Title of article
Investigation of Paenibacillus alvei ARN63 ability for biodemulsifier production: Medium optimization to break heavy crude oil emulsion
Author/Authors
Amirabadi، نويسنده , , S.Sh. and Jahanmiri، نويسنده , , A. and Rahimpour، نويسنده , , M.R. and nia، نويسنده , , B. Rafie and Darvishi، نويسنده , , P. and Niazi، نويسنده , , A.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
9
From page
244
To page
252
Abstract
The demulsifying performance of Paenibacillus alvei ARN63 (P. alvei), as a biodemulsifier-producing bacterium, for breaking water-in-heavy crude oil emulsion has been investigated. The produced lipopeptide biodemulsifier showed the potential to be used in the petroleum industry as an environmentally friendly and non-toxic material. To optimize the biodemulsifier production, the impacts of parameters such as temperature, pH, carbon source and carbon concentration at a constant agitation speed of 180 rpm and with ammonium sulfate as the sole nitrogen source (1.0 g/l) were studied in detail. Several normal paraffin compounds, vegetable oils and motor oil revealed the ability to be used as the carbon source for synthesis of biodemulsifier. The best biodemulsifier production was obtained employing motor oil as the carbon source with a concentration of 42.5 g/l at 37 °C and pH 7.0 after 72 h of incubation. Under these conditions, the surface tension of the medium reduced from 58 mN/m to 24.7 mN/m and the biodemulsifier yield reached a value of 2.1 g/l. The demulsification ratio approached 77% and the produced biodemulsifier by P. alvei strain effectively broke water-in-heavy crude oil emulsion. According to biodemulsifier production and growth time course profiles, the biosynthesis was growth associated. Besides, the produced biodemulsifier had good stability during exposure to salinities up to 20%, temperatures up to 80 °C and a wide pH range of 2–12.
Keywords
Carbon source , Crude oil emulsion , Surface Tension , Motor oil , Biodemulsifier
Journal title
Colloids and Surfaces B Biointerfaces
Serial Year
2013
Journal title
Colloids and Surfaces B Biointerfaces
Record number
1976837
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