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首页> 外文期刊>Chemical and Biochemical Engineering Quarterly >Modeling of DBT Biodesulfurization by Resting Cells of Gordonia sp. WQ-01A Immobilized in Alginate Gel Beads in an Oil-water-immobilization System
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Modeling of DBT Biodesulfurization by Resting Cells of Gordonia sp. WQ-01A Immobilized in Alginate Gel Beads in an Oil-water-immobilization System

机译:戈登尼亚菌静止细胞对DBT生物脱硫的建模。 WQ-01A在油水固定系统中固定在藻酸盐胶珠中

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Abstract In this study, the resting cells of Gordonia sp. WQ-01A, a DBT-desulfurizing strain, were immobilized by calcium alginate. Batch DBT biodesulfurization experiments using immobilized cells and n-dodecane as the oil phase were conducted in fermenter under varying operating conditions such as initial DBT concentration, bead loading and the oil phase volume fraction. When the initial DBT concentration is 0.5, 1 and 5 mmol L–1, the DBT concentration dropped almost to zero after t = 40, 60 and 100 hours, respectively. The influence of bead loading and the oil-phase volume fraction was small to the DBT biodesulfurization. Furthermore, a mathematical model was proposed to simulate the batch DBT biodesulfurization process in an oil-water-immobilization system, which took into account the internal and external mass transfer resistances of DBT and oxygen, and the intrinsic kinetics of bacteria. To validate this model, the comparison between the model simulations and the experimental measurements of DBT concentration profiles in the oil phase was carried out and the agreement is very good. In addition, the time and radius courses of DBT and oxygen concentrations within the alginate gel beads were reasonably predicted by the proposed model.
机译:摘要本文研究了Gordonia sp。的静止细胞。海藻酸钙固定了DBT脱硫菌株WQ-01A。使用固定化细胞和正十二烷作为油相的分批DBT生物脱硫实验是在发酵罐中于各种操作条件下进行的,例如初始DBT浓度,珠负载量和油相体积分数。当初始DBT浓度为0.5、1和5 mmol L-1时,分别在t = 40、60和100小时后,DBT浓度几乎降至零。珠粒负载和油相体积分数对DBT生物脱硫的影响很小。此外,提出了一个数学模型来模拟在油水固定化系统中分批DBT生物脱硫过程,该模型考虑了DBT和氧气的内部和外部传质阻力以及细菌的内在动力学。为了验证该模型,对模型模拟与油相中DBT浓度分布的实验测量结果进行了比较,并取得了很好的一致性。此外,该模型合理地预测了藻酸盐凝胶珠中DBT的时间和半径以及氧浓度。

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