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Bioproduction of benzaldehyde in a solid-liquid two-phase partitioning bioreactor using Pichia pastoris.

机译:使用巴斯德毕赤酵母在固液两相分配生物反应器中生物生产苯甲醛。

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The bioproduction of benzaldehyde from benzyl alcohol using Pichia pastoris was examined in a solid-liquid two-phase partitioning bioreactor (TPPB) to reduce substrate and product inhibition. Rational polymer selection identified Elvax 40W as an effective sequestering phase, possessing partition coefficients for benzyl alcohol and benzaldehyde of 3.5 and 35.4, respectively. The use of Elvax 40W increased the overall mass of benzaldehyde produced by approx. 300% in a 5 l bioreactor, relative to a single phase biotransformation. The two-phase system had a molar yield of 0.99, indicating that only minor losses occurred. These results provide a promising starting point for solid-liquid TPPBs to enhance benzaldehyde production, and suggest that multiple, targeted polymers may provide relief for transformations characterized by multiple inhibitory substrates/product/by-products
机译:在固液两相分配生物反应器(TPPB)中检查了使用巴斯德毕赤酵母从苯甲醇生物生产苯甲醛的过程,以减少底物和产物的抑制作用。合理的聚合物选择确定Elvax 40W是有效的螯合相,其苄醇和苯甲醛的分配系数分别为3.5和35.4。 Elvax 40W的使用使所产生的苯甲醛的总质量增加了约50%。相对于单相生物转化,在5升生物反应器中为300%。两相体系的摩尔产率为0.99,表明只有很小的损失发生。这些结果为固液TPPB增强苯甲醛生产提供了有希望的起点,并表明多种靶向聚合物可缓解以多种抑制性底物/产物/副产物为特征的转化

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