• 제목/요약/키워드: Degrading microorganisms

검색결과 146건 처리시간 0.028초

Abundances of triclosan-degrading microorganisms in activated sludge systems

  • Lee, Do Gyun;Chu, Kung-Hui
    • Environmental Engineering Research
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    • 제20권1호
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    • pp.105-109
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    • 2015
  • Triclosan is a synthetic antimicrobial agent used in numerous industrial and personal care products. Triclosan collected in wastewater treatment plants can be biodegraded up to 80%. However, little is studied about the abundances of known triclosan-degrading bacteria in activated sludge systems. A previous study reported that Sphingopyxis strain KCY1 isolated from activate sludge can cometabolically degrade triclosan. Recently, a quantitative PCR (qPCR) assay specific to strain KCY1 has been developed. Thus, this study investigated the abundance of strain KCY1 in three different activated sludge wastewater treatments using a qPCR assay. Additionally, ammonia-oxidizing bacteria (AOB), known as triclosan-degraders, and amoA gene were quantified. Strain KCY1 were detected in activated sludge samples from three different wastewater treatment plants. The concentrations of strain KCY1 and AOB were on the order of $10^5-10^6$ gene copies/mL, while amoA gene concentration was on the order of $10^4$ gene copies/mL.

Biodegradation of Hydrocarbon Contamination by Immobilized Bacterial Cells

  • Rahman Raja Noor Zaliha Abd.;Ghazali Farinazleen Mohamad;Salleh Abu Bakar;Basri Mahiran
    • Journal of Microbiology
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    • 제44권3호
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    • pp.354-359
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    • 2006
  • This study examined the capacity of immobilized bacteria to degrade petroleum hydrocarbons. A mixture of hydrocarbon-degrading bacterial strains was immobilized in alginate and incubated in crude oil-contaminated artificial seawater (ASW). Analysis of hydrocarbon residues following a 30-day incubation period demonstrated that the biodegradation capacity of the microorganisms was not compromised by the immobilization. Removal of n-alkanes was similar in immobilized cells and control cells. To test reusability, the immobilized bacteria were incubated for sequential increments of 30 days. No decline in biodegradation capacity of the immobilized consortium of bacterial cells was noted over its repeated use. We conclude that immobilized hydrocarbon-degrading bacteria represent a promising application in the bioremediation of hydrocarbon-contaminated areas.

Characterization and refinement of enzyme of the gene encoding catechol 1,2-dioxygenase from Phenol-degrading, Rhodococcus sp.

  • 이희정;박근태;박재림;이상준
    • 한국환경과학회:학술대회논문집
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    • 한국환경과학회 2002년도 봄 학술발표대회 발표논문집
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    • pp.209-212
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    • 2002
  • 본 연구는 방향족 화합물질 중 페놀폐수에 대한 생물학적 처리를 위해 본 실험실에서 분리한 페놀분해능이 우수한 Rhodococrus sp. EL-GT를 이용하여 catechol 분해 catechol 1,2-dioxygenase 분해활성을 측정하였고, 이것이 ortho-pathway임을 확인할 수 있었다. 또한 다른 연구에서 보고된 Rhodococcus rhodochrous NCIMB 13259 균주의 catechol 1,2 dioxygenase를 기초로한 primer를 이용하여 PCR을 수행하였으며 이 분해 유전자의 cloning실험을 수행 중이다. 이들 실험을 통하여 Rhodococcus sp.의 페놀분해균의 유전적 구조 및 특성을 검토하고 밝혀지는 단백질 정보를 이용하여 방향족 화합물의 분해능이 보다 우수한 균주의 개발을 시도하고자 한다.

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한국산 다시마 유래 Fucoidan의 정제 및 분해균의 분리 (Purification of Fucoidan from Korean Sea Tangle (Laminaria religosa) and Isolation of Fucoidan-Degrading Microorganisms)

  • 김대선;임동중;문성훈;서현효;박용일
    • 한국미생물·생명공학회지
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    • 제32권4호
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    • pp.362-365
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    • 2004
  • The fucoidan from Laminaria relicollected at Wando in Korea was purified with the yield of 2.3% in mass. The monosaccharide composiof the purified fucoidan was nearly identical to that of the commercial standard: fucose 63.71 %, xylose 22.98%, galactose 6.62%, mannose 0.24%, and uronic acid 3.26%. Microorganisms capable of degrading the purified fucoidan were isolated from the colonies on the minimal medium containing 0.2% of purified fucoidan as a sole carbon source. Of these isolates, a strain showing a relatively higher capability to degrade fucoidan, up to 63%, was partially characterized as a Gram positive, aerobic, moderately halophilic marine bacterium.

