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首页> 外文期刊>The Korean journal of chemical engineering >Simulation study of biobutanol production in a polymer-loaded two-phase partitioning bioreactor (PL-TPPB): Model development
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Simulation study of biobutanol production in a polymer-loaded two-phase partitioning bioreactor (PL-TPPB): Model development

机译:负载聚合物的两相分配生物反应器(PL-TPPB)中生物丁醇生产的模拟研究:模型开发

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The conventional two-phase partitioning bioreactor (TPPB) containing an organic solvent as a second phase was found to be hardly efficient for biobutanol production because of the relatively low partitioning coefficient of butanol between the organic solvent and aqueous solution. Polymer bead was alternatively employed as the second phase in the TPPB, and Dowex Optipore L-493, a copolymer of styrene and divinyl benzene, was chosen as the optimum polymer because it shows the highest partitioning coefficients of butanol, acetone, ethanol and butyric acid against the aqueous phase among candidate polymers. The mass transfer coefficients of compounds from the aqueous phase into polymer beads were experimentally determined with respect to agitation speed. The mass transfer coefficient related to the stripping of volatile compounds by nitrogen gas was also determined, and the influence of gas flow rate turned out to be greater than that of the agitation speed, though both influences were remarkable. A mathematical model for the TPPB containing the polymer beads was suggested and as many as 40 parameters were cited from other publications or determined in this study. This mathematical model will be subsequently used for the detailed simulation study.
机译:发现由于有机溶剂和水溶液之间丁醇的分配系数相对较低,所以包含有机溶剂作为第二相的常规两相分配生物反应器(TPPB)对于生物丁醇的生产几乎没有效率。 TPPB中的第二相也选择使用聚合物珠,并且选择苯乙烯和二乙烯基苯的共聚物Dowex Optipore L-493作为最佳聚合物,因为它显示出最高的丁醇,丙酮,乙醇和丁酸分配系数。对抗候选聚合物中的水相。关于搅拌速度,通过实验确定了化合物从水相到聚合物珠粒的传质系数。还确定了与氮气汽提挥发性化合物有关的传质系数,尽管这两种影响均显着,但气体流速的影响大于搅拌速度。提出了含聚合物珠的TPPB的数学模型,并从其他出版物中引用或在本研究中确定了多达40个参数。该数学模型将随后用于详细的仿真研究。

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