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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): Simulation and strategy for biobutanol production
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Simulation study of biobutanol production in a polymer-loaded two-phase partitioning bioreactor (PL-TPPB): Simulation and strategy for biobutanol production

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:生物丁醇生产的模拟和策略

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摘要

A simulation study was performed for a two-phase partitioning bioreactor (TPPB) with polymer beads, Dowex Optipore L-493, as a second phase. When the initial glucose concentration is less than 30 g/L, a single-phase bioreactor is preferred, because it consumed all the glucose with 40% of biobutanol yield. Any glucose over the concentration remained in the single-phase bioreactor because cells were completely inhibited by products, mainly biobutanol, and thus glucose availability became less than 100%. The TPPB with 10% polymer beads completely consumed up to 120 g/L glucose and more polymer beads were required for the higher glucose concentration. Instead of increasing the proportion of polymer beads, 2 vvm of nitrogen gas was introduced continuously into the TPPB for the stripping of products, reducing product inhibitions. By applying gas stripping to the TPPB containing 10% polymer beads, 150 g/L of glucose was completely consumed and 99.7% acetone, 46.8% butanol and 82.5% ethanol was stripped out of the TPPB. Finally, on the basis of these estimations, a novel strategy based on the initial glucose concentration was suggested for high biobutanol production.
机译:对两相分配生物反应器(TPPB)进行了仿真研究,该反应器以聚合物珠Dowex Optipore L-493为第二相。当初始葡萄糖浓度小于30g / L时,单相生物反应器是优选的,因为其消耗了全部葡萄糖且生物丁醇产率为40%。由于细胞被产物(主要是生物丁醇)完全抑制,因此单相生物反应器中残留的任何葡萄糖浓度都超过了葡萄糖,因此葡萄糖的利用率低于100%。含10%聚合物珠的TPPB完全消耗高达120 g / L的葡萄糖,而更高的葡萄糖浓度需要更多的聚合物珠。代替增加聚合物珠粒的比例,将2 vvm的氮气连续引入TPPB中以汽提产物,从而减少了产物的抑制作用。通过对含10%聚合物珠的TPPB进行气提,完全消耗了150 g / L的葡萄糖,并从TPPB中汽提了99.7%的丙酮,46.8%的丁醇和82.5%的乙醇。最后,基于这些估计,提出了一种基于初始葡萄糖浓度的新策略,以提高生物丁醇的产量。

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