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Behavior of single chambered mediatorless microbial fuel cell (MFC) at acidophilic, neutral and alkaline microenvironments during chemical wastewater treatment

机译:化学废水处理过程中单室无介质微生物燃料电池(MFC)在嗜酸,中性和碱性微环境下的行为

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Single chamber mediatorless microbial fuel cell (MFC; non-catalyzed graphite electrodes; open air cathode) behaviour was evaluated under different pH microenvironments [acidophilic (pH 6), neutral (pH 7) and alkaline (pH 8)] during chemical wastewater treatment employing anaerobic mixed consortia as anodic biocatalyst at room temperature (29 ± 2 ℃). The performance was found to depend on the feed pH used. Higher current density was observed at acidophilic conditions [pH 6; 186.34 mA/m~2; 100 Ω] compared to neutral [pH 7; 146.00 mA/m~2; 100 Ω] and alkaline [pH 8; 135.23 mA/m~2; 100 Ω]. On the contrary, substrate degradation was found to be effective at neutral pH conditions (ξ_(COD) - 58.98%; SDR - 0.67 kg COD/m~3-day) followed by alkaline (ξ_(COD) - 55.76%; SDR - 0.62 kg COD/m~3-day) and acidophilic (ξ_(COD) of 47.80%; SDR 0.58 kg COD/m~3-day) conditions studied. However, relatively higher specific power yield was observed at acidophilic microenvironment (46 mW/kg COD_R) compared to neutral (35 mW/kg COD_R) and alkaline (34 mW/kg COD_R) conditions. The behaviour of the MFC was also evaluated employing electron discharge, cyclic voltammetry, cell potentials, Coulombic efficiency and sustainable power analysis. Acidophilic operation showed higher Coulombic efficiency and effective electron discharge at relatively higher resistance compared to neutral and alkaline conditions studied.
机译:在采用化学废水处理的不同pH微环境[嗜酸(pH 6),中性(pH 7)和碱性(pH 8)]下,评估了单室无介质微生物燃料电池(MFC;非催化石墨电极;露天阴极)的行为厌氧混合财团在室温(29±2℃)下作为阳极生物催化剂。发现性能取决于所使用的进料pH。在嗜酸条件下[pH 6; pH 6]观察到较高的电流密度。 186.34 mA / m〜2;相较于中性[pH 7; 100Ω]; 146.00 mA / m〜2; 100Ω]和碱性[pH 8; 135.23 mA / m〜2; 100Ω]。相反,发现底物降解在中性pH条件下有效(ξ_(COD)-58.98%; SDR-0.67 kg COD / m〜3天),然后在碱性条件下(ξ_(COD)-55.76%; SDR-研究了0.62 kg COD / m〜3天的条件和嗜酸性(ξ_(COD)为47.80%; SDR 0.58 kg COD / m〜3天的条件)。然而,与中性(35 mW / kg COD_R)和碱性(34 mW / kg COD_R)条件相比,在嗜酸微环境(46 mW / kg COD_R)下观察到相对较高的比功率产量。还使用电子放电,循环伏安法,电池电势,库仑效率和可持续功率分析评估了MFC的性能。与中性和碱性条件相比,嗜酸操作在相对较高的电阻下显示出更高的库仑效率和有效的电子放电。

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