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Process and kinetics of azo dye decolourization in bioelectrochemical systems: effect of several key factors

机译:生物电化学系统中偶氮染料脱色的过程和动力学:几个关键因素的影响

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摘要

This study explored the influence of several key factors on the process and kinetics of azo dye decolourization in bioelectrochemical systems (BESs), including cathode potential, dissolved oxygen (DO) concentration of catholyte and biofilm formed on the cathode. The results show that azo dye methyl orange (MO) decolourization in the BES could be well described with the pseudo first-order kinetics. The MO decolourization efficiency increased from 0 to 94.90 ± 0.01% and correspondingly the reaction rate constant increased from 0 to 0.503 ± 0.001 h−1 with the decrease in cathodic electrode potential from −0.2 to −0.8 V vs Ag/AgCl. On the contrary, DO concentration of the catholyte had a negative impact on MO decolourization in the BES. When DO concentration increased from zero to 5.80 mg L−1, the MO decolourization efficiency decreased from 87.19 ± 4.73% to 27.77 ± 0.06% and correspondingly the reaction rate constant reduced from 0.207 ± 0.042 to 0.033 ± 0.007 h−1. Additionally, the results suggest that the biofilm formed on the cathode could led to an adverse rather than a positive effect on azo dye decolourization in the BES in terms of efficiency and kinetics.
机译:这项研究探索了几个关键因素对生物电化学系统(BESs)中偶氮染料脱色过程和动力学的影响,包括阴极电势,阴极电解质的溶解氧(DO)浓度和在阴极上形成的生物膜。结果表明,BES中偶氮染料甲基橙(MO)的脱色可以用拟一级动力学很好地描述。 MO的脱色效率从0提高到94.90±0.01%,反应速率常数从0增加到0.503±0.001 h -1 ,阴极电极电位从-0.2降低到-0.8 V vs Ag / AgCl。相反,阴极电解液中的溶解氧浓度对BES中MO的脱色有负面影响。当DO浓度从零增加到5.80mg L −1 时,MO的脱色效率从87.19±4.73%降低到27.77±0.06%,反应速率常数从0.207±0.042降低到0.033±0.007。 h -1 。另外,结果表明,就效率和动力学而言,在阴极上形成的生物膜可能对BES中的偶氮染料脱色产生不利影响而不是积极影响。

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