首页> 外文期刊>Journal of The Institution of Engineers (India) >Improved Wastewater Treatment by Combined System of Microbial Fuel Cell with Activated Carbon/TiO_2 Cathode Catalyst and Membrane Bioreactor
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Improved Wastewater Treatment by Combined System of Microbial Fuel Cell with Activated Carbon/TiO_2 Cathode Catalyst and Membrane Bioreactor

机译:微生物燃料电池与活性炭/ TiO_2阴极催化剂和膜生物反应器联合处理改善废水

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摘要

A two-stage continuous process was developed for treating medium-strength wastewater combining microbial fuel cell (MFC) using activated carbon (AC)/ TiO_2 composite as cathode catalyst and submerged membrane bioreactor (MBR). Synthetic wastewater, having total chemical oxygen demand (COD) of around 3 g/L, was introduced first in the anodic chamber of MFC in a continuous mode of operation followed by aerobic MBR. Submerged hollow-fibre ultra-filtration membrane assembly was attached to draw permeate from MBR. The electrical performance of MFC was evaluated by polarisation, which showed a maximum volumetric power density of 1.02 W/m~3 with much lower whole-cell internal resistance of 10 Ω. The coulombic efficiency of MFC was estimated to be 0.31%, demonstrating AC/TiO_2 composite as a promising cathode catalyst for applications in MFC. The permeate of MFC-MBR system showed 98.3 ± 0.3% and 81.9 ± 1.8% of COD and total Kjeldahl nitrogen removal efficiency, respectively, producing permeate with total suspended solids concentration of less than 5 mg/L. Thus, a two-stage reliable process for treatment of wastewater is demonstrated using integrated MFC-MBR for generating high-quality recyclable effluent and facilitating recovery of bio-electricity.
机译:研究了以活性炭(AC)/ TiO_2复合材料为阴极催化剂和浸没式膜生物反应器(MBR)为原料的微生物燃料电池(MFC)与微生物燃料电池(MFC)混合处理的两阶段连续工艺。首先以连续操作模式将总化学需氧量(COD)约为3 g / L的合成废水引入MFC的阳极室,然后再进行好氧MBR。连接浸没的中空纤维超滤膜组件以从MBR提取渗透液。通过极化评估了MFC的电性能,其显示出最大体积功率密度为1.02 W / m〜3,全电池内阻低得多,仅为10Ω。 MFC的库仑效率估计为0.31%,表明AC / TiO 2复合材料作为在MFC中应用的有希望的阴极催化剂。 MFC-MBR系统的渗透物分别显示出98.3±0.3%和81.9±1.8%的COD和凯氏定氮总脱氮效率,产生的总悬浮物浓度小于5 mg / L的渗透物。因此,使用集成的MFC-MBR展示了用于废水处理的两阶段可靠过程,该过程可产生高质量的可回收废水并促进生物电的回收。

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