首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Functional behavior of bio-electrochemical treatment system with increasing azo dye concentrations: Synergistic interactions of biocatalyst and electrode assembly
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Functional behavior of bio-electrochemical treatment system with increasing azo dye concentrations: Synergistic interactions of biocatalyst and electrode assembly

机译:偶氮染料浓度增加的生物电化学处理系统的功能行为:生物催化剂与电极组件的协同相互作用

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Treatment of dye bearing wastewater through biological machinery is particularly challenging due to its recalcitrant and inhibitory nature. In this study, functional behavior and treatment efficiency of bio-electrochemical treatment (BET) system was evaluated with increasing azo dye concentrations (100, 200, 300 and 500 mg dye/l). Maximum dye removal was observed at 300 mg dye/l (75%) followed by 200 mg dye/l (65%), 100 mg dye/l (62%) and 500 mg dye/l (58%). Concurrent increment in dye load resulted in enhanced azo reductase and dehydrogenase activities respectively (300 mg dye/l: 39.6 U; 4.96 mu g/ml). Derivatives of cyclic voltammograms also supported the involvement of various membrane bound redox shuttlers, viz., cytochrome-c, cytochrome-bc(1) and flavoproteins during the electron transfer. Bacterial respiration during BET operation utilized various electron acceptors such as electrodes and dye intermediates with simultaneous bioelectricity generation. This study illustrates the synergistic interaction of biocatalyst with electrode assembly for efficient treatment of azo dye wastewater. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于其顽强和抑制性,通过生物机械处理含染料废水特别具有挑战性。在这项研究中,通过增加偶氮染料浓度(100、200、300和500 mg染料/ l)评估生物电化学处理(BET)系统的功能行为和处理效率。观察到最大的染料去除为300 mg染料/ l(75%),然后是200 mg染料/ l(65%),100 mg染料/ l(62%)和500 mg染料/ l(58%)。同时增加染料载量分别提高了偶氮还原酶和脱氢酶的活性(300 mg染料/l:39.6 U; 4.96μg / ml)。循环伏安图的衍生物还支持在电子转移过程中各种膜结合的氧化还原穿梭物,即细胞色素c,细胞色素bc(1)和黄素蛋白的参与。 BET操作期间的细菌呼吸利用了各种电子受体,例如电极和染料中间体,同时产生了生物电。这项研究说明了生物催化剂与电极组件的协同相互作用,可有效处理偶氮染料废水。 (C)2016 Elsevier Ltd.保留所有权利。

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