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首页> 外文期刊>The Korean journal of chemical engineering >Medium optimization of Rhodococcus erythropolis LSSE8-1 by Taguchi methodology for petroleum biodesulfurization
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Medium optimization of Rhodococcus erythropolis LSSE8-1 by Taguchi methodology for petroleum biodesulfurization

机译:Taguchi方法对红生红球菌LSSE8-1进行培养基优化以进行石油生物脱硫

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摘要

High production of Rhodococcus erythropolis LSSE8-1 and its application for the treatment of diesel oils was investigated. Culture conditions were optimized by Taguchi orthogonal array experimental design methodology. High cell density cultivation of biocatalyst with pH control and fed-batch feeding strategies was further validated in a fermentor with the optimal factors. Cell concentration of 23.9 g dry cells/L was obtained after 96 h cultivation. The resting cells and direct fermentation suspension were applied for deep desulfurization of hydrodesulfurized diesel oils. It was observed that the sulfur content of the diesel decreased from 248 to 51 (μg/g by two consecutive biodesulfurizations. It implied that the biodesulfurization process can be simplified by directly mixing cell cultivation suspension with diesel oil. The biocatalyst developed with the Taguchi method has the potential to be applied to produce ultra-low-sulfur petroleum oils.
机译:研究了红球红球菌LSSE8-1的高产量及其在柴油中的应用。通过田口正交阵列实验设计方法优化培养条件。在具有最佳因子的发酵罐中,进一步验证了具有pH控制和分批补料策略的生物催化剂的高细胞密度培养。培养96小时后,细胞浓度为23.9 g干细胞/ L。静置池和直接发酵悬浮液用于加氢脱硫柴油的深度脱硫。观察到,通过连续两次生物脱硫,柴油中的硫含量从248降低到51(μg/ g),这表明将细胞培养悬浮液与柴油直接混合可以简化生物脱硫过程。有潜力用于生产超低硫石油。

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