit by linear regression to equations for 3 kinetic models. The kinetics of biodegradation of nonylphenol ethoxylates was best described by first order model for 0.1 $\mu\textrm{g}$/ι nonylphenol ethoxylates-30 ; by Monod no growth model and Monod with growth model for 0.5 $\mu\textrm{g}$/mι and 1.0, 5.0 $\mu\textrm{g}$/mι, respectively.

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Biodegradation of Medium-chain-length Polyhydroxyalkanoates by Pseudomonas sp. RY-1 (Pseudomonas sp. RY-1에 의한 Medium-chain-length Polyhydroxyalkanoates의 생분해)

  • 류강은;김영백;양영기;이영하
    • Korean Journal of Microbiology
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    • v.36 no.2
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    • pp.84-90
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    • 2000
  • Biodegradation of vanous medium-chain-length polyhydroxyalkanoates (MCL-PHAs) by an extracellular depolymerase system from Pseudomonas sp. RY-1 was investigated under laboratoly conditions. The degradation rate of the polymers was determined by quantitative clem zone technique, enzyme (turbidity) assay, and respirometry assay. Although the enzyme system secreted by Pscudomor~as sp. RY-1 was capable of degrading all MCL-PHAs tested. its secretion was influenced by the availability of secondary carbon sources. The rate of enzymatic degradation of MCL-PHAs was dependent upou the monomeric composition of the polyesters and reduced as the chain lengths of the monomer m t s in the polyesters increased. MCL-PHAs containing C-even monomer units showed faster degradation rate than MCL-PHAs containing C-odd monomer units. Respiration rates of MCL-PHAs with C-even monomer uuts were also much faster than those of MCL-PHAs with C-odd monomer units. The degmdation rate of MCL-PHAs bearing unsaturated substituents was faster than that of mcl-PHAs without functional substituents, which is suggesting the correlation between the degradation rate and the crystallinity of MCL-PHAs.

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PAHs Degrading Bacterium Separation and Identification for Biological Treatment (PAHs의 생물학적 처리를 위한 분해 미생물 분리 동정)

  • Kim, Man;Choi, Kyoung-Kyoon;Go, Myong-Jin;Park, Jeong-Hun
    • Journal of Soil and Groundwater Environment
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    • v.12 no.6
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    • pp.70-77
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    • 2007
  • Pseudomonas sp. KM1 was separated from soil contaminated by petroleum and identified. The isolated strain is Gram-positive, rod-shaped and immotile. In batch culture, the optimum cultivation temperature and pH was $35^{\circ}C$ and 7, respectively. Biodegradation of PAHs experiment with soil slurry system was performed using Pseudomonas sp. KM1. Pseudomonas sp. KM1 could degrade 7 PAHs including naphthalene, acenaphthylene, acenaphthene, fluorene, phenanthrene, pyrene, and fluoranthene. These mixed PAHs was easily degraded within one day except fluoranthene, which was degraded much slowly, taking several days by this isolated bacteria. Pseudomonas sp. KM1 is good candidate for bioremediation of PAHs contaminated soils. Biodegradation rates of naphthalene, phenanthrene and pyrene in soils were different at each soil, and the rates were decreased as sorption capacity increased.