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.

합류식 하수관거 월류수의 지표미생물 배출 특성 (Discharge Characteristics of the Indicator Microorganisms of Combined Sewer Overflows)

  • 김건하
    • 상하수도학회지
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    • 제20권4호
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    • pp.627-635
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    • 2006
  • Combined sewer overflow (CSOs) is a primary diffuse source degrading water quality of urban streams. In this study, CSOs caused by 5 different rainfall events at an urban watershed located in Daejeon city were monitored for the indicator microorganism concentrations. Event mean concentration (EMC) of the indicator microorganisms were: total coliform = $2.46{\times}10^6CFU/100mL$; fecal coliform = $1.01{\times}10^6CFU/100mL$; E.coli = $5.20{\times}10^5CFU/100mL$; and Fecal Streptococci = $6.08{\times}10^5CFU/100mL$. In addition, coliform concentrations were well correlated with suspended solid concentrations and the first flush effects were identified. Settling tests were carried out to estimate removal rate of indicator organisms by sedimentation from CSOs. As microorganisms are discharged in association with suspended solid, ten minutes of settlement can lower 44% of indicator microorganism leading.

PEG 분해균주의 분리, 동정 및 PEG Film 상용성에 관한 연구 (Studies on the Isolation and Identification of PEG-Degradable Strains and Physical Chracteristics of PEG-Films)

  • 이제혁;이준열;전억한
    • 한국미생물·생명공학회지
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    • 제22권3호
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    • pp.316-321
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    • 1994
  • Several strains capable of degrading PEGs(Polyethylene Glycols) were isolated and investigated for their biodegradation ability of PEGs. Microorganisms screened for the biodegrada- tion studies were those grown on the PEG used as a sole carbon and energy source. It was known that the number of microorganisms decreased when grown on the high molecular weight of PEG. A biodegradation of PEG was investigated with such microorganisms in the reactor and resulted in the decrease in PEG concentration meaning that PEG was degraded in the reactor. This microorganism was identified as Flavobacterium sp. The biodegradability was found to be about 18.8% for PEG-8000 and 25.4% for PEG-10,000, respectively. For the manufacture of biodeg- radable PEG film, EMAA/PEG and EAA/PEG blending ability was investigated with IR spectrum and showed that it was possible to produce blending film.

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Benzene 분해 세균의 분리와 특성연구 (Isolation and Characterization of Benzene-degrading Bacteria.)

  • 김정현;유재근;이형환
    • 한국미생물·생명공학회지
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    • 제16권5호
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    • pp.379-383
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    • 1988
  • 활성슬러지법에 의한 벤젠폐수 처리실험을 통하여 활성슬러지의 벤젠처리중에 실제 그에 관여하는 세균을 분리 동정하였다. 반응조에서 분리한 세균은 6종으로, Pseudomonas fluorescens, Enterobacter agglomerans, Enterobacter cloacae, Klebsiella oxytoca, Citrobacter freundii와 Klebsiella pneumoniae로 동정되었다. 벤젠 분해능을 측정한 결과는 P. fluorescenss가 55%를 18시간만에 처리했고, E. cloacae는 24%, K. oxytoca 는 32%, E. agglomerans는 41%의 분해능을 보였다. P. fluorescens의 증식 최적조건은 온도 25-31$^{\circ}C$와 pH 7.0으로 확인되었다. P. fluorescens가 우점종일때 나타나는 지로생물은 원생동물인 Aspidisca sp.였다. 벤젠 농도가 387mg/$\ell$일 때에는 Aspidisca sp.와 Litonotus sp.가 증식을 최대로 하였고, 벤젠 농도가 1,600mg/$\ell$에서는 Litonotus sp.와 Vorticella sp.는 거의 성장하지 않았다. Glucose 배지에서는 모두 성장율이 높았다.

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