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Granular activated carbon based microbial fuel cell for simultaneous decolorization of real dye wastewater and electricity generation

机译:基于颗粒活性炭的微生物燃料电池,可同时使真实的染料废水脱色并发电

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Decolorization of dye wastewater before discharge is pivotal because of its immense color and toxicities. In this study, a granular activated carbon based microbial fuel cell (GACB-MFC) was used without using any expensive materials like Nafion membrane and platinum catalyst for simultaneous decolorization of real dye wastewater and bioelectricity generation. After 48 hours of GACB-MFC operation, 73% color was removed at anode and 77% color was removed at cathode. COD removal was 71% at the anode and 76% at the cathode after 48 hours. Toxicity measurements showed that cathode effluent was almost nontoxic after 24 hours. The anode effluent was threefold less toxic compared to original dye wastewater after 48 hours. The GACB-MFC produced a power density of 1.7 W/m~3 with an open circuit voltage 0.45 V. One of the advantages of the GACB-MFC system is that pH was automatically adjusted from 12.4 to 7.2 and 8.0 at the anode and cathode during 48 hours operation.
机译:染料废水在排放前脱色是至关重要的,因为它具有巨大的颜色和毒性。在这项研究中,使用了基于颗粒活性炭的微生物燃料电池(GACB-MFC),而没有使用任何昂贵的材料(如Nafion膜和铂催化剂)同时进行实际染料废水的脱色和生物发电。在GACB-MFC操作48小时后,阳极去除了73%的颜色,阴极去除了77%的颜色。 48小时后,阳极上的COD去除率为71%,阴极上的C​​OD去除率为76%。毒性测量表明,阴极流出物在24小时后几乎无毒。 48小时后,阳极废水的毒性是原始染料废水的三倍。 GACB-MFC产生的功率密度为1.7 W / m〜3,开路电压为0.45V。GACB-MFC系统的优点之一是在阳极和阴极的pH值自动从12.4调节至7.2和8.0。在48小时运行期间。

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