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Phenol biodegradation in an aerobic fixed-film process using conductive bioelectrodes: Biokinetic and kinetic studies

机译:使用导电生物电极的需氧固定膜过程中的苯酚生物降解:生物动力学和动力学研究

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The main goal of this article is to present biokinetic of phenol biodegradation in a bioelectrochemical process using steel wool and carbon cloth electrodes. Phenol biodegradation experiments were performed in a batch set up using a plexiglass reactor. Kinetic data were evaluated at pH 7, optimum applied current of 2 mA and laboratory temperature (24 +/- 1 degrees C). Optimum phenol concentration of 250 mg L-1 was considered for determination of biokinetic parameters in Haldane model. The main kinetic parameters such as K, R-2,mu(max), K-s, K-i, Y, b and biofilm density were determined in the bioelectrochemical process. The obtained results showed that the degradation of phenol was following the first order kinetic. Biodegradation and mineralization of phenol were 100% and 95% at 8 h reaction time, respectively. The mu(max),K- (s) and K-i of Haldane model were 0.16 h(-1), 0.26 mg L-1 and 300 mg L-1, respectively. The yield factor and decay coefficient were achieved 0.324 mg VSS/mg phenol and 0.117 d(-1), respectively. The obtained experimental data indicate that the Halden model is applicable for the biokinetic behaviour description of phenol degradation in bioelectrochemical system.
机译:本文的主要目的是介绍使用钢丝绒和碳布电极在生物电化学过程中苯酚生物降解的生物动力学。使用有机玻璃反应器分批进行苯酚生物降解实验。在pH 7、2 mA的最佳施加电流和实验室温度(24 +/- 1摄氏度)下评估动力学数据。考虑在Haldane模型中确定250 mg L-1的最佳苯酚浓度来确定生物动力学参数。在生物电化学过程中确定了主要的动力学参数,如K,R-2,mu(max),K-s,K-i,Y,b和生物膜密度。所得结果表明苯酚的降解遵循一级动力学。在8小时的反应时间,苯酚的生物降解和矿化度分别为100%和95%。 Haldane模型的mu(max),K-(s)和K-i分别为0.16 h(-1),0.26 mg L-1和300 mg L-1。屈服因子和衰减系数分别达到0.324 mg VSS / mg苯酚和0.117 d(-1)。实验结果表明,Halden模型适用于生物电化学体系中苯酚降解的生物动力学行为描述。

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