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首页> 外文期刊>The Canadian Journal of Chemical Engineering >KINETIC MODELLING OF CELL GROWTH, SUBSTRATE UTILIZATION, AND BIOSURFACTANT PRODUCTION FROM SOLID AGROWASTE (BETA VULGARIS) BY BACILLUS LICHENIFORMIS STK 01
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KINETIC MODELLING OF CELL GROWTH, SUBSTRATE UTILIZATION, AND BIOSURFACTANT PRODUCTION FROM SOLID AGROWASTE (BETA VULGARIS) BY BACILLUS LICHENIFORMIS STK 01

机译:BACILLUS LICHENIFORMIS STK 01从固态生长物(菜豆)产生的细胞生长,基质利用和生物表面活性剂的动力学模型

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摘要

The kinetics of cell growth, substrate utilization, and biosurfactant production by Bacillus licheniformis STK 01 from a solid agrowaste substrate (Beta vulgaris) and a refined substrate (mineral salts, MS) was investigated. Data obtained were fitted to the integrated Monod equation, logistic models, and Leudeking-Piret model using nonlinear regression analyses. The maximum cell growth was observed after 72 h of fermentation for both substrates. The highest biosurfactant production was 5.8 +/- 0.5 g/L when the B. vulgaris waste substrate was used, while the production increased up to 9.78 +/- 1.02 g/L when MS was used. The biosurfactant produced from B. vulgaris and MS lowered the surface tension of the broth to 30 and 23.5 mN/m respectively. Furthermore, from the kinetic data analyses, cell growth and B. vulgaris utilization were described by the logistic model and modified Monod equation, respectively, with the maximum cell growth rate of 0.026 h(-1), cell yield of 0.617, and the Monod saturation constant being 0.418 g/L. Similarly, biosurfactant production was best described by the logistic model while the production rate constant was 0.140 h(-1). This study is applicable, among other areas, in the design of biological systems augmented with B. vulgaris waste.
机译:研究了地衣芽孢杆菌STK 01从固态的agrorowaste底物(Beta vulgaris)和精制底物(矿物盐,MS)产生细胞生长,底物利用和生产生物表面活性剂的动力学。使用非线性回归分析将获得的数据拟合到集成的Monod方程,逻辑模型和Leudeking-Piret模型。发酵72小时后,两种底物均观察到最大的细胞生长。当使用寻常型芽孢杆菌废底物时,最高的生物表面活性剂产量为5.8 +/- 0.5 g / L,而当使用MS时,产量最高可提高到9.78 +/- 1.02 g / L。由寻常芽孢杆菌和MS生产的生物表面活性剂分别将肉汤的表面张力降低至30和23.5 mN / m。此外,从动力学数据分析,分别通过逻辑模型和改良的Monod方程描述了细胞的生长和普通芽孢杆菌的利用,最大细胞生长速率为0.026 h(-1),细胞产量为0.617,而Monod饱和常数为0.418 g / L。同样,通过logistic模型可以最好地描述生物表面活性剂的生产,而生产率常数为0.140 h(-1)。除其他领域外,该研究还可用于设计增添寻常型双歧杆菌废物的生物系统。

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