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首页> 外文期刊>American Journal of Biochemistry and Biotechnology >ACETONE REMOVAL AND BIOELECTRICITY GENERATION IN DUAL CHAMBER MICROBIAL FUEL CELL
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ACETONE REMOVAL AND BIOELECTRICITY GENERATION IN DUAL CHAMBER MICROBIAL FUEL CELL

机译:双腔微生物燃料电池中的丙酮去除和生物电产生

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摘要

Synthetic waste water contain organic compound can be oxidized in an anaerobic conditions in microbial fuel cell while biodegradation of Chemical Oxygen Demand (COD) takes place under anaerobic condition in anode compartment. The microorganisms for biological treatment of the organic matter were obtained from a UASFB bioreactor. In the treatment of waste water, ones COD was removed the current and power was generated and record. Also polarization curve was obtained. In cathode compartment ferocynideand potassium permanganate with several concentration were add for enhancement of proton oxidation. The performance of MFC for maximum current and power generation were obtained with 300 mu M L~(-1) potassium permanganate as oxidizers agent. Maximum generated power and current densities were 22 mW/m~2 and 70 mA/m~2, respectively. Active microorganisms used acetone as electron donors and COD removal was 69% at the end of process.
机译:含有机化合物的合成废水可在厌氧条件下在微生物燃料电池中被氧化,而化学需氧量(COD)的生物降解则在厌氧条件下发生在阳极室中。从UASFB生物反应器获得用于生物处理有机物的微生物。在废水处理中,去除了一部分COD,并产生了电流并进行了记录。还获得了极化曲线。在阴极室中,添加了不同浓度的亚铁氰化物和高锰酸钾,以增强质子氧化。以300μM L〜(-1)高锰酸钾为氧化剂,获得了MFC的最大电流和最大发电性能。最大产生功率和电流密度分别为22 mW / m〜2和70 mA / m〜2。活性微生物使用丙酮作为电子供体,处理结束时COD去除率为69%。

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