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.
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http://dx.doi.org/10.1016/j.colsurfb.2013.03.029 | DOI Listing |
Chemosphere
December 2022
College of Resources and Environment, Northeast Agricultural University, No. 600 Changjiang Street, Harbin, Heilongjiang, 150030, PR China. Electronic address:
The inability to demulsify oil-in-water emulsions via green and efficient processes is a challenging problem in many industrial processes. As a novel biodemulsifier, protein demulsifiers display excellent dispersibility and stability, but their demulsification mechanisms are not clear, which severely restricts their large-scale production and application. In this study, the demulsification mechanism of the high-efficiency protein biodemulsifier oxalate decarboxylase (Bacm OxdC), which is secreted by the Bacillus mojavensis XH1 strain, for an oil-in-water emulsion was analyzed.
View Article and Find Full Text PDFUltrason Sonochem
January 2022
Ecole Nationale Polytechnique de Constantine, Constantine, Algeria.
There has been consistent drive towards research and innovation in oil production technologies in order to achieve improved effectiveness and efficiency in their operation. This drive has resulted in breakthrough in technologies such as the application of ultrasound (US) in demulsification and enhanced oil recovery (EOR), and usage of high-volume hydraulic fracturing and special horizontal well for shale oil and gas extraction. These can be observed in the increment in the number of commercial oil technologies such as EOR projects that rose from 237 in 1996 to 375 in 2017.
View Article and Find Full Text PDFChemosphere
December 2021
Department of Chemical Engineering, Bushehr Branch, Islamic Azad University, Bushehr, Iran.
The effluent produced in refineries is in the form of an oil/water emulsion that must be treated. These emulsions are often stable and a suitable method must be used to separate the oil from the emulsion. Recently, biosurfactants or biodemulsifiers have received much attention to reduce the interfacial tension between two liquids.
View Article and Find Full Text PDFAppl Biochem Biotechnol
August 2021
School of Studies in Biotechnology, Pt. Ravishankar Shukla University, Raipur, CG, 492010, India.
α-Amylases are the oldest and versatile starch hydrolysing enzymes which can replace chemical hydrolysis of starch in industries. It cleaves the α-(1,4)-D-glucosidic linkage of starch and other related polysaccharides to yield simple sugars like glucose, maltose and limit dextrin. α-Amylase covers about 30% shares of the total enzyme market.
View Article and Find Full Text PDFColloids Surf B Biointerfaces
November 2020
College of Resource and Environment, Northeast Agricultural University, Harbin, 150030, Heilongjiang, China. Electronic address:
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