Nitschke Marcia, Pastore Glaucia Maria
Biochemistry Laboratory, Department of Food Science, Faculty of Food Engineering, UNICAMP, Rua Monteiro Lobato, 80 Cx. Postal 6121, CEP 13083-970, Campinas, SP, Brazil.
Bioresour Technol. 2006 Jan;97(2):336-41. doi: 10.1016/j.biortech.2005.02.044. Epub 2005 Apr 21.
The production and properties of a biosurfactant, synthesized by Bacillus subtilis LB5a strain, using cassava wastewater as substrate were investigated. The microorganism was able to grow and to produce surfactant on cassava waste, reducing the surface tension of medium to 26.6 mN/m and giving a crude surfactant concentration of 3.0 g/L after 48 h. The surface-active compound retained its properties during exposure to elevate temperatures (100 degrees C), high salinity (20% NaCl) and a wide range of pH values. The surfactant was capable of forming stable emulsions with various hydrocarbons. Preliminary chemical characterization revealed that the surfactant has a lipopeptide composition with a CMC value of about 33 mg/L. Cassava wastewater proved to be a suitable substrate for biosurfactant biosynthesis, providing not only bacterial growth and product accumulation but also a surfactant that has interesting and useful properties with potential for many industrial applications.
研究了枯草芽孢杆菌LB5a菌株以木薯废水为底物合成生物表面活性剂的生产过程及其性质。该微生物能够在木薯废料上生长并产生表面活性剂,48小时后可将培养基的表面张力降低至26.6 mN/m,粗表面活性剂浓度达到3.0 g/L。该表面活性化合物在高温(100℃)、高盐度(20% NaCl)和广泛的pH值范围内仍保持其性质。该表面活性剂能够与各种碳氢化合物形成稳定的乳液。初步化学表征表明,该表面活性剂具有脂肽组成,临界胶束浓度约为33 mg/L。事实证明,木薯废水是生物表面活性剂生物合成的合适底物,不仅能促进细菌生长和产物积累,还能提供一种具有有趣且有用性质、具有多种工业应用潜力的表面活性剂。