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Kinetic and characterization of rhamnolipid produced by Pseudomonas aeruginosa MSIC02 using glycerol as carbon source

机译:以甘油为碳源的铜绿假单胞菌MSIC02产生鼠李糖脂的动力学和表征

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Glycerol, a co-product of biodiesel production, was used as a carbon source for the kinetics studies and production of biosurfactants by P. aeruginosa MSIC02. The highest fermentative parameters (YPX = 3.04 g g-1; YPS = 0.189 g g-1, PB = 31.94 mg L-1 h-1 and PX = 10.5 mg L-1 h-1) were obtained at concentrations of 0.4% (w/v) NaNO3 and 2% (w/v) glycerol. The rhamnolipid exhibited 80% of emulsification on kerosene, surface tension of 32.5 mN m-1, CMC = 28.2 mg L-1, C20 (concentration of surfactant in the bulk phase that produces a reduction of 20 dyn/cm in the surface tension of the solvent) = 0.99 mg L-1, Γm (surface concentration excess) = 2.4 x 10-26 mol Å-2 and S (surface area) = 70.4 Å2 molecule-1 with solutions containing 10% NaCl. A mathematical model based on logistic equation was considered to representing the process. Model parameters were estimated by non-linear regression method. This approach was able to give a good description of the process.
机译:甘油是生物柴油生产的副产品,被用作铜绿假单胞菌MSIC02动力学研究和生产生物表面活性剂的碳源。在0.4%的浓度下获得了最高的发酵参数(YPX = 3.04 g g-1; YPS = 0.189 g g-1,PB = 31.94 mg L-1 h-1和PX = 10.5 mg L-1 h-1)。 (w / v)NaNO3和2%(w / v)甘油。鼠李糖脂在煤油上具有80%的乳化作用,表面张力为32.5 mN m-1,CMC = 28.2 mg L-1,C20(本体相中表面活性剂的浓度降低了20达因/厘米的表面张力)。溶剂)= 0.99 mg L-1,Γm(过量的表面浓度)= 2.4 x 10-26 molÅ-2,S(表面积)= 70.4Å2分子-1,溶液中含10%NaCl。考虑基于逻辑方程的数学模型来表示过程。通过非线性回归方法估算模型参数。这种方法能够很好地描述该过程。

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