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Bioreactor-on-a-chip: application to baker's yeast fermentation

机译:生物反应器上的芯片:应用于面包师的酵母发酵

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Presents a miniaturized bioreactor (bioreactor-on-a-chip) applied to baker's yeast fermentation. The bioreactor-on-a-chip is fabricated using silicon and glass wafers applying micromachining technology (wet-etching techniques) in order to create microchannels, mixerchannels, and microvalves. The miniaturization and integration allows smaller volumes to be used, which can be often rather challenging from the analytical point of view. Also, optical detection by absorption, electrochemical detection using microelectrodes and membranes are used. Moreover, electroanalytical techniques used in bioelectrochemistry (e.g. microdialysis, capillary electrophoresis and HPLC) are employed. Experimental results obtained from a macro laboratory set-up with a five-liter fermenter and on-line measurement of temperature, pH, dissolved oxygen and ethanol, and exhausted gases analyses are available. Biomass and glucose concentrations are estimated on-line by observation algorithms and confirmed by off-line measurements. An ethanol set-point control is implemented.
机译:呈现施加到面包师酵母发酵的小型化生物反应器(生物反应器上)。使用硅和玻璃晶片使用施加微机械线技术(湿蚀刻技术)来制造生物反应器,以创建微通道,混合器和微型阀。小型化和集成允许使用较小的体积,这通常可能与分析的角度来说是挑战。而且,使用使用微电极和膜的吸收光学检测,使用微电极和膜。此外,采用了生物电化学(例如微透明度,毛细管电泳和HPLC)中使用的电解理技术。从宏观实验室和温度,pH,溶解氧氧和乙醇的在线测量和耗尽的气体分析中获得的实验结果。通过观察算法在线估计生物质和葡萄糖浓度,并通过离线测量证实。实施乙醇设定点控制。

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