4.7 Article

Properties and characterization of biosurfactant in crude oil biodegradation by bacterium Bacillus methylotrophicus USTBa

Journal

FUEL
Volume 122, Issue -, Pages 140-148

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.fuel.2014.01.023

Keywords

Biodegradation; Biosurfactant; Microbial growth; Bioremediation; Characterization

Funding

  1. Chinese Ministry of Science and Technology [2010DFB23160]
  2. National Natural Science Foundation of China [40920134003, 41273092]
  3. National Outstanding Youth Research Foundation of China [40925010]
  4. Overseas, Hong Kong and Macau Young Scholars Collaborative Research Fund [41328005]
  5. Chinese Scholarship Council (CSC)

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An effective biosurfactant-producer and hydrocarbon degrading bacterial strain, Bacillus methylotrophicus USTBa was isolated from hydrocarbon contaminated aqueous medium using crude oil as sole source of carbon. The growth parameters such as pH, temperature, and salinity were optimized for degradation of hydrocarbons and 92% degradation of crude oil removal was observed in 2 weeks. The biosurfactant produced during the course of hydrocarbon degradation was monitored by surface tension and cell hydrophobicity measurements. The produced biosurfactant had the ability to decrease the surface tension of water from 72 to 28 mN/m, with the critical micelle concentration (CMC) of 35 mg/L. The biosurfactant exhibited 90% emulsification activity (EI) on crude oil. Nuclear magnetic resonance spectroscopy (NMR), X-ray diffraction (XRD), and thermal gravimetric (TG) analysis revealed the functional groups, surface nature and thermostability of the biosurfactant, respectively. Gas chromatography analysis demonstrated that the strain USTB efficiently degraded different alkanes from crude oil. The biosurfactant did not exhibit inhibitory effect to various vegetables, however strong antibiotic activity against gram positive and gram negative bacteria was observed. The study suggest application of the USTBa biosurfactant as an appropriate candidate for bioremediation of crude oil contaminants. (C) 2014 Elsevier Ltd. All rights reserved.

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