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首页> 外文期刊>Biotechnology and Bioengineering >A novel solid-liquid two-phase partitioning Bioreactor for the enhanced bioproduction of 3-methylcatechol
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A novel solid-liquid two-phase partitioning Bioreactor for the enhanced bioproduction of 3-methylcatechol

机译:一种新型的固液两相分配生物反应器,用于提高3-甲基邻苯二酚的生物产量

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The bioproduction of 3-methylcatechol from toluene via Pseudomonas putida MC2 was performed in a solid-liquid two-phase partitioning bioreactor with the intent of increasing yield and productivity over a single-phase system. The solid phase consisted of HYTREL TM, a thermoplastic polymer that was shown to possess superior affinity for the inhibitory 3-methylcatechol compared to other candidate polymers as well as a number of immiscible organic solvents. Operation of a solid-liquid biotransformation utilizing a 10% (w/w) solid (polymer beads) to liquid phase ratio resulted in the bioproduction of 3-methylcatechol at a rate of 350 mg/L-h, which compares favorably to the single phase productivity of 128 mg/L-h.. HYTREL (TM) polymer beads were also reconstituted into polymer sheets, which were placed around the interior circumference of the bioreactor and successfully removed 3-methylcatechol from solution resulting in a rate of 3-methylcatechol production of 343 mg/L-h. Finally, a continuous biotransformation was performed in which culture medium was circulated upwards through T an external extraction column containing HYTREL (TM) beads. The design maintained sub lethal concentrations of 3-methylcatechol within the bioreactor by absorbing produced 3-methylcatechol into the polymer beads. As 3-methylcatechol concentrations in the aqueous phase approached 500 mg/L the extraction column was replaced (twice) with a fresh column and the process was continued representing a simple and effective approach for the continuous bioproduction of 3-methylcatechol. Recovery of 3-methylcatechol from HYTREL TM was also achieved by bead desorption into methanol.
机译:在固液两相分配生物反应器中,通过恶臭假单胞菌MC2从甲苯生物生产3-甲基邻苯二酚,目的是通过单相系统提高产量和生产率。固相由HYTREL TM组成,它是一种热塑性聚合物,与其他候选聚合物以及多种不混溶的有机溶剂相比,对抑制性3-甲基邻苯二酚具有优异的亲和力。利用固相(聚合物珠)与液相比例为10%(w / w)的固液生物转化操作,可产生350 mg / Lh的3-甲基邻苯二酚生物产量,这与单相生产率相比具有优势还将128 mg / Lh的HYTREL(TM)聚合物珠粒重新制成聚合物片,将其放置在生物反应器的内圆周周围,并成功地从溶液中去除了3-甲基邻苯二酚,从而使3-甲基邻苯二酚的产生速率为343 mg / Lh。最终,进行了连续的生物转化,其中培养基通过T向上循环至含有HYTREL TM珠的外部提取柱。该设计通过将产生的3-甲基邻苯二酚吸收到聚合物珠粒中,使生物反应器中的3-甲基邻苯二酚浓度保持较低的致死性。当水相中的3-甲基邻苯二酚浓度接近500 mg / L时,将萃取柱替换为新柱(两次),并继续进行该过程,这是连续生物生产3-甲基邻苯二酚的简单有效方法。还可以通过将珠解吸到甲醇中来从HYTREL TM中回收3-甲基邻苯二酚。

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