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首页> 外文期刊>Journal of Biotechnology >Performance of an ultrafiltration membrane bioreactor (UF-MBR) as a processing strategy for the synthesis of galacto-oligosaccharides at high substrate concentrations.
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Performance of an ultrafiltration membrane bioreactor (UF-MBR) as a processing strategy for the synthesis of galacto-oligosaccharides at high substrate concentrations.

机译:超滤膜生物反应器(UF-MBR)作为在高底物浓度下合成低聚半乳糖的加工策略的性能。

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摘要

The performance of an ultrafiltration membrane bioreactor for galacto-oligosaccharides (GOS) synthesis using high lactose concentrations (470 g/L) and beta-galactosidase from Aspergillus oryzae was assessed. Tested processing variables were: transmembrane-pressure (PT), crossflow-velocity (CFV) and temperature. Results showed that processing variables had significant effect on the yield, the enzyme productivity and the flux but did not on GOS concentration and reaction conversion obtained. As expected, the use of high turbulences improved mass transfer and reduced the membrane fouling, but the use of very high crossflow-velocities caused operational instability due to vortex formation and lactose precipitation. The use of a desirability function allowed determining optimal conditions which were: PT (4.38 bar), CFV (7.35 m/s) and temperature (53.1 degrees C), optimizing simultaneously flux and specific enzyme productivity Under these optimal processing conditions, shear-stress and temperature did not affect the enzyme but long-term operation was limited by flux decay. In comparison to a conventional batch system, at 12.5 h of processing time, the continuous GOS synthesis in the UF-MBR increased significantly the amount of processed substrate and a 2.44-fold increase in the amount of GOS produced per unit mass of catalyst was obtained with respect to a conventional batch system. Furthermore, these results can be improved by far by tuning the membrane(area)/reaction(volume) ratio, showing that the use of an UF-MBR is an attractive alternative for the GOS synthesis at very high lactose concentrations. (C) 2016 Elsevier B.V. All rights reserved.
机译:评估了超滤膜生物反应器使用高乳糖浓度(470 g / L)和米曲霉中的β-半乳糖苷酶合成低聚半乳糖(GOS)的性能。测试的处理变量为:跨膜压力(PT),错流速度(CFV)和温度。结果表明,加工变量对产率,酶产率和通量有显着影响,但对GOS浓度和反应转化率没有影响。如预期的那样,使用高湍流改善了传质并减少了膜的结垢,但是由于涡流形成和乳糖沉淀,使用非常高的错流速度会导致操作不稳定。使用期望函数可以确定最佳条件,这些条件是:PT(4.38 bar),CFV(7.35 m / s)和温度(53.1摄氏度),同时优化通量和比酶生产率在这些最佳加工条件下,剪切应力温度不会影响酶,但长期运行会受到通量衰减的限制。与常规批处理系统相比,在12.5 h的处理时间下,UF-MBR中连续的GOS合成显着增加了被处理底物的量,每单位质量催化剂产生的GOS量增加了2.44倍关于常规批处理系统。此外,通过调节膜(面积)/反应(体积)比,可以大大改善这些结果,表明使用UF-MBR是在非常高的乳糖浓度下合成GOS的有吸引力的替代方法。 (C)2016 Elsevier B.V.保留所有权利。

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