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Efficient treatment of azo dye containing wastewater in a hybrid acidogenic bioreactor stimulated by biocatalyzed electrolysis

机译:在生物催化电解刺激下的混合产酸生物反应器中高效处理含偶氮染料的废水

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摘要

In this study, a novel scaled-up hybrid acidogenic bioreactor (HAB) was designed and adopted to evaluate the performance of azo dye (acid red G, ARG) containing wastewater treatment. Principally, HAB is an acidogenic bioreactor coupled with a biocatalyzed electrolysis module. The effects of hydraulic retention time (HRT) and ARG loading rate on the performance of HAB were investigated. In addition, the influent was switched from synthetic wastewater to domestic wastewater to examine the key parameters for the application of HAB. The results showed that the introduction of the biocatalyzed electrolysis module could enhance anoxic decolorization and COD (chemical oxygen demand) removal. The combined process of HAB-CASS presented superior performance compared to a control system without biocatalyzed electrolysis (AB-CASS). When the influent was switched to domestic wastewater, with an environment having more balanced nutrients and diverse organic matters, the ARG, COD and nitrogen removal efficiencies of HAB-CASS were further improved, reaching 73.3% +/- 2.5%, 86.2% +/- 3.8% and 93.5% +/- 1.6% at HRT of 6 hr, respectively, which were much higher than those of AB-CASS (61.1% +/- 4.7%, 75.4% +/- 5.0% and 82.1% +/- 2.1%, respectively). Moreover, larger TCV/TV (total cathode volume/total volume) for HAB led to higher current and ARG removal. The ARG removal efficiency and current at TCV/TV of 0.15 were 39.2% +/- 3.7% and 28.30 +/- 1.48 mA, respectively. They were significantly increased to 62.1% +/- 2.0% and 34.55 +/- 0.83 mA at TCV/TV of 0.25. These results show that HAB system could be used to effectively treat real wastewater. (C) 2015 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:在这项研究中,设计了一种新型的按比例放大的混合产酸生物反应器(HAB)并用于评估含偶氮染料(酸性红G,ARG)的废水处理的性能。 HAB原则上是与生物催化电解模块耦合的产酸生物反应器。研究了水力停留时间(HRT)和ARG加载速率对HAB性能的影响。此外,将进水从合成废水转换为生活废水,以检查应用HAB的关键参数。结果表明,引入生物催化电解模块可以增强缺氧脱色和化学需氧量的去除。与没有生物催化电解的控制系统(AB-CASS)相比,HAB-CASS的组合工艺具有卓越的性能。当进水改用生活污水时,在养分平衡且有机物种类较多的环境中,HAB-CASS的ARG,COD和脱氮效率得到进一步提高,分别达到73.3%+/- 2.5%,86.2%+ / -在6小时的HRT时分别为3.8%和93.5%+/- 1.6%,远高于AB-CASS(61.1%+/- 4.7%,75.4%+/- 5.0%和82.1%+ / -分别为2.1%)。此外,用于HAB的较大的TCV / TV(阴极总体积/总体积)导致较高的电流和ARG的去除。 TCV / TV处的ARG去除效率和电流分别为39.2%+/- 3.7%和28.30 +/- 1.48 mA。在TCV / TV为0.25时,它们显着增加至62.1%+/- 2.0%和34.55 +/- 0.83 mA。这些结果表明,HAB系统可用于有效处理实际废水。 (C)2015中国科学院生态环境研究中心。由Elsevier B.V.发布

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