4.3 Article

Effects of Au/Fe and Fe nanoparticles on Serratia bacterial growth and production of biosurfactant

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ELSEVIER
DOI: 10.1016/j.msec.2013.05.026

Keywords

Au/Fe nanoparticle; Fe nanoparticle; Serratia; Interaction; Biosurfactant

Funding

  1. Center for Innovative Grouting Materials and Technology (CIGMAT)
  2. Texas Advanced Research Program
  3. EPA through the Texas Hazardous Waste Research Center

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The overall objective of this study was to compare the effects of Au/Fe and Fe nanoparticles on the growth and performance of Smatia JI0300. The nanoparticle effect was quantified not only by the bacterial growth on agar plate after 1 hour interaction with the nanoparticles, but also by its production of a biosurfactant from used vegetable oil. The nanopartides were prepared using the foam method. The concentrations of the nanoparticles used for the bacterial interaction study were varied from 1 mg/L to 1 g/L The test results showed that the effect of nanoparticles on the bacterial growth and biosurfactant production varied with nanoparticle type, concentrations, and interaction time with the bacteria. Au/Fe nanoparticles didn't show toxicity to Serratia after short time (1 h) exposure, while during 8 days fermentation Au/Fe nanoparticles inhibited the growth of Serratia as well as the biosurfactant production when the concentration of the nanoparticles was higher than 10 mg/L Fe nanoparticles showed inhibition effects to bacterial growth both after short time and long time interaction with Serratia, as well as to biosurfactant production when its concentration was higher than 100 mg/L. Based on the trends observed in this study, analytical models have been developed to predict the bacterial growth and biosurfactant production with varying concentrations of nanoparticles. (C) 2013 Elsevier B.V. All rights reserved.

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