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首页> 外文期刊>Nature reviews Cancer >A novel All-in-One electrolysis electrode and bioreactor enable better study of electrochemical effects and electricity-aided bioprocesses
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A novel All-in-One electrolysis electrode and bioreactor enable better study of electrochemical effects and electricity-aided bioprocesses

机译:一种新型的一体化电解电极和生物反应器,可以更好地研究电化学效果和电力辅助生物处理

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摘要

An autoclavable All-in-One electrolysis electrode in a rod shape assembly is developed as a new tool for bioelectrochemical systems and electricity-aided bioprocesses. It can replace the classic two-chamber bioelectrochemical system for electrolysis reactions, be inserted into conventional bioreactors and is easily adaptable as electrocatalytic surface or generator of super-fine bubbles (H-2 and O-2) for bioconversion processes. Whereas the bioreactor itself functions as the working electrode chamber, a well-integrated inner counter electrode chamber enables water electrolysis without the normally encountered undesired ion-transfer effect. The efficiencies of the electrode are characterized and its advantages and usefulness compared to the classic H-Cell bioelectrochemical system (BES) are demonstrated with glycerol fermentations by Clostridium pasteurianum DSM 525.
机译:杆状组件中的可高压的一体化电解电极被开发为生物电化学系统和电力辅助生物处理的新工具。 它可以取代经典的双室生物电化学系统进行电解反应,插入常规生物反应器中,并且易于适应作为生物转化过程的超细泡沫(H-2和O-2)的电催化表面或发电机。 虽然生物反应器本身用作工作电极室,但是一部分良好的内部内对电极室使得没有通常遇到的不希望的离子转移效果的水电解能够。 通过Clastridulianulianum DSM 52M用甘油发酵对其与经典H细胞生物电化学系统(BES)相比的优点和有用性的特征在于,其优点和有用性。

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