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      Production of Biosurfactants by Hydrocarbons degrading bacteria isolated from Soummam watershed Sediments of Bejaia in Algeria

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      https://www.riss.kr/link?id=O120798027

      • 저자
      • 발행기관
      • 학술지명
      • 권호사항
      • 발행연도

        2018년

      • 작성언어

        -

      • Print ISSN

        1944-7442

      • Online ISSN

        1944-7450

      • 등재정보

        SCI;SCIE;SCOPUS

      • 자료형태

        학술저널

      • 수록면

        189-195   [※수록면이 p5 이하이면, Review, Columns, Editor's Note, Abstract 등일 경우가 있습니다.]

      • 구독기관
        • 전북대학교 중앙도서관  
        • 성균관대학교 중앙학술정보관  
        • 부산대학교 중앙도서관  
        • 전남대학교 중앙도서관  
        • 제주대학교 중앙도서관  
        • 중앙대학교 서울캠퍼스 중앙도서관  
        • 인천대학교 학산도서관  
        • 숙명여자대학교 중앙도서관  
        • 서강대학교 로욜라중앙도서관  
        • 계명대학교 동산도서관  
        • 충남대학교 중앙도서관  
        • 한양대학교 백남학술정보관  
        • 이화여자대학교 중앙도서관  
        • 고려대학교 도서관  
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      다국어 초록 (Multilingual Abstract)

      Hydrocarbons degrading bacteria were isolated from sediments of the Soummam watershed of Bejaia (Algeria). Eleven bacteria strains were isolated using an enrichment technique, method in mineral salt medium, with various hydrocarbons as the sole carbon source. The biodegradation confirmation of various hydrocarbons by these isolates was tested by hole‐plate diffusion technique. Out of eleven cultures, nine had shown the growth around the holes. The isolates were screened for biosurfactant producing using oil spreading test and emulsification activity. The value of emulsification activity varied from 55.7 ± 1.1 to 78.5 ± 0.5%. The diameter of clear zone obtained varied between 20.7 ± 1.2 mm and 33.7 ± 1.2 mm, it was hence important compared to the negative control. Five bacterial strains were identified as Alcaligenes faecalis, Ochrobactrum, Cellulosimicrobium, Pseudomonas stutzeri, and Rhodococcus ruber by using physiochemical characterization and MALDI‐TOF mass spectrometry tools. The best production of crude biosurfactant by the identified bacterial strains was found in R. ruber which produced 6.7 ± 0.1 g/L of the crude biosurfactant after 168 h incubation in mineral salt medium (MSM) supplemented with 2% of glucose and 0.1 g/L of yeast extract. The biosurfactant produced by all bacterial strains showed a high emulsification index (E24), where P. stutzeri revealed the highest one (92.2 ± 1.1%). © 2017 American Institute of Chemical Engineers Environ Prog, 37: 189–195, 2018
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      Hydrocarbons degrading bacteria were isolated from sediments of the Soummam watershed of Bejaia (Algeria). Eleven bacteria strains were isolated using an enrichment technique, method in mineral salt medium, with various hydrocarbons as the sole carbon...

      Hydrocarbons degrading bacteria were isolated from sediments of the Soummam watershed of Bejaia (Algeria). Eleven bacteria strains were isolated using an enrichment technique, method in mineral salt medium, with various hydrocarbons as the sole carbon source. The biodegradation confirmation of various hydrocarbons by these isolates was tested by hole‐plate diffusion technique. Out of eleven cultures, nine had shown the growth around the holes. The isolates were screened for biosurfactant producing using oil spreading test and emulsification activity. The value of emulsification activity varied from 55.7 ± 1.1 to 78.5 ± 0.5%. The diameter of clear zone obtained varied between 20.7 ± 1.2 mm and 33.7 ± 1.2 mm, it was hence important compared to the negative control. Five bacterial strains were identified as Alcaligenes faecalis, Ochrobactrum, Cellulosimicrobium, Pseudomonas stutzeri, and Rhodococcus ruber by using physiochemical characterization and MALDI‐TOF mass spectrometry tools. The best production of crude biosurfactant by the identified bacterial strains was found in R. ruber which produced 6.7 ± 0.1 g/L of the crude biosurfactant after 168 h incubation in mineral salt medium (MSM) supplemented with 2% of glucose and 0.1 g/L of yeast extract. The biosurfactant produced by all bacterial strains showed a high emulsification index (E24), where P. stutzeri revealed the highest one (92.2 ± 1.1%). © 2017 American Institute of Chemical Engineers Environ Prog, 37: 189–195, 2018

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