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      KCI등재 SCIE SCOPUS

      Optimization of Enterobacter cloacae (KU923381) for diesel oil degradation using Response Surface Methodology (RSM)

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      https://www.riss.kr/link?id=A103761567

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      다국어 초록 (Multilingual Abstract)

      Efficiency of Enterobacter cloacae KU923381 isolated from petroleum hydrocarbon contaminated soil was evaluated in batch culture and bioreactor mode. The isolate were screened for biofilm formation using qualitative and quantitative assays. Response s...

      Efficiency of Enterobacter cloacae KU923381 isolated from petroleum hydrocarbon contaminated soil was evaluated in batch culture and bioreactor mode. The isolate were screened for biofilm formation using qualitative and quantitative assays.
      Response surface methodology (RSM) was used to study the effect of pH, temperature, glucose concentration, and sodium chloride on diesel degradation. The predicted values for diesel oil degradation efficiency by the statistical designs are in a close agreement with experimental data (R2 = 99.66%).
      Degradation efficiency is increased by 36.78% at pH = 7, temperature = 35°C, glucose = 5%, and sodium chloride concentration = 5%. Under the optimized conditions, the experiments were performed for diesel oil degradation by gas chromatographic mass spectrometric analysis (GC-MS). GC-MS analysis confirmed that E. cloacae had highly degrade hexadecane, heptadecane, tridecane, and docosane by 99.71%, 99.23%, 99.66%, and 98.34% respectively. This study shows that rapid bioremoval of hydrocarbons in diesel oil is acheived by E. cloacae with abet of biofilm formation. The potential use of the biofilms for preparing trickling filters (gravel particles) for the degradation of hydrocarbons from petroleum wastes before their disposal in the open environment is highly suggested. This is the first successful attempt for artificially establishing petroleum hydrocarbon degrading bacterial biofilm on solid substrates in bioreactor.

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      참고문헌 (Reference)

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      8 Prakash, B., "Pseudomonas aeruginosa is present in crude oil contaminated sites of Barmer Region(India)" 2 : 5-, 2011

      9 Bakkiyaraj, S., "Production and optimization of biodiesel using mixed immobilized biocatalysts in packed bed reactor" 15 : 4583-4587, 2015

      10 Steel, R. G. D., "Principles and procedures of statistics : a biometrical approach" McGraw-Hill 1980

      1 Sarve, A., "Ultrasound assisted biodiesel production from sesame(Sesamum indicum L.)oil using barium hydroxide as a heterogeneous catalyst : comparative assessment of prediction abilities between response surface methodology(RSM)and artificial neural network(ANN)" 26 : 218-228, 2015

      2 Sadiq, M., "The Gulf Ecosystem: health and sustainability" Backhuys Publishers 2002

      3 Price, A. R. G., "The Gulf : its biological setting" 27 : 5-15, 1993

      4 Cooper, D. J., "Surface active agents from two Bacillus species" 54 : 224-229, 1987

      5 SAS, "SAS user’s guide statistics version 6.12" SAS Institut 1996

      6 Rao, M. A., "Role of enzymes in the remediation of polluted environments" 10 : 333-353, 2010

      7 Vidhyalakshmi, R., "RSM for accelerated biofilm formation that facilitates bioremediation and characterization of biofilm" 12 : 546-, 2012

      8 Prakash, B., "Pseudomonas aeruginosa is present in crude oil contaminated sites of Barmer Region(India)" 2 : 5-, 2011

      9 Bakkiyaraj, S., "Production and optimization of biodiesel using mixed immobilized biocatalysts in packed bed reactor" 15 : 4583-4587, 2015

      10 Steel, R. G. D., "Principles and procedures of statistics : a biometrical approach" McGraw-Hill 1980

      11 Natalia, R. R., "Optimization of the process variables in the microwave-induced synthesis of carbon xerogels" 69 : 488-497, 2014

      12 Kumar, V., "Optimization of process parameters for the production of taro chips using RSM with fuzzy modelling" 9 : 400-, 2015

      13 Zafar, M., "Optimization of napthalene biodegradation by a genetic algorithm based response surface methodology" 27 : 89-99, 2010

      14 Goyal, P., "Optimization of esterification and transesterification of high FFA Jatropha curcas oil using response surface methodology" 1 : 36-43, 2012

