Experimental design for the production of tensio-active agent by Candida lipolytica

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Abstract

The strategy of optimization using sequential factorial design was employed to enhance the tensio-active emulsifying agent produced by Candida lipolytica using soybean oil refinery residue as substrate. A full factorial design was used to evaluate the impact of three fermentation factors-amounts of refinery residue, glutamic acid and yeast extract. This allowed exclusion of the yeast extract. Full factorials designs were then sequentially used to optimize the levels of the residue and glutamic acid. The surface tension value was finally reduced to 25.29 mN/m. The maximum emulsifier activity using different substrates was within 40 h of cultivation. The surface tension of the cell-free broth containing the biosurfactant remained very stable during exposure to a wide range of pH (2-12), temperatures (0-120°C) and salinity (2-10% NaCl). The combination of an industrial waste and a cheap substrate therefore seems to be very promising for the low-cost production of potent biosurfactant. © 2008 Society for Industrial Microbiology.

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APA

Rufino, R. D., Sarubbo, L. A., Neto, B. B., & Campos-Takaki, G. M. (2008). Experimental design for the production of tensio-active agent by Candida lipolytica. Journal of Industrial Microbiology and Biotechnology, 35(8), 907–914. https://doi.org/10.1007/s10295-008-0364-3

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