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Generation of Electricity from Abattoir Waste Water with the Aid of a Relatively Cheap Source of Catholyte

机译:利用相对便宜的阴极源从屠宰场废水中发电

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The generation of electricity from high strength abattoir waste water has been demonstrated to be feasible at room temperature using a novel electron acceptor as catholyte in dual-chambered microbial fuel cell systems with agar-salt bridge inter-connection. The utilization of this electron acceptor in the single dualchambered and double dual-chambered in parallel and series was observed to produce an open circuit voltage of 1560mV, 1400mV and 2860mV respectively. Maximum power density was observed to be 12.26mW/m2, 20.71mW/m2 for the single dual-chambered and double dual-chambered in parallel respectively. However, due to very high internal resistance of the double dual-chambered in series (>9999Ω) a very poor polarization data was obtained. Current densities at maximum power for the single dual-chambered and double dual-chambered in parallel were observed to be 16.09mA/m2 and 35.77mA/m2 with internal resistances 4000Ω and 600Ω respectively. The application of this novel catholyte for power generation in MFC’s systems has the potential of regeneration thus, sustaining its utility for long periods. It was concluded that for large scale applications, MFC’s systems utilizing this novel catholyte as electron acceptor, connection in parallel would be preferable, because of the high open circuit voltage, reduced internal resistance and high current density achieved from such connections. @ JASEM
机译:已经证明,在具有琼脂盐桥互连的双室微生物燃料电池系统中,使用新型电子受体作为阴极电解液,在室温下从高强度屠场废水中发电是可行的。观察到这种电子受体在并联和串联的单双腔和双双腔中的利用分别产生了1560mV,1400mV和2860mV的开路电压。单个并联的双腔室和双并联的双腔室的最大功率密度分别为12.26mW / m2、20.71mW / m2。但是,由于双双腔串联的极高内部电阻(>9999Ω),因此获得了非常差的极化数据。单个双腔室和双双腔室并联的最大功率下的电流密度分别为16.09mA / m2和35.77mA / m2,内部电阻分别为4000Ω和600Ω。这种新颖的阴极电解液在MFC系统中的发电应用具有再生的潜力,因此可以长期保持其效用。结论是,对于大规模应用,采用这种新型阴极电解液作为电子受体的MFC系统最好采用并联连接,因为这种连接具有较高的开路电压,降低的内阻和较高的电流密度。 @ JASEM

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