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      17 Moghadam, M. S., "Isolation, identification, and optimization of phenanthrene degrading bacteria from the coastal sediments of nayband Bay" 6 : 13816-, 2013

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      19 Saadoun, I, "Isolation and characterization of bacteria from crude petroleum oil contaminated soil and their potential to degrade diesel fuel" 42 : 420-428, 2002

      20 Wang, Y., "Improvement of biodiesel production by lipozyme TL IM-catalyzed methanolysis using response surface methodology and acyl migration enhancer" 99 : 7232-7237, 2008

      21 Magesh, H., "Identification of natural compounds which inhibit biofilm formation in clinical isolates of Klebsiella pneumonia" 51 : 764-772, 2013

      22 Perfumo, A., "Handbook of Hydrocarbon and Lipid Microbiology" Springer 501-1512, 2010

      23 Donio, M. B. S., "Halomonas sp. BS4, A biosurfactant producing halophilic bacterium isolated from solar salt works in india and their biomedical importance" 2 : 149-, 2013

      24 Samuel, E. A., "Factorial designs application to study enhanced bioremediation of soil artificially contaminated with weathered bonny light crude oil through biostimulation and bioaugmentation strategy" 3 : 748-759, 2012

      25 Dave, B. P., "Enhanced chrysene degradation by a mixed culture biorem-CGBD using response surface design" 53 : 256-263, 2015

      26 Kuntiya, A., "Effect of sodium chloride on cell surface hydrophobicity and formation of biofilm in membrane bioreactor" 27 : 1073-1082, 2005

      27 Laxmi, N. P., "Effect of carbon and nitrogen sources on growth of Bifidobacterium animalis Bb12 and Lactobacillus delbrueckii ssp. bulgaricus ATCC 11842 and production of β-galactosidase under different culture conditions" 18 : 373-380, 2011

      28 Ganesh, A., "Diesel degradation and biosurfactant production by Gram-positive isolates" 8 : 5847-5854, 2009

      29 Youssef, N. H., "Comparison of methods to detect biosurfactant production by diverse microorganisms" 56 : 339-347, 2004

      30 El-Bestawy, E., "Comparison among the efficiency of different bioremediation technologies of atrazine–contaminated soils" 5 : 5-, 2014

      31 Chang, R., "Chemistry" McGraw Hill Company 1998

      32 Wang, L. Y., "Characterization of an alkane-degrading methanogenic enrichment culture from production water of an oil reservoir after 274 days of incubation" 65 : 444-450, 2011

      33 Sugumar, R., "Characterization and optimization of EPS producing and diesel oil-degrading Ochrobactrum anthropi MP3 isolated from refinery wastewater" 11 : 189-199, 2014

      34 Riser-Roberts, E., "Bioremediation of petroleum contaminated sites" CRC Press Inc. 1992

      35 Sriram, M. I., "Biofilm inhibition and antimicrobial action of lipopeptide biosurfactant produced by heavy metal tolerant strain Bacillus cereus NK1" 85 : 174-181, 2011

      36 Sanyaolu, A. A., "Biodeterioration of premium motor spirit(PMS)by fungal species" 3 : 276-285, 2012

      37 Ameen, F., "Biodegradation of diesel fuel hydrocarbons by mangrove fungi from Red Sea Coast of Saudi Arabia" 23 : 211-218, 2016

      38 Mariano, A. P., "Biodegradability of commercial and weathered diesel oils" 39 : 133-142, 2008

      39 Holt, J. G., "Bergey’s Manual of Determinative Bacteriology" Williams & Wilkins 1994

      40 Satpute, S. K., "Assessment of different screening methods for selecting biosurfactant producing marine bacteria" 37 : 243-250, 2008

      41 Bodour, A. A., "Application of a modified drop-collapse technique for surfactant quantitation and screening of biosurfactant-producing microorganisms" 32 : 273-280, 1998

      42 Annuar, M. S. M., "Ammonium uptake and growth kinetics of Pseudomonas putida PGA1" 14 : 1-10, 2006

      43 Christensen, G. D., "Adherence of coagulase negative Staphylococci to plastic tissue cultures : a quantitative model for the adherence of Staphylococci to medical devices" 22 : 996-1006, 1995

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      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2013-12-02 학술지명변경 외국어명 : The Journal of Microbiology -> Journal of Microbiology KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2004-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2001-07-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      1999-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 1.76 0.2 1.22
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.91 0.73 0.399 0.07
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